WO2013027754A1 - Dispositif de découpe circulaire, procédé de découpe circulaire, procédé de construction à dépose pour structures souterraines, et procédé de construction de pavage de route - Google Patents

Dispositif de découpe circulaire, procédé de découpe circulaire, procédé de construction à dépose pour structures souterraines, et procédé de construction de pavage de route Download PDF

Info

Publication number
WO2013027754A1
WO2013027754A1 PCT/JP2012/071157 JP2012071157W WO2013027754A1 WO 2013027754 A1 WO2013027754 A1 WO 2013027754A1 JP 2012071157 W JP2012071157 W JP 2012071157W WO 2013027754 A1 WO2013027754 A1 WO 2013027754A1
Authority
WO
WIPO (PCT)
Prior art keywords
cutting
engaged
cut
shaft
pavement
Prior art date
Application number
PCT/JP2012/071157
Other languages
English (en)
Japanese (ja)
Inventor
椿森 信一
慎太郎 椿森
Original Assignee
Tsubakimori Shinichi
Tsubakimori Shintaro
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tsubakimori Shinichi, Tsubakimori Shintaro filed Critical Tsubakimori Shinichi
Publication of WO2013027754A1 publication Critical patent/WO2013027754A1/fr

Links

Images

Classifications

    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D29/00Independent underground or underwater structures; Retaining walls
    • E02D29/12Manhole shafts; Other inspection or access chambers; Accessories therefor
    • E02D29/14Covers for manholes or the like; Frames for covers
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C23/00Auxiliary devices or arrangements for constructing, repairing, reconditioning, or taking-up road or like surfaces
    • E01C23/06Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road
    • E01C23/09Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road for forming cuts, grooves, or recesses, e.g. for making joints or channels for markings, for cutting-out sections to be removed; for cleaning, treating, or filling cuts, grooves, recesses, or fissures; for trimming paving edges
    • E01C23/0906Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road for forming cuts, grooves, or recesses, e.g. for making joints or channels for markings, for cutting-out sections to be removed; for cleaning, treating, or filling cuts, grooves, recesses, or fissures; for trimming paving edges for forming, opening-out, cleaning, drying or heating cuts, grooves, recesses or, excluding forming, cracks, e.g. cleaning by sand-blasting or air-jet ; for trimming paving edges
    • E01C23/0926Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road for forming cuts, grooves, or recesses, e.g. for making joints or channels for markings, for cutting-out sections to be removed; for cleaning, treating, or filling cuts, grooves, recesses, or fissures; for trimming paving edges for forming, opening-out, cleaning, drying or heating cuts, grooves, recesses or, excluding forming, cracks, e.g. cleaning by sand-blasting or air-jet ; for trimming paving edges with power-driven tools, e.g. vibrated, percussive cutters
    • E01C23/0933Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road for forming cuts, grooves, or recesses, e.g. for making joints or channels for markings, for cutting-out sections to be removed; for cleaning, treating, or filling cuts, grooves, recesses, or fissures; for trimming paving edges for forming, opening-out, cleaning, drying or heating cuts, grooves, recesses or, excluding forming, cracks, e.g. cleaning by sand-blasting or air-jet ; for trimming paving edges with power-driven tools, e.g. vibrated, percussive cutters rotary, e.g. circular-saw joint cutters
    • E01C23/094Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road for forming cuts, grooves, or recesses, e.g. for making joints or channels for markings, for cutting-out sections to be removed; for cleaning, treating, or filling cuts, grooves, recesses, or fissures; for trimming paving edges for forming, opening-out, cleaning, drying or heating cuts, grooves, recesses or, excluding forming, cracks, e.g. cleaning by sand-blasting or air-jet ; for trimming paving edges with power-driven tools, e.g. vibrated, percussive cutters rotary, e.g. circular-saw joint cutters about vertical or inclined axes, e.g. for core sampling
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D29/00Independent underground or underwater structures; Retaining walls
    • E02D29/12Manhole shafts; Other inspection or access chambers; Accessories therefor
    • E02D29/14Covers for manholes or the like; Frames for covers
    • E02D29/1445Tools for positioning or removing cover frames

