High-stability stamping part shaping carrying table

By designing a movable flattening and grinding assembly, a high-stable stamping shaping stage combined with telescopic rod and blower assembly, the problems of single functions and difficulty in cleaning of traditional plastic shaping devices are solved, and the workpiece is stable and fixed and automatic collection of debris is achieved, which improves the convenience and applicability of plastic shaping.

CN223057399UActive Publication Date: 2025-07-04SUZHOU JIEMA PRECISION HARDWARE TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421579535.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-07-04
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

Traditional plastic shaping processing devices have a single function, making it difficult to complete all plastic shaping work on the same device, the workpiece is unstable, and it is prone to misalignment and damage during the processing process, and debris are scattered to increase the difficulty of cleaning.

Method used

A high-stable stamping piece shaping stage is designed, including movable flattening and grinding components, which can achieve stable fixation of the workpiece through telescopic rods and translation components, and combines the blower components to collect debris, improving applicability and cleaning convenience.

Benefits of technology

It realizes stable fixation of the workpiece, facilitates plastic surgery, and automatically collects debris, reduces the difficulty of cleaning, and improves the applicability and operation convenience of the plastic surgery device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223057399U_ABST
    Figure CN223057399U_ABST
Patent Text Reader

Abstract

The utility model relates to a high-stability stamping part shaping carrying table which comprises a fixing groove, a supporting table is arranged in the fixing groove, an object carrying table is arranged above the supporting table, a plurality of telescopic rods A in the vertical direction are connected between the supporting table and the object carrying table, a plurality of sliding ways A in the left-right direction are symmetrically arranged on the object carrying table in the left-right direction, and pressing plates are connected to the sliding ways A in a sliding mode. An inner cavity in the vertical direction is formed in the pressing plate and slidably connected with a connecting plate, the lower end of the connecting plate is connected with a telescopic rod B on the supporting table, and the telescopic rod B is provided with translation assemblies in the left-right direction and on the front side and the rear side in the fixing groove correspondingly. The top ends of the front portions of the left side and the right side of the top of the fixing groove are each provided with an air blowing assembly, the rear end of the top of the fixing groove is provided with a scrap blocking plate, and the front face of the fixing groove is provided with a waste taking opening. The device has the advantages of being convenient to process, good in applicability, stable in workpiece fixing and convenient to clean.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of workpiece shaping, in particular to a high-stability stamping part shaping carrier table. Background Art

[0002] After a workpiece is processed and manufactured, there may be problems such as concave-convex deformation, burr defects, etc. on the surface of the workpiece that affect flatness, and the workpiece needs to be shaped.

[0003] Traditional shaping devices generally only have a single flattening function or grinding function, resulting in the inability of the workpiece to complete all shaping work on the same device, which is inconvenient. The positions of the parts to be shaped of different workpieces are different, and the structure of the traditional processing device is relatively fixed, and it is difficult to make appropriate adjustments to the positions of the components on the processing device. In addition, the workpiece lacks sufficient fixation, and the workpiece is prone to damage caused by workpiece misalignment during processing. The chips generated during the processing of the workpiece are scattered everywhere, increasing the workload of post-processing cleaning. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a high-stability stamping part shaping carrier table, which has the advantages of convenient processing, good applicability, firm fixation of the workpiece, and convenient cleaning.

[0005] The technical solution of the utility model is as follows:

