Automatic parting strip transferring equipment
By designing an automatic spacer transfer device, the lifting and transfer mechanism is used to automate the operation of the spacers, solving the problem of manual placement and collection of spacers and improving the automation level of aluminum production.
Patent Information
- Application Number
- CN202423319284.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-31
AI Technical Summary
In the current aluminum production process, the placement and collection of spacers still require manual operation, which makes it impossible to achieve full automation. Furthermore, existing equipment cannot automatically transfer spacers between the spacer box and the conveyor belt.
An automatic spacer transfer device was designed, comprising a frame, a lifting mechanism, a single-layer support mechanism, and a transfer mechanism. The lifting mechanism controls the lifting and lowering of the spacers, the single-layer support mechanism supports the spacers, and the transfer mechanism realizes the automatic delivery or delivery of the spacers. One-way levers and guide plates are used to ensure the accurate movement of the spacers.
It enables automated feeding and storage of spacers, reducing manual operations and improving production efficiency and automation.
Smart Images

Figure CN223591920U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to an aluminum material production equipment especially a kind of batten automatic transfer equipment. BACKGROUND
[0002] In the aluminum material production process, it needs to use material frame to place aluminum material, and each layer of aluminum material is separated by batten to avoid mutual friction and collision of upper and lower aluminum materials. In the existing aluminum material processing enterprise, batten is placed and collected manually, which consumes manpower. Part of the equipment can put batten into or take batten out of the material frame through the special lifting conveyor belt, but the batten is generally placed in the batten box, and the existing lifting special conveyor belt cannot complete the work of taking batten out of or putting batten into the batten box, which affects the realization of automatic batten placement or collection. UTILITY MODEL CONTENTS
[0003] The utility model discloses a kind of batten automatic transfer equipment to solve the defects of prior art, and the work of automatically sending out or storing batten from batten box can be automatically completed.
[0004] To solve the above technical problems, the utility model provides a kind of batten automatic transfer equipment, including rack, lifting mechanism, single layer supporting mechanism and transfer mechanism;
[0005] The rack is equipped with batten box cavity, and the lifting mechanism is arranged below the batten box cavity.
[0006] The lifting mechanism includes lifting seat, lifting rod and lifting plate, the lifting rod is arranged in the lifting seat, can be driven to lift by the lifting seat, and the lifting plate is arranged on the top of the lifting rod.
[0007] The single layer supporting mechanism is arranged on the top of the batten box cavity on both sides, including horizontal telescopic cylinder and edge supporting plate, and the edge supporting plate is connected with the horizontal telescopic cylinder.
[0008] The transfer mechanism includes transfer slide rail, transfer plate and transfer cylinder, the transfer plate is arranged on the transfer slide rail, the transfer cylinder is connected with the transfer plate, and is used to drive the transfer plate to slide along the transfer slide rail.
[0009] One-way prong is arranged on the transfer plate.
[0010] As an improvement of the above scheme, the transfer mechanism is arranged directly above the batten box cavity, and is used to send out the batten supported on the edge supporting plate.
[0011] As an improvement of the above scheme, the transfer mechanism is arranged on one side above the batten box cavity, and is used to send the batten outside into the edge supporting plate.
[0012] As the improvement of the above-mentioned scheme, the one-way block is hinged to the transfer plate, and the upper end is provided with a pushing end, and the lower end is provided with a counterweight end, and the upper part of the pushing end is provided with a avoiding plane.
[0013] As the improvement of the above-mentioned scheme, the edge supporting plate is provided with a guide plate above, and the guide plate is fixedly connected with the rack.
[0014] As the improvement of the above-mentioned scheme, the back surface of the guide plate is provided with the horizontal telescopic cylinder, and the rear part of the edge supporting plate is provided with an L-shaped plate connected with the horizontal telescopic cylinder.
[0015] As the improvement of the above-mentioned scheme, the rack is further provided with a conveying belt on one side, and the rack is provided with a transition bottom plate and a guide side plate, the transition bottom plate is located on both sides of the conveying belt and is connected with the rack at one end, and the guide side plate is located above the outer side of the transition bottom plate and is connected with the guide plate at one end.