Definitions

  • the opening is closed on the manhole base wall installed underground.
  • the temporary lid attached to the manhole or the manhole cover receiving frame installed on the base wall of the manhole via the height adjusting material it is entirely buried under the road surface or partly exposed on the road surface.
  • a circular cutting device useful for efficiently removing an underground structure contained in pavement a circular cutting method using the circular cutting device, an underground structure removing method, and the removing method It is related to the road pavement construction method.
  • the circular cutting process, the breaking / edge cutting process and the moving / removing process are performed by a circular cutting device, a lifting device such as a jack, and a supporting moving means such as a boom of a crane car, respectively.
  • a circular cutting device such as a jack
  • a supporting moving means such as a boom of a crane car
  • the breaking / edge cutting process and the moving / removing process are performed by a supporting moving means such as a boom of a crane truck.
  • a supporting moving means such as a boom of a crane truck.
  • the cut pavement plate of the submerged structure that has been circularly cut, broken, and trimmed is formed into a part of the subsurface structure by a support moving means such as a boom of a crane truck.
  • a support moving means such as a boom of a crane truck.
  • the support moving means cannot stably and reliably grip the cut pavement plate of the fractured and edge-cut underground structure inclusion, the underground structure inclusion While the cut pavement plate is lifted by the support moving means as described above, moved and removed, it is unstablely swayed, easily loses its balance and becomes unstable. Safety and workability are large There is a fear being harmed.
  • a circular cutting device used in the circular cutting step in the underground structure removal method for example, in the case of circular cutting of a pavement of an underground structure containing a cutting object, a central shaft and the central shaft A cutting bit disposed so as to be rotatable and propellable in the axial direction of the shaft, a support moving means for supporting and moving the central shaft and holding it in a required position, and cutting the cutting bit by the support moving means.
  • a cutting reaction force receiving means for receiving a rotational reaction force and a propulsion reaction force required for the circular cutting are well known.
  • the cutting reaction force receiving means in the circular cutting device is configured to press and hold the lower end of the center shaft supported by the support moving means on the pavement along the cutting center axis by the pressing pressure of the support moving means.
  • the structure etc. which engage and fix the lower end of the said center shaft to the said underground structure via some engagement means are employ
  • the lower end of the central shaft supported by the support moving means is engaged and fixed to the underground structure through the movement / removal step from the circular cutting step.
  • the cutting reaction force receiving means is configured to press and hold the lower end of the center shaft on the pavement along the cutting center axis by the pressing force of the support moving means, the required rotational reaction force and propulsion are achieved.
  • the pressing pressure of the support moving means is held strong, and therefore the support moving means needs to be enlarged, and the lower end of the center shaft is only on one place from above on the pavement.
  • the support moving means is enlarged and the pressing pressure is increased, the center shaft is likely to be vibrated or shaken during the circular cutting, and the cutting groove width is reduced by the vibration or shake. While increasing, the cutting bit of the cutting bit, the supporting member of the cutting tip and the like are rapidly worn out, and there is a problem that the service life of the cutting bit is shortened.
  • the rotational reaction force and the propulsive reaction force at the time of circular cutting are transmitted via the engaging means.
  • the lower end of the central shaft is engaged with the underground structure only at one point. Even if the engagement and fixation are strengthened, the cutting groove width increases due to the vibration of the center shaft and blurring, and the cutting bit of the cutting bit, the supporting member of the cutting tip, etc. It has been difficult to sufficiently suppress excessive wear and the like.
  • the circular cutting device configured to engage and fix the lower end of the central shaft to the underground structure via an engaging means, the cut pavement plate in which the lower end of the central shaft is circularly cut even after circular cutting. Since it is engaged and fixed to the underground structure included in the structure, the form from which the circular cutting process to the movement / removal process can be carried out continuously using the circular cutting apparatus is apparent.
  • the lower end of the center shaft is engaged with the underground structure included in the circular cut cutting pavement plate in the breaking / edge cutting step and the moving / removing step after the circular cutting step.
  • the center shaft is forcibly pulled up by the supporting and moving means in a state of being engaged and fixed through the means, the cut pavement plate of the circular structure containing the underground structure is removed from the peripheral fixing member. Since an excessive load due to a large pulling reaction force is applied to the support moving means when it is ruptured or trimmed, the support moving means breaks down, breaks down, and the safety and workability of workers due to them, etc.
  • the above-mentioned circular cutting device has difficulty in safely and reliably carrying out the breaking / edge cutting process.
  • the lower end of the center shaft is engaged and fixed to the underground structure contained in the circularly cut cutting pavement plate via the engaging means even after the breaking / edge cutting step.
  • the center shaft In the moving / removing step under a state of being left, the center shaft cannot stably and reliably grip the cut pavement plate of the underground structure inclusion, so that the cut pavement of the underground structure inclusion is cut.
  • the plate While the plate is lifted and transported together with the central shaft by the support moving means, the plate oscillates unstably, and tends to become unstable due to loss of balance, resulting in safety and workability for workers. There was a risk of being greatly disturbed.
  • Japanese Utility Model Publication No.59-193679 Japanese Patent No. 2623491 (Cutting Overlay Method)
  • Patent No. 2739629 Patent No. 3263355 (pavement method of road surface including manhole)
  • Japanese Patent No. 3926429 Method for removing underground buried object and apparatus used for the method
  • Japanese Examined Patent Publication No. 61-52283 road surface cutting machine
  • Japanese Patent No. 3622838 circular cutting device for road surface
  • Japanese Patent Application No. 2011-180651 circular cutting device, circular cutting method, underground structure removal method and road pavement method
  • the object of the present invention is to reliably obtain the rotational reaction force and propulsion reaction force required for circularly cutting the object to be cut in the circular cutting step, and thereby the center at the time of circular cutting.
  • the circular cutting is performed in order to prevent the shaft from vibrating and blurring, and to suppress the increase in the cutting groove width and the wear of the cutting tip of the cutting bit and the supporting member of the cutting tip.
  • it is possible to reliably generate a required pulling force that does not depend on the support moving means, thereby preventing failure and breakage of the support moving means and working.
  • the cutting object that has been circularly cut, broken, and edge-cut It can be gripped regularly and reliably, and can be lifted and transported while maintaining balance without unstable swinging, thereby ensuring the safety and workability of workers, etc.
  • a further improved circular cutting device, a circular cutting method using the same, and an underground structure that can smoothly and smoothly perform a series of steps consisting of breaking, edge cutting and movement / removal with one type of device. Is to provide a method of removing the road and a road pavement method including it.
  • the circular cutting device according to the present invention that solves the above-described problem is, as described in claim 1, a central shaft, and a cutting bit disposed on the central shaft so as to be rotatable and propellable in the axial direction of the shaft.
  • a support moving means for supporting and moving the center shaft and holding it at a required position, and the center shaft in which the cutting bit is erected and held on the object to be cut along the cutting center axis by the support moving means.
  • Bit driving means for rotating above and propelling in the axial direction of the shaft, thereby cutting the object to be cut in a circle around the cutting center axis, and cutting for receiving the required rotational reaction force and propulsion reaction force during the circular cutting
  • a circular cutting device having at least a reaction force receiving means,
  • a pulling rod is provided on the central shaft so as to be extendable and contractable in the axial direction of the shaft, and an engaging means is provided at an end of the pulling rod, and a stone thrusting portion is extended and contracted at the end of the central shaft. It is characterized in that it can pass through and can generate a pinching pressure with the contracting means of the retracting pull-up rod.
  • the pulling rod is provided on the central shaft coaxially with the main rod portion that is extendable in the axial direction of the shaft, It is preferable that the main rod portion is detachably connected to the shaft axial direction and includes an extension rod portion having the engaging means at an end portion.
  • the extension rod portion may be integrated, or comprises an engagement action portion including the engagement means, and an intermediate adjustment portion detachably connected to the engagement action portion. Also good.
  • the length of the entire extension rod portion is changed by changing the intermediate adjustment portion and / or the engagement operation portion, particularly the intermediate adjustment portion, constituting the extension rod portion to an appropriate length.
  • the length of the entire pulling rod can be changed according to the depth of the operation cavity and other cutting conditions.
  • the connecting position of the said intermediate adjustment part with respect to the said engaging action part in the rod axial direction may be changeable, In that case, the rod axial direction of the said intermediate adjusting part with respect to the said engaging action part
  • the connection position By changing the connection position, the length of the whole extension rod part and the whole length of the pull-up rod can be changed according to the depth of the operating cavity and other cutting conditions.
  • connection means in the connection between the main rod portion and the extension rod portion, the connection between the main rod portion and the intermediate adjustment portion, and the connection between the intermediate adjustment portion and the engagement action portion strength and connection
  • a known mechanism may be appropriately adopted in consideration of workability and the like.
  • These include, for example, a pin connection structure in which a pin is driven in a diametrical direction into a fitting portion of both members fitted on the same axis, or between both members abutted or fitted on a coaxial line in the axial direction.
  • a reaction force receiving frame having three or more legs adjustable in height is provided on the central shaft. It is preferable that the leg is disposed so as to surround the cutting bit so that the leg can come into contact with an outer area of the circular cutting.
  • Each of the legs may include, for example, an adjustment member including a coarse adjustment portion that changes the height stepwise and a fine adjustment portion that continuously changes the height within a narrow range.
  • the adjusting member may include a fluid pressure cylinder such as a hydraulic pressure.
  • the center shaft includes a main shaft portion, and a movable shaft portion provided on the main shaft portion so as to be extendable and contractible in the shaft axial direction.
  • the main shaft portion is provided with the reaction force receiving frame, and the movable shaft portion is provided with the cutting bit so as to be rotatable and propellable in the axial direction of the shaft, and the pulling rod extends and contracts in the axial direction of the shaft. It may be provided.
  • the drive sources of the support moving means and the bit drive means in the circular cutting device, and the drive sources for expanding and contracting the pulling rod and the movable shaft portion are not limited, and any of, for example, hydraulic pressure, pneumatic pressure, electric power, etc. It may be.
  • the cutting bit a well-known one in which a cutting tip such as a diamond tip is attached around the lower end of the cylindrical body portion is preferably used. If there is, it is not limited to the cut bit of the said form.
  • the said circular cutting device can be used suitably for the circular cutting method of cutting objects, such as pavement which includes an underground structure, for example. That is, as described in claim 5, the circular cutting method uses the circular cutting device according to any one of claims 1 to 4 and has an operation cavity along a cutting center axis, A method of cutting a cutting object provided with an engaged means in a circular shape inside an operation cavity or an arbitrary portion passing through the inside, The operation of inserting the pulling rod into the operation cavity and engaging the engaging means of the pulling rod with the engaged member, simultaneously with any preceding operation, or before or after the operation, An operation of providing a stone thrust retainer in the opening of the operation cavity so that the pulling rod can be inserted and receiving and retaining the stone thrust section; and a stone thrust section of the central shaft, The pulling rod is contracted with respect to the central shaft in a state where the engaged means is engaged with the engaging means, The cutting object is clamped and gripped from both sides by the stone thrusting portion of the central shaft and the engaging means
  • the cutting object is sandwiched and gripped from both sides by the stone thrust portion of the center shaft and the engaging means of the pulling rod,
  • the center shaft supported by the support moving means is firmly fixed and integrated with the object to be cut by the clamping and gripping with the pulling rod, and the center shaft stone is The cutting object is circularly cut by the cutting bit while the required rotational reaction force and propulsion reaction force are applied to the cutting object via the protrusion and the pulling rod engaging means.
  • an operation for inserting the pulling rod into the operation cavity of the object to be cut In circular cutting of the object to be cut, an operation for inserting the pulling rod into the operation cavity of the object to be cut, and an object disposed in the inside of the operation cavity or at any part passing through the inside.
  • an image taken by a camera device provided at the end of the pulling rod is referred to on the display device as necessary. May be.
  • a camera device for photographing the front part of the pulling rod and an illumination device for photographing are provided at the end of the pulling rod, and an image photographed by the camera device is transmitted to the display device.
  • the engaging means provided at the end of the pull-up rod includes an engaged means arranged in advance in the inside of the operating cavity or an arbitrary portion passing through the inside, and access via the operating cavity.
  • the engaging means includes, for example, a variable member constituting the engaging means in a radial direction or the like with respect to the rod axis by a hydraulic pressure, a pneumatic pressure, an electric power, a mechanical mechanism, gravity, a manual mechanism or a mechanism in which these are appropriately combined. It may be adapted to engage with the engaged means by being expanded or operated around a rod axis.
  • the engaged means arranged at the inside of the operation cavity in the cutting object or an arbitrary portion passing through the inside can be engaged with the engaging means in the manner described above, Those having a structure and a size are appropriately selected. For example, they can be attached, stacked, adhered, screwed, fitted, or incorporated into the inside of the operation cavity or an arbitrary part of the operation cavity itself. It may be a member arranged in various modes such as driving, press-fitting and the like.
  • the stone thrusting portion provided at the end of the central shaft is pressed and held at the opening of the operation cavity when the object to be cut is circularly cut by a circular cutting device or in a later step to be described later.
  • an appropriate stone thrusting holder is usually interposed between the stone thrusting part and the opening of the operation cavity.
  • the stone thrust retainer is formed in the opening of the operation cavity in the cutting object, for example, in the form of lid, bridge, covering, plugging, etc., so as not to inhibit the circular cutting, That is, it is provided so as not to come out of the outer region of the circular cutting.
  • the stone thrust retainer a shape, structure, size or the like corresponding to the shape, structure, size, etc. of the stone thrust portion of the central shaft and the opening of the object to be cut is selected.
  • a base installed in the above-described manner in the opening of the operation cavity, a receiving unit provided on the base and pressing and holding the stone thrusting unit, and the base and the receiving unit It is possible to suitably employ an operation hole including an operation hole penetrating so as to communicate with the operation cavity so that the pull-up rod can be inserted.
  • the device has an operation cavity along the cutting center axis, and is engaged with any part of the operation cavity inside or passing through the operation cavity.
  • a method of cutting a cutting object having means into a circle The operation of inserting the pulling rod into the operation cavity and engaging the engaging means of the pulling rod with the engaged member, simultaneously with any preceding operation, or before or after the operation, An operation of providing a stone thrust retainer in the opening of the operation cavity so that the pulling rod can be inserted and receiving and retaining the stone thrust section; and a stone thrust section of the central shaft, The pulling rod is contracted with respect to the central shaft in a state where the engaged means is engaged with the engaging means, The cutting object is clamped and gripped from both sides by the stone thrusting part of the central shaft and the engaging means of the pulling rod, and each leg part of the reaction force receiving frame is circular in the cutting object.
  • the cutting bit is rotated on the central shaft by the bit driving means and propelled in the axial direction of the shaft under the above state, and thereby the cutting object is brought to the required depth from the road surface. And the operation of cutting into a circle.
  • the pulling rod is inserted into the operating cavity and the pulling rod is engaged.
  • the means with the engaged means start with the extension rod portion separated from the main rod portion without connecting the main rod portion and the extension rod portion constituting the pulling rod from the beginning, It is possible to finally operate to connect the two. That is, as described in claim 7, the circular cutting method is operated along the cutting center axis using the circular cutting device according to claim 3 or claim 4 dependent on claim 2 or claim 2.
  • a method of cutting a cutting object having an engagement means in a circular shape inside the operation cavity or at any part passing through the operation cavity A first operation in which the extension rod portion separated from the main rod portion of the pull-up rod is inserted into the operation cavity and the engaging means of the extension rod portion is engaged with the engaged means, and subsequently the pull-up
  • the pulling rod is inserted into the operating cavity and the pulling rod is engaged.
  • the lifting rod is inserted into the opening of the operating cavity.
  • the pulling rod is contracted with respect to the center shaft in a state where the engaged means is engaged with the engaging means, whereby the object to be cut is pulled up with the stone thrusting portion of the center shaft and the pulling-up portion.
