SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at providing a tubular pile mould inner wall belt cleaning device to solve the problem that cleaning efficiency is low when wasing tubular pile mould inner wall.
Based on the above-mentioned purpose, the utility model provides a tubular pile mould inner wall belt cleaning device, the device includes:
a fixed base; a first support frame and a second support frame are respectively and fixedly arranged at two ends of the upper surface of the fixed base, and the length directions of the first support frame and the second support frame are parallel to the width direction of the fixed base; the first support frame and the second support frame are used for supporting a pipe pile die to be cleaned;
a first slide rail and a second slide rail are arranged on the upper surface of the fixed base in parallel along the length direction of the fixed base, and the first slide rail and the second slide rail are respectively positioned on two sides of the fixed base;
a supporting cross beam is arranged above the fixed base, and the lower surfaces of two ends of the supporting cross beam are fixedly connected with a first supporting rod and a second supporting rod;
the bottom of the first support rod is provided with a first sliding part, the bottom of the second support rod is provided with a second sliding part, the first sliding part is positioned in the first slide rail, and the second sliding part is positioned in the second slide rail and is respectively used for driving the support cross beam to move along the slide rail;
the lower surface of the supporting beam is provided with a high-pressure nozzle, the high-pressure nozzle is connected with an external water supply mechanism through a hose, and the high-pressure nozzle is used for performing high-pressure washing on the inner wall of the pipe pile die.
Preferably, a rotating part is arranged on the lower surface of the supporting cross beam, the high-pressure sprayer is connected with the supporting cross beam through the rotating part, the rotating part is used for driving the high-pressure sprayer to periodically rotate relative to the supporting cross beam, and the rotating angle is smaller than 180 degrees.
Preferably, the rotating member is used for driving the high-pressure nozzle to periodically rotate relative to the supporting beam, and the rotating member includes:
the rotating parts are used for respectively driving the high-pressure spray heads to rotate relative to the supporting cross beam by taking the width direction of the supporting cross beam as a rotating shaft;
and driving the high-pressure spray head to rotate relative to the supporting beam by taking the length direction of the supporting beam as a rotating shaft.
Preferably, the rotating member is located at a middle position of the lower surface of the supporting beam, and the rotating member includes: the first vertical plate and the second vertical plate are respectively and vertically and fixedly connected with the supporting cross beam;
the first vertical plate and the second vertical plate are relatively parallel and are respectively parallel to the width direction of the supporting beam;
an n-shaped groove is arranged between the first vertical plate and the second vertical plate, and the outer walls of two sides of the n-shaped groove are fixedly connected with the first rotating shaft and the second rotating shaft respectively;
one end of the first rotating shaft is connected with the outer side wall of the n-shaped groove, the other end of the first rotating shaft penetrates through the first vertical plate and then is connected with an output shaft of the first motor, and the first rotating shaft is connected with the first vertical plate through a bearing;
one end of the second rotating shaft is connected with the outer side wall of the n-shaped groove, and the other end of the second rotating shaft is connected with the second vertical plate through a bearing;
the first rotating shaft and the second rotating shaft are respectively parallel to the length direction of the supporting beam, and the first motor is used for driving the n-shaped groove to rotate by taking the length direction of the supporting beam as the rotating shaft;
a turntable is arranged in the n-shaped groove, a third rotating shaft is fixedly penetrated through the center of the turntable and is perpendicular to the plane of the turntable, and the third rotating shaft is parallel to the width direction of the supporting beam;
one end of the third rotating shaft is connected with one side of the n-shaped groove through a bearing, the other end of the third rotating shaft penetrates through the other side of the n-shaped groove and then is connected with an output shaft of the second motor, and the other end of the third rotating shaft is connected with the other side of the n-shaped groove through a bearing;
the high-pressure sprayer is located at the lower side edge of the rotary table, and the second motor is used for driving the rotary table to rotate by taking the width direction of the supporting beam as a rotating shaft.
Preferably, the high pressure nozzle is 3, and 3 high pressure nozzles evenly set up on the lower limb border position, and high pressure nozzle's nozzle is towards tubular pile mould inner wall for realize washing to tubular pile mould inner wall.
