CN209889659U - Synchronous belt drive type lifting carrying device - Google Patents

Synchronous belt drive type lifting carrying device Download PDF

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Publication number
CN209889659U
CN209889659U CN201920271584.4U CN201920271584U CN209889659U CN 209889659 U CN209889659 U CN 209889659U CN 201920271584 U CN201920271584 U CN 201920271584U CN 209889659 U CN209889659 U CN 209889659U
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CN
China
Prior art keywords
toothed belt
assembly
wheel
conveying
toothed
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Expired - Fee Related
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CN201920271584.4U
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Chinese (zh)
Inventor
陆洋
姜峰
朱劭鼎
王海文
磨璐娟
梁钟方
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Liuzhou Railway Vocational Technical College
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Liuzhou Railway Vocational Technical College
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Priority to CN201920271584.4U priority Critical patent/CN209889659U/en
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Publication of CN209889659U publication Critical patent/CN209889659U/en
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Abstract

A synchronous belt drive type lifting carrying device comprises a bracket assembly, a conveying hopper mechanism assembly and a ground transfer trolley assembly; the conveying bucket mechanism assembly is installed on a guide groove and a toothed belt of the support assembly through the roller and the toothed belt connecting block, the ground transfer trolley assembly is placed on a guide rail of the support assembly, and the support assembly is installed on fixed dams, matrixes, installing seats and other fixtures through bolt connection. The utility model discloses a hold-in range drive formula lift handling device is reliable and stable in the transportation, and transport speed is fast, efficient from top to bottom, and the handling rises the in-process and can not the left and right rocking easily control, and can not produce impact damage to buildings etc. and the cost is low, and volume and occupation space are little, are suitable for long-time using widely.