  • the cutting bit is rotated on the central shaft by the bit driving means and propelled in the axial direction of the shaft, and thereby the object to be cut is operated. And an operation of cutting an object in a circular shape from the road surface to a required depth.
  • the cutting object has a relationship between the stone thrust portion of the central shaft and the pulling rod.
  • the central shaft supported by the support moving means is firmly attached to the object to be cut by the clamping pressure and gripping with the pulling rod.
  • the cutting bit while taking the required rotational reaction force and propulsion reaction force on the object to be cut via the stone thrust part of the center shaft and the engaging means of the pulling rod under the state of being fixed to and integrated with the cutting bit Circular cutting of the object to be cut is performed.
  • a short and light extension rod part separated from the main rod part of the pulling rod is inserted into the operation cavity of the cutting object and the extension is performed.
  • the engaging means of the rod part is engaged with the engaged means, and then, as a second operation, the main rod part of the pulling rod is connected to the extension rod part to complete the entire pulling rod. Yes.
  • the extension rod portion further includes an engagement action portion including the engagement means and an intermediate adjustment portion detachably connected to the engagement action portion
  • the second operation may be performed in a state where the engaging action part and the intermediate adjusting part are connected from the beginning, or the first operation is performed using only the engaging action part. Later, in the second operation, the engaging action portion may be connected to the main rod portion via the intermediate adjusting portion.
  • the extension rod portion When the extension rod portion is connected to the main rod portion of the pull-up rod, for example, as described above, when a large space for connection work such as driving a pin is required around the connection portion, When it is necessary to be performed outside the operation cavity, and when a large space for connection work such as screw tightening is not necessarily required around the connection portion, such as a screw connection structure, the inside of the operation cavity Alternatively, it may be performed near the boundary between the inside and the outside.
  • the extension rod portion is completely accommodated in the operation cavity by the selection of the length during the first operation. From the end of the first operation to the start of the second operation, the opening of the operation cavity may be temporarily covered, for example, for opening traffic.
  • the extension rod portion is detachably connected to the engagement action portion including the engagement means and the engagement action portion.
  • the intermediate adjustment unit is configured, for example, both the first operation and the second operation are performed in a state in which the engagement operation unit and the intermediate adjustment unit are connected from the beginning. Between the end of the operation and the start of the second operation, the opening of the operation cavity is a state in which the engaging action part and the intermediate adjustment part connected thereto are completely accommodated in the operation cavity. May be temporarily covered.
  • the engagement action part is connected to the main rod part via the intermediate adjustment part in the second operation. From the end of the first operation to the start of the second operation, the opening of the operation cavity is temporarily applied in a state where the engaging action portion is completely accommodated in the operation cavity. It may be covered.
  • the extension rod portion is configured by an engagement action portion including the engagement means and an intermediate adjustment portion that is detachably connected to the engagement action portion
  • the first operation is performed in a state in which the engaging action portion and the intermediate adjustment portion are connected from the beginning, and the first operation is completely accommodated in the operation cavity.
  • the intermediate adjustment portion connected to the engagement operation portion may be connected to the main rod portion in the second operation, or the engagement operation portion may be connected to the intermediate operation portion.
  • the first operation is performed in a state separated from the adjustment unit, and is completely stored in the operation cavity and covered until the start of the second operation. Is connected to the main rod part through the intermediate adjusting part. It may be.
  • the pull-up rod is composed of a main rod portion and an extension rod portion, and after the engagement between the engagement means of the extension rod portion and the engaged means in the first operation, the extension rod portion
  • the extension rod portion is connected to the engagement means and the engagement member in order to facilitate the operations of the first operation and the second operation.
  • the rod shaft is held in a certain range in the engaged state in the engaged state.
  • the engagement means includes An engagement piece provided at the end portion so as to be expandable in the radial direction; and a stopper portion bulged in the radial direction at a position spaced apart from the engagement piece in the rod axis direction on the extension rod portion, Engagement hole in which engaged means engaged with the engaging means are limited so as to penetrate the end portion of the extension rod portion only when the engagement piece is contracted and not penetrate the stopper portion
  • the engaging piece may be expanded after the end of the extension rod portion is passed through the engaging hole.
  • the expansion of the engaging piece may be performed by, for example, hydraulic pressure, pneumatic pressure, electric power, mechanical mechanism, gravity, manual operation, or a mechanism obtained by appropriately combining them.
  • the engagement means includes the An engagement piece projecting radially at an end of the extension rod part, a stopper part bulging radially in the extension rod part at a position spaced apart from the engagement piece in the rod axis direction, and the extension The rod portion is provided on the side opposite to the engagement piece with respect to the stopper portion so as to be non-rotatable and movable in the rod axis direction within a range not exceeding the stopper portion.
  • a floating part adapted to receive a biasing force in the direction of the engagement piece when arranged below the stopper part, and the stopper part at a different angular position from the engagement piece, Not to interfere
  • the locking rod provided along the rod axial direction, and on the other hand, the engaged means engaged with the engaging means has an expansion hole through which the engaging piece penetrates, and the extension rod portion
  • the extension rod includes an engagement hole that is restricted so as to pass through the end of the stopper including the engaging piece and not through the stopper portion, and the extension rod is engaged when the engaging means and the engaged means are engaged.
  • the engagement piece is rotated with respect to the engagement hole after the end of the portion including the engagement piece is passed through the engagement hole, and the engagement piece is different from the expansion hole of the engagement hole.
  • the locking piece may be automatically fitted into the expansion hole of the engagement hole by the biasing force while being arranged at an angular position.
  • the extension rod portion is prevented from rotating with respect to the engagement hole.
  • the engagement piece is disposed at the same angular position as the expansion hole of the engagement hole, and at the same time, the engagement between the engagement piece and the engagement hole cannot be released.
  • the circular cutting device has, for example, an opening on a manhole base wall installed in the basement in cutting overlay pavement construction, replacement pavement construction, new pavement construction, or height adjustment pavement construction of a manhole cover receiving frame.
  • a temporary lid attached to be closed or a human hole cover receiving frame installed on the base wall of the human hole via a height adjusting material it is entirely buried under the road surface or part of it is on the road surface. It can be suitably used for a method for removing underground structures such as exposing the underground structures contained in the pavement efficiently.
  • the underground structure is included, and an operation cavity is provided along the cutting center axis, and the interior of the operation cavity is included.
  • the circular cutting device according to claim 3 or 4 is used in each of a series of steps from the circular cutting step to the movement / removal step through the breaking / edge cutting step, In the circular cutting step, the pulling rod is inserted into the operation cavity and the engaging means of the pulling rod is engaged with the engaged means, simultaneously with any preceding operation or Before or after the operation, an operation of
  • the pulling rod is urged in the contraction direction with respect to the central shaft via the reaction force receiving frame, and the cutting paving plate of the underground structure inclusion is pulled up, At least an operation of breaking and trimming the fixing member is performed,
  • the stone thrusting portion of the central shaft is pressed and held by the opening of the operation cavity via the stone thrusting retainer, and the pulling rod is held by the engagement means on the cover.
  • the center shaft With the engaging means engaged, the center shaft is shrunk to thereby cut the cut and paved plate of the submerged structure embedded in the ground shaft.
  • An operation of clamping and gripping from both sides with the engaging means, and an operation of moving the center shaft to a required position by the support moving means and removing the cut paving plate of the underground structure in the state It is characterized by being implemented at least.
  • the pavement of the underground structure-containing pavement is engaged with the stone thrust portion of the central shaft and the pulling rod.
  • the central shaft supported by the support moving means is clamped and gripped from both sides by means of the pulling rod and gripped by the pulling rod.
  • each leg portion of the reaction force receiving frame is brought into contact with the outer region of the circular cutting to receive the reaction force.
  • the frame may be activated.
  • Both the first operation and the second operation may be performed in a state in which the engagement operation unit and the intermediate adjustment unit are connected from the beginning, or the first operation is performed using only the engagement operation unit.
  • the engaging action part may be connected to the main rod part via the intermediate adjusting part.
  • the retractable stroke of the pull-up rod is made by separating the stone thrusting part upward from the stone thrusting holder by a required distance while engaging the engaging means with the engaged means.
  • the pulling rod contracts with respect to the central shaft while taking the required pulling reaction force on the road surface of the outer region of the circular cutting of the outer region of the circular cutting through the reaction force receiving frame under the state of securing the pulling rod.
  • the cut pavement plate of the underground structure contained in the circular cut was sandwiched and gripped from both sides by the stone thrust part of the central shaft and the engaging means of the pulling rod. Is in a state.
  • the retractable stroke of the pulling rod in the breaking / edge cutting step is ensured by engaging the pulling rod with a required distance with respect to the central shaft while engaging the engaging member with the engaged member in the state. This is because the shredded pavement plate of the submerged structure included in the circular cut can be pulled up for breakage and edge cutting from the peripheral fixing member.
  • other breaking / edge cutting means may be used in combination as necessary.
  • the pulling rod is advanced by a required length with respect to the central shaft, and the central shaft is raised integrally with the pulling rod, etc.
  • the pulling rod may be advanced relative to the central shaft while engaging the engaging means with the engaged means, or in the circular cutting step, the opening of the operating cavity
  • a spacer having a required thickness may be detachably provided between the two members when the stone thrust retainer is provided in a portion, and the spacer may be removed when securing the contractible stroke.
  • the cut and paved slab of the submerged underground structure is clamped and gripped from both sides by the stone thrust part of the central shaft and the engaging means of the pulling rod.
  • the cut and paved plate of the underground structure inclusion is moved to or removed from the vehicle carrier or the like by lifting and moving the central shaft by the support moving means.
  • the function of moving the cut and paved slab of the submerged structure contained in the ground structure by the circular cutting device under the clamping and holding state is not limited to the use for the purpose. It can also be used depending on the situation for the movement of equipment, materials, etc. that can occur with or without it.
  • the center shaft is moved by the support moving means without the pinching and gripping, and the underground structure
  • the support moving means without the pinching and gripping, and the underground structure
  • the cut pavement plate of the circularly cut underground structure includes the pulling rod having a contractible stroke as described above.
  • the cut pavement plate of the underground structure containing the circular cut is the center.
  • Each leg portion of the reaction force receiving frame is rounded in a state in which it is clamped and gripped from both sides by the stone thrusting portion of the shaft and the engaging means of the pulling rod, and the support moving means is allowed to be displaced upward. Forcibly jacking up the required distance by a separate jack device in the outer area of the cutting, and thereby the cutting pavement plate of the underground structure inclusion is peripherally fixed From the break, there is also possible to divorce.
  • the movable shaft portion of the central shaft is contracted with respect to the main shaft portion, As a result, the cut pavement plate of the underground structure contained in the circular cut can be broken and edge-cut from the peripheral fixing member.
  • the underground structure is included and an operation cavity is provided along the cutting center axis, and the operation A circular cutting step in which a pavement provided with an engagement means at an arbitrary part passing through the interior of the cavity for use is circularly cut from the road surface to a required depth around the cutting center axis, and the circular cutting is performed. Breaking and edging process of cutting and cutting edge of the pavement plate containing underground structure from peripheral fixing members, and moving and removing process of moving and removing the cut and pavement plate of underground structure inclusion cut and broken.
  • a method for removing underground structures The circular cutting device according to claim 4 is used in each of a series of steps from the circular cutting step to the movement / removal step through the breaking / edge cutting step,
  • the pulling rod is inserted into the operation cavity and the engaging means of the pulling rod is engaged with the engaged means, simultaneously with any preceding operation or Before or after the operation, an operation of providing the stone thrust retainer at the opening of the operation cavity so that the lifting rod can be inserted and the stone thrust portion can be received and retained, and the stone thrusting portion of the central shaft Is pressed and held at the opening of the operation cavity via the stone thrust holder, and the pulling rod is engaged with the engaged means with the engaged means on the central shaft.
  • the movable shaft portion of the central shaft is urged in the contracting direction with respect to the main shaft portion via the reaction force receiving frame under a state of being clamped and gripped from both sides by the engaging means, Raising the cutting pavement middle structure containing, breaking from the peripheral stationary member, and the operation of edge cutting at least performed,
  • the stone thrusting portion of the central shaft is pressed and held by the opening of the operation cavity via the stone thrusting retainer, and the pulling rod is held by the engagement means on the cover.
  • the center shaft With the engaging means engaged, the center shaft is shrunk to thereby cut the cut and paved plate of the submerged structure embedded in the ground shaft.
  • At least an operation of moving the center shaft to a required position by the support moving means and removing the cut paving plate of the underground structure is carried out in a state of being clamped and gripped from both sides by the engaging means. It is characterized by being.
  • the circular cutting step and the moving / removing step in the series of steps from the circular cutting step to the moving / removing step through the breaking / edge cutting step in the underground structure removing method are described in claim 11. This is basically the same as the above-mentioned method for removing the underground structure, and both are different in the breaking / edge cutting process.
  • the cut pavement plate of the circularly-cut underground structure inclusion is a stone thrust of the central shaft.
  • the movable shaft portion of the center shaft is moved to the main shaft portion through the reaction force receiving frame by a required distance under a state in which the portion and the pulling rod engaging means are clamped and gripped from both sides. That is, at least a distance that can cause breakage and edge cutting is contracted, whereby the cut pavement plate of the underground structure that has been circularly cut is broken and edged from the peripheral fixing member.
  • the retractable stroke of the movable shaft portion with respect to the main shaft portion is secured in advance prior to the breaking / edge cutting step.
  • the above-mentioned underground structure removal method is, for example, a manhole base wall installed in the basement in cutting overlay pavement construction, replacement pavement construction or new pavement construction or pavement construction for adjusting the height of the manhole cover frame, etc. It is suitably applied to a method of efficiently removing underground structures buried under the road surface and embedded in the pavement, such as temporary lids mounted on the top to close the opening.
  • the underground structure removal method comprising the temporary lid is the underground structure removal method according to claim 11 or 12, wherein the underground structure is underground.
  • a temporary lid with an engagement hole that is mounted on the base wall of the human hole installed at the top of the manhole so as to close the opening, and pavement is constructed above and around and buried under the road surface.
  • An engagement hole of the temporary lid is used as an engaged means that can be engaged with an engagement means of the pulling rod.
  • the temporary lid is paved along the cutting center axis along the paving of the temporary lid inclusion.
  • a guide hole communicating with the engaging hole is previously drilled as an operation cavity into which the pulling rod can be inserted.
  • the pulling rod is inserted into a guide hole previously drilled along the cutting center axis in the paving of the temporary lid inclusion as an operation cavity, The operation of engaging the engaging means of the pulling rod with the engaging hole of the temporary lid as the engaged means, and at the same time as any preceding operation or before or after the operation, The operation of providing the pulling rod through the opening of the guide hole so that the lifting rod can be inserted and receiving and holding the stone thrusting portion, and the stone thrusting portion of the center shaft being held at the opening of the guide hole.
  • the pulling rod is contracted with respect to the central shaft in a state where the engaging rod is engaged with the engaging hole of the temporary lid as the engaged means.
  • the cutting bit is placed on the central shaft by the bit driving means, while the pavement of the package is clamped and gripped from both sides by the stone protrusion of the central shaft and the engaging means of the pulling rod.
  • the operation of rotating and propelling in the axial direction of the shaft, thereby cutting the pavement of the temporary lid inclusion into a required depth from the road surface is performed.
  • the pulling rod When the pulling rod is composed of the main rod portion and the extension rod portion as described above, the pulling rod is inserted into the guide hole as the operation cavity, and the engaging means for the pulling rod is provided.
