CN105729371A - Measure cover installation device - Google Patents

Measure cover installation device Download PDF

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Publication number
CN105729371A
CN105729371A CN201610240979.9A CN201610240979A CN105729371A CN 105729371 A CN105729371 A CN 105729371A CN 201610240979 A CN201610240979 A CN 201610240979A CN 105729371 A CN105729371 A CN 105729371A
Authority
CN
China
Prior art keywords
measure
measure cover
cover
pull rope
rotation roller
Prior art date
Legal status (The legal status 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 status listed.)
Granted
Application number
CN201610240979.9A
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Chinese (zh)
Other versions
CN105729371B (en
Inventor
张孟琛
吴荡
宋�莹
杜广龙
王秀斌
刘继东
牛益国
胡海龙
张秀敏
李刚
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
State Grid Corp of China SGCC
Qinhuangdao Power Supply Co of State Grid Jibei Electric Power Co Ltd
Original Assignee
State Grid Corp of China SGCC
Qinhuangdao Power Supply Co of State Grid Jibei Electric Power Co Ltd
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 State Grid Corp of China SGCC, Qinhuangdao Power Supply Co of State Grid Jibei Electric Power Co Ltd filed Critical State Grid Corp of China SGCC
Priority to CN201610240979.9A priority Critical patent/CN105729371B/en
Publication of CN105729371A publication Critical patent/CN105729371A/en
Application granted granted Critical
Publication of CN105729371B publication Critical patent/CN105729371B/en
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Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B27/00Hand tools, specially adapted for fitting together or separating parts or objects whether or not involving some deformation, not otherwise provided for

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Tape Measures (AREA)

Abstract

The invention provides a measure cover installation device. The measure cover installation device comprises a measure cover bin, a measure cover alignment device, a rotating roller, an operation unit and a reset unit; the measure cover bin is provided with a measure cover inlet used for filling of measure covers and used for storing a plurality of stacked measure covers; the measure cover alignment device is arranged at the lower end of the measure cover bin and comprises a measure cover outlet part, and the measure covers are installed in an installation hole in the state that the measure cover outlet part is aligned at the installation hole; the rotating roller is used for supporting the contained measure covers in the measure cover bin in the static state and used for sliding the measure covers in the state that the rotating roller rotates to one party; the operation unit is operated to drive the rotating roller to rotate to one party, so that the measure covers slide into the measure cover outlet part in the direction crossed with the stacking direction; and the reset unit applies force enabling the rotating roller to rotate to the other party to the rotating roller, and the rotating roller rotates to the other party to reset through the force applied by the reset unit, so that the operation unit is driven and resets to the initial state.

