Processing device for cutting full-page resistor disc of oil level sensor into strips
By designing a processing device for the entire resistive sheet of oil level sensor, the removal of white edges and strip cutting were automated, solving the problems of high operation difficulty and high labor intensity, and providing an efficient equipment solution.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-31
- Publication Date
- 2026-03-10
AI Technical Summary
In the existing technology, the process of removing the white edges and dividing the entire resistive element of the oil level sensor into strips is difficult, labor-intensive, and easily damages the resistive element.
Design a processing device for dividing a whole plate of resistive sheets of oil level sensor into strips, including a frame, a mounting table, a lifting cylinder, a clamping cylinder and a dividing structure, to realize automated white edge removal and strip division, and drive the white edge dividing block and the strip dividing block to operate synchronously along the engraving marks through the cylinder.
It enables automated removal and strip division of white edges from the entire sheet of resistors, reducing operational difficulty and labor intensity, preventing damage to the resistors, and providing an efficient option for automated equipment.
Smart Images

Figure CN121641618A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of oil level sensor processing, and particularly relates to a processing device for dividing an entire-plate resistance sheet of an oil level sensor into strips. BACKGROUND
[0002] In the processing of an oil level sensor, a resistance sheet is needed. The resistance sheet is processed in an entire-plate mode, and the entire-plate resistance sheet is composed of many single resistance sheets. Therefore, in the processing of the oil level sensor, the entire-plate resistance sheet needs to be divided into single resistance sheets. The entire-plate resistance sheet has a notch on it, and the entire-plate resistance sheet can be divided into single resistance sheets along the notch.
[0003] The entire-plate resistance sheet has white edges on the left and right sides. When the entire-plate resistance sheet is divided into single resistance sheets, the white edges of the entire-plate resistance sheet need to be removed along the notch. Then, the entire-plate resistance sheet with the removed white edges is divided into three resistance sheets along the notch.
[0004] In the existing production process, because there is no device for removing the white edges of the entire-plate resistance sheet of the oil level sensor and dividing the entire-plate resistance sheet into strips, the white edges of the entire-plate resistance sheet need to be manually removed along the notch, and the entire-plate resistance sheet needs to be manually divided into three resistance sheets along the notch. The entire process is difficult to operate, has high labor intensity, and is prone to damage to the entire-plate resistance sheet. SUMMARY
[0005] The present application provides a processing device for dividing an entire-plate resistance sheet of an oil level sensor into strips, which is used for removing the white edges of the entire-plate resistance sheet and dividing the entire-plate resistance sheet into strips, provides a new device for removing the white edges of the entire-plate resistance sheet and dividing the entire-plate resistance sheet into strips, and solves the problems of difficult operation, high labor intensity, and damage to the entire-plate resistance sheet in manually removing the white edges of the entire-plate resistance sheet along the notch and manually dividing the entire-plate resistance sheet into three resistance sheets along the notch.
[0006] The technical scheme adopted by the present application to solve the technical problem is as follows: a processing device for dividing an entire-plate resistance sheet of an oil level sensor into strips, comprising a rack, a first entire-plate placement table on the rack for placing the entire-plate resistance sheet with white edges to be divided, and a second entire-plate placement table in front of the first entire-plate placement table for placing the entire-plate resistance sheet to be divided into strips. A first lifting cylinder is arranged above the first entire-plate placement table, and a white edge dividing structure that can be lifted with the first lifting cylinder is arranged on the piston part of the first lifting cylinder. The white edge dividing structure is used to remove the white edges on the left and right ends of the entire-plate resistance sheet. The rack is provided with a second lifting cylinder above the second whole-page setting table, and a strip dividing structure that can be lifted with the second lifting cylinder is arranged on the piston part of the second lifting cylinder; the whole-page resistance sheet after removing the white border is divided into three resistance sheets by the strip dividing structure; The rack is further provided with a carrying structure for carrying the whole-page resistance sheet after removing the white border on the first whole-page setting table to the second whole-page setting table.