[0006] A high-stability stamping part shaping carrier table includes a fixed groove. A support table is arranged in the fixed groove. An object placing table is arranged above the support table. A plurality of telescopic rods A in the vertical direction are connected between the support table and the object placing table. A plurality of slideways A in the left-right direction are symmetrically arranged on the left and right of the object placing table. The slideways A communicate with the upper and lower sides of the object placing table. A pressing plate is slidably connected to the slideways A. The upper part of the pressing plate extends upward out of the slideways A. An inner cavity in the vertical direction is arranged inside the pressing plate, and a connecting plate is slidably connected to the inner cavity. Part of the upper end of the connecting plate is always located inside the inner cavity of the pressing plate. The lower end of the connecting plate is connected to the driving rod of the telescopic rod B on the support table. The telescopic rod B is in the left-right direction. Translation components are respectively arranged on the front and rear sides inside the fixed groove. The movable ends of the translation components can sweep over the object placing table from above in the left-right direction. A flattening component is arranged at the bottom of the movable end of one translation component, and a grinding component is arranged at the bottom of the movable end of the other translation component. Air blowing components pointing to the top of the object placing table are respectively arranged at the front tops of the left and right sides of the top of the fixed groove. A dust baffle is arranged at the rear end of the top of the fixed groove. A waste taking port leading to the bottom inside the fixed groove is arranged on the front surface of the fixed groove. A sealing plate is hinged to the waste taking port.

[0007] Preferably, the translation assembly includes a motor A, a threaded rod, a threaded sleeve, a translation plate and a sliding sleeve. The threaded rod is rotatably connected to the front or rear side of the fixed groove along the left-right direction. The fixed groove is provided with a motor A coaxially connected to the end of the threaded rod. The threaded rod is threadedly connected with a threaded sleeve. The translation plate is in the shape of a Chinese character "冂". The horizontal part of the translation plate is along the front-to-back direction. The horizontal part of the translation plate is slidably connected with a sliding sleeve. The sliding sleeve is provided with a fastening screw that can be rotated to tighten the translation plate. A flattening assembly or a grinding assembly is connected to the bottom of the sliding sleeve. The bottom of the vertical part of one side of the translation plate is connected to the threaded sleeve and the bottom of the vertical part on the other side is connected to a limit block. A slideway B along the left-right direction is provided on the side opposite to the threaded rod in the fixed groove, and the limit block is slidably connected to the slideway B.

[0008] Preferably, a slideway C along the left-right direction is provided in the fixing groove on a side close to the threaded rod, and a protrusion is provided on the threaded sleeve, and the protrusion is slidably connected to the slideway C.

[0009] Preferably, a connecting block is provided at the bottom of the connecting plate, the driving rod of the telescopic rod B is connected to the connecting block, and a slideway D along the left and right directions is provided on the support platform, and the slideway D is slidably connected to the connecting block.

[0010] Preferably, the flattening assembly includes a docking seat and a flattening roller. The top of the docking seat is connected to the movable end of the translation assembly. The bottom of the docking seat is detachably connected to the flattening roller. The flattening roller is along the front-to-back direction and can be installed at the bottom of the docking seat according to flattening needs.

[0011] Preferably, the grinding assembly includes a motor B, a connecting seat and a grinding head. The motor B is connected to the movable end of the translation assembly. The driving rod of the motor B is vertically downward and the bottom end of the driving rod is coaxially connected to the connecting seat. The grinding head is detachably connected to the connecting seat, and the grinding head is installed on the connecting seat according to grinding needs.

[0012] Preferably, the blowing assembly includes a blowing head and an air pump, and an air pump is provided at the front top of the left and right sides of the fixed groove, and the air outlet of the air pump is connected to the blowing head, and the air outlet of the blowing head points to the top of the loading platform.

[0013] Preferably, the shape of the bottom of the fixing groove is a slope that slopes downward from the rear to the front.

[0014] The utility model has the following beneficial technical effects:

[0015] 1. The workpiece to be shaped is placed on the stage. The translation assembly can drive the connected flattening assembly or grinding assembly to move left and right, so that the part to be shaped on the stage can be flattened or polished, which is convenient for handling.

[0016] 2. The position of the connected flattening component or grinding component in the left - right direction can be adjusted through the translation component, and the height of the workpiece on the loading platform can be adjusted through the telescopic rod A, so that the parts to be shaped at different positions can be processed, improving the applicability.