Description

Measure cover erector
Technical field
The present invention relates to a kind of measure cover erector, particularly to the measure cover erector being used for being arranged in installing hole by measure cover in power grid security measure work.
Background technology
In existing power grid security measure works, each measure cover can only be separately mounted in each installing hole by manual operations.Therefore, when installing a large amount of measure cover, the operation of whole installation process is not convenient, and labor intensity is relatively big, and work efficiency is relatively low.
Summary of the invention
For solving the problems referred to above, the present invention provides a kind of easy to operate and efficient measure cover erector for measure cover being arranged in installing hole.
For achieving the above object, a kind of measure cover erector of the present invention, for being arranged in installing hole by measure cover, it is characterized in that, including: measure galenic, it has the measure cover entrance for filling described measure cover, and for the multiple described measure cover of stacking is received;Measure cover alignment device, it is arranged on the lower end of described measure galenic, and includes measure cover export department, is used for making described measure cover be arranged in described installing hole when described measure cover export department is directed at described installing hole;Rotating roller, it is used for making described measure cover slide under static state for the described measure cover received in described measure galenic is supported when rotating to a direction;Operating unit, it is driven described rotation roller to rotate to a direction by operating, so that the described measure cover abutted with described rotation roller slips in described measure cover export department along the direction intersected with described stacked direction;Reset unit, it applies the power making described rotation roller rotate to other direction to described rotation roller, described rotation roller is rotated to other direction by the force of described reset unit and resets, thus driving described operating unit, and makes described operating unit restPose.
In measure cover erector involved in the present invention, described rotation roller is arranged in described measure cover alignment device, and its periphery is circular.
In measure cover erector involved in the present invention, described operating unit includes: pull rope holding rod, and its one end is hinged with described measure cover erector;Pull rope, its one end is connected with the other end of described pull rope holding rod, and the other end is wrapped in the periphery of described rotation roller;When described pull rope holding rod is pinched hold time, described pull rope is driven and draws, thus the described rotation roller being wound with the other end of described pull rope is driven and rotates.
In measure cover erector involved in the present invention, described operating unit also includes: leading block, it is arranged in described measure cover alignment device, and makes the prolonging direction of described pull rope change, so that the other end of described pull rope is wrapped in the periphery of described rotation roller.
In measure cover erector involved in the present invention, described rotation roller has the winding section to internal side diameter depression, is wound with the other end of described pull rope in the periphery of described winding section.
In measure cover erector involved in the present invention, described reset unit is wind spring, and one end of described wind spring is fixed in described measure cover alignment device, and the other end is fixed on described rotation roller.
According to measure cover erector involved in the present invention, when measure cover erector is disposable be filled with multiple measure cover after, can continuously each measure cover be arranged in each installing hole, thus when installing a large amount of measure cover, the operation of whole installation process becomes convenient, labor intensity diminishes, and work efficiency improves.Therefore, it is possible to provide a kind of easy to operate and efficient measure cover erector for measure cover being arranged in installing hole.
Accompanying drawing explanation
Fig. 1 is the overall schematic of the measure cover erector involved by embodiments of the present invention;
Fig. 2 is one of part (bottom) schematic diagram of the measure cover erector involved by embodiments of the present invention;
Fig. 3 is the two of part (bottom) figure of the measure cover erector involved by embodiments of the present invention.
Detailed description of the invention
Fig. 1 to Fig. 3 used below, is described in detail to the structure of the measure cover erector involved by embodiments of the present invention.
Fig. 1 is the overall schematic of the measure cover erector 100 involved by embodiments of the present invention;Fig. 2 is one of part (bottom) schematic diagram of the measure cover erector 100 involved by embodiments of the present invention;Fig. 3 is the two of part (bottom) figure of the measure cover erector 100 involved by embodiments of the present invention.
As it is shown in figure 1, the measure cover erector 100 involved by embodiments of the present invention includes from top to bottom: measure cover erector body 10, measure galenic 20, measure cover alignment device 30.
