Assembly line positioning device
By installing connectors and cylinders to fix the plate on the conveyor frame, the problem of the plate slipping and flipping during the calcination of magnetic materials was solved, thus improving processing efficiency and calcination quality.
Patent Information
- Application Number
- CN202422333805.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-24
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-09-24
AI Technical Summary
During the processing of magnetic materials, the plates are prone to slipping or flipping during the pushing process, which affects the calcination effect.
A production line positioning device was designed. By setting connectors and cylinders on the conveyor frame, the cylinders push the connectors to fix adjacent shelves and prevent them from tipping over.
This improves the efficiency of magnetic material processing, prevents the plates from slipping and flipping during the pushing process, and ensures the quality of calcination.
Smart Images

Figure CN223596513U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to magnetic material processing technical field especially relates to a flow line positioning device. BACKGROUND
[0002] Magnetic material, commonly known as magnetic material refers to ferromagnetic substance, is an old and very extensive functional material.
[0003] Magnetic material needs to be put into calcining kiln for high temperature calcination in the processing process. The magnetic material needing calcination is placed on the plate, and a plurality of plates are placed side by side, and the plate is pushed into the calcining kiln to calcine the magnetic material.
[0004] However, since the plate is only placed side by side, the plate is prone to sliding and turning during the pushing process, thereby affecting the calcination of the magnetic material. UTILITY MODEL CONTENT
[0005] In view of the deficiencies in the prior art, the utility model provides a flow line positioning device to solve the technical problem that the plate is prone to turning when the existing part of the equipment is placed in the calcining kiln.
[0006] The above technical purpose of the utility model is realized by the following technical scheme:
[0007] A flow line positioning device, comprising a conveying frame, the conveying frame passes through the calcining kiln, a block of the material placing plate for conveying the magnetic raw material is slidably arranged on the conveying frame, an insertion piece is arranged between two adjacent material placing plates, the insertion piece is used for fixing the two adjacent material placing plates, a gas cylinder is arranged on the conveying frame, the telescopic end of the gas cylinder corresponds to the insertion piece, the telescopic end of the gas cylinder is elongated, the insertion piece is pushed into the two adjacent material placing plates, and the two adjacent material placing plates are fixed.
[0008] Working principle:
[0009] When the magnetic raw material needs to be calcined, the first material placing plate is placed at the end of the conveying frame, the magnetic raw material needing calcination is placed on the first material placing plate, the first material placing plate is moved a distance, the second material placing plate is placed at the end of the conveying frame, the magnetic raw material needing calcination is placed on the second material placing plate, the insertion piece is placed between the two material placing plates, the insertion piece is pushed by the gas cylinder, the second material placing plate is pushed a distance, the third material placing plate is placed at the end of the conveying frame, and the above-mentioned mode is continued to be taken to convey the calcined magnetic material out of the calcining kiln.
[0010] Compared with the prior art, the utility model has the beneficial effects that
[0011] When the magnetic raw material needs to be calcined, the first block of the placing plate is placed at the end of the conveying frame, the magnetic raw material that needs to be calcined is placed on the first block of the placing plate, the first block of the placing plate is pushed to move a distance, the second block of the placing plate is placed at the end of the conveying frame, the magnetic raw material that needs to be calcined is placed on the second block of the placing plate, and the plug-in part is placed between the two blocks of the placing plate, the plug-in part is pushed by the air cylinder, the two adjacent placing plates are fixed by using the plug-in part, when the placing plate is pushed to move, the placing plate is not prone to overturning, the processing efficiency of the magnetic raw material is improved, the second block of the placing plate is pushed to move a distance, the third block of the placing plate is placed at the end of the conveying frame, and the circulation is sequentially carried out until the magnetic raw material that needs to be calcined is pushed into the calcining furnace, the calcining furnace calcines the magnetic raw material placed on the placing plate, and after calcination is completed, the above-mentioned mode is continuously adopted to transport the calcined magnetic material out of the calcining furnace. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is the placing plate connection section view structure schematic diagram of the utility model embodiment;
[0013] Figure 2 It is the section view structure schematic diagram of the utility model embodiment;
[0014] Figure 3 It is the placing plate section view structure schematic diagram of the utility model embodiment.
[0015] In the above drawing: 10, first pipe fitting;11, clamping block;12, first positioning groove;13, bolt;14, pressing plate;15, air cylinder;16, second positioning groove;17, placing plate;18, stress plate;19, first connecting rod;20, support pipe fitting;21, second pipe fitting;22, third connecting rod;23, placing groove;24, second screw;25, second nut;26, limit block;27, second connecting rod;28, connecting block;29, first screw;30, first nut;31, clamping port;32, antiskid plate;33, adjusting groove. DETAILED DESCRIPTION
[0016] The technical scheme in the utility model is further explained below in connection with the drawings and the embodiments.