  • the extension rod portion separated from the main rod portion of the pulling rod is inserted into the guide hole and the extension rod portion A first operation of engaging the engaging means with the engaging hole of the temporary lid, and subsequently connecting the main rod portion of the pulling rod to the extension rod portion inside and / or outside the guide hole. A second operation is performed.
  • the guide hole communicating with the engagement hole of the temporary lid is used as an operation cavity in the paving of the temporary lid, along the cutting center axis.
  • the diameter of the pulling rod is made, for example, about 100 to 150 mm by a punching machine so that the pulling rod can be inserted.
  • the cutting center In order to drill the guide hole on the pavement of the temporary lid inclusion, it is necessary to position the cutting center corresponding to the engagement hole of the temporary lid that is buried under the road surface in an invisible state.
  • a well-known and publicly known technique can be employed.
  • the coordinates of the virtual cutting center passing through the engagement hole of the temporary lid are offset surveying methods. It is possible to suitably employ a known method that is recorded in advance by other surveying methods and that the coordinates of the virtual cutting center are reproduced on the paved road surface when the guide hole is drilled.
  • the engagement hole of the temporary lid buried under the road surface is usually a closing mechanism that can be opened afterwards so that the paving material covering the temporary cover after installation does not enter the engagement hole, for example, waterproofing. It is temporarily sealed with a closing member such as paper, cloth tape, or a plastic lid.
  • the closing member may be broken open by the core drill or the like of the drilling machine simultaneously with the drilling of the guide hole by the drilling machine or the like. May be opened by breakage opening, peeling removal, cutting removal or dropping down below the guide hole, etc.
  • the closing member is in close contact with and engaged with the pavement core extracted along with the drilling of the guide hole Alternatively, it may be integrated and removed by fitting or the like, or after the guide hole is drilled, the engaging means of the extension rod portion inserted through the guide hole is engaged with the engagement hole of the temporary lid At the same time, the closing member may be opened by breaking open or dropping down below the guide hole, or a slit is provided in advance so that the closing member can be expanded and opened by pressing.
  • the engaging means of the extension rod portion inserted through the guide hole is engaged with the engagement hole of the temporary lid, and at the same time, the closing member is expanded, opened and opened by the insertion of the pulling rod. Good.
  • the cut paving plate of the temporary lid containing the circular cut is broken from a peripheral fixing member, a rupture and edging step for edging, and the rupture,
  • the movement / removal process for moving and removing the cut pavement plate of the temporary lid containing the marginal cut is performed according to the corresponding processes in the underground structure removal method as described above.
  • the temporary lid is, for example, a base plate portion that is mounted on the base wall of the human hole so as to close the opening, and a stacking unit that is detachably fixed to the base plate portion by a coupling means so as to have a required thickness.
  • a multi-layer temporary lid comprising one or a plurality of adjustment plate portions and an engagement hole drilled through the substrate portion and the adjustment plate portion in the center, and the engagement hole of the substrate portion May be used as an engaged means that can be engaged with the engaging means, and the engaging hole of the adjusting plate portion may constitute a part of the operating cavity.
  • the paving for temporary restoration covering the adjustment plate portion by selecting the thickness of the adjustment plate portion is more suitable than the conventional temporary lid. Since the work is thinned by the thickness of the plate part, saving of pavement materials and reduction of man-hours for pavement construction have been achieved, but the depth of circular cutting is reduced when removing the multi-layer temporary lid. It is possible to reduce the number of man-hours for cutting and cutting work, reduce the wear of cutting bits, and reduce the amount of cutting waste.
  • the above-mentioned underground structure removal method is, for example, a manhole base wall installed in the basement in cutting overlay pavement construction, replacement pavement construction or new pavement construction or pavement construction for adjusting the height of the manhole cover frame, etc.
  • the said underground structure is It is installed on the base wall of the manhole installed in the basement via a height adjusting material layer and the periphery is covered with pavement, part of it is exposed on the road surface, and the opening of the manhole base wall in the center
  • a human hole lid receiving frame having a communicating central hole, wherein the central hole of the human hole lid receiving frame is used as an operation cavity for inserting the pull-up rod;
  • Engaged means capable of engaging with the pulling rod engaging means are attached to the height adjusting material layer.
  • the pulling rod is inserted into the central hole of the human hole cover receiving frame provided in the center of the pavement of the inner cover of the human hole cover receiving frame as an operation cavity. Any one of the preceding operations is made to insert and engage the engaging means of the extension rod portion with the engaged means attached to the manhole cover receiving frame or its height adjusting material layer inside the central hole.
  • the central shaft The operation of causing the pavement of the manhole cover receiving frame inclusion to be shrunk and gripped from both sides by the stone thrusting portion of the central shaft and the engaging means of the pulling rod, and under the state,
  • the cutting bit is rotated on the central shaft by the bit driving means and propelled in the axial direction of the shaft, whereby the pavement of the manhole cover receiving frame inclusion is cut into a required depth in a circle from the road surface.
  • the pulling rod When the pulling rod is composed of the main rod portion and the extension rod portion as described above, the pulling rod is inserted into the central hole of the manhole cover receiving frame as the operation cavity, and the pulling rod
  • the engaging means When the engaging means is engaged with the engaged means, the extension rod portion separated from the main rod portion of the pulling rod is inserted into the central hole of the manhole cover receiving frame and the extension as necessary.
  • a second operation is performed.
  • the engaged means attached to the manhole cover receiving frame or its height adjusting material layer inside the central hole for example, hydraulic, pneumatic, electric, mechanical mechanism or appropriately combined them in the central hole
  • the manhole cover receiving frame has an operation cavity composed of a relatively large diameter central hole, unlike the case of the temporary cover described above.
  • the engaging operation between the engaging means and the engaged means can be easily performed as described above.
  • the central hole as the operation cavity in the manhole cover receiving frame has a large diameter unlike the guide hole drilled as the operation cavity when the temporary lid is removed as described above.
  • the stone strike holder provided so that the lifting rod can be inserted and the stone strike portion can be received and held is, for example, a disc-like body fitted to a lid receiving step portion on the inner periphery of the human hole lid receiving frame.
  • the engagement mode between the engaging means and the engaged means can be changed as necessary.
  • the underground structure is installed underground. It is installed on the manhole base wall via a height adjusting material layer and the periphery is covered with pavement, part of it is exposed to the road surface, and has a central hole communicating with the opening of the manhole base wall in the center. It is a manhole cover receiving frame, and the center hole of the manhole cover receiving frame is used as an operation cavity for inserting the pull-up rod, and the manhole cover receiving frame or its height adjusting material layer itself in the center hole Is used as an engaged means, and an engaging means capable of engaging with the manhole cover receiving frame or its height adjusting material layer is provided at the end of the pulling rod.
  • the engaging means provided at the end of the pulling rod is, for example, operated by hydraulic, pneumatic, electric, mechanical mechanism, etc. in the central hole, and the manhole cover receiving frame as the engaged means or the height adjustment thereof.
  • a member composed of a known expansion bar, expansion wedge, expansion anchor, grip mechanism, claw locking mechanism, screw mechanism, or the like that can be engaged with the material layer can be appropriately employed.
  • a required position between the human hole cover receiving frame and the human hole base wall inside the central hole for example, the human hole cover receiving frame and a height adjusting material layer therebelow.
  • the cutting or breaking of the coupling member may be performed by, for example, inserting a cutting blade such as an extended wedge as an engaged means at a required position between the manhole cover receiving frame and a manhole base wall inside the center hole. And may be performed when held in the press-fit state.
  • the removal method of the underground structure including the temporary lid is preferably applied to various road pavement methods including cutting overlay pavement work, replacement pavement work, new pavement work, and the like.
  • the road pavement method applicable to the method for removing the underground structure composed of the temporary lid is to close the opening on the manhole base wall installed in the basement as described in claim 17.
  • a temporary lid installation step for attaching a temporary lid to the temporary lid, a temporary pavement construction step for constructing pavement above and around the temporary lid, and a pavement of the temporary lid inclusion mounted on the manhole base wall are cut into a circle.
  • At least each process from the circular cutting process to the movement / removal process is performed by the underground structure removal method according to claim 13.
  • the road pavement method including the removal of the underground structure consisting of the temporary lid, cutting the surface layer, a part of the base layer, cutting overlay pavement work to construct the restoration pavement, excavating the surface layer, the base layer, upper roadbed and lower layer
  • There is a road pavement method including a step of installing the manhole base wall at the height of the surface layer.
  • the height adjustment is performed on the manhole base wall installed in the basement before the step of attaching a temporary lid so as to close the opening on the manhole base wall.
  • the step of mounting the temporary lid so as to close the opening on the manhole base wall in the step of pavement above and around the temporary lid, the step of constructing temporary restoration pavement above and around the temporary lid, the surface layer of the pavement including the temporary restoration pavement part, and the step of cutting the base layer are sequentially performed and the restoration pavement is applied on the cut pavement surface.
  • the construction process is carried out, and usually the traffic is released prior to the construction of the restoration pavement.
  • the surface layer and base layer of the pavement are excavated and the existing manhole cover receiving frame and The step of removing the height adjusting material is carried out, and after the step of attaching the temporary lid so as to close the opening on the manhole base wall, the step of constructing pavement above and around the temporary lid , The steps of leveling the upper layer roadbed, the lower layer roadbed, etc. and constructing the restoration pavement are carried out, and usually the traffic is released prior to the construction of the restoration pavement.
  • the underground structure removal method comprising the manhole cover receiving frame is suitably applied to various road pavement methods including, for example, cutting overlay pavement work and height adjustment pavement work of the manhole cover receiving frame.
  • the road pavement construction method applicable to the removal method of the underground structure consisting of the manhole cover receiving frame is, as described in claim 18, a height adjusting material on a manhole base wall installed in the basement.
  • the road pavement construction method including at least a human hole cover receiving frame installation step of installing a new human hole cover receiving frame via a height adjusting material and constructing pavement around it, At least each step from the circular cutting step to the moving / removing step is performed by the underground structure removing method according to any one of claims 14 to 16.
  • the road pavement method including the removal of the underground structure consisting of the manhole cover frame includes paving of the existing manhole cover frame including the cutting overlay pavement and the height adjustment pavement of the manhole cover frame. After the removal of the manhole cover receiving frame by circular cutting, a road pavement method including a step of installing a new manhole cover receiving frame at the height of the existing pavement surface on the manhole base wall can be mentioned.
  • the stone thrust portion of the central shaft pressed and held by the cutting object, and the cutting
  • the object to be cut With the pulling rod engaging means engaged with the engaged means of the object, the object to be cut is clamped and gripped from both sides, and the stone thrust portion of the central shaft and the pulling rod
  • the cutting bit is rotated on the central shaft by the bit driving means and propelled in the axial direction of the shaft while taking the required rotational reaction force and propulsion reaction force on the object to be cut through the engagement means, and thereby propelled in the axial direction of the shaft.
  • the object to be cut can be cut circularly to a required depth.
  • the clamping force of the object to be cut and circular cutting under gripping prevent vibration and blurring of the central shaft during circular cutting, increase the width of the cutting groove, and the cutting bit of the cutting bit, the supporting member of the cutting chip, etc. Wear and the like can be suppressed.
  • the object to be cut which has been circularly cut as described above, and further broken and edge-cut from the peripheral fixing member, is separated from both sides by the stone thrusting portion of the central shaft and the engaging means of the pulling rod.
  • the center shaft With the pinched and gripped state, the center shaft can be pulled up while maintaining balance without unstable swinging by the support moving means, and can be moved to and removed from the required position. Safety and workability can be ensured.
  • the main rod portion of the pulling rod After engaging the engaging means of the short and light extension rod part separated from the engaged means of the object to be cut, the extension rod part is connected to the main rod part.
  • the operation of engaging the engaging means with the engaged means can be accurately positioned without moving the pulling rod as a whole with the central shaft, and thus without moving the entire circular cutting device. It is easy, reliable and safe with good workability.
  • each leg portion of the reaction force receiving frame is brought into contact with an outer region of the circular cutting.
  • the center shaft is more stabilized in the state where the stone thrusting part is pressed and held against the inner area of the circular cutting, and the occurrence of vibration and blurring is further suppressed, thereby cutting Increase in the groove width and wear of the cutting tip of the cutting bit and the supporting member of the cutting tip are suppressed.
  • the reaction force is applied in a state where the engaging means of the pulling rod is engaged with the engaged means of the cutting object.
  • the pulling rod is urged in the contraction direction with respect to the central shaft through the reaction force receiving frame while operating the reaction force receiving frame by bringing each leg portion of the receiving frame into contact with the outer region of the circular cut.
  • each leg portion of the reaction force receiving frame is circularly shaped under a state where the object to be cut is clamped and gripped from both sides.
  • the object to be cut is sandwiched and gripped from both sides by the stone thrusting portion of the central shaft and the engaging means of the pulling rod.
  • the central shaft supported by the support moving means is firmly fixed and integrated with the object to be cut by the pinching and gripping, and the stone thrust portion of the central shaft and the lifting rod are
  • the cutting bit is rotated on the central shaft by the bit driving means and propelled in the axial direction of the shaft by the bit driving means while taking the required rotational reaction force and propulsion reaction force on the object to be cut through the engaging means, thereby
  • the object to be cut can be cut into a circular shape to a required depth, and the vibration and blurring of the center shaft during circular cutting can be prevented, the cutting groove width can be increased, the cutting bit of the cutting bit, and the cutting tip It is possible to suppress the wear or the like of the supporting member or the like of the flop.
  • the cutting object when the cutting object is circularly cut, the cutting object is clamped from both sides by the stone thrust part of the central shaft and the engaging means of the pulling rod.
  • each of the reaction force receiving frames In the gripped state, each of the reaction force receiving frames is brought into contact with the outer region of the circular cutting to operate the reaction force receiving frame, so that the central shaft has a circular stone protrusion. More stable when pressed and held in the inner area of the cutting, further suppressing vibration and blurring, thereby increasing the width of the cutting groove and wear of the cutting tip of the cutting bit and the support member of the cutting tip Etc. are suppressed.
  • the engaging means of the pulling rod can be used as the operating cavity.
  • a short and light extension rod portion separated from the main rod portion of the pulling rod is inserted into the operation cavity of the cutting object and the Since the engaging means of the extension rod part is engaged with the engaged means, and then the main rod part of the pulling rod is connected to the extension rod part as a second operation, the pulling rod Without moving the entire central cutting shaft together with the central shaft, and thus without moving the entire circular cutting device, the insertion of the extension rod portion into the operating cavity and the engagement means.
  • the operation of engagement of the engagement means may workability precise positioning easily can be reliably and safely performed.
  • the first operation and the second operation are not performed continuously for work planning or for other reasons.
  • the plurality of underground structures can be used rather than continuously performing the first operation and the second operation for each structure in each place.
  • the first operation is performed, and then the engagement operation is performed from the end of the first operation to the start of the second operation, etc.
  • the operation cavity opening is temporarily covered so that foreign matter does not enter the operation cavity or the traffic is not hindered. Can be put.
  • the extension rod portion is a rod formed by engagement of the expanded engagement piece with the engagement hole.
  • the movement in the axial direction is restricted, and the movement in the downward direction of the rod axis is restricted by the locking of the stopper portion with respect to the engagement hole, and thereby the engagement means and the engaged means of the extension rod portion are restricted. Reliable engagement can be obtained.
  • the extension rod portion is limited by a stopper portion so as not to penetrate the engagement hole through before and after the engagement, and to be held within a certain range in the rod axial direction position after the engagement. Therefore, each operation
