CN209740604U - Cylinder body delivery system - Google Patents

Cylinder body delivery system Download PDF

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Publication number
CN209740604U
CN209740604U CN201920361585.8U CN201920361585U CN209740604U CN 209740604 U CN209740604 U CN 209740604U CN 201920361585 U CN201920361585 U CN 201920361585U CN 209740604 U CN209740604 U CN 209740604U
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China
Prior art keywords
sensing means
workpiece
dispensing system
frame
sensing
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CN201920361585.8U
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Chinese (zh)
Inventor
何宏泽
王锦豪
伍云艳
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WUYANG-HONDA MOTORCYCLE (GUANGZHOU) Co Ltd
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WUYANG-HONDA MOTORCYCLE (GUANGZHOU) Co Ltd
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Priority to CN201920361585.8U priority Critical patent/CN209740604U/en
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Abstract

The utility model discloses a cylinder body delivery system, including support body, elevating gear and induction system, be provided with a plurality of layers of baffles that are used for placing the work piece in the support body, the baffle can set up in the support body with sliding from top to bottom. The lifting device is arranged below the frame body and is in transmission connection with the partition plate. The induction device is arranged on the frame body corresponding to the clamping station of the workpiece and is electrically connected with the lifting device and the external clamping device; the sensing device controls the lifting and stopping of the lifting device and controls the clamping device to clamp the partition plate or the workpiece by sensing information of the partition plate and the workpiece. More preferably, still be provided with the fork truck that is used for carrying the support body specially according to the size of support body, realize safe, high-efficient, carry the operation to the support body fast. The device realizes the effect of automatic material conveying, has high automation degree, greatly improves the feeding efficiency, ensures the safety in the feeding process and saves more manpower.