Measure cover installs the parts that body 10 is inverted L shape.One end of the pull rope holding rod 51 of composition operating unit 50 described later it is hinged with in the upper end of measure cover installation body 10.Additionally, measure cover installs body 10 has limiting section 11, the other end that this limiting section 11 limits pull rope holding rod 51 rotates counterclockwise.
Measure galenic 20 is arranged on measure cover and installs body 10 lower end, and extends along above-below direction.Additionally, measure galenic 20 includes: measure cover entrance 21, measure cover receiving room 22 and pull rope bullport 23.
Measure cover entrance 21 is arranged on the sidewall of measure galenic 20 in an inclined manner, for filling discoideus measure cover 1 in measure cover receiving room 22.Angle between the sidewall of measure cover entrance 21 and measure galenic 20 is preferably 40 degree, thereby, it is possible to make measure cover 1 slip at a slant in measure cover receiving room 22, thus Prevention method lid 1 rolls in measure cover receiving room 22.
Measure cover receiving room 22 is for receiving multiple measure cover 1 of stacking, and extends also along above-below direction (i.e. the stacked direction of multiple measure cover 1).The diameter (i.e. the internal diameter of measure galenic 20) of measure cover receiving room 22 is slightly larger than the external diameter of discoideus measure cover 1.Thereby, it is possible to guarantee multiple measure cover 1 of storage stacking.
Pull rope bullport 23 is arranged on the outside of the sidewall of measure galenic 20, for the pull rope 52 of composition operating unit 50 described later is guided.The aperture of this pull rope bullport 23 is slightly larger than the diameter of pull rope 52 such that it is able to prevent the random swing of draught line, to increase the reliability of measure cover erector 100 operation.In the present embodiment, although pull rope bullport 23 is two, but is not limited to this, it is also possible to for one or more.
As shown in Figure 1 and Figure 2, measure cover alignment device 30 is arranged on the lower end of measure galenic 20, and includes: measure cover export department 31 and rotation rod receiving room 32.Additionally, measure cover alignment device 30 is used for making measure cover 1 be arranged in installing hole under the state (that is, measure cover export department 31 is directed at the state of installing hole) of alignment installing hole (not shown).
Measure cover export department 31 is used for being directed at installing hole, so that measure cover 1 is arranged in installing hole.Additionally, measure cover export department 31 is positioned at the side (left side of Fig. 1 and Fig. 2) of the imagining center line A extended along above-below direction of measure cover receiving room 22, and extend also along above-below direction.The internal diameter of measure cover export department 31 is roughly the same with the internal diameter of measure galenic 20.The imagining center line A along above-below direction extension of measure cover the receiving room 22 and imagining center line B along above-below direction extension of measure cover export department 31 is inconsistent, i.e. the imagining center line A along above-below direction extension of the imagining center line B deviation measure cover receiving room 22 extended along above-below direction of measure cover export department 31.
Rotate rod receiving room 32 rotation rod 40 described later is received.In addition, rotate rod receiving room 32 and be positioned at the opposite side (right side of Fig. 1 and Fig. 2) of imagining center line A extended along above-below direction of measure cover receiving room 22, and the rotating shaft 41 with countershaft roller 40 carries out the bearing portion 33 (with reference to Fig. 3) that supports.As it is shown on figure 3, bearing portion 33 includes rocker piece 34, this rocker piece 34 is fixed by spring bearer plate 35 and spiral component 36, thus the two ends of the rotating shaft 41 of countershaft roller 40 from below support.By loading and unloading this rocker piece 34 such that it is able to be replaced according to the extent of deterioration rotating roller 40.It is respectively arranged with in the outside of each bearing portion 33 the wind spring incorporating section 37 received as the wind spring 60 of reset unit described later.This wind spring incorporating section 37 includes draw-in groove (not shown), and one end of wind spring 60 snaps in this draw-in groove.
Additionally, the measure cover erector 100 involved by embodiments of the present invention also includes: rotate roller 40, operating unit 50 and the wind spring 60 as reset unit.
Rotating shaft roller 40 includes: rotating shaft 41, friction roller 42 and winding section 43, and by can around the shaft 41 axis rotation in the way of and be incorporated in the rotation rod receiving room 32 of measure cover alignment device 30.Rotating shaft 41, friction roller 42 and winding section 43 are formed in the way of unitary rotation.
As described above, the two ends of rotating shaft 41 are supported by the rocker piece 34 of bearing portion 33.Additionally, rotating shaft 41 includes draw-in groove (not shown), the other end of wind spring 60 snaps in this draw-in groove.