[0016] The utility model discloses, and there is following beneficial effect:
[0017] The above-mentioned scheme can drive the baffle strip in the baffle strip box to lift through the lifting mechanism, ensure that the uppermost baffle strip is at a predetermined height, and facilitate the baffle strip to be taken out or put in. The single-layer supporting mechanism can support the uppermost baffle strip, cooperate with the moving mechanism, can send the baffle strip on the edge supporting plate to the corresponding conveying belt, or send the baffle strip on the conveying belt into the baffle strip box, complete the work of automatically sending or storing the baffle strip. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the whole structure schematic diagram of a baffle strip automatic transfer equipment of an embodiment of the utility model;
[0019] Figure 2 It is the B part enlarged view of Figure 1
[0020] Figure 3 It is the A part enlarged view of Figure 1
[0021] Figure 4 It is the structure schematic diagram of the lifting mechanism of an embodiment of the utility model. DETAILED DESCRIPTION
[0022] In order to make the purpose, technical scheme and advantage of the utility model more clear, the utility model will be described in further detail below in conjunction with the drawings. Only this declaration, the orientation words of up, down, left, right, front, back, inside, outside etc. appearing or about to appear in the utility model in the text, only with the drawings of the utility model as the base, it is not the specific limitation to the utility model.
[0023] AsFigures 1-4 The utility model discloses a kind of automatic moving equipment of batten, including rack 1, lifting mechanism 2, single-layer supporting mechanism 3 and moving mechanism 4;
[0024] The rack 1 is equipped with batten box cavity 11, the lifting mechanism 2 is equipped in the batten box cavity 11 below;
[0025] The lifting mechanism 2 includes lifting seat 21, lifting rod 22 and lifting plate 23, the lifting rod 22 is equipped in the lifting seat 21, can be driven to lift by the lifting seat 21, the lifting plate 23 is equipped in the top of lifting rod 22;
[0026] The single-layer supporting mechanism 3 is equipped in the top of batten box cavity 11 two sides, including horizontal telescopic cylinder 31 and edge supporting plate 32, the edge supporting plate 32 is connected with the horizontal telescopic cylinder 31;
[0027] The moving mechanism 4 includes moving slide rail 41, moving plate 42 and moving cylinder 43, the moving plate 42 is equipped on the moving slide rail 41, the moving cylinder 43 is connected with the moving plate 42, for driving the moving plate 42 along the moving slide rail 41 sliding;
[0028] The moving plate 42 is equipped with one-way shift block 44.
[0029] Using the above scheme, the batten in batten box 100 can be driven to lift by lifting mechanism 2, ensure that the uppermost batten is at predetermined height, facilitate batten to take out or put in. The single-layer supporting mechanism 3 can support the uppermost batten, cooperate with moving mechanism, can send the batten on edge supporting plate 32 to corresponding conveyor belt, or send the batten on conveyor belt into batten box 100, complete the work of automatic sending or storage of batten.
[0030] For the batten automatic moving equipment of sending batten, the moving mechanism 4 is equipped in the batten box 100 cavity 11 directly above, for sending the batten supported on the edge supporting plate 32 outward. For the batten automatic moving equipment of sending batten into batten box 100, the moving mechanism 4 is equipped in the batten box 100 cavity 11 above one side, for sending the batten outside into the edge supporting plate 32.
[0031] The one-way pushing block 44 is hinged to the moving plate 42, and has a pushing end 441 at the upper end and a counterweight end 442 at the lower end. The upper part of the pushing end 441 is provided with an avoiding plane 443. It is to be noted that when the moving plate 42 passes the partition strip from one direction, the one-way pushing block 44 contacts the partition strip, and the avoiding plane 443 of the one-way pushing block 44 contacts the partition strip first, so that the one-way pushing block 44 swings to allow the moving plate 42 to pass the partition strip. When the moving plate 42 starts to move reversely to push the partition strip, the other surface of the one-way pushing block 44 contacts the partition strip, so that the one-way pushing block 44 is limited and fixed relative to the moving plate 42, and pushes the partition strip together.
[0032] Preferably, the edge supporting plate 32 is provided with a guide plate 33 above the edge supporting plate 32, and the guide plate 33 is fixedly connected to the rack 1. The back surface of the guide plate 33 is provided with the horizontal telescopic cylinder 31, and the rear part of the edge supporting plate 32 is provided with an L-shaped plate 34 connected to the horizontal telescopic cylinder 31. The upwardly bent end surface 341 of the L-shaped plate 34 is connected to the horizontal telescopic cylinder 31, and the L-shaped plate 34 is driven to extend or retract by the horizontal telescopic cylinder 31, so that the overall thickness of the horizontal telescopic cylinder 31 and the edge supporting plate 32 is reduced, and the space occupation of the moving device is reduced. The edge supporting plate 32 is used to support the two ends of the partition strip, and the guide plate 33 is used to guide the partition strip to prevent the partition strip from being inclined and deviated left and right.