Preferably, the first sliding part has the same structure as the second sliding part, the first sliding part includes a roller, a third motor and a motor controller, and the third motor is connected with the motor controller and is used for driving the roller to move.
Preferably, the structure of the first support frame is the same as that of the second support frame, a semicircular groove is formed in the middle of the upper end of the first support frame, and the center of the semicircular groove is located at the midpoint of the upper surface of the first support frame.
Preferably, the inner diameter of the semicircular groove is equal to the outer diameter of the pipe pile die, and the lowest position where the high-pressure spray head is located is higher than the highest position where the first support frame is located.
Preferably, the structure of the first slide rail is the same as that of the second slide rail, and the length of the first slide rail is greater than that of the pipe pile die.
Preferably, the vertical distance between the inner side surface of the first support frame and the inner side surface of the second support frame is smaller than the length of the pipe pile die.
From the above, the utility model provides a tubular pile mould inner wall belt cleaning device, utilize first support frame and the second support frame that sets up on unable adjustment base to treat abluent tubular pile and support, along unable adjustment base length direction parallel arrangement first slide rail and second slide rail on unable adjustment base, set up supporting beam above unable adjustment base, first bracing piece and second bracing piece are connected respectively at the both ends of supporting beam, set up first slider and second slider respectively at the lower extreme of first bracing piece and second bracing piece, first slider is located first slide rail, the second slider is located the second slide rail, set up high pressure nozzle at the lower surface of supporting beam, utilize first slider and second slider to drive supporting beam along the slide rail removal, high pressure nozzle carries out high pressure washing to tubular pile mould inner wall simultaneously; the utility model provides a device overall structure is simple, need not manual operation, and the cleaning efficiency is high, can solve the problem that cleaning efficiency is low when wasing geminate transistors stake mould inner wall.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in detail with reference to the accompanying drawings.
It should be noted that unless otherwise defined, technical or scientific terms used in the embodiments of the present invention should have the ordinary meaning as understood by those having ordinary skill in the art to which the present disclosure belongs. The use of "first," "second," and similar terms in this disclosure is not intended to indicate any order, quantity, or importance, but rather is used to distinguish one element from another. The word "comprising" or "comprises", and the like, means that the element or item listed before the word covers the element or item listed after the word and its equivalents, but does not exclude other elements or items. The terms "connected" or "coupled" and the like are not restricted to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "upper", "lower", "left", "right", and the like are used merely to indicate relative positional relationships, and when the absolute position of the object being described is changed, the relative positional relationships may also be changed accordingly.
Fig. 1 is a front sectional view of a pipe pile mold inner wall cleaning device according to an embodiment of the present invention; fig. 2 is a top view of the inner wall cleaning device for a pipe pile mold according to an embodiment of the present invention; fig. 3 is a sectional view of a partial structure of a rotating member in the device for cleaning the inner wall of a tubular pile mold according to the embodiment of the present invention; the embodiment of the utility model provides a tubular pile mould inner wall belt cleaning device, the device includes:
a fixed base 1; a first support frame 2 and a second support frame 3 are respectively and fixedly arranged at two ends of the upper surface of the fixed base 1, and the length directions of the first support frame 2 and the second support frame 3 are parallel to the width direction of the fixed base 1; the first support frame 2 and the second support frame 3 are used for supporting a pipe pile die 21 to be cleaned.
The upper surface of unable adjustment base 1 sets up first slide rail 4 and second slide rail 5 along unable adjustment base 1 length direction parallel, first slide rail 4 and second slide rail 5 are located the both sides of unable adjustment base 1 respectively.
The supporting beam 6 is arranged above the fixed base 1, and the lower surfaces of the two ends of the supporting beam 6 are fixedly connected with a first supporting rod 7 and a second supporting rod 8.
The bottom of the first supporting rod 7 is provided with a first sliding part 9, the bottom of the second supporting rod 8 is provided with a second sliding part 10, the first sliding part 9 is located in the first sliding rail 4, and the second sliding part 10 is located in the second sliding rail 5 and is respectively used for driving the supporting beam 6 to move along the sliding rails.
The lower surface of the supporting beam 6 is provided with a high-pressure nozzle 11, the high-pressure nozzle 11 is connected with an external water supply mechanism through a hose, and the high-pressure nozzle 11 is used for performing high-pressure washing on the inner wall of the pipe pile mould 21.