[0007] Further, the rack is provided with a first whole-page clamping cylinder below the first whole-page setting table, and two first clamping plates that can be clamped and released are arranged on the piston part of the first whole-page clamping cylinder, and the two first clamping plates are located on the left and right sides of the first whole-page setting table; the spacing between the two first clamping plates is matched with the whole-page resistance sheet without removing the white border; The white border dividing structure comprises a first lifting seat arranged on the piston part of the first lifting cylinder, a first pressing support column is arranged on the first lifting seat, a main body positioning block matched with the main body of the whole-page resistance sheet is arranged on the bottom of the first pressing support seat, and a group of vacuum holes are formed on the bottom end face of the main body positioning block; a white border dividing cylinder is further arranged on the first lifting seat, a white border dividing block that can be lifted with the white border dividing cylinder is arranged on the piston part of the white border dividing cylinder, and one white border dividing block is arranged on the left and right sides of the main body positioning block; a white border dividing gap matched with the white border of the whole-page resistance sheet and the white border dividing block is arranged between the outer wall on the left and right sides of the first whole-page positioning table and the first clamping plate on the same side, and the white border dividing block can be lifted along the white border dividing gap.
[0008] Further, the piston part of the white border dividing cylinder is provided with a dividing positioning plate that can be lifted, a dividing horizontal plate that can be detached is arranged on the dividing positioning plate, and the white border dividing block is formed by extending downward from the left and right ends of the dividing horizontal plate; an upper avoiding notch matched with the first pressing support column is arranged in the middle of the whole-page dividing horizontal plate.
[0009] Further, the second whole-page setting table comprises a middle row positioning table matched with the middle row resistance sheet of the whole-page resistance sheet; a second whole-page clamping cylinder is arranged below the second whole-page setting table, and two second clamping plates that can be clamped and released are arranged on the piston part of the second whole-page clamping cylinder, and the two second clamping plates are respectively arranged on the left and right sides of the second whole-page setting table; a strip dividing gap matched with the left and right rows of resistance sheets of the whole-page resistance sheet is arranged between the outer wall on the left and right sides of the middle row positioning table and the second clamping plate on the same side. The row dividing structure comprises a second lifting seat arranged on the piston part of the second lifting cylinder, a second pressing support column is arranged on the second lifting seat, and a middle row positioning block matched with the middle row resistance sheet of the whole-page resistance sheet is arranged on the bottom of the second pressing support seat; a strip dividing cylinder is arranged on the left and right sides of the second pressing support column, a strip dividing block that can be lifted along the strip dividing gap is arranged on the piston part of the strip dividing cylinder, and the strip dividing block is matched with the left and right rows of resistance sheets of the whole-page resistance sheet. A group of vacuum holes are arranged on the end surface of the middle row positioning block and the bottom end surface of the strip dividing block.
[0010] Further, the conveying structure comprises a first pushing positioning seat arranged behind the first whole plate setting table, and a first pushing cylinder is arranged on the first pushing positioning seat, and a first pushing plate is arranged on the piston part of the first pushing cylinder and can move forward and backward, and the first whole plate setting table is provided with a first avoiding gap matched with the first pushing plate; and the first avoiding gap is communicated with the strip dividing gap. The first limiting plate matched with the front side of the whole plate resistance sheet is arranged on the front end of the rack of the middle row positioning table.
[0011] Further, a limiting gap is formed on the outer wall of each strip dividing block away from the middle row positioning block, and the limiting gap is matched with the second clamping plate on the corresponding side. This structure can limit the downward movement of the strip dividing block.
[0012] Further, the second lifting seat is provided with a single row displacement cylinder on the left and right sides of the second downward pressing support column, and a single row positioning seat matched with the left and right movement of the piston part of the single row displacement cylinder is arranged on the piston part of the single row displacement cylinder, and the strip dividing cylinder is arranged on the single row positioning seat on the corresponding side.
[0013] Further, the rack is provided with a feeding conveying sliding rail above the first whole plate setting table, and the feeding conveying sliding rail is provided with a feeding conveying sliding block which can slide along the feeding conveying sliding rail, and the feeding conveying sliding rail is provided with a feeding displacement seat which can move along the feeding conveying sliding rail, and the first lifting cylinder is arranged on the feeding displacement seat.
[0014] The single strip displacement cylinder is arranged on the rack, and the single strip displacement cylinder is provided with a strip translation plate which can move forward and backward along the single strip displacement cylinder, and the second lifting cylinder is arranged on the strip translation plate.
[0015] The beneficial effects of the present application are as follows: the white edge removing and strip dividing of the whole plate resistance sheet can be realized through the white edge dividing structure and the strip dividing structure; the first whole plate setting table and the second whole plate setting table cooperate with the conveying structure to convey the whole plate resistance sheet on which the white edge is removed from the first whole plate setting table to the second whole plate setting table, realize the continuous white edge removing and strip dividing, and realize the continuous and automatic white edge removing and strip dividing through one device; the problems of large operation difficulty, high labor intensity and easy damage to the whole plate resistance sheet caused by manually removing the white edge along the notch and then dividing the whole plate resistance sheet into three resistance sheets can be solved; and a new device for dividing the whole plate resistance sheet into strips is provided for market selection.