Description

Synchronous belt drive type lifting carrying device
Technical Field
The utility model relates to a transport the mechanical equipment field, concretely relates to hold-in range drive formula lift handling device who needs the local use of long-term transportation object such as dam, house, massif.
Background
The existing technology and many up-and-down transporting devices seen in the market, which are used in dams, houses, mountains and other places needing long-term transportation of objects, are generally formed by a structure that a support body and a steel cable are added, the objects needing to be transported are loaded in a transporting bucket and then pulled by the steel cable to move up and down to transport the objects, such as common cranes and tower cranes on roofs, and the like, the devices are high in manufacturing cost, large in size and occupied space, high in application and lease cost and not suitable for long-term application, are not targeted transporting devices, are not high in applicability, and are easy to control and even damage buildings and the like due to impact when the devices are hoisted and lifted by using the steel cable. Is not suitable for long-term application.
Disclosure of Invention
The utility model aims at providing a synchronous belt drive type lifting and carrying device which is suitable for the up-and-down carrying and transporting of the places such as dams, houses and mountains needing to transport objects for a long time, has stable and reliable transportation process, fast up-and-down carrying speed and high efficiency, can not shake left and right in the lifting and lifting process, is easy to control, can not impact and damage buildings and the like, has low manufacturing cost, small volume and occupied space and is suitable for long-time popularization and use; to solve the above problems of the prior art.
The technical scheme for solving the problems is as follows: a synchronous belt drive type lifting carrying device comprises a bracket assembly, a conveying hopper mechanism assembly and a ground transfer trolley assembly;
the bracket assembly comprises two side brackets, a toothed wheel connecting shaft mechanism, a motor mechanism, a toothed belt, a base and a toothed belt connecting block I;
the two side brackets are symmetrically arranged, each side bracket comprises a horizontal section, an arc section and a vertical section, and the horizontal section and the vertical section are integrally connected through the arc section; the middle parts of the side brackets are provided with guide grooves, the lower ends of the vertical sections of the two side brackets are welded and connected through a bottom plate, and the upper ends of the vertical sections of the two side brackets are welded with brackets; the horizontal section of the side bracket is also welded with a bracket, and the arc section of the side bracket is provided with a threaded hole for fixing the motor mechanism; the side bracket is arranged on the base through a bracket;
the two tooth wheel connecting shaft mechanisms are arranged between the two side brackets and are respectively close to two ends of the guide groove; the toothed wheel connecting shaft mechanism comprises a circular shaft and a toothed belt wheel I; the toothed belt wheel I is connected with the round shaft through a bearing, and the end surfaces of the two sides of the toothed belt wheel I are fixed in the middle of the toothed wheel connecting shaft mechanism through nuts; two ends of the round shaft are fixed on the side brackets at two sides through nuts;
the motor mechanism comprises two motors and a rack bar, the two motors are symmetrically arranged on the side bracket, and output shafts of the two motors are respectively and fixedly connected with two ends of the rack bar; the middle part of the rack rod is provided with a toothed belt wheel II, and the toothed belt wheel II is fixedly connected with the rack rod;
the toothed belts are connected end to end and are arranged on two toothed belt wheels I of the toothed wheel connecting shaft mechanism and a toothed belt wheel II of the motor mechanism;
the toothed belt connecting block I is spanned and sleeved on one side of the toothed belt;
the middle part of the base is provided with a notch for avoiding the movement space of the toothed belt, a rail is arranged on the horizontal plane of the base and is positioned between the two side brackets;
the conveying hopper mechanism assembly comprises two conveying hoppers, a conveying hopper connecting frame, a roller connecting frame and a toothed belt connecting block II;
the two conveying hoppers are symmetrically arranged, each conveying hopper corresponds to one conveying hopper connecting frame, and the conveying hoppers are arranged on the conveying hopper connecting frames through connecting pins;
the roller connecting frame comprises a cross beam, bent pieces are symmetrically arranged at two ends of the cross beam, each bent piece comprises an intermediate piece, and an upper bent piece and a lower bent piece which are bent upwards and downwards are respectively arranged at two horizontal ends of the intermediate piece; the roller wheels are arranged on the upper bending pieces, and one upper bending piece is arranged on each upper bending piece; the conveying hopper connecting frames are symmetrically arranged on the cross beam; the toothed belt connecting block II is arranged on the cross beam; in an assembly state, the roller is arranged in a guide groove of the bracket assembly, the toothed belt connecting block II and the toothed belt connecting block I are matched with each other to clamp and fix the toothed belt, so that the toothed belt connecting block II and the toothed belt connecting block I are fixed on the toothed belt, the conveying hopper mechanism assembly is fixed on the toothed belt, and the conveying hopper is positioned on two sides of the toothed belt, so that the conveying hopper mechanism assembly is dragged by the toothed belt;