[0017] 3. The telescopic rod B drives the indirectly connected pressing plate to move, making the pressing plates symmetrically located on the left and right sides move towards each other. The pressing plates clamp the two sides of the workpiece in pairs to achieve stable fixation of the workpiece and prevent the workpiece from slipping during processing. When the pressing plate rises and falls with the loading platform, the part of the connecting plate extending into the pressing plate slides up and down in the inner cavity of the pressing plate, which does not affect the lifting movement of the pressing plate, and part of the connecting plate is always located in the inner cavity of the pressing plate, ensuring the connection of the telescopic rod B to the pressing plate through the connecting plate, so that the telescopic rod B can drive the pressing plate to move in the left - right direction.

[0018] 4. The blower assembly blows air towards the loading platform, blowing the debris generated during the processing of the workpiece from the loading platform into the fixed groove. Afterwards, the staff can collect it from the waste removal port, which is convenient for cleaning. The baffle is used to block the debris to prevent it from being blown outside the fixed groove. Brief Description of the Drawings

[0019] The technical solution of the present utility model will be further described below with reference to the drawings.

[0020] Attached Figure 1 is the front view of the present utility model.

[0021] Attached Figure 2 is the front - perspective sectional view of the present utility model.

[0022] Attached Figure 3 is Figure 2 the enlarged view of part A.

[0023] Attached Figure 4 is Figure 2 the enlarged view of part B.

[0024] Attached Figure 5 is the left - perspective sectional view of the present utility model.

[0025] Attached Figure 6 is the top view of the present utility model.

[0026] Attached Figure 7 is the top - perspective sectional view of the support platform.

[0027] In the figure: 1 - fixed groove, 2 - support platform, 3 - loading platform, 4 - telescopic rod A, 5 - slideway A, 6 - pressing plate, 7 - connecting plate, 8 - telescopic rod B, 9 - translation assembly, 10 - flattening assembly, 11 - grinding assembly, 12 - air blowing assembly, 13 - chip baffle, 14 - waste removal port, 15 - sealing plate, 16 - motor A, 17 - threaded rod, 18 - threaded sleeve, 19 - translation plate, 20 - sliding sleeve, 21 - fastening screw, 22 - limiting block, 23 - slideway B, 24 - slideway C, 25 - convex block, 26 - connecting block, 27 - slideway D, 28 - docking seat, 29 - flattening roller, 30 - motor B, 31 - connecting seat, 32 - grinding head, 33 - air blowing head, 34 - air extraction pump. Detailed implementation manners

[0028] The present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0029] Embodiment:

[0030] As Figures 1 to 7 shown, this embodiment provides a high-stability stamping part shaping loading platform, including a fixed groove 1. A support platform 2 is arranged in the fixed groove 1. A loading platform 3 is arranged above the support platform 2. A plurality of telescopic rods A 4 in the vertical direction are connected between the support platform 2 and the loading platform 3. A plurality of slideways A 5 in the left-right direction are symmetrically arranged on the loading platform 3 left and right. The slideways A 5 communicate with the upper and lower sides of the loading platform 3. A pressing plate 6 is slidably connected to the slideways A 5. The upper part of the pressing plate 6 extends upward out of the slideways A 5. The pressing plate 6 is internally provided with a vertical inner cavity, and a connecting plate 7 is slidably connected to the inner cavity. Part of the upper end of the connecting plate 7 is always located in the inner cavity of the pressing plate 6. The lower end of the connecting plate 7 is connected to the driving rod of the telescopic rod B 8 on the support platform 2. The telescopic rod B 8 is in the left-right direction. Translation assemblies 9 are respectively arranged on the front and rear sides in the fixed groove 1. The movable ends of the translation assemblies 9 can sweep over the loading platform 3 in the left-right direction. The bottom of the movable end of one translation assembly 9 is provided with a flattening assembly 10, and the bottom of the movable end of the other translation assembly 9 is provided with a grinding assembly 11. Air blowing assemblies 12 pointing to the top of the loading platform 3 are respectively arranged at the front tops on the left and right sides of the top of the fixed groove 1. A chip baffle 13 is arranged at the rear end of the top of the fixed groove 1. A waste removal port 14 leading to the bottom inside the fixed groove 1 is arranged on the front surface of the fixed groove 1. A sealing plate 15 is hinged on the waste removal port 14.