[0017] Embodiment:
[0018] As Figure 1 , Figure 2 and Figure 3As shown, a kind of pipeline positioning device, including conveying frame, conveying frame passes through calcining kiln, and a piece of block is slidably provided on conveying frame and is used to carry magnetic raw material, and the insertion piece is arranged between two adjacent placement plates 17, and the insertion piece is used to fix two adjacent placement plates 17, and the clamping interface 31 is opened at the end of the placement plate 17, the first positioning groove 12 is communicated and opened on the upper and lower side inner wall of the clamping interface 31, the clamping block 11 is fixed at the other end of the placement plate 17, the second positioning groove 16 is communicated and opened on the upper and lower side of the clamping block 11, when using, the clamping block 11 is inserted into the clamping interface 31 of another placement plate 17, and the first positioning groove 12 and the second positioning groove 16 correspond to each other, the cylinder 15 is arranged on the conveying frame, the pressing plate 14 is fixed at the telescopic end of the cylinder 15, the telescopic end of the cylinder 15 corresponds to the insertion piece, the telescopic end of the cylinder 15 is elongated, and the insertion piece is inserted between two adjacent placement plates 17 by the pressing plate 14, so as to fix the two adjacent placement plates 17, the insertion piece is the bolt 13, and the bolt 13 is fixed by the friction force between the inner wall of the first positioning groove 12 and the second positioning groove 16, since the friction force is large, manual operation is difficult to pass through the first positioning groove 12 and the second positioning groove 16, and the bolt 13 can only be moved by the pressing plate 14 driven by the cylinder 15, so that the bolt 13 is fixedly connected to the two placement plates 17.
[0019] When the magnetic raw material needs to be calcined, the first placement plate 17 is placed at the end of the conveying frame, the magnetic raw material to be calcined is placed on the first placement plate 17, the first placement plate 17 is moved after being pushed for a distance, the second placement plate 17 is placed at the end of the conveying frame, the magnetic raw material to be calcined is placed on the second placement plate 17, and the insertion piece is placed between the two placement plates 17, the insertion piece is pushed by the cylinder 15, the two adjacent placement plates 17 are fixed by the insertion piece, the placement plate 17 is not easy to overturn when the placement plate 17 is moved, the processing efficiency of the magnetic raw material is improved, the second placement plate 17 is moved after being pushed for a distance, the third placement plate 17 is placed at the end of the conveying frame, and the cycle is repeated in sequence until the magnetic raw material to be calcined is pushed into the calcining kiln, the magnetic raw material placed on the placement plate 17 is calcined in the calcining kiln, and the magnetic material after calcination is transported out of the calcining kiln by the above-mentioned mode
[0020] As shown in the figure Figure 2 The conveying frame includes two first pipes 10, the two first pipes 10 pass through the calcining kiln, a plurality of second pipes 21 are uniformly fixed between the two first pipes 10, the number of the second pipes 21 can be adjusted according to actual use requirements, and the stability between the two first pipes 10 is further ensured, a plurality of support pipes 20 are fixed at the lower ends of the two first pipes 10, a section of the two first pipes 10 passing through the calcining kiln is not provided with the support pipe 20, and the placement plate 17 is slidably arranged at the top end of the first pipe 10.
[0021] As Figure 2 shown, the first pipe 10 one end is uniformly provided with anti-skid plate 32, the storage plate 17 is slidably arranged between the two anti-skid plates 32, and the storage plate 17 is prevented from sliding out of the first pipe 10 from both sides.
[0022] As Figure 2 shown, one of the second pipes 21 is fixedly provided with a first connecting rod 19 at the bottom end, the first connecting rod 19 is fixedly provided with a force plate 18 at one end, the force plate 18 is provided with an adjusting groove 33, the connecting block 28 is adjustably and slidably arranged on the force plate 18, the first screw rod 29 with a nut passes through the connecting block 28 and the adjusting groove 33, the first screw rod 29 is threadedly connected with the first nut 30, after the first nut 30 is screwed in, one end abuts against the bottom end of the force plate 18, the second connecting rod 27 is fixedly arranged at the top end of the connecting block 28, the second connecting rod 27 is provided with a placing groove 23 at the end, the third connecting rod 22 is adjustably and rotatably arranged in the placing groove 23, the second screw rod 24 with a nut is arranged in the placing groove 23, the third connecting rod 22 is fixedly arranged on the second screw rod 24, the second screw rod 24 is threadedly connected with the second nut 25 at the other end of the second connecting rod 27, after the second nut 25 is screwed in, the second screw rod 24 cannot rotate, the air cylinder 15 is fixedly arranged at the end of the third connecting rod 22, and the limiting block 26 is fixedly arranged in the placing groove 23 and abuts against the third connecting rod 22.