the ground transfer trolley assembly comprises a transfer trolley and a guide rail wheel, and the guide rail wheel is arranged below the transfer trolley; in the assembled state, the rail wheel rests on the rail of the base.
The further technical scheme is as follows: the support assembly further comprises two manual pedal platforms which are respectively welded on the side edges of the horizontal sections of the two side supports.
The further technical scheme is as follows: one end of the support is welded on the side support, the other end of the support is of a flat plate structure with a mounting hole, and the support is mounted on the base through the matching of the bolts and the mounting hole.
The further technical scheme is as follows: 4 pieces of the rail cloth are arranged; the transfer trolley is of a trough-shaped bucket structure, a rectangular block is welded at the bottom of the transfer trolley, and two guide rail wheels are arranged on two sides of the rectangular block respectively.
Due to the adoption of the technical scheme, the utility model relates to a hold-in range drive formula lift handling device has following characteristics and beneficial effect:
the carrying device of the utility model adopts a special design structure and scheme, is suitable for carrying and transporting the objects up and down in places such as dams, houses and mountains which need to transport objects for a long time, and the bracket assembly 1 and the transporting bucket mechanism assembly 2 adopt a welding structure as a frame and mainly comprise a welding structure and a bolt connecting structure, and has simple structure, convenient manufacture and low use cost; and use the transmission of bisynchronous rack pole (namely the both ends of rack pole are connected with the motor respectively, and two motors drive rack pole synchronous rotation), whole handling device structure bilateral symmetry can guarantee its transportation stable and reliable, and transport speed is fast, efficient from top to bottom, can not rock and easily use the accurate position control of motor in the handling in-process that rises, and can not produce impact damage to buildings etc. and the cost is low, and volume and occupation space are little, are suitable for using widely for a long time.
The technical features of a synchronous belt driven type lifting and carrying device according to the present invention will be further described with reference to the accompanying drawings and examples.
Drawings
Fig. 1 is a schematic structural view of a synchronous belt driven type lifting and carrying device of the present invention;
FIG. 2 is a schematic view of the bracket assembly of the present invention;
fig. 3 is a schematic structural view of the transportation hopper mechanism assembly of the present invention;
fig. 4 is a schematic structural view of the ground transfer trolley assembly of the present invention.
In the figure:
1-bracket assembly, 11-side bracket, 111-guide groove, 12-cog connecting shaft mechanism, 13-bracket, 14-motor mechanism, 141-rack bar, 15, 18-manual pedal platform, 16-cog belt, 17 rail, 19-base, 191-cog belt connecting block I;
2-a conveying bucket mechanism assembly, 21-a conveying bucket, 211-a connecting pin, 22-a conveying bucket connecting frame, 23-a roller, 24-a roller connecting frame, 241-an intermediate piece, 242-an upper bending piece, 243-a lower bending piece and 25-a toothed belt connecting block II;
3-a ground transfer trolley assembly, 31-a rectangular block, 32-a guide rail wheel and 33-a transfer trolley.
Detailed Description
A synchronous belt drive type lifting and carrying device is shown in figure 1 and comprises a bracket assembly 1, a transportation bucket mechanism assembly 2 and a ground transfer trolley assembly 3;
as shown in fig. 2, the support assembly 1 comprises two side supports 11, a toothed wheel connecting shaft mechanism 12, a motor mechanism 14, two manual stepping platforms 15 and 18, a toothed belt 16, a base 19 and a toothed belt connecting block i 191;
the two side brackets 11 are symmetrically arranged left and right, the side brackets are in a curved arc structure, each side bracket 11 comprises a horizontal section, an arc section and a vertical section, and the horizontal section and the vertical section are integrally connected through the arc sections; the middle part of the side bracket 11 is provided with a guide groove 111, the guide groove is used for guiding movement of the roller and normal positioning of the groove, and the guide groove is arranged to play a role in reducing weight of the bracket. The lower ends of the vertical sections of the two side brackets 11 are welded and connected through a bottom plate, and the upper ends of the vertical sections of the two side brackets 11 are welded with brackets 13 for fixing the brackets; and a bracket 13 is also welded on the horizontal section of the side bracket 11 for realizing the fixation of the side bracket. A threaded hole for fixing the motor mechanism 14 is formed in the arc section of the side bracket 11; the side bracket 11 is arranged on the base 19 through a bracket 13; the support 13 is a connecting support, one end of the support is welded on the side support 11, the other end of the support is of a flat plate structure with a mounting hole, and the support 13 is mounted on the base 19 through matching of bolts and the mounting hole.