[0031] The workpiece to be shaped is placed on the stage 3, and the translation assembly 9 can drive the connected flattening assembly 10 or polishing assembly 11 to move in the left and right direction, so that the part to be shaped on the stage 3 can be flattened or polished, which is convenient for processing. The position of the connected flattening assembly 10 or polishing assembly 11 in the left and right direction can be adjusted by the translation assembly 9, and the height of the workpiece on the stage 3 can be adjusted by the telescopic rod A4, so that the parts to be shaped at different positions can be processed, improving applicability. The indirect connected pressing plate 6 is driven to move by the telescopic rod B8, so that the symmetrical pressing plates 6 on the left and right sides move toward each other, and the pressing plates 6 are clamped on both sides of the workpiece in pairs to achieve stable fixation of the workpiece and prevent the workpiece from slipping during processing; when the pressing plate 6 rises and falls with the lifting of the stage 3, the part of the connecting plate 7 extending into the pressing plate 6 slides up and down in the inner cavity of the pressing plate 6, which does not affect the lifting and lowering of the pressing plate 6, and the connecting plate 7 is always partially located in the inner cavity of the pressing plate 6, ensuring that the telescopic rod B8 is connected to the pressing plate 6 through the connecting plate 7, so that the telescopic rod B8 can drive the pressing plate 6 to move in the left and right directions. The air blowing assembly 12 blows air toward the stage 3, and the debris generated during the processing of the workpiece is blown from the stage 3 into the fixed groove 1. Afterwards, the staff can collect it from the waste outlet 14, which is convenient for cleaning. The chip guard plate 13 is used to block the debris to prevent the debris from being blown out of the fixed groove 1. Generally speaking, the size of the fixed groove 1 is larger than the stage 3, and the top of the stage 3 is lower than the top of the fixed groove 1.

[0032] Furthermore, the translation assembly 9 includes a motor A16, a threaded rod 17, a threaded sleeve 18, a translation plate 19 and a sliding sleeve 20. The threaded rod 17 is connected to the front or rear side of the fixed groove 1 along the left-right direction and is rotatable. The fixed groove 1 is provided with a motor A16 coaxially connected to the end of the threaded rod 17. The threaded sleeve 18 is threadedly connected to the threaded rod 17. The translation plate 19 is in a 冂 shape. The horizontal part of the translation plate 19 is along the front-to-back direction. The sliding sleeve 20 is slidably connected to the horizontal part of the translation plate 19. The sliding sleeve 20 is provided with a fastening screw 21 that can be rotated to tighten the translation plate 19. The bottom of the sliding sleeve 20 is connected to a flattening assembly 10 or a grinding assembly 11. The bottom of the vertical part of one side of the translation plate 19 is connected to the threaded sleeve 18, and the bottom of the vertical part on the other side is connected to a limit block 22. A slideway B23 along the left-right direction is provided on the side opposite to the threaded rod 17 in the fixed groove 1, and the limit block 22 is slidably connected to the slideway B23.

[0033] By using the limiting block 22 and the slideway B23 in combination, the movable direction of the translation plate 19 is restricted to the left and right directions. When the motor A16 drives the threaded rod 17 to rotate, the threaded rod 17 drives the translation plate 19 to move in the left and right directions through the threaded sleeve 18, thereby driving the sliding sleeve 20 on the translation plate 19 and the flattening assembly 10 or the grinding assembly 11 connected to the sliding sleeve 20 to move in the left and right directions. The position of the sliding sleeve 20 on the horizontal part of the translation plate 19 can be adjusted according to the position of the part to be shaped in the front and back directions, improving the applicability. After the sliding sleeve 20 moves to a suitable position, the sliding sleeve 20 can be fixed by tightening the fastening screw 21.