[0016] The white edge dividing blocks are formed by extending downward from the dividing horizontal plate and the left and right ends of the dividing horizontal plate, which can ensure that the two white edge dividing blocks are lifted synchronously by one white edge dividing cylinder, and the white edges on the left and right sides of the whole version resistance sheet are divided synchronously.
[0017] The first whole version clamping cylinder, the second whole version clamping cylinder, the first clamping plate and the second clamping plate can correct the position of the whole version resistance sheet in the left and right directions, so that the middle row of the whole version resistance sheet can be in the position where it should be, and the white edge position or the notch between the three resistance sheets can be in the required position, facilitating the white edge division and the strip division.
[0018] The first limiting plate can limit the position when the first pushing plate pushes the material. The single-row displacement cylinder can separate and transport the three rows of resistance sheets after the whole version resistance sheet is divided into strips.
[0019] The application will be described in more detail below in combination with the drawings and examples. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 The figure is a structural schematic diagram of the application.
[0021] Figure 2 The figure is a structural schematic diagram of the position of the strip dividing cylinder.
[0022] Figure 3 The figure is a structural schematic diagram of the position relationship between the first whole version setting table, the second whole version setting table and the first pushing cylinder.
[0023] Figure 4 The figure is a structural schematic diagram of the position of the first lifting cylinder.
[0024] Figure 5 The figure is a structural schematic diagram of the position relationship between the feeding and transporting slide rail and the first lifting cylinder.
[0025] Figure 6 The figure is a structural schematic diagram of the whole version resistance sheet before white edge division.
[0026] Figure 7 The figure is a structural schematic diagram of the whole version resistance sheet after white edge division.
[0027] Figure 8 The figure is a structural schematic diagram of the single resistance sheet.
[0028] The components include: 1. Frame; 2. First full-plate mounting platform; 3. First lifting cylinder; 4. First full-plate clamping cylinder; 5. First clamping plate; 6. First lifting seat; 7. First downward support column; 8. Main positioning block; 9. White edge dividing block; 10. White edge dividing gap; 11. Dividing positioning plate; 12. Dividing horizontal plate; 13. Upper clearance notch; 14. Middle row positioning platform; 15. Second full-plate clamping cylinder; 16. Second clamping plate; 17. Strip dividing gap; 18. Second lifting cylinder; 19. 20. Second lifting seat, 21. Second downward support column, 22. Middle row positioning block, 23. Strip dividing cylinder, 24. Strip dividing block, 25. First limiting plate, 26. First pushing positioning seat, 27. First pushing cylinder, 28. First clearance notch, 29. Limiting notch, 30. Single row displacement cylinder, 31. Single row positioning seat, 32. Single strip transfer cylinder, 33. Strip horizontal transfer plate, 34. Loading and transporting slide rail, 35. Vacuum hole, 36. White edge dividing cylinder, 37. First pushing plate. Detailed Implementation
[0029] Examples, such as Figures 1 to 8 The apparatus shown is a processing device for dividing a whole plate of resistive sheets of an oil level sensor into strips. It includes a frame 1, a first whole plate mounting table 2 on the frame 1 for placing whole plate resistive sheets with white edges to be divided, and a second whole plate mounting table for placing whole plate resistive sheets to be divided into strips is provided in front of the whole plate positioning table on the frame 1. The frame 1 is located above the first plate mounting platform 2 and is equipped with a first lifting cylinder 3. The piston part of the first lifting cylinder 3 is equipped with a white edge dividing structure that can be raised and lowered with it. The white edge dividing structure is used to remove the white edges at both ends of the resistive sheet of the plate. The frame 1 is located above the second full plate mounting platform and is equipped with a second lifting cylinder 18. The piston part of the second lifting cylinder 18 is equipped with a strip-splitting structure that can rise and fall with it; the strip-splitting structure divides the full plate resistor sheet after removing the white edge into three resistor sheets. The frame 1 is also equipped with a transport structure for transporting the entire sheet of resistors that have had their white edges removed from the first full sheet mounting table 2 to the second full sheet mounting table.
