CN216763535U - Hydraulic stacking equipment for building material production - Google Patents

Hydraulic stacking equipment for building material production Download PDF

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Publication number
CN216763535U
CN216763535U CN202220153688.7U CN202220153688U CN216763535U CN 216763535 U CN216763535 U CN 216763535U CN 202220153688 U CN202220153688 U CN 202220153688U CN 216763535 U CN216763535 U CN 216763535U
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China
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base
guide rail
guide
support frame
hydraulic
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CN202220153688.7U
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Chinese (zh)
Inventor
余金成
王江元
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Xiangyang Lingxiao Mould Co ltd
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Xiangyang Lingxiao Mould Co ltd
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Priority to CN202220153688.7U priority Critical patent/CN216763535U/en
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Abstract

The utility model discloses hydraulic stacking equipment for building material production, which comprises a support frame, a base and a conveying belt, wherein a turning plate is rotatably arranged on the support frame, a guide rail, a hydraulic cylinder and a push block are arranged on the support frame, one side of the push block adjacent to the turning plate is respectively provided with a sliding column and a guide groove, the hydraulic cylinder pushes the push block to slide on the guide rail, the sliding column moves in the vertical direction along the guide groove so as to drive the turning plate to rotate and vertically stack tiles conveyed onto the conveying belt on a storage rack, and the support frame is matched with a pressing device and a braking mechanism to realize pressing of the support frame and the tiles placed on the storage rack and automatic braking of the support frame.