  • the extension rod portion is an engagement piece whose angular position with respect to the engagement hole is changed. Due to the engagement, the movement in the upward direction of the rod axis is restricted, and the insertion of the locking piece into the expansion hole of the engagement hole prohibits rotation around the rod axis with respect to the engagement hole. Due to the locking of the stopper portion with respect to the engagement hole, the movement in the downward direction of the rod axis is restricted, and thereby, the engagement means of the extension rod portion and the engaged means can be reliably engaged, The unexpected engagement release after the engagement can be prevented by fitting the locking piece into the expansion hole of the engagement hole during the engagement.
  • extension rod portion is limited by a stopper portion so as not to penetrate the engagement hole through before and after the engagement, and to be held within a certain range in the rod axial direction position after the engagement. Therefore, each operation
  • the pavement of the underground structure inclusion is formed by engaging the stone thrusting portion of the central shaft and the lifting rod.
  • the center shaft supported by the support moving means is firmly fixed to the pavement of the underground structure inclusion by the clamping pressure and gripping.
  • the pavement of the structure-containing pavement can be cut into a circular shape to a required depth, and as described above, the center shaft is not vibrated or shaken during circular cutting, and the cutting groove width is increased and the cutting tip of the cutting bit and the Cutting tip support member It is possible to suppress the wear or the like.
  • the pulling rod is contracted by separating the stone thrusting part upward from the stone thrusting holder by a required distance while engaging the engaging means with the engaged means.
  • the pulling rod with respect to the central shaft while taking a required pulling reaction force on the road surface of the outer region of the circular cutting of the outer region of the circular cutting through the reaction force receiving frame in a state where a possible stroke is secured. Due to the contraction of the ground structure, the cut pavement plate of the underground structure inclusion is pulled up integrally, and is also broken and edge-cut from the peripheral fixing member, whereby the support moving means is not burdened by the pulling reaction force.
  • the cut and paved slab of the submerged underground structure is clamped and gripped from both sides by the stone thrust part of the central shaft and the engaging means of the pulling rod.
  • the central shaft supported by the support moving means is firmly fixed and integrated with the pavement of the underground structure inclusion by the clamping and gripping.
  • a single circular cutting device is exclusively used as a main device in each of the series of steps from the circular cutting step to the movement / removal step through the breaking / edge cutting step,
  • a circular cutting device is used for the circular cutting process
  • a lifting device such as a jack is used for the breaking / edge cutting process
  • a boom for a crane car is used for the moving / removing process.
  • the circular cutting step and the movement / removal step have the same effects as the invention according to claim 11, but in the breaking / edge cutting step.
  • the cut pavement plate of the underground structure contained in the circular cut was sandwiched and gripped from both sides by the stone thrusting portion of the central shaft and the engaging means of the lifting rod.
  • the movable shaft portion of the central shaft is contracted by a required distance with respect to the main shaft portion via the reaction force receiving frame, that is, at least a distance capable of causing breakage and edge cutting, and thereby the circular cutting.
  • the cut pavement plate containing the underground structure is broken and edge-cut from the peripheral fixing member in a stable clamping and gripping state.
  • the pavement of the submerged structure enveloping is performed by the stone thrusting portion of the central shaft and the engaging means of the pulling rod from the circular cutting process, through the movement / removal process to the breaking / edge cutting process. It is in a state of being pinched and gripped from both sides.
  • the removal of the underground structure according to claim 11 or 12 Temporary lid with engagement holes that are installed on the base wall of the manhole installed in the basement so that the opening is closed and the pavement is constructed above and around and buried under the road surface as a whole It can be applied to the removal of underground structures consisting of the above, and the same effect as described above can be obtained.
  • the underground structure removal method is installed on the base wall of the manhole in the basement via a height adjuster layer and the surrounding area is covered with pavement, and part of it is exposed on the road surface.
  • the present invention can be applied to the removal of an underground structure including a manhole cover receiving frame having a central hole communicating with the opening of the manhole base wall, and the same effect as described above can be obtained.
  • the manhole cover receiving frame is a coupling member on the manhole base wall.
  • the connecting member is released from the fastening or is cut or broken in the breaking / edge cutting step or before the start of the step, so that the steps after the breaking / edge cutting step are performed without any trouble. be able to.
  • the surface layer, a part of the base layer are cut, the cut overlay pavement work for constructing the restoration pavement, the surface layer, the base layer are excavated, and the upper layer roadbed or the lower layer roadbed is arranged.
  • the road pavement construction method including the step of installing at the height of the surface layer, at least a series of steps from the circular cutting step to the movement / removal step, the underground structure comprising the temporary lid according to claim 13.
  • the above-described removal method can be suitably applied to obtain the effects as described above.
  • the human hole by circular cutting of the pavement of the existing manhole cover receiving frame inclusion, such as the cutting overlay pavement work and the height adjustment pavement work of the human hole cover receiving frame.
  • the road pavement method including the process of installing a new human hole cover frame on the base wall of the human hole at the height of the existing pavement surface after removing the cover frame, at least in each process from the circular cutting process to the moving / removing process.
  • FIG. 1A is a schematic front view of a first circular cutting device of the present invention
  • FIG. 1B is a schematic front view of a split pulling rod applicable to the circular cutting device
  • FIG. 2A is a schematic front view of the second circular cutting device of the present invention in which the hydraulic motor and the driving gear are displaced 90 degrees for convenience
  • FIG. 2B is applicable to the circular cutting device.
  • It is a front schematic diagram of a split type pulling rod.
  • 3A and 3B are an enlarged front view and an enlarged side view, respectively, of the gravity-driven engagement piece provided on the pulling rod as an engagement means when contracted
  • FIG. 3C is the engagement. It is an enlarged front view at the time of expansion of a piece.
  • FIGS. 4 (A) and 4 (B) are an enlarged sectional view and a bottom view, respectively, when the fluid pressure driven engagement piece provided as an engagement means on the pulling rod is contracted, and FIGS. 4 (C) and (D).
  • Fig. 4E is an enlarged cross-sectional view and a bottom view of each of the engaging pieces when they are expanded, and Fig. 4E is a drawing of the engaging pieces provided as engaging means on a pulling rod having a micro camera and LED light on the front surface. It is a bottom view at the time of contraction.
  • 5 (A-1), 5 (B), and 5 (C) are cross-sectional views of the engaging means provided in the extension rod portion of the split-type pulling rod applicable to the circular cutting device, respectively.
  • FIG. 2B is a front view of the engaging means in a state in which the same drawing (A-1) is rotated 90 degrees around the axis.
  • 6 (A) and 6 (B) are diagrams showing a method for removing an underground structure including a temporary lid according to the present invention before and after the operation cavity is drilled in the cutting center of the pavement. It is explanatory sectional drawing which shows each situation.
  • FIG. 7 shows that the central shaft of the first circular cutting device is provided with an engagement piece at the tip of the pulling rod, It is explanatory sectional drawing which shows the condition erected along the cutting center axis line on the pavement of the temporary lid inclusion.
  • FIG. 7 shows that the central shaft of the first circular cutting device is provided with an engagement piece at the tip of the pulling rod, It is explanatory sectional drawing which shows the condition erected along the cutting center axis line on the pavement of the temporary lid inclusion.
  • FIG. 8 shows that, following the operation shown in FIG. 7, the pulling rod is inserted into the operation cavity through the stone thrust holder, and the engagement piece at the tip is engaged with the central hole of the temporary lid so as to contract.
  • FIG. 5 is an explanatory cross-sectional view showing a situation where the stone thrusting portion of the central shaft is pressed and held by the opening of the operation cavity via the stone thrusting retainer while being biased by the shaft.
  • FIG. 9 shows a central shaft in which the pavement including the temporary lid presses and holds the stone thrusting part through the stone thrusting holder in the opening of the operation cavity following the operation shown in FIG.
  • FIG. 10 shows a state in which, after the operation shown in FIG. 9, the cut pavement plate of the temporary lid containing the circular cut is supported by the pulling rod having the engagement piece engaged with the central hole of the temporary lid.
  • FIG. 5 is an explanatory cross-sectional view showing a situation where the pulling rod is pulled up through the reaction force receiving frame due to contraction of the pulling rod.
  • FIG. 11A shows the contraction of the lifting rod when the engaging means is engaged with the engaged means while the stone thrusting part is separated from the cut pavement plate by a required distance during the operation shown in FIG. FIG.
  • FIG. 11B is an explanatory cross-sectional view showing a situation where a possible stroke is ensured, and FIG. 11B shows an inner area of the circular cutting of the pavement and the stone thrusting portion in the circular cutting process in order to ensure the contractible stroke of the pulling rod.
  • FIG. 11C is a cross-sectional view illustrating a situation in which a spacer having a required thickness is interposed in advance so that it can be removed during the operation.
  • FIG. The holding shaft is pressed and gripped from above and below by the central shaft that presses and holds the stone thrusting part through the container, and the pulling rod that is engaged with the central hole of the temporary lid and biased in the contraction direction.
  • Each leg of the frame is an explanatory sectional view showing a situation the steps to be jacked up. 12, following the operation shown in FIG. 10, the cut pavement plate of the temporary lid containing the fractured and trimmed edge was pressed and held by the opening of the operation cavity via the stone holder.
  • the center shaft is driven by the support moving means in a state of being clamped and gripped from above and below by the center shaft and the pulling rod engaged with the engagement piece in the center hole of the temporary lid and urged in the contraction direction. It is explanatory sectional drawing which shows the condition moved and removed by this.
  • FIG. 13 (A) and 13 (B) show the pavement in the circular cutting step in the removal method of the underground structure consisting of a multi-layer temporary lid formed by laminating and fixing the adjustment plate portion on the substrate portion according to the present invention. It is explanatory sectional drawing similar to FIG. 6 (A) and (B) which shows the condition before and after the drilling of the operation cavity at the cutting center, respectively.
  • FIG. 14A is a cross-sectional view of a stone thrusting portion pressed and held in the opening of the operation cavity via a stone thrust retainer
  • FIGS. 14B and C are the opening of the operation cavity. It is sectional drawing of the stone thrust part directly pressed and hold
  • FIG. 15 (A) and (B) illustrate the pavement structure of a human hole cover receiving frame inclusion in the method for removing an underground structure consisting of a human hole cover receiving frame according to the present invention
  • FIG. FIG. 5B shows a state in which the manhole cover receiving frame is not fastened on the manhole base wall
  • FIG. 7B shows that the manhole cover receiving frame fastened with embedded bolts and nuts is included on the manhole base wall.
  • FIG. 16 is a cross-sectional view of a method for removing an underground structure consisting of a manhole cover receiving frame according to the present invention, in which the central shaft of the first circular cutting device is provided with an engagement piece at the tip of the pulling rod.
  • FIG. 5 is an explanatory cross-sectional view showing a situation in which the person hole cover receiving frame inclusion is erected along the cutting center axis on the pavement.
  • FIG. 17 is a cross-sectional view of a method for removing an underground structure including a manhole cover receiving frame that is fastened with a buried bolt and nut as a connecting member on a manhole base wall according to the present invention.
  • FIG. 16 shows a state in which the central shaft of the circular cutting device is erected along the cutting central axis line on the pavement of the inner cover of the manhole cover receiving frame by disposing an engagement piece at the tip of the pulling rod after cutting. It is similar explanatory sectional drawing.
  • FIG. 18 shows that, following the operation shown in FIG.
  • the pulling rod is inserted into the operation cavity through the stone holder and the engagement piece at the tip is the boundary between the manhole base wall and the height adjusting member.
  • the stone thrusting portion of the center shaft presses the opening of the operation cavity via the stone thrusting retainer, It is explanatory sectional drawing which shows the state hold
  • FIG. 19 shows that, following the operation shown in FIG.
  • FIG. 20 shows an extended wedge member in which a circular paved plate of the manhole cover receiving frame is press-fitted and fixed near the boundary between the manhole base wall and the height adjusting material following the operation shown in FIG.
  • FIG. 21 shows that, following the operation shown in FIG. 20, the cut pavement plate of the inside of the manhole cover receiving frame, which has been broken and trimmed, presses and holds the stone thrusting part through the stone thrusting holder in the opening of the operation cavity.
  • the engagement piece at the tip is engaged with the engagement hole of the extended wedge member press-fitted and fixed near the boundary between the center shaft and the manhole base wall and the height adjusting member, and is urged in the contraction direction.
  • FIG. 22 is different from the engagement mode shown in FIGS. 16 to 21 in the circular cutting step in the removal method of the underground structure composed of the manhole cover receiving frame according to the present invention, the central shaft of the first circular cutting device.
  • an expansion wedge member is provided as an engaging means at the tip of the pulling rod and a stone thrust retainer is penetrated and held thereabove, and is erected along the cutting center axis line on the pavement of the inner cover of the manhole cover receiving frame.
  • FIG. 23 shows that, following the operation shown in FIG. 22, the pulling rod causes the stone thrust retainer to be mounted on the peripheral step portion of the manhole cover receiving frame, and each wedge body of the extended wedge member at the tip is positioned higher than the manhole base wall.
  • FIGS. 24 (A-1) to (I) show that, in the circular cutting process in the method for removing an underground structure consisting of a temporary lid according to the present invention, the split-type pull-up rod is placed with a stone thrust cage in the operation cavity.
  • FIG. 5 is an explanatory view continuously showing a state in which is inserted through an operation cavity through a stone thrust retainer and an engagement piece at a tip is engaged with a central hole of a temporary lid.
  • FIG. 26 (A-1) to (E) show a split-type pull-up rod placed in the operation cavity in the circular cutting step in the removal method of the underground structure consisting of the temporary lid according to the present invention.
  • It is explanatory drawing which shows continuously the condition where the engagement piece of a front-end
  • the split-type pull-up rod is inserted into the operation cavity through the stone thrust holder, and the engagement piece at the tip engages with the central hole of the temporary lid.
  • FIG. 9 is an explanatory sectional view similar to FIG.
  • FIG. 28 is a sectional view of a circular cutting step in the method for removing an underground structure consisting of a manhole cover receiving frame according to the present invention, in the same manner as the operations shown in FIGS. It is explanatory drawing which shows the condition where the engaging means of the front-end
  • FIG. 29 following the operation shown in FIG.
  • FIGS. 30 (A) to (J) show a series of steps from the circular cutting step to the moving / removing step through the breaking / edge cutting step in the method for removing an underground structure consisting of a temporary lid according to the present invention.
  • FIGS. 30 (G) and 30 (H) are explanatory cross-sectional views showing, on an enlarged scale, the fracture / edge cutting preparation process and the subsequent fracture / edge cutting process shown in FIGS. 30 (G) and 30 (H), respectively.
  • the central shaft 1 is vertically supported by a boom 2 of a crane truck, which is a support moving means, at an upper portion thereof.
  • a rotary shaft 3 is provided on the central shaft 1 so as to be movable up and down via a bearing and is rotatable.
  • a housing 4 is relatively immovable in the axial direction via a bearing.
  • the center shaft 1 can be moved up and down integrally with the rotation shaft 3 so as to be rotatable.
  • a hydraulic motor 5 is mounted on the housing 4, and a driving gear 6 provided on the drive shaft of the hydraulic motor 5 and a driven gear 7 provided on the rotating shaft 3 are engaged with each other in the housing 4.
  • a cylindrical cutting bit 9 having a cutting tip 9 a at the lower end edge is connected to the lower end of the rotating shaft 3 via a bit mounting base 8, and the driving gear 6 and the driven gear 7 are connected by rotational driving of the hydraulic motor 5. Through which the rotating shaft 3 rotates, whereby the cutting bit 9 is rotated on the central shaft 1.
  • a hydraulic cylinder 10 is interposed between the bracket 1 b provided on the central shaft 1 and the housing 4, and the cutting bit 9 is propelled on the central shaft 1 integrally with the housing 4 by the expansion and contraction drive of the hydraulic cylinder 10. Be made.
  • a tube of the hydraulic cylinder 10 is suspended from a bracket 1 b on the center shaft 1 and its rod end is connected to the housing 4.
  • the hydraulic motor 5 and the hydraulic cylinder 10 constitute a bit driving means in the present invention for rotating the cutting bit 9 on the central shaft 1 and propelling it in the axial direction.
  • the central shaft 1 is provided with a pulling rod 11 that can be expanded and contracted by hydraulic drive from the lower end in the axial direction of the shaft, and the lower end of the central shaft 1 can be pressed and held on the cutting center of the object to be cut.
  • An inverted frustoconical stone protrusion 1 a is extended, and an engaging means 20 is provided at the end of the pulling rod 11.
  • a reaction force receiving frame 21 is provided on the central shaft 1 so as not to interfere with the housing 4 and the cutting bit 9.
  • the reaction force receiving frame 21 protrudes in a radial direction from a bracket 1b provided on the center shaft 1 and reaches a position facing the outer area of the circular cut, and ends of the respective transverse beams 22
  • Each of the leg portions 23 is fixed at a required position by a lock pin, and the height of the telescopic cylinder portion 24 can be roughly adjusted, and an adjustment bolt. It is comprised from the adjustment stand part 25 in which height can be finely adjusted.
  • a split type composed of a main rod portion 12 and an extension rod portion 13 detachably connected to the shaft axis direction is also preferably used.
  • the engaging means 20 is provided at the end of the extension rod portion 13.