The two toothed wheel connecting shaft mechanisms 12 are arranged between the two side brackets 11 and are respectively close to two ends of the guide groove 111; the toothed wheel connecting shaft mechanism 12 comprises a circular shaft and a toothed belt wheel I; the toothed belt wheel I is connected with the round shaft through a bearing, and the end surfaces of the two sides of the toothed belt wheel I are fixed in the middle of the toothed wheel connecting shaft mechanism 12 through nuts; the two ends of the circular shaft are fixed on the side brackets 11 at the two sides through nuts, so that the left and right side brackets 11 are connected to form a frame structure with enough rigidity and strength.
The motor mechanism 14 comprises two motors and a rack rod 141, the two motors are symmetrically arranged on the side bracket 11 in a left-right mode through bolts, output shafts of the two motors are fixedly connected with two ends of the rack rod respectively, and therefore the rack rod can be driven by the left motor and the right motor to move synchronously; the middle part of the rack rod 141 is provided with a toothed belt wheel II which is fixedly connected with the rack rod;
the manual treading platforms 15, 18 are welded on the side edges of the horizontal sections of the two side brackets 11 respectively, and are used for allowing a person to stand on the platforms to check the conditions of the transport bucket and the system and manually unload goods in the transport bucket.
The toothed belt 16 is connected end to end and is arranged on three toothed belt wheels, and the three toothed belt wheels are respectively two toothed belt wheels I of the toothed wheel connecting shaft mechanism 12 and a toothed belt wheel II of the motor mechanism 14; the toothed belt 16 is used for smooth transmission, low noise and low cost. The rack bar 141 of the motor mechanism 14 is driven by the two motors in the same direction, and the rack bar 141 drives the toothed belt pulley ii to rotate, thereby driving the toothed belt 16 to move up or down.
The toothed belt connecting block I191 can be an aluminum alloy connecting block, the aluminum alloy connecting block is sleeved on one side of the toothed belt 16 in a spanning mode, and the aluminum alloy connecting block is fixed at the upper end connecting position of the conveying hopper mechanism assembly 2 through a bolt, so that the conveying hopper mechanism assembly 2 is driven to move up and down.
The base 19 can be a dam, a base body, a mounting seat and other fixed objects, such as a cement wall, the cement wall can also be a concrete structure and is used for fixing the bracket assembly 1 of the whole transportation system, and the middle part of the base 19 is provided with a notch for avoiding a tooth-shaped belt moving space. The base 19 is provided with rails 17, for example 4 rails 17, for the carriage to rest on in the horizontal plane. The rail is located between the two side brackets 11. As mentioned above, the bracket assembly 1 mainly comprises a welding structure and a bolt connecting structure, and has the advantages of simple structure, convenient manufacture and low use cost.
As shown in fig. 3, the transportation bucket mechanism assembly 2 includes two transportation buckets 21, a transportation bucket connecting frame 22, rollers 23, a roller connecting frame 24, and a toothed belt connecting block ii 25;
two transport fill 21 bilateral symmetry arrange, offer the thin hole in the transport fill, can arrange the ponding of fighting the memory completely, prevent to fight to rust and reduce unnecessary weight, offer some holes simultaneously and also can play the effect of weight reduction. Each transport bucket 21 corresponds to one transport bucket connecting frame 22, and the transport buckets 21 are arranged on the transport bucket connecting frames 22 through connecting pins 211; the conveying bucket connecting frame 22 comprises a transverse plate and cantilever arms welded on two sides of the transverse plate, the cantilever arms are in an ┎ shape, and the lower ends of the cantilever arms are used for mounting the conveying bucket 21.
The roller connecting frame 24 comprises a cross beam, bent pieces are symmetrically arranged at two ends of the cross beam, each bent piece comprises a middle piece 241, and an upper bent piece 242 bent upwards and a lower bent piece 243 bent downwards are respectively arranged at two horizontal ends of the middle piece 241; each part is composed of a welding structure. And the side edge of the upper bending piece 242 is in threaded connection with a roller connecting shaft. The idler wheel 23 is arranged on an idler wheel connecting shaft on the upper bending piece through a bearing, and one upper bending piece 242 and one lower bending piece 242 are respectively arranged on the upper side and the lower side. The transportation bucket connecting frames 22 are symmetrically arranged on the cross beam through bolts; the toothed belt connecting block II 25 is fixed on the cross beam; in an assembly state, the roller 23 is arranged in the guide groove 111 of the bracket assembly 1, the toothed belt connecting block II 25 and the toothed belt connecting block I191 are matched with each other to clamp and fix the toothed belt, so that the toothed belt connecting block II 25 and the toothed belt connecting block I191 are fixed on the toothed belt, the conveying hopper mechanism assembly 2 is fixed on the toothed belt, and the conveying hoppers 21 are positioned on two sides of