Description

Hydraulic stacking equipment for building material production
Technical Field
The utility model relates to the technical field of stacking machines, in particular to hydraulic stacking equipment for building material production.
Background
The stacker crane is used for stacking the cartons loaded into containers on trays and pallets (wood and plastic) according to a certain arrangement, automatically stacking the cartons, stacking the cartons into multiple layers, and pushing the cartons out so as to be conveniently transported to a warehouse for storage by a forklift. The stacker crane is equipment for automatically stacking bags, cartons or other packaging materials conveyed by a conveyor into stacks according to the working mode of the client process requirement and conveying the stacked materials.
In the production process of building materials, a great number of products such as ceramic tiles, outer wall glass and the like are not suitable for stacking, so that the finished products are vertically placed on the storage rack by manpower, manpower is wasted, and the production efficiency is low.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide hydraulic stacking equipment for building material production, which aims to solve the problem that part of building material finished products proposed in the background technology need to be stacked manually and the production efficiency is low.
In order to achieve the purpose, the utility model provides the following technical scheme:
a hydraulic stacking device for building material production comprises a support frame, a base and a conveying belt, wherein the support frame is arranged on the base, the conveying belt is arranged on one side of the base, the support frame comprises two side plates which are arranged in parallel, support columns are fixedly connected between the two side plates, a turning plate is arranged on the support frame, a rotating shaft is arranged at one end of the turning plate, two ends of the rotating shaft are respectively and rotatably connected with the two side plates, a plurality of guide rail support columns are arranged on the side plate far away from the conveying belt, guide rails are arranged between the guide rail support columns, the guide rails are parallel to the side plates, a hydraulic cylinder is fixedly arranged on the guide rail support columns, a push block is fixedly arranged on a piston rod of the hydraulic cylinder and can freely slide on the guide rails, a guide groove is formed in one side of the push block adjacent to the turning plate, and extends in the vertical direction on the push block, and one side of the turning plate adjacent to the push block is provided with a sliding column, and the sliding column slides in the guide groove.
Furthermore, the base is provided with a limiting block and two sliding grooves, the side plate slides along the sliding grooves, the side plate is provided with a resisting device, the guide rail supporting column is provided with a braking mechanism, the resisting device comprises a base, a guide rod and a resisting spring, the base is fixedly arranged on the side plate, the guide rod is arranged along the length direction of the side plate, one end of the guide rod is fixedly connected with the base, the other end of the guide rod penetrates through the limiting block, and the resisting spring is arranged on the guide rod between the base and the limiting block.
Still further, the mechanism is moved back including the system and is moved back the base, the system moves back the spring and the system moves back the push rod, the base is fixed to be set up on keeping away from the guide rail support column of pneumatic cylinder, the system moves back the push rod and is parallel with the guide rail, the system moves back the push rod and slides and keep on it on moving back the base, the system moves back the spring and sets up on being close to the push rod of ejector pad one side, the one end and the push rod that the spring was moved back in the system are connected, and the other end moves back the pedestal connection with the system.
Furthermore, a vertical plate is arranged on one side of the turning plate adjacent to the push block.
Furthermore, the length of the side plate is larger than that of the sliding groove.
The utility model has the beneficial effects that:
the ceramic tile pushing device is simple in structure, convenient to maintain, effective in saving manpower and capable of improving production efficiency.
Drawings
Fig. 1 is a front isometric view of a hydraulic stacking apparatus for building material production in accordance with the present invention.
Fig. 2 is a rear isometric view of a hydraulic stacking apparatus for building material production in accordance with the present invention.
In the figure: the device comprises a turning plate 1, a rotating shaft 101, a sliding column 102, a vertical plate 103, a support frame 2, a guide rail support column 201, a guide rail 202, a hydraulic cylinder 203, a pushing block 204, a guide groove 205, a base 206, a guide rod 207, a pressing spring 208, a stopping base 209, a stopping spring 210, a stopping push rod 211, a side plate 212, a support column 213, a base 3, a sliding groove 301, a limit block 302 and a conveying belt 4.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Example 1
Referring to fig. 1 and 2, the present invention provides a technical solution: a hydraulic stacking device for building material production comprises a turning plate 1, a support frame 2, a base 3 and a conveying belt 4, wherein one end of the turning plate 1 is fixedly provided with a rotating shaft 101, the support frame 2 comprises two side plates 212 which are arranged in parallel, a support column 213 is fixedly arranged between the two side plates 212, two ends of the rotating shaft 101 are respectively rotatably connected with the two side plates 212, the base 3 comprises two sliding chutes 301, the two side plates 212 freely slide along the sliding chutes 301, the conveying belt 4 is arranged on one side of the base 3, a mounting seat of the conveying belt 4 is fixedly connected with the base 3, a plurality of guide rail support columns 201 are arranged on the side plate 212 far away from the conveying belt 4, a guide rail 202 is arranged between the guide rail support columns 201, a hydraulic cylinder 203 is arranged on the guide rail support columns 201, a push block 204 is fixedly arranged on a piston rod of the hydraulic cylinder 203, the push block 204 is kept on the guide rail 202 to freely slide, one side of the push block 204 adjacent to the turning plate 1 is provided with a guide groove 205, the side of the turning plate 1 adjacent to the push block 204 is provided with a sliding column 102 and a vertical plate 103, the sliding column 102 slides in the guide groove 205, and when the hydraulic cylinder 203 pushes the push block 204 to move towards the rotating shaft 101, the sliding column 102 moves in the guide groove 205 to turn the turning plate 1 around the rotating shaft 101 as an axis.
The side plate 212 is provided with a tightening device, the tightening device comprises a base 206, a guide rod 207 and a tightening spring 208, the base 206 is fixedly arranged on the side plate 212, the guide rod 207 is arranged along the length direction of the side plate 212, one end of the guide rod is fixedly connected with the base 206, the tightening spring 208 is arranged on the guide rod 207, the base 3 is fixedly provided with a limiting block 302, one end of the guide rod 207 penetrates through the limiting block 302 and freely slides on the limiting block 302, and one end of the tightening spring 208 is tightly abutted against the base 206, and the other end of the tightening spring 208 is tightly abutted against the limiting block 302. The guide rail supporting column 201 at the tail end of the guide rail 202 is provided with a braking mechanism, the braking mechanism comprises a braking base 209, a braking spring 210 and a braking push rod 211, the braking base 209 is fixedly arranged on the guide rail supporting column 201, the braking push rod 211 is parallel to the guide rail 202, the braking push rod 211 slides on the braking base 209 and is kept on the braking push rod 211, and the braking spring 210 is arranged on the braking push rod 211 close to one side of the push block 204.
During the use, finished product ceramic tile is carried by conveyer belt 4 and is turned over on board 1, curb plate 212 lower extreme supports tightly with the supporter, riser 103 prevents that one side of ceramic tile from outstanding board 1 that turns over, pneumatic cylinder 203 promotes ejector pad 204 and will turn over the upset of board 1, make the upper end of ceramic tile lean on the supporter to one side, ejector pad 204 promotes to move back push rod 211 and support tightly with the ceramic tile, along with the continuation propulsion curb plate 212 of ejector pad 204 along spout 301 to the direction motion of keeping away from the supporter, the bottom of ceramic tile falls on the supporter, curb plate 212 supports tightly with the lower part of the ceramic tile that has placed on the supporter under the effect of supporting tight spring 208 after the pneumatic cylinder 203 shrink, it has both been piled up neatly on the supporter to turn over board 1 and reset above-mentioned action finished product ceramic tile of repetition.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and equivalent alternatives or modifications according to the technical solution of the present invention and the inventive concept thereof should be covered by the scope of the present invention.