The utility model provides a tubular pile mould inner wall cleaning device, which utilizes a first support frame 2 and a second support frame 3 arranged on a fixed base 1 to support the tubular pile to be cleaned, a first slide rail 4 and a second slide rail 5 are arranged on the fixed base 1 in parallel along the length direction of the fixed base 1, a supporting beam 6 is arranged above the fixed base 1, two ends of the supporting beam 6 are respectively connected with a first supporting rod 7 and a second supporting rod 8, a first sliding part 9 and a second sliding part 10 are respectively arranged at the lower ends of the first supporting rod 7 and the second supporting rod 8, the first sliding part 9 is positioned in the first slide rail 4, the second sliding part 10 is positioned in the second slide rail 5, arranging a high-pressure spray head 11 on the lower surface of the supporting beam 6, driving the supporting beam 6 to move along the slide rail by utilizing the first sliding part 9 and the second sliding part 10, and simultaneously carrying out high-pressure washing on the inner wall of the pipe pile mould 21 by using the high-pressure spray head 11; the utility model provides a device overall structure is simple, need not manual operation, and the cleaning efficiency is high, can solve the problem that cleaning efficiency is low when wasing to 21 inner walls of geminate transistors stake mould.
The embodiment of the utility model provides a tubular pile mould inner wall belt cleaning device is still provided, the device includes:
a fixed base 1; a first support frame 2 and a second support frame 3 are respectively and fixedly arranged at two ends of the upper surface of the fixed base 1, and the length directions of the first support frame 2 and the second support frame 3 are parallel to the width direction of the fixed base 1; the first support frame 2 and the second support frame 3 are used for supporting a pipe pile die 21 to be cleaned.
The upper surface of unable adjustment base 1 sets up first slide rail 4 and second slide rail 5 along unable adjustment base 1 length direction parallel, first slide rail 4 and second slide rail 5 are located the both sides of unable adjustment base 1 respectively.
The supporting beam 6 is arranged above the fixed base 1, and the lower surfaces of the two ends of the supporting beam 6 are fixedly connected with a first supporting rod 7 and a second supporting rod 8.
The bottom of the first supporting rod 7 is provided with a first sliding part 9, the bottom of the second supporting rod 8 is provided with a second sliding part 10, the first sliding part 9 is located in the first sliding rail 4, and the second sliding part 10 is located in the second sliding rail 5 and is respectively used for driving the supporting beam 6 to move along the sliding rails.
The lower surface of the supporting beam 6 is provided with a high-pressure nozzle 11, the high-pressure nozzle 11 is connected with an external water supply mechanism through a hose, and the high-pressure nozzle 11 is used for performing high-pressure washing on the inner wall of the pipe pile mould 21.
The lower surface of the supporting beam 6 is provided with a rotating part 12, the high-pressure sprayer 11 is connected with the supporting beam 6 by using the rotating part 12, the rotating part 12 is used for driving the high-pressure sprayer 11 to periodically rotate relative to the supporting beam 6, and the rotating angle is less than 180 degrees.
Wherein, the rotating member 12 is used for driving the relative supporting beam 6 of high pressure nozzle 11 to realize periodic rotation, and includes:
the rotating parts 12 are used for respectively driving the high-pressure spray heads 11 to rotate relative to the supporting cross beam 6 by taking the width direction of the supporting cross beam 6 as a rotating shaft; and driving the high-pressure spray head 11 to rotate relative to the supporting beam 6 by taking the length direction of the supporting beam 6 as a rotating shaft.
Wherein the rotating member 12 is located at a middle position of the lower surface of the supporting beam 6, and the rotating member 12 comprises: and the first vertical plate 13 and the second vertical plate 14 are respectively and vertically and fixedly connected with the supporting cross beam 6.
The first vertical plate 13 and the second vertical plate 14 are relatively parallel and are respectively parallel to the width direction of the supporting beam 6.
Set up II type groove 15 between first riser 13 and second riser 14, the both sides outer wall in II type groove 15 respectively with first pivot 16 and second pivot 17 fixed connection.