  • the second circular cutting device is the same as the first circular cutting device described above in basic configuration and function, but the second circular cutting device has a structure in which the central shaft of the first circular cutting device can be expanded and contracted. Accordingly, the mounting manner of the housing and the reaction force receiving frame in which the hydraulic motor is mounted and the speed change transmission mechanism is built is different from the case of the first circular cutting device.
  • the center shaft 1 is connected to the main shaft portion 1f and the main shaft portion 1f in a required range in the shaft axis direction via a hydraulic cylinder.
  • a movable shaft portion 1g that can be extended and contracted in a range of 0 to 50 mm, 0 to 100 mm, and the like, and is vertically supported by the boom 2 of a crane truck that is a support moving means on the main shaft portion 1f. Has been.
  • a rotary shaft 3 is provided on the movable shaft portion 1g so as to be able to move up and down via a bearing and to be rotatable.
  • a housing 4 is relatively immovable in the axial direction via a bearing.
  • it is rotatably provided so as to be movable up and down integrally with the rotary shaft 3 with respect to the movable shaft portion 1g.
  • a hydraulic motor 5 is mounted on the housing 4, and a driving gear 6 provided on the drive shaft of the hydraulic motor 5 and a driven gear 7 provided on the rotating shaft 3 are engaged with each other in the housing 4.
  • a cylindrical cutting bit 9 having a cutting tip 9 a at the lower end edge is connected to the lower end of the rotating shaft 3 via a bit mounting base 8, and the driving gear 6 and the driven gear 7 are driven by the rotational drive of the hydraulic motor 5.
  • the rotating shaft 3 is rotated via this, whereby the cutting bit 9 is rotated on the movable shaft part.
  • a hydraulic cylinder 10 is interposed between the bracket 1 c provided on the movable shaft portion 1 g and the housing 4, and the cutting bit 9 is integrated with the housing 4 on the central shaft 1 by the expansion and contraction drive of the hydraulic cylinder 10. To be promoted.
  • the tube of the hydraulic cylinder 10 is suspended from the bracket 1 c and the rod end is connected to the housing 4.
  • the hydraulic motor 5 and the hydraulic cylinder 10 constitute a bit driving means in the present invention for rotating the cutting bit 9 on the central shaft 1 and propelling it in the axial direction.
  • the movable shaft portion 1g of the central shaft 1 is provided with a pulling rod 11 that can be expanded and contracted by hydraulic drive from the lower end in the axial direction of the shaft, and the lower end of the movable shaft portion 1g has a cutting center on the cutting object.
  • An inverted frustoconical stone protrusion 1 a that can be pressed and held is extended, and an engaging means 20 is provided at the end of the pulling rod 11.
  • a reaction force receiving frame 21 is provided on the main shaft portion 1 f of the center shaft 1 so as not to interfere with the housing 4 and the cutting bit 9.
  • the reaction force receiving frame 21 protrudes in a radial direction from the bracket 1b provided on the main shaft portion 1f and reaches a position facing the outer region of the circular cut, and ends of the respective transverse beams 22
  • Each of the leg portions 23 is fixed at a required position by a lock pin, and is provided with a telescopic cylinder portion 24 having a coarsely adjustable height, and a hydraulic pressure. It is comprised from the adjustment stand part 25 which can adjust height finely with a jack.
  • a split type composed of a main rod portion 12 and an extension rod portion 13 that is detachably connected to the shaft axial direction is also preferably used.
  • the engaging means 20 is provided at the end of the extension rod portion 13.
  • the rotation engagement piece 11a is unbalanced via the pivot 11b displaced from the center position. That is, it is pivotally attached so that the length differs between the left and right sides.
  • the rotating engagement piece 11a configured as described above, when it is inserted into a small-diameter operation cavity, which will be described later, as shown in FIGS.
  • the restriction by the operation cavity is lost, the long piece part naturally rotates to the horizontal position by gravity to the position of the stopper 11c, and FIG. 1 and FIG.
  • it is configured to take an extended posture so as to be engageable with an engaged means described later.
  • FIGS. 4A to 4D As an alternative example of the engaging means, as shown in FIGS. 4A to 4D, a crank pin 11d provided eccentrically adjacent to the pivot 11b at the center position or eccentric position of the rotating engagement piece 11a.
  • a piston pin 11f on a piston shaft 11e provided in the pulling rod 11 so as to be movable in the rod axis direction is bridged by a connecting piece 11g so as to be able to perform a crank motion.
  • the engaging piece 11a configured as described above, when it is inserted into a small-diameter operation cavity, which will be described later, as shown in FIGS.
  • the pulling rod 11 is an extension in which the main rod portion 12 is detachably connected to the shaft axial direction.
  • the extension rod portion 13 includes an engagement action portion 14 and an intermediate adjustment portion 15, which are connected via a screw connection mechanism 18, that is, the intermediate portion.
  • the bolt 18b is screwed into a female screw 18c drilled in the upper end of the engaging action portion 14 through a bolt hole 18a drilled in the lower end of the adjusting portion 15, and is detachably connected.
  • a pin 18d that is bridged in the diametrical direction to the engaging action portion 14 and a groove 18e that is pierced in the diametrical direction in the intermediate adjustment portion 15 are provided. Mated.
  • An engaging piece 14a protrudes radially at the end of the engaging action portion 14, and a stopper portion 14b bulges radially in a position spaced from the engaging piece 14a in the rod axis direction. Further, on the side opposite to the engaging piece 14a with respect to the stopper portion 14b, the floating portion 14c is loosely fitted so as to be non-rotatable and movable in the rod axis direction within a range not exceeding the stopper portion 14b.
  • the locking piece 14d is provided along the rod axis direction so as not to interfere with the stopper portion 14b at an angular position 90 degrees away from the engagement piece 14a.
  • the said members cooperate and comprise the engaging means 20 in this invention.
  • the intermediate adjusting portion 15 is provided with a pin hole 19a for being connected to the main rod portion 12 via a pin connecting mechanism 19.
  • the extension rod portion 13 constituting the pulling rod 11 includes an engaging action portion 14 and an intermediate adjusting portion 15 as shown in FIG. Instead of the above-described screw connection mechanism, it is detachably connected via a pin connection mechanism 19.
  • the engaging action portion 14 includes an engaging means 20 similar to the above-described engaging means shown in FIGS. 5A-1 and 5A-2, and the intermediate adjusting portion 15 includes the main adjusting portion 15.
  • a pin hole 19a to be connected to the rod portion 12 via the pin connection mechanism 19 as described above is formed in a plurality of stages in the rod axis method, and the lowermost pin hole 19a is connected to the engaging action portion 14. For the pin connection.
  • the extension rod portion 13 constituting the pulling rod 11 includes an engaging action portion 14 and an intermediate adjusting portion 15 as shown in FIG. It is detachably connected via the pin connecting mechanism 19 as described above.
  • Such a configuration is basically the same as the embodiment shown in FIG.
  • the engagement action portion 14 has an engagement piece 114a at its end, and the rod axis from the center of gravity.
  • the engaging action portion 14 is suspended as shown in FIG. 5C, it is pivotally mounted in an unbalanced manner through a pivot 114b perpendicular to the rod axis direction at a position eccentric in the direction.
  • the joint piece 114a expands in the radial direction while rotating to the horizontal position at the maximum due to the difference in moments sandwiching the pivot 114b, and is held in the expanded posture by a stopper (not shown).
  • the engaging piece 114a may be expanded from the hollow inside of the engaging action portion 14 in substantially the same manner as in the above-described embodiment (2).
  • FIG. 5 (C) is configured as shown in FIGS. 3 (A) to 3 (C) and FIGS. 4 (A) to (D) in the configuration of the split-type pulling rod 11 shown in FIG. 5 (B). This corresponds to the application of the appropriate engaging means 20.
  • a temporary lid 32 is provided so as to close the opening on the manhole base wall 31 installed underground.
  • a cylindrical engagement hole 32a constituting the engaged means 30 in the present invention is formed so as to protrude downward and around the lower surface of the temporary lid 32.
  • a protruding edge 32b that can be fitted inside the opening when the manhole base wall 31 is attached to the opening protrudes.
  • the upper surface of the engagement hole 32a of the temporary lid 32 is closed by a closing member 33 such as waterproof paper, cloth tape, or plastic lid material, and a paving 34 made of a paving material is applied on the temporary lid 32.
  • a closing member 33 such as waterproof paper, cloth tape, or plastic lid material
  • a paving 34 made of a paving material is applied on the temporary lid 32.
  • the figure has illustrated the state after temporary pavement, road surface cutting, restoration pavement, etc. were sequentially constructed
  • FIG. As shown in (B), a punching machine 35 is installed on the road surface of the pavement 34, and the guide hole 36 having a diameter of 150 mm, for example, communicates with the engagement hole 32a of the temporary lid 32 at the cutting center P of the pavement 34. Is drilled as an operating cavity in the present invention. Before or after the guide hole 36 is drilled, the closing member 33 that has closed the upper surface of the engagement hole 32a of the temporary lid 32 is removed or opened by detachment or breakage, and before proceeding to the next circular cutting process. From the opening of the hole 36, it is confirmed by visual observation or the like through the guide hole 36 that the opening and the engagement hole 32a of the temporary lid 32 are on the same cutting center axis M.
  • a stone strike holder 37 is installed at the opening of the guide hole 36.
  • the stone thrusting holder 37 is a base 37a that is in contact with the opening of the guide hole 36, and is projected on the base 37a and presses the stone thrusting part 1a of the center shaft 1 by contact between the conical surfaces.
  • the first circular cutting device is used as the circular cutting device
  • the non-split type is used as the pulling rod
  • the engaging means is the same type as the engaging means according to the above-described embodiments (1) to (3). Things are used.
  • the center shaft 1 of the first circular cutting device is moved by the boom 2 of the crane truck, which is the support moving means, and the center shaft 1 rotates as the engaging means at the tip of the pulling rod 11.
  • the engaging piece 11 a is provided and is erected along the cutting center axis M on the pavement 34 including the temporary lid 32.
  • the pulling rod 11 extending from the lower end of the center shaft 1 is inserted into the guide hole 36 through the operation hole 37 c of the stone thrust retainer 37, and the tip of the pulling rod 11 is the temporary lid.
  • the turning engagement piece 11a as the engagement means is rotated so as to take the extended posture from the vertical position to the horizontal position, and the temporary lid 32 is the center as the engaged means. Engaged with and engaged with the hole 32a.
  • the reaction force receiving frame 21 includes the telescopic cylinder portion 24 and the adjustment base portion of each leg portion 23 as required. 25 is adjusted as appropriate, and each adjusting table 25 is brought into contact with the surface of the pavement 34 in the outer region of the circular cut.
  • the cutting bit 9 is composed of the hydraulic motor 5 and the hydraulic cylinder 10 under the state where the paving 34 including the temporary lid is clamped and gripped by the center shaft 1 and the pulling rod 11. It is rotated on the central shaft 1 by the bit driving means and propelled in the axial direction, whereby the pavement 34 including the temporary lid is cut into a circular shape from the road surface to a depth near the temporary lid 32.
  • the central shaft 1 may be lifted together with the pulling rod 11 to engage the rotational engagement piece 11a with the central hole 32a of the temporary lid 32, or FIG.
  • the required thickness corresponding to the retractable stroke d which is detachably provided in advance between the inner area of the circular cutting of the pavement 34 and the stone thrusting portion 1a in the circular cutting step. It is also possible to remove the spacer 38.
  • the spacer 38 is usually provided between the stone thrusting holder 37 and the pavement 34. It is interposed between the inner area of the circular cut.
  • the pulling rod 11 is urged in the contracting direction via the reaction force receiving frame 21 in a state where the retractable stroke of the pulling rod 11 is secured.
  • the cutting pavement plate 34a is inserted into the central shaft 1 and the central hole 32a of the temporary lid 32 that press and hold the stone protrusion 1a in the inner area of the circular cutting.
  • Each leg portion of the reaction force receiving frame 21 is sandwiched and gripped from above and below by the pulling rod 11 that is engaged with the turning engagement piece 11a at the tip and biased in the contraction direction. It is also possible to force the jack 39 to be jacked up by a required distance in the outer region of the circular cutting.
  • a second circular cutting device is used to pull up the movable shaft portion of the central shaft with respect to the main shaft portion to break / edge the cutting pavement plate 34a from the peripheral fixing member.
  • the cut and paved slab 34a of the temporary lid is cut into a stone at the lower end via a butt holder 37 at the opening of the guide hole 36 as shown in FIG.
  • the center shaft 1 that presses and holds the protrusion 1a and the pull-up rod 11 that is engaged with the rotation engagement piece 11a at the tip of the center hole 32a of the temporary lid 32 and biased in the contraction direction.
  • the central shaft 1 is driven by the boom 2 of the crane truck as a support moving means, and the cut pavement plate 34a of the temporary lid inclusion is integrally lifted and moved and removed to the required position. Is done.
  • the cut and paved cut paving plate 34a of the temporary lid is sandwiched and gripped from above and below by the central shaft 1 and the pulling rod 11 as described above. Instead of being moved down and removed, the stability is inferior. However, as described above, the suspension is suspended only by the pulling rod 11 having the rotation engaging piece 11a at the tip engaged with the center hole 32a of the temporary lid 32. It can also be moved and removed by the central shaft 1 under supported conditions.
  • a multilayer temporary lid 232 as shown in FIGS. 13 (A) and (B) may be embedded. It is basically removed according to the removal method.
  • the multilayer temporary lid 232 has a substrate portion 233 mounted on the manhole base wall 31 so as to close the opening, and a required thickness on the substrate portion 233.
  • a plurality of adjustment plate portions 235 that are detachably stacked with bolts and nuts 234, and a cylindrical first center hole 233a that is formed in the center of the substrate portion 233 so as to protrude downward.
  • the adjustment plate portion 235 includes a second center hole 235a drilled so as to communicate with the first center hole 233a.
  • an opening portion of the manhole base wall 31 is formed.
  • a convex edge portion 233b that can be fitted inside the opening is provided in a projecting manner.
  • the first center hole 233a in the multilayer temporary lid 232 is used as an engaged means in the present invention, and the second center hole 235a is an operation cavity in the present invention together with the drilled guide hole 36. It is composed.
  • Bolt holes 236 through which bolts 234a can be inserted are formed in the substrate portion 233 and the plurality of adjustment plate portions 235 around the first center hole 233a and the second center hole 235a and at equal angles from each other.
  • a plurality of places such as three places, four places, and the like, and at the upper end of the bolt hole 236 of each adjustment plate portion 235, when the adjustment plate portion 235 is arranged in the uppermost layer, the bolt 234a
  • the bolt 234a and the nut 234b are fixed to the base plate portion 233 and the plurality of adjustment plate portions 235 when the bolts 234a are stacked and fixed.
  • a countersink is drilled in such a width and depth that the head can be immersed inside.
  • the second center hole 235a of the uppermost adjustment plate portion 235 in the multilayer temporary lid 232 is closed by the closing member 33 as described above, and the outer peripheral surface of the multilayer temporary lid 232 and the existing pavement 34 are For the boundary with the inner cross section, if necessary, an appropriate material that can withstand high temperatures during subsequent paving work and does not involve strong adhesion between both facing surfaces, such as a heat-resistant elastic material (not shown) ) Is filled.
  • the first center hole 233a and the second center hole of the multi-layer temporary lid 232 are formed at the cutting center P of the pavement 34 by the same operation as described above.
  • a guide hole 36 communicating with 235a is formed, and the closing member 33 closing the second central hole 235a of the uppermost adjustment plate 235 is removed by detachment, destruction, etc.
  • the pavement 34 including the lid 232 is cut to a depth near the uppermost adjustment plate 235 from the road surface by the same operation as described above.
  • the stone thrusting portion 201a shown in FIG. 14 (B) is from a disk-shaped base that is extended at the lower end of the central shaft 1 so as to be able to directly contact the opening of the guide hole 36 and through which the lifting rod 11 can be inserted.
  • 14C is fixed to the lower side portion of the central shaft 1 so as to be able to directly contact the periphery of the opening of the guide hole 36 and to allow the pull-up rod 11 to be inserted therethrough. It consists of a cylindrical base.
  • an expanded wedge member 44 as an engaged means presses the wedge bodies 44a at both ends into the lower end of the height adjusting member 41 with a fluid pressure, thereby the height adjusting member.
  • An engagement hole 45 a is drilled along the cutting center axis M in a mounting arm 45 that is bridged and fixed in a diameter direction to 41 and provided at the top of the extended wedge member 44.
  • a stone strike holder 46 is installed at the opening of the central hole 43.
  • the stone holder 46 is attached to a stepped portion around the manhole cover receiving frame 42 in the opening of the central hole 43, protrudes upward in a spherical shape, and is an opening window (not shown) for seeing inside the central hole 43 and various operations.
  • a circular base 46a provided with an omission
  • a receiving portion 46b that protrudes on the base 46a and presses and holds the stone protrusion 1a at the lower end of the center shaft 1 by contact between the conical surfaces
  • a base 46a And an operation hole 46c that penetrates the receiving portion 46b along the cutting center axis M so that the pulling rod 11 can be inserted.
  • the stone strike holder 46 is attached to a stepped portion around the manhole cover receiving frame 42 at the opening of the central hole 43 and covers the inner area of the circular cut beyond the opening of the central hole 43. There may be.
  • the operation hole 46 c of the stone thruster 46 extends from the operation hole 46 c on the same cutting center axis M as the engagement hole 45 a of the extended wedge member 44 disposed in the central hole 43. It is confirmed visually or the like.
  • the embedded bolt 47a is cut or broken in advance.
  • the cutting or breaking may be performed by a dedicated cutting machine.
  • the wedge bodies 44a at both ends of the extended wedge member 44 are press-fitted to the lower end of the height adjusting member 41 by fluid pressure, and the diameter of the height adjusting member 41 is reduced.
  • the embedded bolt 47a may be cut or broken by press-fitting the wedge body 44a at the same time.
  • the first circular cutting device is used as the circular cutting device
  • the non-split type is used as the pulling rod
  • the engaging means is the same type as the engaging means according to the above-described embodiments (1) to (3). Things are used.
  • the center shaft 1 of the circular cutting apparatus is moved by the boom 2 of the crane truck as the support moving means, and the center shaft 1 is already described as the engaging means at the tip of the pulling rod 11.
  • Such a rotation engaging piece 11a is provided and is erected along the cutting center axis M on the pavement 34 including the manhole cover receiving frame 42.