Claims (5)

1. The utility model provides a hydraulic pressure pile up neatly equipment for building materials production, includes support frame, base and conveyer belt, the support frame set up in on the base, the conveyer belt set up in one side of base, its characterized in that: the supporting frame comprises two side plates which are arranged in parallel, a supporting column is fixedly connected between the two side plates, the support frame is provided with a turning plate, one end of the turning plate is provided with a rotating shaft, two ends of the rotating shaft are respectively and rotatably connected with the two side plates, the side plate far away from the conveying belt is provided with a plurality of guide rail supporting columns, guide rails are arranged among the guide rail supporting columns, the guide rail is parallel to the side plate, a hydraulic cylinder is fixedly arranged on the guide rail support column, a push block is fixedly arranged on a piston rod of the hydraulic cylinder, the push block freely slides on the guide rail, a guide groove is arranged on one side of the push block adjacent to the turning plate, the guide groove extends in the vertical direction on the push block, one side of the turning plate adjacent to the push block is provided with a sliding column, and the sliding column slides in the guide groove.
2. A hydraulic palletizing plant for building material production as in claim 1, wherein: the base is provided with a limiting block and two sliding grooves, the side plate slides on the sliding grooves, a tightening device is arranged on the side plate, a braking mechanism is arranged on the guide rail supporting column, the tightening device comprises a base, a guide rod and a tightening spring, the base is fixedly arranged on the side plate, the guide rod is arranged along the length direction of the side plate, one end of the guide rod is fixedly connected with the base, the other end of the guide rod penetrates through the limiting block, and the tightening spring is arranged on the guide rod between the base and the limiting block.
3. The hydraulic stacking apparatus for building material production as claimed in claim 2, wherein: the system moves back the mechanism and moves back the push rod including the system back the base, the system moves back the spring and the system, the base is fixed set up in keeping away from the pneumatic cylinder on the guide rail support column, the system move back the push rod with the guide rail is parallel, the system moves back the push rod and is in the system moves back and slides on the base and keep on it, the system moves back the spring set up be close to ejector pad one side on the push rod, the system move back the spring one end with the push rod is connected, the other end with the system moves back the pedestal connection.
4. A hydraulic stacking apparatus for building material production as claimed in any one of claims 1 to 3, characterised in that: and a vertical plate is arranged on one side of the turning plate adjacent to the push block.
5. A hydraulic stacking apparatus for building material production as claimed in claim 2 or 3, wherein: the length of the side plate is greater than that of the sliding groove.
CN202220153688.7U 2022-01-20 2022-01-20 Hydraulic stacking equipment for building material production Active CN216763535U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220153688.7U CN216763535U (en) 2022-01-20 2022-01-20 Hydraulic stacking equipment for building material production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220153688.7U CN216763535U (en) 2022-01-20 2022-01-20 Hydraulic stacking equipment for building material production

Publications (1)

Publication Number Publication Date
CN216763535U true CN216763535U (en) 2022-06-17

Family

ID=81979233

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220153688.7U Active CN216763535U (en) 2022-01-20 2022-01-20 Hydraulic stacking equipment for building material production

Country Status (1)

Country Link
CN (1) CN216763535U (en)

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