the toothed belt 16; namely, the toothed belt connecting block II 25 and the toothed belt connecting block I191 are respectively positioned in front of and behind the toothed belt 16, and the toothed belt connecting block II 25 and the toothed belt connecting block I191 are connected through bolts, so that the toothed belt is pressed by the toothed belt connecting block II 25 and the toothed belt connecting block I191 and is fixedly connected with the toothed belt, and the conveying hopper mechanism assembly 2 can be fixed on the toothed belt. The conveying hopper mechanism assembly 2 dragged by the toothed belt is realized; the hopper mechanism assembly 2 is usually fixed to a toothed belt between two toothed wheel connecting shaft mechanisms 12. As described above, the transportation hopper mechanism assembly 2 is mainly composed of a welding structure and a bolt connection structure, and has a simple structure, convenient manufacture and low use cost.
As shown in fig. 4, the ground transfer car assembly 3 includes a transfer car 33 and a guide wheel 32. The transfer trolley 33 is of a trough-shaped bucket structure, a rectangular block 31 is welded at the middle part of the bottom of the transfer trolley 33, and two guide rail wheels 32 are arranged on two sides of the rectangular block 31 respectively. The rail wheels 32 move on the rails of the base 19. The guide rail wheels 32 are used for supporting the whole transfer trolley and goods on the transfer trolley to act on the guide rails of the component base 19, and the transfer trolley structure adopting the special design is convenient and quick to unload the goods.
The utility model relates to a hold-in range drive formula lift handling device's mounting method:
when assembling the bracket assembly 1, firstly, the left and right side brackets 11 are welded through the bottom plate and then connected together, meanwhile, the manual treading platforms 15, 18 and the bracket 13 are welded on the left and right side brackets 11, then the toothed belt 16 is sleeved and installed in the tooth grooves of the toothed belt wheels of the toothed wheel connecting shaft mechanism 12 and the motor mechanism 14, finally, the toothed wheel connecting shaft mechanism 12 and the motor mechanism 14 are installed and fixed on the side brackets 11 through bolts, and finally, the assembled bracket assembly 1 is installed on the base 19 through bolts.
When assembling the transportation bucket mechanism assembly 2, the transportation bucket 21 is installed and connected on the transportation bucket connecting frame 22 through the positioning pin 211, then the transportation bucket connecting frame 22 is installed and fixed on the roller connecting frame 24 through the bolt, and finally the roller 23 is pressed and sleeved on the bearing on the roller connecting shaft on the upper bending piece of the roller connecting frame 24, namely the whole assembly is completed.
When the ground transfer trolley assembly 3 is assembled, the rectangular block 31 is welded at the middle part of the transfer trolley 33, and then the guide rail wheel shaft of the guide rail wheel 32 penetrates through the rectangular block 31 and then the wheel is pressed on the guide rail wheel shaft, thus completing the assembly.
And finally, assembling a large assembly, wherein the conveying hopper mechanism assembly 2 is arranged on the guide groove 111 and the toothed belt 16 of the bracket assembly 1 (for example, the conveying hopper mechanism assembly is arranged at the tail end of the bracket assembly 1 through a bolt) through the roller 23 and two toothed belt connecting blocks (a toothed belt connecting block I191 and a toothed belt connecting block II 25), the bracket assembly 1 is arranged on fixed dams, matrixes, mounting seats and other fixtures through a bolt, and meanwhile, the ground transfer trolley assembly 3 is arranged on a guide rail.
The principle of the dismounting device is that the dismounting is carried out after the mounting.
When the transport bucket mechanism assembly 2 works, the transport bucket mechanism assembly 2 moves downwards to a set position under the driving of the toothed belt 16 of the support assembly 1, the motor keeps a power-off braking state, the position of the transport bucket mechanism assembly 2 is guaranteed to be fixed, the specific position can be set through the positions of 2 motors of the support assembly 1, then an object to be transported is placed in the transport bucket of the transport bucket mechanism assembly 2, the motor of the support assembly 1 moves upwards to the position set at the upper limit after the object is placed, the motor keeps the power-off braking state, the position of the transport bucket mechanism assembly 2 is guaranteed to be fixed, and after the object is unloaded, the motor of the support assembly 1 moves reversely to move the transport bucket mechanism assembly 2 to the initial position, so that the second transport cycle is started.
The utility model discloses the part that does not relate to all is the same with prior art or can adopt prior art to realize. The above description is for further details of the present invention with reference to specific preferred embodiments, and it should not be understood that the embodiments of the present invention are limited to the description of the above embodiments, and it will be apparent to those skilled in the art that the present invention can be implemented in a plurality of ways without departing from the spirit of the present invention, and all of them should be considered as belonging to the scope of the present invention as defined by the appended claims.