Description

Cylinder body delivery system
Technical Field
The utility model relates to a feeding equipment technical field, concretely relates to cylinder body delivery system.
Background
When the motorcycle engine cylinder body is further processed, the cylinder body needs to be placed on a station. In a traditional operation mode, workpieces are placed in tools such as trays or boxes and transported to a station needing to be processed. When the workpieces in the tray or the box are taken out, the tray or the box containing the workpieces is replaced. However, the tools such as general trays or boxes have limited work pieces which need to be replaced frequently, resulting in low feeding efficiency. Moreover, the workpieces are placed in a disordered manner, and the workpieces need to be repositioned and placed during feeding, so that the feeding efficiency is low, and the subsequent processing and production of the workpieces are seriously influenced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a cylinder body delivery system can realize the automatic replenishment of material, improves pay-off efficiency.
In order to solve the above problem, the utility model discloses realize according to following technical scheme:
the utility model provides a cylinder body distribution system, which comprises a frame body, wherein the bottom of the frame body is designed to be open, a plurality of layers of partition plates for placing workpieces are arranged in the frame body, and the partition plates are slidably arranged in the frame body;
The lifting device is arranged below the frame body, and is lifted to jack up the partition plate upwards;
The induction device is arranged at the position of the partition plate at the topmost layer of the rack body and is electrically connected with the lifting device; the sensing device cannot sense the position information of the partition plate and feeds the information back to the lifting device, and the lifting device is lifted to push the partition plate to ascend; the sensing device senses the position information of the partition plate and feeds the information back to the lifting device, and the lifting device stops.
Further, the sensing device comprises a first sensing device, and the first sensing device is arranged at the position of the partition plate at the topmost layer of the rack body so as to collect first position information of the partition plate; the first sensing device is electrically connected with the lifting device to send the first position information to the lifting device, so that the lifting device stops according to the first position information.
further, the sensing device further comprises a second sensing device, and the second sensing device is arranged above the first sensing device to acquire second position information of the partition board; the second sensing device is electrically connected with the lifting device to send the second position information to the lifting device, so that the lifting device stops and gives an alarm according to the second position information.
Further, the sensing device further comprises a third sensing device, and the third sensing device is positioned between the first sensing device and the second sensing device to acquire the position information of the workpiece; the third sensing device is electrically connected with an external clamping device so as to send the position information of the workpiece to the clamping device, the third sensing device senses the position information of the workpiece, and the clamping device clamps the workpiece; the third sensing device cannot sense the position information of the workpiece, and the clamping device clamps the partition plate.
Furthermore, the number of the partition plates in the rack body is seven.
furthermore, a frame structure is arranged on the partition board, the frame structure divides the partition board into small squares, and a boss matched with the inner diameter of the workpiece is arranged in each small square.
Furthermore, sixteen small squares are arranged on each layer of the partition board.
Further, a supporting plate for supporting the partition plate is arranged at the bottom of the frame body, and the supporting plate is slidably arranged in the frame body.
Further, still include support body handling device, the both sides setting of support body bottom respectively are provided with a supporting seat, be provided with on the support body handling device with supporting seat complex direction limit structure.
Further, the support body handling device is a forklift, the forklift comprises two forklift arms, each forklift arm is provided with a guide limiting structure, each guide limiting structure is a channel steel, and the channel steels are welded on the forklift arms.
Compared with the prior art, the utility model discloses following beneficial effect has:
the utility model discloses a cylinder body delivery system through set up multilayer slidable baffle in the bottom for open support body, through induction system and elevating gear's cooperation, realizes the effect that the material was automatic to be carried for the efficiency of pay-off improves widely, ensures pay-off in-process safety moreover, has practiced thrift more manpowers. More optimally, still be provided with the fork truck that is used for specially carrying the support body according to the size of support body, the welding has the spacing channel-section steel of direction with support body bottom sprag seat complex on the fork truck arm, realizes safe, high-efficient, carry the operation to the support body fast.
Drawings
Embodiments of the invention are described in further detail below with reference to the attached drawing figures, wherein:
Fig. 1 is a schematic structural view of a cylinder distribution system according to the present invention;
FIG. 2 is a top view of a cylinder dispensing system according to the present invention;
Fig. 3 is a schematic structural view of the lifting device of the present invention;
Fig. 4 is a schematic structural view of the forklift of the present invention;
Coating is a schematic structural diagram of the forklift of the utility model;
In the figure:
1-a frame body; 2-a workpiece; 3-a separator; 4-a supporting plate; 5-a lifting device; 51-a base; 52-strut; 53-a support table; 54-hydraulic cylinder; 6-an induction device; 61-a first sensing device; 62-a second sensing device; 63-a third sensing device; 7-a supporting seat; 8-forklift truck; 81-a forklift arm; 82-guiding limit channel steel.
Detailed Description
As shown in fig. 1-2, a cylinder distribution system comprises a frame body 1, a lifting device 5 and an induction device, wherein the frame body 1 is hollow, seven layers of partition boards 3 for placing a workpiece 2 are arranged in the frame body 1, and the partition boards 3 are arranged in the frame body 1 in a vertically sliding manner. Divide into sixteen little squares with baffle 3 with the frame structure on every layer of baffle 3, be provided with one respectively in each little square with 2 internal diameter complex bosss of work piece, the boss can play the effect of carrying out the coarse positioning to work piece 2. Elevating gear 5 sets up in the below of support body 1, and the bottom of support body 1 slides and is provided with layer board 4 that is used for supporting baffle 3, and elevating gear 5 promotes layer board 4 when starting and rises to promote baffle 3 through layer board 4 and rise.
As shown in fig. 3, the lifting device 5 is a scissor lift, the scissor lift includes a base 51, a foldable support rod 52 disposed above the base 51, and a support platform 53 fixedly disposed above the support rod 52, and a hydraulic cylinder 54 is connected to the support rod 52. When the scissor lift does lifting motion, hydraulic cylinder 54 supports support rod 52 to extend upwards, support rod 52 drives support platform 53 to rise, and support platform 53 rises to layer board 4 department, continues to promote layer board 4 to rise to promote baffle 3 through layer board 4 and rise. In addition, other lifting devices may be used as long as the partition 3 can be pushed to rise.
The induction device 6 is arranged on the frame body 1 corresponding to the clamping station of the workpiece 2, and the induction device 6 is electrically connected with the lifting device 5. The sensing means 6 comprise first sensing means 61 for sensing the diaphragm, third sensing means for sensing the workpiece 2 and second sensing means 62 for sensing the over travel of the diaphragm 3 or the workpiece 2. The first sensing device 61 is used for sensing the partition board 3 and sending the information of the partition board 3 to the lifting device 5, so that the lifting device is controlled to stop, and the workpiece 2 is ensured to be positioned on the clamping station of the corresponding height of the partition board 3.
The second sensing device 62 is disposed above the first sensing device 61 to sense the over-travel information of the partition 3 or the workpiece 2 and transmit the information to the elevating device 5, thereby controlling the elevating device 5 to stop and alarm. When the first sensing device 61 is damaged and cannot be normally used, the partition plate 3 can continuously rise under the action of the lifting device 5, and when the partition plate 3 or the workpiece 2 rises to the position of the second sensing device 62, the second sensing device 62 senses the overtravel information of the partition plate 3 or the workpiece 2 and feeds the overtravel information back to the lifting device 5, so that the movement of the lifting device 5 is forcibly stopped, and an alarm is given out. The accident caused by the overtravel of the partition plate 3 or the workpiece 2 is effectively prevented, and meanwhile, the alarm can be sent out to enable a technician to find the fault of the device, so that the maintenance and the replacement can be carried out in time, and the smoothness of the operation is guaranteed.
The sensing device 6 further includes a third sensing device 63, and the third sensing device 63 is disposed between the first sensing device 61 and the second sensing device 62 to sense information of the workpiece 2. The third sensing device 63 is electrically connected with the external clamping device to send information of the workpiece 2 to the clamping device, the third sensing device 63 senses the workpiece 2, and the clamping device clamps the workpiece 2; the third sensing device 63 cannot sense the workpiece 2, that is, the workpiece on the partition board 3 is clamped completely, and the clamping device clamps the partition board 3 at this time.
After the workpiece 2 on the topmost partition board 3 is clamped by the clamping device, the third sensing device 63 cannot sense the workpiece 2 and sends information to the clamping device, and the clamping device takes away the topmost partition board 3. At this moment, the first sensing device 61 cannot sense the partition board 3, the lifting device 5 pushes the movable supporting board 4 to move upwards, the supporting board 4 pushes the partition board 3 to move upwards, when the topmost partition board 3 reaches the position of the first sensing device 61, the first sensing device 61 senses the partition board 3 again, and the lifting device 5 stops, so that the partition board 3 stops at the position of the first sensing device 61. At this time, the third sensing device 63 senses the workpiece 2 again and sends information to the gripping device, and the gripping device continues to grip the workpiece 2. The operation is repeated until all the workpieces 2 and the partition boards 3 in the rack body 1 are taken out, and the rack body 1 filled with the workpieces 2 and the partition boards 3 is replaced.
as shown in fig. 4, the device further comprises a frame body conveying device, the frame body conveying device is a forklift 8, two forklift arms 81 of the forklift 8 are respectively welded with a guide limiting channel steel 82, and the guide limiting channel steel can be matched with the supporting seats 7 on two sides of the bottom of the frame body 1. According to the size of support body 1, specific design and support body 1 complex fork truck 8 realize safe, high-efficient, carry the operation fast to support body 1, moreover through the cooperation of the spacing channel-section steel 82 of direction and support body 1 bottom sprag 7, can effectively prevent accidents such as support body 1 landing in the transportation.
the utility model discloses a novel cylinder body delivery system through set up multilayer slidable baffle in the bottom for open support body, through induction system and elevating gear's cooperation, realizes the effect that the material was automatic to be carried for the efficiency of pay-off improves widely, ensures material loading in-process safety moreover, has practiced thrift more manpowers. More optimally, still be provided with the fork truck that is used for specially carrying the support body according to the size of support body, the welding has the spacing channel-section steel of direction with support body bottom sprag seat complex on the fork truck arm, realizes safe, high-efficient, carry the operation to the support body fast.
While the preferred embodiments of the present invention have been described in detail, it should be understood that modifications and variations can be made by persons skilled in the art without inventive faculty, and in light of the above teachings. Therefore, the technical solutions according to the present invention, which can be obtained by logical analysis, reasoning or limited experiments based on the prior art, should be within the scope of protection defined by the claims.