Friction roller 42 is divided into two parts by winding section 43, and is made up of rubber.The periphery of the friction roller 42 of each part is circular.Under the resting state of rotating shaft roller 40, being abutted with in measure galenic 20 measure cover 1 received by the periphery of friction roller 42, thus realizing rotating shaft roller 40, the measure cover 1 that in measure galenic, 20 receive being supported.In the case, if being d from the inwall 311 on the top of measure cover export department 31 to the distance of the bearing surface of friction roller 42 in the vertical direction, and the thickness of measure cover 1 is h, then this distance d meets the following conditions: h≤d < 2h.Thus, when rotating shaft roller 40 rotates as shown in Figure 2 counterclockwise, by the frictional force between the measure cover 1 of friction roller 42 and bottom, so that this measure cover 1 is to measure cover export department 31 Slideslip (left side of Fig. 2), it is ensured that only have this measure cover 1 and slip in measure cover export department 31.
As described above, winding section 43 is arranged between two-part friction roller 42, and caves in internal side diameter.The other end of pull rope 52 it is wound with in the periphery of winding section 43.Thereby, it is possible to avoid pull rope 52 to abut friction with measure cover 1.
Operating unit 50 is driven rotation roller 40 to rotate to a direction by operating, so that the measure cover 1 abutted with rotation roller 40 slips in the measure cover export department 31 of measure cover alignment device 30.Additionally, operating unit 50 includes: pull rope holding rod 51, pull rope 52 and leading block 53.
As described above, one end of pull rope holding rod 51 is hinged on measure cover and installs the upper end of body 10, and the other end of pull rope holding rod 51 is connected with one end of pull rope 52.Under the original state of pull rope holding rod 51, namely pull rope holding rod 51 is not pinched when holding (operation), and the other end of pull rope holding rod 51 is by the abutting with limiting section 11, thus rotation counterclockwise is limited.
As it has been described above, one end of pull rope 52 is fixed on the other end of pull rope holding rod 51, and the other end of pull rope 52 is wrapped in the periphery of the winding section 43 of rotating shaft roller 40 through the guiding of pull rope bullport 23 and leading block 53.When pull rope holding rod 51 is pinched hold time, pull rope holding rod 51 the other end rotate clockwise time, pull rope 52 is driven and draws, thus the rotation roller 40 being wound with the other end of pull rope 52 is driven and (i.e. a direction) rotation counterclockwise.Simultaneously, as described above, by the frictional force between the measure cover 1 of friction roller 42 and bottom, so that this measure cover 1 is to measure cover export department 31 Slideslip (left side of Fig. 2), it is ensured that only have this measure cover 1 and slip in measure cover export department 31.
Leading block 53 is arranged on the rotation rod receiving room 32 of measure cover alignment device 30, and makes the prolonging direction of pull rope 52 change, so that the other end of pull rope 52 is wrapped in the periphery of the winding section 43 of rotating shaft roller 40.Furthermore it is preferred that be configured in the way of being generally aligned in the same plane for pull rope holding rod 51, pull rope bullport 23, leading block 53 and winding section 43.Thereby, it is possible to make the tractive of pulling rope 52 become smooth and easy, thus the operation of operating unit 50 also is able to become smooth and easy.
Reset unit applies to make rotation roller 40 power that (i.e. other direction) rotates clockwise to rotation roller 40 all the time, under the state (namely the state being terminated being held for pinching of pull rope holding rod 51) that the operation of operating unit 50 terminates, rotate roller 40 rotated clockwise by the force of this reset unit, thus drive constitute operating unit 50 pulling rope 52, and make the pull rope holding rod 51 of composition operating unit 50 restPose, namely the other end of pull rope holding rod 51 turn to the position abutted with limiting section 11.
It addition, as described above, reset unit is wind spring 60, and is arranged in the wind spring incorporating section 37 rotating rod receiving room 32.This wind spring 60 one end snaps in the draw-in groove rotating rod receiving room 32 of measure cover alignment device 30 and is fixed, and the other end snaps in the draw-in groove of the rotating shaft 41 rotating roller 40 and fixed.
In addition, measure cover 1 according to different-thickness, there is the probability needing to set up pad between measure galenic 20 and measure cover alignment device 30 and adjust distance between the two such that it is able to guarantee that operation only one of which measure cover 1 slips in the measure cover export department 31 of measure cover alignment device 30 each time.
Measure cover erector 100 involved by embodiments of the present invention disclosed above, disposable be filled with multiple measure cover after, being able to ensure that by once-through operation is arranged in an installing hole by a measure cover, and by the force effect of reset unit, so that the pull rope holding rod constituting operating unit automatically resets.Thereby, it is possible to continuously each measure cover is arranged in each installing hole, thus when installing a large amount of measure cover, the operation of whole installation process becomes convenient, and labor intensity diminishes, and work efficiency improves.