Claims (5)

1. The utility model provides a hold-in range drive formula lift handling device which characterized in that: comprises a bracket assembly (1), a transportation bucket mechanism assembly (2) and a ground transfer trolley assembly (3);
the support assembly (1) comprises two side supports (11), a toothed wheel connecting shaft mechanism (12), a motor mechanism (14), a toothed belt (16), a base (19) and a toothed belt connecting block I (191);
the two side brackets (11) are symmetrically arranged, each side bracket (11) comprises a horizontal section, an arc section and a vertical section, and the horizontal section and the vertical section are integrally connected through the arc sections; the middle part of each side bracket (11) is provided with a guide groove (111), the lower ends of the vertical sections of the two side brackets (11) are connected through welding of a bottom plate, and the upper ends of the vertical sections of the two side brackets (11) are welded with brackets (13); a bracket (13) is also welded on the horizontal section of the side bracket (11), and a threaded hole for fixing the motor mechanism is formed in the arc section of the side bracket (11); the side bracket (11) is arranged on the base (19) through a bracket (13);
the two toothed wheel connecting shaft mechanisms (12) are arranged between the two side brackets (11) and are respectively close to two ends of the guide groove (111); the toothed wheel connecting shaft mechanism (12) comprises a circular shaft and a toothed belt wheel I; the toothed belt wheel I is connected with the round shaft through a bearing, and the end surfaces of the two sides of the toothed belt wheel I are fixed in the middle of a toothed wheel connecting shaft mechanism (12) through nuts; two ends of the round shaft are fixed on the side brackets (11) at two sides through nuts;
the motor mechanism (14) comprises two motors and a rack bar (141), the two motors are symmetrically arranged on the side bracket (11), and output shafts of the two motors are respectively fixedly connected with two ends of the rack bar; the middle part of the rack rod is provided with a toothed belt wheel II, and the toothed belt wheel II is fixedly connected with the rack rod;
the toothed belt (16) is connected end to end and is arranged on two toothed belt wheels I of the toothed wheel connecting shaft mechanism (12) and a toothed belt wheel II of the motor mechanism (14);
the toothed belt connecting block I (191) is sleeved on one side of the toothed belt (16) in a spanning manner;
a notch for avoiding a tooth-shaped belt movement space is formed in the middle of the base (19), a rail (17) is arranged on the horizontal plane of the base (19), and the rail is positioned between the two side brackets (11);
the conveying bucket mechanism assembly (2) comprises two conveying buckets (21), a conveying bucket connecting frame (22), a roller (23), a roller connecting frame (24) and a toothed belt connecting block II (25);
the two conveying hoppers (21) are symmetrically arranged, each conveying hopper (21) corresponds to one conveying hopper connecting frame (22), and the conveying hoppers (21) are arranged on the conveying hopper connecting frames (22) through connecting pins (211);
the roller connecting frame (24) comprises a cross beam, bent pieces are symmetrically arranged at two ends of the cross beam, each bent piece comprises an intermediate piece, and an upper bent piece bent upwards and a lower bent piece bent downwards are respectively arranged at two horizontal ends of the intermediate piece; the idler wheels (23) are arranged on the upper bending pieces, and one upper bending piece is arranged on each upper bending piece; the conveying bucket connecting frames (22) are symmetrically arranged on the cross beam; the toothed belt connecting block II (25) is arranged on the cross beam; in an assembly state, the roller (23) is installed in a guide groove (111) of the support assembly (1), the toothed belt connecting block II (25) and the toothed belt connecting block I (191) are matched with each other to clamp and fix the toothed belt, so that the toothed belt connecting block II (25) and the toothed belt connecting block I (191) are fixed on the toothed belt, the conveying hopper mechanism assembly (2) is fixed on the toothed belt, the conveying hoppers (21) are located on two sides of the toothed belt (16), and the conveying hopper mechanism assembly (2) is dragged by the toothed belt;
the ground transfer trolley assembly (3) comprises a transfer trolley (33) and a guide rail wheel (32), and the guide rail wheel (32) is arranged below the transfer trolley (33); in the assembled state, the rail wheel (32) rests on the rail (17) of the base (19).
2. The synchronous belt driven type lifting and carrying device as claimed in claim 1, wherein: the support assembly (1) further comprises two manual pedal platforms (15, 18), and the manual pedal platforms are respectively welded on the side edges of the horizontal sections of the two side supports (11).
3. The synchronous belt driven type lifting and carrying device as claimed in claim 1, wherein: the conveying hopper (21) is internally provided with a pore.
4. The synchronous belt driven type lifting and carrying device as claimed in claim 1, wherein: one end of the support (13) is welded on the side support (11), the other end of the support is of a flat plate structure with a mounting hole, and the support (13) is mounted on the base (19) through the matching of bolts and the mounting hole.
5. The synchronous belt driven type lifting and carrying device as claimed in claim 1, wherein: 4 pieces of the rail cloth are arranged; the transfer trolley (33) is of a groove-shaped bucket structure, a rectangular block (31) is welded at the bottom of the transfer trolley (33), and two guide rail wheels (32) are arranged on two sides of the rectangular block (31) respectively.
CN201920271584.4U 2019-03-04 2019-03-04 Synchronous belt drive type lifting carrying device Expired - Fee Related CN209889659U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920271584.4U CN209889659U (en) 2019-03-04 2019-03-04 Synchronous belt drive type lifting carrying device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920271584.4U CN209889659U (en) 2019-03-04 2019-03-04 Synchronous belt drive type lifting carrying device

Publications (1)

Publication Number Publication Date
CN209889659U true CN209889659U (en) 2020-01-03

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Application Number Title Priority Date Filing Date
CN201920271584.4U Expired - Fee Related CN209889659U (en) 2019-03-04 2019-03-04 Synchronous belt drive type lifting carrying device

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Country Link
CN (1) CN209889659U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109878991A (en) * 2019-03-04 2019-06-14 柳州铁道职业技术学院 A kind of synchronous belt drive-type lift transport device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109878991A (en) * 2019-03-04 2019-06-14 柳州铁道职业技术学院 A kind of synchronous belt drive-type lift transport device
CN109878991B (en) * 2019-03-04 2024-03-19 柳州铁道职业技术学院 Synchronous belt driving type lifting carrying device

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