One end of the first rotating shaft 16 is connected with the outer side wall of the n-shaped groove 15, the other end of the first rotating shaft penetrates through the first vertical plate 13 and then is connected with an output shaft of the first motor 18, and the first rotating shaft 16 is connected with the first vertical plate 13 through a bearing.
One end of the second rotating shaft 17 is connected with the outer side wall of the n-shaped groove 15, and the other end of the second rotating shaft is connected with the second vertical plate 14 through a bearing; the upper end of the n-shaped groove 15 is not in contact with the supporting beam 6, and the n-shaped groove 15 is not in contact with the supporting beam 6 during the rotation process.
First pivot 16 and second pivot 17 are parallel with supporting beam 6 length direction respectively, first motor 18 is used for driving II type groove 15 and realizes using supporting beam 6 length direction as the rotation of pivot.
A turntable 19 is arranged in the n-shaped groove 15, a third rotating shaft 20 is fixedly penetrated through the center of the turntable 19, the third rotating shaft 20 is perpendicular to the plane where the turntable 19 is located, and the third rotating shaft 20 is parallel to the width direction of the supporting beam 6; the upper end of carousel 19 does not contact with II type groove 15, and carousel 19 rotation in-process does not contact with II type groove 15.
One end of the third rotating shaft 20 is connected with one side of the II-shaped groove 15 through a bearing, the other end of the third rotating shaft 20 penetrates through the other side of the II-shaped groove 15 and then is connected with an output shaft of the second motor, and the other end of the third rotating shaft 20 is connected with the other side of the II-shaped groove 15 through a bearing.
The high-pressure nozzle 11 is located at the lower side edge of the rotary table 19, and the second motor is used for driving the rotary table 19 to rotate by taking the width direction of the supporting beam 6 as a rotating shaft.
Wherein, high pressure nozzle 11 is 3, and 3 high pressure nozzle 11 evenly set up on the lower limb border position, and high pressure nozzle 11's nozzle is towards tubular pile mould 21 inner wall for realize washing to tubular pile mould 21 inner wall.
The structure of the first sliding part 9 is the same as that of the second sliding part 10, the first sliding part 9 includes a roller, a third motor and a motor controller, and the third motor is connected with the motor controller and used for driving the roller to move.
The structure of the first support frame 2 is the same as that of the second support frame 3, a semicircular groove is formed in the middle of the upper end of the first support frame 2, and the center of the semicircular groove is located at the middle point of the upper surface of the first support frame 2.
The inner diameter of the semicircular groove is equal to the outer diameter of the tubular pile die 21, and the lowest position of the high-pressure sprayer 11 is higher than the highest position of the first support frame 2.
The structure of the first slide rail 4 is the same as that of the second slide rail 5, and the length of the first slide rail 4 is greater than that of the pipe pile die 21.
Wherein, the vertical distance between the inner side surface of the first support frame 2 and the inner side surface of the second support frame 3 is less than the length of the pipe pile die 21.
The utility model provides a tubular pile mould inner wall cleaning device, which utilizes a first support frame 2 and a second support frame 3 arranged on a fixed base 1 to support the tubular pile to be cleaned, a first slide rail 4 and a second slide rail 5 are arranged on the fixed base 1 in parallel along the length direction of the fixed base 1, a supporting beam 6 is arranged above the fixed base 1, two ends of the supporting beam 6 are respectively connected with a first supporting rod 7 and a second supporting rod 8, a first sliding part 9 and a second sliding part 10 are respectively arranged at the lower ends of the first supporting rod 7 and the second supporting rod 8, the first sliding part 9 is positioned in the first slide rail 4, the second sliding part 10 is positioned in the second slide rail 5, arranging a high-pressure spray head 11 on the lower surface of the supporting beam 6, driving the supporting beam 6 to move along the slide rail by utilizing the first sliding part 9 and the second sliding part 10, and simultaneously carrying out high-pressure washing on the inner wall of the pipe pile mould 21 by using the high-pressure spray head 11; the utility model provides a device overall structure is simple, need not manual operation, and the cleaning efficiency is high, can solve the problem that cleaning efficiency is low when wasing to 21 inner walls of geminate transistors stake mould.