Claims (10)

1. a cylinder dispensing system, comprising:
The rack body is provided with a plurality of layers of partition plates for placing workpieces, and the partition plates can be arranged on the rack body in a vertically sliding manner;
The lifting device is arranged below the frame body and is in transmission connection with the partition plate;
The induction device corresponds to the clamping station of the workpiece and is arranged on the frame body, and the induction device is electrically connected with the lifting device.
2. The cylinder dispensing system of claim 1, wherein said sensing means comprises first sensing means for sensing said diaphragm, said first sensing means being electrically connected to said lifting means.
3. The cylinder dispensing system of claim 2, wherein said sensing means further comprises a second sensing means for sensing over travel of said diaphragm or said workpiece, said second sensing means being disposed above said first sensing means, said second sensing means being electrically connected to said lifting means.
4. The cylinder dispensing system of claim 3 wherein said sensing means further comprises a third sensing means for sensing said workpiece, said third sensing means being located between said first sensing means and said second sensing means, said third sensing means being electrically connected to an external gripper.
5. a cylinder dispensing system as claimed in claim 1, wherein the partition is provided with seven layers.
6. The cylinder dispensing system of claim 1, wherein the partition plate has a frame structure, the frame structure divides the partition plate into a plurality of small squares, and each of the small squares has a boss therein for engaging with an inner diameter of the workpiece.
7. the cylinder dispensing system of claim 1, wherein the lifting device is a scissor lift comprising a base, a collapsible support bar disposed above the base, a support platform fixedly disposed above the support bar, and a hydraulic lifting system connected to the support bar.
8. A cylinder dispensing system as claimed in claim 1, wherein the bottom of the frame is provided with a pallet for supporting the partition, the pallet being slidably disposed within the frame.
9. The cylinder dispensing system of claim 1, further comprising a frame carrying device, wherein one support seat is disposed at each end of the bottom of the frame, and a guiding and limiting structure is disposed on the frame carrying device and engaged with the support seat.
10. The cylinder dispensing system of claim 9, wherein the frame handling device is a forklift, the forklift includes two forklift arms, each forklift arm is provided with a guide and limit structure, the guide and limit structure is a channel steel, and the channel steel is welded on the forklift arms.
CN201920361585.8U 2019-03-20 2019-03-20 Cylinder body delivery system Active CN209740604U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920361585.8U CN209740604U (en) 2019-03-20 2019-03-20 Cylinder body delivery system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920361585.8U CN209740604U (en) 2019-03-20 2019-03-20 Cylinder body delivery system

Publications (1)

Publication Number Publication Date
CN209740604U true CN209740604U (en) 2019-12-06

Family

ID=68717760

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920361585.8U Active CN209740604U (en) 2019-03-20 2019-03-20 Cylinder body delivery system

Country Status (1)

Country Link
CN (1) CN209740604U (en)

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