[0034] Further, a slideway C24 in the left and right directions is provided on one side of the fixing groove 1 close to the threaded rod 17. A convex block 25 is provided on the threaded sleeve 18, and the convex block 25 is slidably connected to the slideway C24. By using the convex block 25 and the slideway C24 in combination, the movable direction of the threaded sleeve 18 is restricted to the left and right directions, making the movement of the translation plate 19 more stable.

[0035] Further, a connecting block 26 is provided at the bottom of the connecting plate 7. The driving rod of the telescopic rod B8 is connected to the connecting block 26. A slideway D27 in the left and right directions is provided on the support platform 2, and the slideway D27 is slidably connected to the connecting block 26. By using the connecting block 26 and the slideway D27 in combination, the movable direction of the connecting plate 7 is restricted to the left and right directions, making the translation movement of the connecting plate 7 driven by the telescopic rod B8 more stable.

[0036] Further, the flattening assembly 10 includes a docking seat 28 and a flattening roller 29. The top of the docking seat 28 is connected to the movable end of the translation assembly 9. The bottom of the docking seat 28 is detachably connected with a flattening roller 29. The flattening roller 29 is in the front and back direction, and the flattening roller 29 can be installed at the bottom of the docking seat 28 according to the flattening requirement.

[0037] The flattening roller 29 presses against the deformed part of the workpiece, and the flatness of the workpiece surface is restored by the repeated rolling of the flattening roller 29. When selecting the flattening roller 29, the length of the flattening roller 29 is selected according to the width of the deformed part, and the diameter of the flattening roller 29 is selected according to the size of the space available for the flattening roller 29 to move at the deformed part.

[0038] Further, the grinding assembly 11 includes a motor B30, a connecting seat 31 and a grinding head 32. The motor B30 is connected to the movable end of the translation assembly 9. The driving rod of the motor B30 is vertically downward, and the bottom end of the driving rod is coaxially connected with a connecting seat 31. The grinding head 32 is detachably connected to the connecting seat 31, and the grinding head 32 can be installed on the connecting seat 31 according to the grinding requirement.

[0039] The grinding head 32 presses against the burr - bearing part of the workpiece surface. The motor B30 drives the connecting seat 31 and the grinding head 32 connected to the connecting seat 31 to rotate. The rotating grinding head 32 removes the burrs and restores the flatness of the workpiece surface. When selecting the grinding head 32, a grinding head 32 with a suitable size is selected according to the area of the burr - bearing part and the available moving space.

[0040] Furthermore, the air - blowing assembly 12 includes a blowing head 33 and an air - extraction pump 34. The air - extraction pump 34 is provided at the front top of the left and right sides of the fixed groove 1. The air outlet of the air - extraction pump 34 is connected to the blowing head 33, and the air outlet of the blowing head 33 points to the top of the carrier 3. By the combined use of the air - extraction pump 34 and the blowing head 33, an air current blowing onto the top of the carrier 3 from front to back is created, and the debris on the carrier 3 and the workpiece is blown into the fixed groove 1.

[0041] Furthermore, the shape of the bottom inside the fixed groove 1 is an inclined plane that slopes downward from the rear to the front. This makes it easier for the debris that has fallen to the bottom inside the fixed groove 1 to slide to the waste - removal opening 14 at the front, facilitating the cleaning by the staff.

[0042] The working principle and usage process of the present utility model are as follows:

[0043] The staff places the workpiece to be processed on the carrier 3 with the surface to be processed facing up, then manipulates each telescopic rod B8 to close the pressing plate 6 to clamp the workpiece. Then, according to the need, the staff manipulates the translation assembly 9 to move the flattening assembly 10 or the grinding assembly 11 to the place on the workpiece to be shaped. Then, the staff manipulates the telescopic rod A4 to raise the workpiece to a suitable height for processing. At this time, if it is a flattening process, let the flattening roller 29 press against the deformed part, and then let the flattening roller 29 reciprocally translate to repeatedly roll over the deformed part. If it is a grinding process, let the grinding head 32 press against the burr part and then start the motor B30. The rotating grinding head 32 removes the burrs. During the processing, keep the air - blowing assembly 12 running. After the workpiece shaping is completed, reset the carrier 3 and the pressing plate 6, and take away the processed workpiece. When cleaning the debris afterwards, lift the sealing plate 15 and take away the accumulated debris from the waste - removal opening 14.