  • the pulling rod 11 extending from the lower end of the central shaft 1 is inserted through the operation hole 46c of the stone thrusting holder 46 into the central hole 43 which is an operation cavity, and the pulling rod
  • the rotation engagement piece 11a is rotated as an engagement means so as to take an expanded posture from the vertical position to the horizontal position, and the engagement means
  • the expansion wedge member 44 is engaged with the engagement hole 45a.
  • the reaction force receiving frame 21 includes the telescopic cylinder portion 24 and the adjustment base portion of each leg portion 23 as required. 25 is adjusted as appropriate, and each adjusting table 25 is brought into contact with the surface of the pavement 34 in the outer region of the circular cut.
  • the cutting bit 9 is connected to the hydraulic motor 5 and the hydraulic cylinder 10 while the pavement 34 including the manhole cover receiving frame is clamped and gripped by the center shaft 1 and the pulling rod 11.
  • the bit drive means is rotated on the central shaft 1 and propelled in the axial direction, whereby the pavement 34 including the manhole cover receiving frame is cut into a circle from the road surface to a depth near the manhole base wall 31.
  • 11A to 11B which can be applied to the above-described breakage and edging of the cut pavement plate 34a with the temporary lid, as described above.
  • the means shown in (C) and the means shown in FIGS. 30A to 30J and FIGS. 31A and 31B can be applied.
  • the cut and paved slab 34a including the human hole lid receiving frame is lowered to the opening of the central hole 43 via a butt holder 46 as shown in FIG.
  • the pulling rod 11 is engaged with the pivoting engagement piece 11a at the tip and urged in the contraction direction in the engagement shaft 45a of the expansion wedge member 44 and the central shaft 1 that presses and holds the stone protrusion 1a.
  • the center shaft 1 is driven by the boom 2 of the crane truck, which is the supporting and moving means, and the cut pavement plate 34a included in the manhole cover receiving frame is integrally lifted in a state of being clamped and gripped from above and below, Moved to the required position and removed.
  • the cut and paved slab 34a containing the human hole lid receiving frame is sandwiched and gripped from above and below by the central shaft 1 and the lifting rod 11 as described above.
  • the pulling rod 11 is inferior in stability instead of being moved and removed under the above-mentioned condition, but has the turning engagement piece 11a at the tip engaged with the engagement hole 45a of the extended wedge member 44 as described above. It can also be moved and removed by the central shaft 1 in a state where it is suspended and supported only by it.
  • the extended wedge member 44 of the engaged means is not limited to the lower end of the height adjusting member 41 as required, and for example, the middle of the height adjusting member 41, the upper end or the boundary of the upper and lower height adjusting members 41 For example, it may be attached to any part of the height adjusting member 41.
  • the engaged means may be fixed to the human hole cover receiving frame 42 instead of the height adjusting member 41 as necessary. In this case, the engaged means is connected to the human hole cover receiving frame 42.
  • a structure that can be fixed to the inner wall, for example, an expansion bar that is expanded in the radial direction by fluid pressure or the like and press-engaged with the inner wall of the manhole cover receiving frame 42 is appropriately employed.
  • a wedge body at both ends within the central hole 43 is provided in the pulling rod 11 instead of providing the rotating engaging piece 11a as an engaging means at the tip of the pulling rod 11.
  • An extended wedge member 48 having a structure similar to the previously described extended wedge member 44 may be provided so that 48a can be press-fitted into a required portion of the height adjusting member 41 by fluid pressure. In this case, the extended wedge member may be provided. 48 acts as an engaging means, and the height adjusting member 41 itself becomes the engaged means.
  • the crane in the circular cutting step, the crane is moved by the boom 2 of the crane truck, and stands along with the center shaft 1 along the cutting center axis M on the pavement 34 containing the manhole cover receiving frame.
  • An extension wedge member 48 as an engagement means is passed through the operation hole 46c of the stone thrust retainer 46 at the tip of the lifting rod 11 provided, and the axis of the extension wedge member 48 is attached to the top mounting arm 49. It is suspended in a substantially horizontal direction via a connector 49a so as to be displaceable in the direction.
  • the lifting rod 11 is connected to the distal end of the expansion wedge member 48 so as to be displaceable in the axial direction, and in the center hole 43 in a state of penetrating and holding the stone thrusting holder 46 thereabove.
  • the stone holder 46 is installed at the opening of the central hole 43 with its base 46a mounted on the peripheral stepped portion of the manhole cover receiving frame 42, and the extended wedge member 48 is attached to both ends.
  • the wedge body 48a is disposed in the central hole 43 so as to oppose the lower end of the height adjusting member 41 so as to be press fitable.
  • the extended wedge member 48 suspended so as to be axially displaceable at the tip of the pulling rod 11 is fluid pressure applied to the lower end of the height adjusting member 41 using the wedge bodies 48a at both ends as the engaged means.
  • the height adjusting member 41 is engaged so as to be bridged in the diametrical direction, and at the same time, the pulling rod 11 is urged in the contracting direction, while the stone thrusting portion 1a at the lower end of the center shaft 1 is
  • the pavement 34 containing the manhole cover receiving frame is moved between the central shaft 1 and the lifting rod 11 in the same manner as the process shown in FIG. It is clamped and gripped from above and below, and the process proceeds to the next process in the same manner as each process shown in FIGS.
  • the expansion wedge member 48 of the engaging means is not limited to the lower end of the height adjusting material 41 as required, and for example, the middle of the height adjusting material 41, the upper end, the boundary between the upper and lower height adjusting members 41, or the like.
  • the height adjusting member 41 may be engaged with any part as an engaged means.
  • the engaging means may be engaged not with the height adjusting member 41 but with the human hole cover receiving frame 42 as necessary, and in this case, the engaging means is an inner wall of the human hole cover receiving frame 42.
  • an expansion bar or the like that is expanded in the radial direction by fluid pressure or the like and press-engaged with the inner wall of the human hole cover receiving frame 42 is appropriately employed.
  • the cut pavement plate 34a included in the human hole cover receiving frame is pressed up and down to engage the engaging piece 11a of the pulling rod 11 in the engaging hole of the stone thrusting holder 46, and the stone A crane vehicle in which the center shaft 1 is a supporting and moving means in a state where the thrust holder 46 is clamped and gripped from both sides by the stone thrusting portion 1a of the center shaft 1 and the engaging piece 11a of the pulling rod 11.
  • the boom 2 can be lifted and moved to a required position and removed.
  • the first circular cutting device is used as the circular cutting device, the split type is used as the pulling rod, and the same type as the engaging means according to the above-described embodiment (4) is used as the engaging means. .
  • the extension rod portion 13 constituting the pull-up rod 11 has an intermediate adjusting portion 14 and the engaging action portion 14 as shown in FIG. 24 (A-1) and FIG. 24 (A-2) obtained by rotating the drawing rod 90 degrees.
  • the bolts 18b are drilled at the upper end of the engaging action portion 14 through the screw coupling mechanism 18, that is, through the bolt holes 18a drilled at the lower end of the intermediate adjusting portion 15. It is detachably connected by being screwed to the female screw 18c.
  • a pin 18d that is bridged in the diametrical direction to the engaging action portion 14 and a groove 18e that is pierced in the diametrical direction in the intermediate adjustment portion 15 are provided. Mated.
  • An engaging piece 14a protrudes radially at the end of the engaging action portion 14, and a stopper portion 14b bulges radially in a position spaced from the engaging piece 14a in the rod axis direction. Further, on the side opposite to the engaging piece 14a with respect to the stopper portion 14b, the floating portion 14c is loosely fitted so as to be non-rotatable and movable in the rod axis direction within a range not exceeding the stopper portion 14b.
  • the locking piece 14d is provided along the rod axis direction so as not to interfere with the stopper portion 14b at an angular position 90 degrees away from the engagement piece 14a.
  • the said members cooperate and comprise the engaging means 20 in this invention.
  • the intermediate adjustment portion 15 is provided with a pin hole 19 a for being connected to the main rod portion 12 via a pin connection mechanism 19.
  • the engagement piece 14a is not yet engaged with the engagement hole 32a, and the stopper portion 14b is located at the periphery of the engagement hole 32a of the temporary lid 32.
  • the engaging action portion 14 is held in the guide hole 36 so as not to drop, and the locking piece 14d is 90 degrees from the extended hole 32c of the engaging hole 32a of the temporary lid 32. Since it is at a separated angular position, it does not drop into the expansion hole 32c due to gravity and is brought into contact with the periphery of the engagement hole 32a, so that the floating portion 14c has the pavement cross section of FIG. It has moved upward from the position shown in the figure.
  • the engaging action portion 14 held in the guide hole 36 is rotated 90 degrees around the rod axis,
  • the engagement piece 14a is moved to an angular position 90 degrees away from the expansion hole 32c and is engaged with the engagement hole 32a.
  • the locking piece 14d is aligned with the expansion hole 32c. And is dropped into and inserted into the expansion hole 32c by gravity, thereby preventing the engagement piece 14a from rotating around the rod axis with respect to the engagement hole 32a.
  • the engaging action portion 14 is completely accommodated in the guide hole 36 in a state where the engaging piece 14a is engaged with the engaging hole 32a as described above.
  • the opening of the guide hole 36 is, for example, a rubber plug or other plug body 16 having an opening operation hole so that traffic on the road surface is possible. Covered temporarily.
  • a stone thrusting holder 37 is provided at the opening of the guide hole 36 through an elastic anti-slip material 37d such as a rubber sheet in the inner area of the circular cut.
  • the main rod portion 12 At the lower end of the main rod portion 12, there is a pin hole 19b penetrating in the diameter direction, and a retaining body 19c elastically projecting in the hole diameter direction at the center position in the axial direction inside the pin hole 19b. And a connecting terminal 12a provided to be pivotable about the rod axis with respect to the main rod portion 12.
  • the connecting terminal 12a of the main rod portion 12 The upper end of the adjusting portion 15 is fitted so that the pin holes 19a and 19b are aligned, and the pin 19d is driven into the aligned pin holes 19a and 19b and the retaining ring is inserted into the central annular groove of the pin 19d.
  • the body 19c is elastically inserted.
  • the first circular cutting device is used as the circular cutting device, the non-split type is used as the pulling rod, and the same type as the engaging means according to the above-described embodiment (5) is used as the engaging means.
  • the pavement 34 is provided with a guide hole 36 as an operation cavity,
  • the joint hole 32a has an expansion hole 32c that extends outward in the diameter direction.
  • the extension rod portion 13 constituting the pull-up rod 11 includes an engaging action portion 14 and an intermediate adjusting portion 15, which are the pins as described above.
  • the connection mechanism 19 is detachably connected.
  • the engaging action portion 14 includes an engaging means 20 similar to the case of the engagement 1 with respect to the engaging hole 32a of the temporary lid 32, and the intermediate adjusting portion 15 includes the main rod portion.
  • the pin hole 19a for connecting to the pin 12 via the pin connecting mechanism 19 as described above is formed in a plurality of stages in the rod axis method, and the lowermost pin hole 19a is connected to the engaging action portion 14 in the above-described manner. It is used for pin connection.
  • the extension rod portion 13 held inside the guide hole 36 is rotated 90 degrees around the rod axis, whereby the engagement piece 14a is It moves to an angular position 90 degrees away from the expansion hole 32c and is engaged with the engagement hole 32a.
  • the locking piece 14d is disposed at a position aligned with the expansion hole 32c and the expansion hole 32c. It is dropped by gravity and inserted, and the rotation of the engagement piece 14a around the rod axis with respect to the engagement hole 32a is prevented.
  • a stone thrusting holder 37 is provided in an inner area of the circular cut through an elastic anti-slip material 37d such as a rubber sheet. .
  • the state is basically the same as the state shown in FIGS. 24D-1 to 24G in the engagement 1.
  • the extension rod portion 13 is a state in which the engaging action portion 14 is connected to the intermediate adjusting portion 15 and the pin connecting mechanism 19 so as to have a required length in advance.
  • the engaging action portion 14 is integrated in advance with the intermediate adjusting portion 15 so as not to be separated, in other words, an integral extension rod portion. May be used as
  • the first circular cutting device is used as the circular cutting device, the non-split type is used as the pulling rod, and the same type as the engaging means according to the above-described embodiment (6) is used as the engaging means.
  • the extension rod portion 13 constituting the pulling rod 11 includes an engaging action portion 14 and an intermediate adjusting portion 15, and these are: It is detachably connected via the pin connecting mechanism 19 as described above.
  • the engagement action portion 14 has an engagement piece 114a at its end at a position eccentric from the center of gravity in the rod axis direction.
  • the engaging piece 114a is pivotally mounted in an unbalanced manner through the pivot shaft 114b perpendicular to the axial direction. Unless rotation is constrained from the outside, it expands in the radial direction while rotating to the horizontal position at the maximum due to the difference in moments on both sides of the pivot 114b, and is held in the expanded posture by a stopper (not shown).
  • the engaging piece 114a may be expanded from the hollow inside of the engaging action portion 14.
  • the state is basically the same as the state shown in FIGS. 3D-1 to 3G in the engagement 1.
  • the opening of the guide hole 36 has an opening as shown in FIG.
  • the stone thrusting holder 37 is provided in the inner area of the circular cut through an elastic anti-slip material 37d such as a rubber sheet.
  • the main rod portion 12 of the pull-up rod 11 moved above the guide hole 36 in the pavement 34 is connected to the intermediate adjustment portion 15 of the extension rod portion 13 in its uppermost pin hole 19a. As shown in FIGS. 26 (D) and 26 (E) sequentially, they are connected via the pin connecting mechanism 19 as described above.
  • the split-type pull-up rod 11 composed of the main rod portion 12 and the extension rod portion 13 is equivalent to the non-split-type pull-up rod 11 as described above in a state where the connection is completed as described above. It will have the effect of.
  • each leg portion 23 of the reaction force receiving frame 21 is appropriately adjusted in length by the telescopic cylinder portion 24 and the adjustment base portion 25 and on the surface of the pavement 34 via each adjustment base portion 25. It abuts in the outer area of the circular cut.
  • the cutting bit 9 is a bit driving means comprising the hydraulic motor 5 and the hydraulic cylinder 10. Is rotated on the central shaft 1 and propelled in the axial direction of the shaft, whereby the pavement 34 including the temporary lid is cut into a circular shape from the road surface to a depth near the temporary lid 32.
  • an extended wedge member 44 presses the wedge bodies 44a at both ends into the lower end of the height adjusting member 41 with a fluid pressure, and enters the height adjusting member 41 in the diametrical direction.
  • An engagement hole 45 a is drilled along the cutting center axis M as the engaged means 30 in the mounting arm 45 which is fixed by bridging and provided at the top of the extended wedge member 44.
  • a stone strike holder 46 is installed at the opening of the central hole 43 so as to be attached to a stepped portion around the manhole cover receiving frame 42.
  • the first circular cutting device is used as the circular cutting device, the split type is used as the pulling rod, and the same type as the engaging means according to the above-described embodiments (4) to (6) is used as the engaging means. Is used.
  • the extension rod portion 13 connects the engaging action portion 14 to the intermediate portion. Coupling connected to the adjusting unit 15 in advance or integrated as shown in FIG. 25A-2 or separated from the intermediate adjusting unit 15 as shown in FIG. 24A-2, for example.
  • the center piece 43 is inserted through the operation hole 46 c of the stone thrust holder 46, and the engagement pieces 14 a and 114 a at the end of the engagement portion 14 are expanded. It is engaged with the engagement hole 45 a of the wedge member 44.
  • the said stone thrust holder 46 may be installed after the engagement operation of the said engagement pieces 14a and 114a and the engagement hole 45a as needed.
  • FIGS. 25 (E) and (F), FIGS. 26 (D) and (E), etc. are connected to the extension rod portion 13 via a pin coupling mechanism 19 and the like. Connected.
  • the split-type pull-up rod 11 composed of the main rod portion 12 and the extension rod portion 13 is equivalent to the non-split-type pull-up rod 11 as described above in a state where the connection is completed as described above. It will have the effect of.
  • each leg portion 23 of the reaction force receiving frame 21 is appropriately adjusted in length by the telescopic cylinder portion 24 and the adjustment base portion 25 and on the surface of the pavement 34 via each adjustment base portion 25. It abuts in the outer area of the circular cut.
  • the cutting bit 9 is a bit driving means comprising the hydraulic motor 5 and the hydraulic cylinder 10. Is rotated on the central shaft 1 and propelled in the axial direction of the shaft, whereby the pavement 34 containing the manhole cover receiving frame is circularly cut from the road surface to a depth near the manhole base wall 31.
  • the second circular cutting device is used as the circular cutting device, the split type is used as the pulling rod, and the same type as the engaging means according to the above-described embodiment (6) is used as the engaging means.
  • the extension rod portion 13 is inserted into the guide hole 36, penetrates the engagement hole 132a of the temporary lid 32, and the engagement piece 114a at the end has a horizontal posture.
  • a stone thrust holder 37 is provided at the opening of the guide hole 36.
  • the same type as the engaging means according to the embodiments (4) to (5) can naturally be used as the engaging means.
  • the cutting bit 9 is rotated on the central shaft 1 by the bit driving means comprising the hydraulic motor 5 and the hydraulic cylinder 10 and is propelled in the axial direction of the shaft.
  • the pavement 34 including the temporary lid is cut into a circular shape from the road surface to a depth near the temporary lid 32.
  • FIGS. 30G and 30H showing the breaking and edge cutting operations are enlarged and shown in FIGS. 31A and 31B, respectively.
  • the broken and trimmed paved 34 of the temporary lid includes the stone thrusting portion 1a of the central shaft 1 and the pulling rod as shown in FIGS. 11, the central shaft 1 is driven by the boom 2 of the crane truck as a support moving means, and the cut pavement plate 34 a of the temporary lid is integrally formed. And moved to a required position such as a loading platform of a crane truck, and placed on the two platforms 51.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mining & Mineral Resources (AREA)
  • Structural Engineering (AREA)
  • Civil Engineering (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Paleontology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Architecture (AREA)
  • Road Repair (AREA)
  • Underground Structures, Protecting, Testing And Restoring Foundations (AREA)
  • Processing Of Stones Or Stones Resemblance Materials (AREA)
  • Road Paving Structures (AREA)