Claims (6)

1. a measure cover erector, for measure cover is arranged in installing hole, it is characterised in that including:
Measure galenic, it has the measure cover entrance for filling described measure cover, and for the multiple described measure cover of stacking is received;
Measure cover alignment device, it is arranged on the lower end of described measure galenic, and includes measure cover export department, is used for making described measure cover be arranged in described installing hole when described measure cover export department is directed at described installing hole;
Rotating roller, it is used for making described measure cover slide under static state for the described measure cover received in described measure galenic is supported when rotating to a direction;
Operating unit, it is driven described rotation roller to rotate to a direction by operating, so that the described measure cover abutted with described rotation roller slips in described measure cover export department along the direction intersected with described stacked direction;
Reset unit, it applies the power making described rotation roller rotate to other direction to described rotation roller, described rotation roller is rotated to other direction by the force of described reset unit and resets, thus driving described operating unit, and makes described operating unit restPose.
2. measure cover erector as claimed in claim 1, it is characterised in that
Described rotation roller is arranged in described measure cover alignment device, and its periphery is circular.
3. measure cover erector as claimed in claim 1, it is characterised in that
Described operating unit includes:
Pull rope holding rod, its one end is hinged with described measure cover erector;
Pull rope, its one end is connected with the other end of described pull rope holding rod, and the other end is wrapped in the periphery of described rotation roller;
When described pull rope holding rod is pinched hold time, described pull rope is driven and draws, thus the described rotation roller being wound with the other end of described pull rope is driven and rotates.
4. measure cover erector as claimed in claim 3, it is characterised in that
Described operating unit also includes:
Leading block, it is arranged in described measure cover alignment device, and makes the prolonging direction of described pull rope change, so that the other end of described pull rope is wrapped in the periphery of described rotation roller.
5. the measure cover erector as described in claim 3 or 4, it is characterised in that
Described rotation roller has the winding section to internal side diameter depression, is wound with the other end of described pull rope in the periphery of described winding section.
6. measure cover erector as claimed in claim 1, it is characterised in that
Described reset unit is wind spring,
One end of described wind spring is fixed in described measure cover alignment device, and the other end is fixed on described rotation roller.
CN201610240979.9A 2016-04-15 2016-04-15 Measure cover erector Active CN105729371B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610240979.9A CN105729371B (en) 2016-04-15 2016-04-15 Measure cover erector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610240979.9A CN105729371B (en) 2016-04-15 2016-04-15 Measure cover erector

Publications (2)

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CN105729371A true CN105729371A (en) 2016-07-06
CN105729371B CN105729371B (en) 2017-12-08

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5701649A (en) * 1996-04-16 1997-12-30 Hydra-Tech International Corporation Coupled draft key puller
US5931231A (en) * 1996-06-27 1999-08-03 Bucyrus International, Inc. Blast hole drill pipe gripping mechanism
CN2411086Y (en) * 2000-02-25 2000-12-20 赖锦溢 Morse taper-shank handle separator
CN2411874Y (en) * 2000-01-05 2000-12-27 胜利石油管理局孤东采油厂 Crank pin puller of beam unit
CN204489620U (en) * 2015-02-09 2015-07-22 杨辉亮 A kind of New semi automatic blood sugar test paper box
CN205497329U (en) * 2016-04-15 2016-08-24 国网冀北电力有限公司秦皇岛供电公司 Measure lid erector

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5701649A (en) * 1996-04-16 1997-12-30 Hydra-Tech International Corporation Coupled draft key puller
US5931231A (en) * 1996-06-27 1999-08-03 Bucyrus International, Inc. Blast hole drill pipe gripping mechanism
CN2411874Y (en) * 2000-01-05 2000-12-27 胜利石油管理局孤东采油厂 Crank pin puller of beam unit
CN2411086Y (en) * 2000-02-25 2000-12-20 赖锦溢 Morse taper-shank handle separator
CN204489620U (en) * 2015-02-09 2015-07-22 杨辉亮 A kind of New semi automatic blood sugar test paper box
CN205497329U (en) * 2016-04-15 2016-08-24 国网冀北电力有限公司秦皇岛供电公司 Measure lid erector

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