[0044] The above is only a specific application example of the present utility model, which does not constitute any limitation to the protection scope of the present utility model. Any technical solutions formed by equivalent transformation or equivalent substitution fall within the scope of the rights protection of the present utility model.

Claims

1. A high-stability stamping part shaping carrier platform, characterized in that: The invention comprises a fixing groove, a supporting platform is arranged in the fixing groove, a loading platform is arranged above the supporting platform, a plurality of telescopic rods A along the vertical direction are connected between the supporting platform and the loading platform, a plurality of slideways A along the left and right directions are symmetrically arranged on the loading platform, the slideways A are communicated with the upper and lower sides of the loading platform, a pressing plate is slidably connected to the slideway A, the upper part of the pressing plate extends upwardly from the slideway A, an inner cavity along the vertical direction is arranged inside the pressing plate, and a connecting plate is slidably connected to the inner cavity, a part of the upper end of the connecting plate is always located in the inner cavity of the pressing plate, and the lower end of the connecting plate is connected to the telescopic rod on the supporting platform B is connected to the driving rod of the telescopic rod B, the telescopic rod B is along the left and right direction, and the front and rear sides of the fixed groove are respectively provided with a translation assembly, the movable end of the translation assembly can sweep over the worktable along the left and right direction, the bottom of the movable end of one of the translation assemblies is provided with a flattening assembly and the bottom of the movable end of the other translation assembly is provided with a grinding assembly, the front tops on the left and right sides of the top of the fixed groove are respectively provided with a blowing assembly pointing to the top of the worktable, the rear end of the top of the fixed groove is provided with a chip guard plate, the front side of the fixed groove is provided with a waste outlet leading to the bottom of the inside of the fixed groove, and a sealing plate is hinged on the waste outlet.

2. The high-stability stamping part shaping carrier according to claim 1, characterized in that: The translation assembly includes a motor A, a threaded rod, a threaded sleeve, a translation plate and a sliding sleeve. The threaded rod is connected to the front or rear side of the fixed groove along the left and right direction and is rotatable. The fixed groove is provided with a motor A coaxially connected to the end of the threaded rod. The threaded rod is threadedly connected with a threaded sleeve. The translation plate is in the shape of a Chinese character "冂". The horizontal part of the translation plate is along the front and back direction. The horizontal part of the translation plate is slidably connected with a sliding sleeve. The sliding sleeve is provided with a fastening screw that can be rotated to tighten the translation plate. A flattening assembly or a grinding assembly is connected to the bottom of the sliding sleeve. The bottom of the vertical part of one side of the translation plate is connected to the threaded sleeve and the bottom of the vertical part on the other side is connected to a limit block. A slideway B along the left and right direction is provided on the side opposite to the threaded rod in the fixed groove, and the limit block is slidably connected to the slideway B.

3. The high-stability stamping part shaping carrier according to claim 2, characterized in that: A slideway C along the left-right direction is provided in the fixing groove on one side close to the threaded rod, and a convex block is provided on the threaded sleeve, and the convex block is slidably connected with the slideway C.

4. A highly stable stamping part shaping carrier according to claim 1, characterized in that: A connecting block is provided at the bottom of the connecting plate, the driving rod of the telescopic rod B is connected to the connecting block, and a slideway D along the left and right directions is provided on the support platform, and the slideway D is slidably connected to the connecting block.

5. A highly stable stamping part shaping carrier according to claim 1, characterized in that: The blowing assembly includes a blowing head and an air pump. The front tops of the left and right sides of the fixing slot are provided with air pumps. The air outlet of the air pump is connected to the blowing head, and the air outlet of the blowing head points to the top of the loading platform.

6. The high-stability stamping part shaping carrier according to claim 1, characterized in that: The shape of the bottom of the fixing groove is a slope that slopes downward from the rear to the front.