[0023] Working principle:
[0024] Place the first storage plate 17 on the two first pipes 10, the first storage plate 17 is between the two anti-skid plates 32, magnetic raw materials are placed at the top end of the first storage plate 17, the first storage plate 17 is moved by pushing, the second storage plate 17 is placed on the two first pipes 10, and the clamping block 11 of the first storage plate 17 is inserted into the clamping port 31 of the second storage plate 17, the bolt 13 is placed in the first positioning groove 12, the air cylinder 15 is started, the air cylinder 15 pushes the pressing plate 14 to move, the pressing plate 14 pushes the bolt 13 to move, the bolt 13 passes through the first positioning groove 12 and the second positioning groove 16, the second storage plate 17 is moved, the third storage plate 17 is placed on the two first pipes 10, and the process is repeated in sequence.
[0025] When the position of the air cylinder 15 needs to be adjusted, the first nut 30 is loosened, the position of the connecting block 28 is moved, and after the movement is completed, the first nut 30 is screwed in again.
[0026] When the air cylinder 15 is not needed, the second nut 25 is loosened, the third connecting rod 22 is rotated by a certain angle, and after the third connecting rod 22 is rotated, the other end abuts against the limiting block 26.
[0027] Finally, it is explained that the above embodiments are only used to illustrate the technical solutions of the present application and are not limited. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced by equivalents without departing from the purpose and scope of the present application. The technical solutions of the present application should be covered in the scope of the claims of the present application.
Claims
1. A pipelined positioning device, characterized by Including: The conveying frame passes through the calcination kiln, a piece of the conveying frame is slidably provided with a piece of the conveying frame, and the conveying frame is slidably provided with a piece of the conveying frame. The plug-in part is arranged between two adjacent placing plates (17) and is used for fixing two adjacent placing plates (17). The conveying frame is provided with a cylinder (15), the telescopic end of the cylinder (15) corresponds to the plug-in part, the telescopic end of the cylinder (15) is elongated, the plug-in part is pushed into two adjacent placing plates (17), and the two adjacent placing plates (17) are fixed.
2. A flowline positioning apparatus as defined in claim 1, wherein: The plug-in part is a plug-in part (13).
3. A flowline positioning apparatus as defined in claim 1, wherein: The conveying frame includes two first pipes (10), a plurality of second pipes (21) are uniformly and fixedly arranged between the two first pipes (10), a plurality of supporting pipes (20) are fixedly arranged at the lower ends of the two first pipes (10), and the placing plate (17) is slidably arranged at the top end of the first pipe (10).
4. A flowline positioning apparatus as defined in claim 3, wherein: The first pipe (10) is fixedly provided with an anti-skid plate (32) at one end.
5. A pipelining device as claimed in claim 1, characterized in that: The end of the placing plate (17) is provided with a clamping port (31), the upper and lower inner walls of the clamping port (31) are both provided with a first positioning groove (12), the other end of the placing plate (17) is fixedly provided with a clamping block (11), the clamping block (11) is provided with a second positioning groove (16) penetratingly at the upper and lower sides, and in use, the clamping block (11) is inserted into the clamping port (31) of the other placing plate (17), and the first positioning groove (12) and the second positioning groove (16) correspond to each other in the upper and lower directions.
6. A pipelining device according to claim 3, wherein: One end of the first connecting rod (19) is fixedly provided with a force plate (18), the force plate (18) is provided with an adjusting groove (33), and the force plate (18) is adjustably and slidably provided with a connecting block (28).
7. A pipelining device according to claim 6, characterized in that: The connecting block (28) is fixedly provided with a second connecting rod (27) at the top end, the second connecting rod (27) is provided with a placing groove (23) at the end, the placing groove (23) is adjustably and rotatably provided with a third connecting rod (22), and the cylinder (15) is fixedly arranged at the end of the third connecting rod (22).
8. A pipelining device according to claim 7, characterized in that: The placing groove (23) is fixedly provided with a limiting block (26), and the limiting block (26) abuts against the third connecting rod (22).
9. The pipelined positioning apparatus of claim 1, wherein: The telescopic end of the cylinder (15) is fixedly provided with a pressing plate (14).