When the inner wall cleaning device for the tubular pile mould 21 provided by the utility model is used, the tubular pile mould 21 to be cleaned is firstly placed on the first support frame 2 and the second support frame 3, and the tubular pile mould 21 is generally semi-cylindrical, so that the inner wall to be cleaned faces upwards for cleaning; the length of the pipe pile die 21 is greater than the length between the first support frame 2 and the second support frame 3 so as to reasonably support the pipe pile die; in an initial state, the supporting cross beam 6 is positioned on the outer side of the first supporting frame 2 or the second supporting frame 3, the supporting cross beam 6 is positioned in the sliding rail after being connected with the sliding part by utilizing the supporting rods at two ends, and meanwhile, the length of the first sliding rail 4 is greater than that of the tubular pile die 21, so that the supporting cross beam 6 is prevented from being collided when the tubular pile die 21 is placed; after the tubular pile die 21 is placed, a worker can remotely or manually start the third motor to work so as to drive the supporting beam 6 to start to move along the sliding rail, the moving speed can be set according to the degree of cleaning of the inner wall of the tubular pile die 21, for example, if mortar on the inner wall is thick, the moving speed is slow so as to be sufficiently cleaned; when the third motor starts to drive the cross beam to move, a worker remotely controls or manually starts an external water supply mechanism to supply water to the high-pressure spray nozzle 11 through the hose, the length of the hose is larger than that of the tubular pile die 21, meanwhile, the tail end of the hose needs to be fixed, the high-pressure spray nozzle 11 is prevented from being driven to move in a mess mode, the high-pressure spray nozzle 11 faces the inner wall of the tubular pile die 21, the type of the high-pressure spray nozzle 11 can be selected according to requirements, and at the moment, the high-pressure spray nozzle 11 is driven by the third motor to perform high-pressure washing on the inner wall; after the washing is finished, the supporting beam 6 moves to the other opposite side position, and the high-pressure spray head 11 stops washing so as to facilitate the next round of work; for the convenience of the cleaning process and the improvement of the cleaning efficiency, the high-pressure spray nozzle 11 can be connected below the supporting beam 6 through the rotating part 12, and the rotation of the high-pressure spray nozzle 11 by taking the width direction of the supporting beam 6 as a rotating shaft and the length direction of the supporting beam 6 as a rotating shaft are realized by utilizing the rotating function of the supporting beam 6; in the initial position, the high-pressure nozzle 11 inclines towards the inner wall of the tubular pile die 21, namely, the high-pressure nozzle 11 washes forwards in the moving direction, the inclination angle can be adjusted according to workers, the inclination arrangement can facilitate the mortar to flow out along the inner wall of the tubular pile die 21 during washing, and meanwhile, in order to further improve the washing efficiency, in the washing process, the second motor in the rotating part 12 continuously works to drive the high-pressure nozzle 11 to rotate by taking the width direction of the supporting beam 6 as a rotating shaft, so that the high-range washing of the circumferential direction of the inner wall of the tubular pile die 21 is realized, and meanwhile, the arrangement of hoses needs to be reasonable, so that the hoses are prevented from being wound in; after one round of washing is finished, the high-pressure spray nozzle 11 faces away from the tubular pile mould 21, namely after the next round of washing is started, the high-pressure spray nozzle 11 can wash backwards according to the moving direction, and because the washing efficiency is low, the angle of the high-pressure spray nozzle 11 needs to be adjusted at the moment, the first motor 18 is started to work, and the high-pressure spray nozzle 11 is driven to rotate by taking the length direction of the supporting beam 6 as a rotating shaft; meanwhile, for the slow rotation process, the first motor 18 and the second motor are required to be provided with corresponding planetary reducers; after the rotation is completed, the first motor 18 stops working, the second motor and the third motor work, and the inner wall of the pipe pile die 21 is washed by rotation while the high-pressure nozzle 11 moves.
Those of ordinary skill in the art will understand that: the discussion of any embodiment above is meant to be exemplary only, and is not intended to intimate that the scope of the disclosure, including the claims, is limited to these examples; within the idea of the invention, also technical features in the above embodiments or in different embodiments can be combined, steps can be implemented in any order, and there are many other variations of the different aspects of the invention as described above, which are not provided in detail for the sake of brevity.
The present embodiments are intended to embrace all such alternatives, modifications and variances which fall within the broad scope of the appended claims. Therefore, any omission, modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included within the protection scope of the present invention.