Abstract

La présente invention concerne un dispositif de découpe circulaire, et un procédé de construction qui utilise le dispositif de découpe pour construire une structure souterraine tout en garantissant la facilité de travail et la sécurité d'ouvriers, ou similaires, et en obtenant une dépose aisée. Ce dispositif de découpe circulaire, qui comprend une cavité de fonctionnement (36) et, sur la section intérieure ou le côté surface arrière de la cavité, un moyen qui est destiné à être mis en prise (30), et qui est utilisé pour la découpe circulaire d'un article destiné à être découpé, tel qu'un pavage. Dans ladite invention, un trépan tranchant (9) est supporté de manière à pouvoir tourner et être propulsé sur un arbre central (1), une section sabot (1a) et une tige de traction ascendante (11), qui pénètre dans la section sabot de manière à pouvoir être agrandie et contractée, sont prévues sur l'arbre central (1), et un moyen d'entrée en prise (20), capable d'entrer en prise avec le moyen qui est destiné à être mis en prise (30) est prévu sur l'extrémité de la tige de traction ascendante (11). La découpe circulaire de l'article destiné à être découpé est réalisée alors que l'article destiné à être découpé est comprimé et retenu à partir des deux côtés par la section sabot (1a) de l'arbre central (1), comprimée dans une section ouverture dans la cavité de fonctionnement (36), et le moyen d'entrée en prise (20) dans la tige de traction ascendante (11), en prise avec le moyen qui est destiné à être mis en prise (30).
PCT/JP2012/071157 2011-08-22 2012-08-22 Dispositif de découpe circulaire, procédé de découpe circulaire, procédé de construction à dépose pour structures souterraines, et procédé de construction de pavage de route WO2013027754A1 (fr)

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
JP2011180651 2011-08-22
JP2011-180651 2011-08-22
JP2011-270757 2011-12-11
JP2011270757 2011-12-11
JP2012181267A JP5368616B2 (ja) 2011-08-22 2012-08-19 円形切断装置、円形切断方法、地中構造物の撤去工法及び道路舗装工法
JP2012-181267 2012-08-19

Publications (1)

Publication Number Publication Date
WO2013027754A1 true WO2013027754A1 (fr) 2013-02-28

Family

ID=47746492

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2012/071157 WO2013027754A1 (fr) 2011-08-22 2012-08-22 Dispositif de découpe circulaire, procédé de découpe circulaire, procédé de construction à dépose pour structures souterraines, et procédé de construction de pavage de route

Country Status (3)

Country Link
JP (1) JP5368616B2 (fr)
TW (1) TW201333302A (fr)
WO (1) WO2013027754A1 (fr)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103696351A (zh) * 2013-12-09 2014-04-02 广东易山重工股份有限公司 一种圆周切割机
FR3034437A1 (fr) * 2015-03-30 2016-10-07 Gb Forages Diriges Dispositif de decoupe circulaire d'une section d'enrobe de sol en materiau dur
CN106592399A (zh) * 2016-12-01 2017-04-26 马艳敏 一种井盖边缘自动切割装置
CN109322234A (zh) * 2018-10-22 2019-02-12 广州鹏兴科技有限公司 一种基于省力角度道路施工路面开槽装置
EP3719209A2 (fr) 2019-04-02 2020-10-07 Simex S.r.l. Ensemble d'excavation et machine d'exploitation comprenant ledit ensemble
CN112678748A (zh) * 2020-12-23 2021-04-20 何运鹏辉 尺寸自适应的市政施工用下水道井盖提升机
US11015307B1 (en) * 2019-05-08 2021-05-25 Michael Crites Road penetration and excavation system

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101671684B1 (ko) * 2016-03-15 2016-11-03 (주)우암시스템 맨홀보수를 위한 노면의 원형 절단기 및 이를 이용한 맨홀 보수 공법
KR101901201B1 (ko) * 2016-08-11 2018-09-27 전동수 포트홀 보수용 도로면 절삭 장치

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH11323821A (ja) * 1998-05-07 1999-11-26 Nichikon:Kk 舗装版切断装置
JP2000345506A (ja) * 1999-03-31 2000-12-12 Tokyoto Gesuido Service Kk マンホールのある道路の舗設工法
JP3622838B2 (ja) * 1999-08-19 2005-02-23 池野通建株式会社 路面切断装置

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH11323821A (ja) * 1998-05-07 1999-11-26 Nichikon:Kk 舗装版切断装置
JP2000345506A (ja) * 1999-03-31 2000-12-12 Tokyoto Gesuido Service Kk マンホールのある道路の舗設工法
JP3622838B2 (ja) * 1999-08-19 2005-02-23 池野通建株式会社 路面切断装置

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103696351A (zh) * 2013-12-09 2014-04-02 广东易山重工股份有限公司 一种圆周切割机
CN103696351B (zh) * 2013-12-09 2015-09-09 广东易山重工股份有限公司 一种圆周切割机
FR3034437A1 (fr) * 2015-03-30 2016-10-07 Gb Forages Diriges Dispositif de decoupe circulaire d'une section d'enrobe de sol en materiau dur
CN106592399A (zh) * 2016-12-01 2017-04-26 马艳敏 一种井盖边缘自动切割装置
CN109322234A (zh) * 2018-10-22 2019-02-12 广州鹏兴科技有限公司 一种基于省力角度道路施工路面开槽装置
EP3719209A2 (fr) 2019-04-02 2020-10-07 Simex S.r.l. Ensemble d'excavation et machine d'exploitation comprenant ledit ensemble
US11015307B1 (en) * 2019-05-08 2021-05-25 Michael Crites Road penetration and excavation system
CN112678748A (zh) * 2020-12-23 2021-04-20 何运鹏辉 尺寸自适应的市政施工用下水道井盖提升机
CN112678748B (zh) * 2020-12-23 2023-01-20 无锡天工建设有限公司 尺寸自适应的市政施工用下水道井盖提升机

Also Published As

Publication number Publication date
JP2013144918A (ja) 2013-07-25
JP5368616B2 (ja) 2013-12-18
TW201333302A (zh) 2013-08-16

Similar Documents

Publication Publication Date Title
JP5368616B2 (ja) 円形切断装置、円形切断方法、地中構造物の撤去工法及び道路舗装工法
ES2388645T3 (es) Dispositivo de perforación y procedimiento de perforación
US20050074299A1 (en) Systems and methods for the installation of earth anchors
CN201413251Y (zh) 振动冲击快速取样机具
US4618287A (en) Techniques for establishing inground support footings and for strengthening and stabilizing the soil at inground locations
CN112324323B (zh) 一种注浆支护型钻锚一体机及锚固方法
JP3818519B2 (ja) アースドリル用掘削具
JP5700611B1 (ja) 地中埋設杭撤去方法、及び地中埋設杭撤去装置
KR101397537B1 (ko) 맨홀 보수용 노면 원형 파쇄 절단기
NO343861B1 (no) Fremgangsmåte for innfesting av en komposittmast til grunnen.
EP0110853A1 (fr) Dispositif pour le montage d'un poteau ou d'un support de poteau
JP6758629B2 (ja) 既設杭把持装置
CN111894004A (zh) 一种基坑斜撑装置及施工方法
JP2011163073A (ja) 補強杭の圧入工法
JP4516155B2 (ja) マンホールの路面切断除去物の除去リフターおよび可傾リフト工法ならびに除去リフト工法
JP2002327434A (ja) コンクリートパイル及びその製造方法及びリーダー装置
JPH10252065A (ja) オールケーシング工法の既設構造物回収方法及び既設構造物回収装置
JP2004162301A (ja) 既設杭の撤去方法およびその装置
JP4701373B2 (ja) 先行先端支持体を有する基礎構造
JP4478877B2 (ja) 柱状物の撤去方法及び装置
JP2005307537A (ja) 杭打設装置
CN111963062B (zh) 限高空间施工时钻进卵砾石层用的刮刀钻头
JP2006161357A (ja) 建柱基礎構造
WO2024047693A1 (fr) Système de forage et procédé de forage
KR101638389B1 (ko) 지지점 이동식 3단빔을 이용한 오거크레인의 수직력 보조장치

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 12825742

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 12825742

Country of ref document: EP

Kind code of ref document: A1