[0033] In order to realize the automatic taking and moving of the partition strip, the moving device further comprises a conveying belt 5 arranged on one side of the rack 1. The rack 1 is provided with a transition bottom plate 12 and a guide side plate 13. The transition bottom plate 12 is arranged on both sides of the conveying belt 5 and connected to the rack 1 at one end. The guide side plate 13 is arranged above the outer side of the transition bottom plate 12 and connected to the guide plate 33 at one end.
[0034] The working principle of the moving device will be described in detail below.
[0035] Taking the partition strip: The partition strips are arranged in the partition strip box 100 in an orderly manner, and the lifting mechanism 2 drives the whole partition strip to lift to ensure that the uppermost partition strip is in a predetermined discharging position. The edge supporting plate 32 extends between the uppermost partition strip and the second layer of partition strips to support the uppermost partition strip. The moving plate 42 moves to the inner side of the partition strip box 100, and the one-way pushing block 44 pushes the uppermost partition strip to move to the conveying belt 5. The transmission speed of the conveying belt 5 is greater than the moving speed of the moving plate 42, so that the partition strips on the conveying belt 5 are sent to the corresponding aluminum surface with a certain distance between the partition strips.
[0036] The collection step is basically opposite to the taking step. Since the transfer position of the transfer plate 42 is different from that in the taking step, the setting mode of the transfer mechanism 4 also has slight difference. At this time, the transfer mechanism 4 is arranged on one side above the container cavity 11 of the batten box 100, and is used to send the batten on the conveying belt 5 to the edge supporting plate 32. When the edge supporting plate 32 is full of a layer of battens, the edge supporting plate 32 moves outward, and the layer of battens falls into the batten box 100. The lifting mechanism 2 drives the whole layer of battens in the batten box 100 to drop by one layer. The edge supporting plate 32 extends again to prepare for the recovery of the next layer of battens.
[0037] The above is the preferred embodiment of the present application. It should be noted that, for those skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, which are also considered within the scope of protection of the present application.
Claims
1. A stud automatic transfer apparatus characterized by comprising: The machine frame, lifting mechanism, single-layer supporting mechanism and transferring mechanism are included. The machine frame is provided with a baffle box accommodating cavity, and the lifting mechanism is arranged below the baffle box accommodating cavity. The lifting mechanism includes a lifting seat, a lifting rod and a lifting plate. The single-layer supporting mechanism is arranged on both sides of the top of the baffle box accommodating cavity and includes a horizontal telescopic air cylinder and an edge supporting plate. The transferring mechanism includes a transferring slide rail, a transferring plate and a transferring air cylinder. The transferring plate is arranged on the transferring slide rail, and the transferring air cylinder is connected with the transferring plate to drive the transferring plate to slide along the transferring slide rail.
2. The automatic spacer bar transfer apparatus of claim 1 wherein, The transferring plate is provided with a one-way shifting block.
3. The automatic spacer bar transfer apparatus of claim 1 wherein, The transferring mechanism is arranged above the baffle box accommodating cavity to send the baffle supported on the edge supporting plate outward.
4. The automatic spacer bar transfer apparatus according to claim 2 or 3, wherein The transferring mechanism is arranged on one side above the baffle box accommodating cavity to send the external baffle into the edge supporting plate.
5. The automatic spacer bar transfer apparatus of claim 1 wherein, The one-way shifting block is hinged on the transferring plate, and the upper end is provided with a shifting end, and the lower end is provided with a counterweight end.
6. The automatic spacer bar transfer apparatus of claim 5, wherein The upper part of the shifting end is provided with an avoiding plane.
7. The automatic spacer bar transfer apparatus of claim 5 wherein, The back surface of the guide plate is provided with the horizontal telescopic air cylinder, the rear part of the edge supporting plate is provided with an L-shaped plate, and the L-shaped plate is connected with the horizontal telescopic air cylinder. The machine frame is provided with a conveying belt arranged on one side of the machine frame, a transition bottom plate and a guide side plate. The transition bottom plate is arranged on both sides of the conveying belt and connected with the machine frame at one end. The guide side plate is arranged above the outside of the transition bottom plate and connected with the guide plate at one end.