[0030] The frame 1 is located below the first full-page mounting platform 2 and is equipped with a first full-page clamping cylinder 4. The piston part of the first full-page clamping cylinder 4 is equipped with two first clamping plates 5 that can clamp and release. The two first clamping plates 5 are located on the left and right sides of the first full-page mounting platform 2. The distance between the two first clamping plates 5 is adapted to the full-page resistive sheet with the white edge not removed. The white edge separating structure comprises a first lifting seat 6 arranged at the piston part of the first lifting cylinder 3, a first pressing support column 7 arranged on the first lifting seat 6, a main body positioning block 8 arranged at the bottom of the first pressing support seat and matched with the main body of the whole plate resistance sheet, a group of vacuum holes 34 formed at the bottom end face of the main body positioning block 8, a white edge separating cylinder 35 arranged on the first lifting seat 6, a white edge separating block 9 arranged at the piston part of the white edge separating cylinder 35 and capable of lifting along with the white edge separating cylinder 35, and one white edge separating block 9 arranged at each of the left and right sides of the main body positioning block 8; a white edge separating gap 10 matched with the white edge of the whole plate resistance sheet and the white edge separating block 9 is arranged between the outer wall of the left and right sides of the first positioning table of the whole plate and the same side first clamping plate 5, and the white edge separating block 9 can lift along the white edge separating gap 10.
[0031] The piston part of the white edge separating cylinder 35 is provided with a separating positioning plate 11 capable of lifting along with the white edge separating cylinder 35, the separating positioning plate 11 is provided with a separating horizontal plate 12 capable of being detached, the left and right ends of the separating horizontal plate 12 extend downward to form the white edge separating block 9, and the middle part of the whole plate separating horizontal plate 12 is provided with an upper avoiding notch 13 matched with the first pressing support column 7.
[0032] The second whole plate setting table comprises a middle row positioning table 14 matched with the middle row resistance sheet of the whole plate resistance sheet; the rack 1 is provided with a second whole plate clamping cylinder 15 below the second whole plate setting table, the piston part of the second whole plate clamping cylinder 15 is provided with two second clamping plates 16 capable of clamping and releasing, the two second clamping plates 16 are respectively arranged at the left and right sides of the second whole plate setting table, and a strip separating gap 17 matched with the left and right rows of resistance sheets of the whole plate resistance sheet is arranged between the outer wall of the left and right sides of the middle row positioning table 14 and the same side second clamping plate 16. The row separating structure comprises a second lifting seat 19 arranged at the piston part of the second lifting cylinder 18, a second pressing support column 20 arranged on the second lifting seat 19, a middle row positioning block 21 arranged at the bottom of the second pressing support seat and matched with the middle row resistance sheet of the whole plate resistance sheet; the second lifting seat 19 is provided with a strip separating cylinder 22 at each of the left and right sides of the second pressing support column 20, the piston part of the strip separating cylinder 22 is provided with a strip separating block 23 capable of lifting along the strip separating gap 17, and the strip separating block 23 is matched with the left and right rows of resistance sheets of the whole plate resistance sheet. A group of vacuum holes 34 are formed at the bottom end face of each of the middle row positioning block 21 and the strip separating block 23.
[0033] The conveying structure comprises a first pushing positioning seat 25 arranged behind the first whole plate setting table 2, a first pushing cylinder 26 arranged on the first pushing positioning seat 25, a first pushing plate 36 arranged at the piston part of the first pushing cylinder 26 and capable of moving forward and backward along with the first pushing cylinder 26, and a first avoiding notch 27 matched with the first pushing plate 36 and arranged at the first whole plate setting table 2; the first avoiding notch 27 is communicated with the strip separating gap 17. The first limiting plate 24 is arranged on the front end of the rack 1 and is matched with the front side of the whole-plate resistance sheet.
[0034] The limiting notch 28 is formed on the outer wall of the side of each baling block 23 away from the middle-row positioning block 21, and is matched with the second clamping plate 16 on the corresponding side.
[0035] The single-row displacement air cylinder 29 is arranged on the left and right sides of the second downward pressing support column 20, and the piston part of the single-row displacement air cylinder 29 is provided with a single-row positioning seat 30 which can move left and right with the piston part.
[0036] The single-baling air cylinder 31 is further arranged on the rack 1, and the single-baling air cylinder 31 is provided with a baling translation plate 32 which can move forward and backward with the single-baling air cylinder 31. The first lifting air cylinder 3 is arranged on the baling translation plate 32.
[0037] The implementation of the vacuum hole 34 to achieve the adsorption function does not belong to the innovation point of the present case, and the related air pipe, vacuum pump and other equipment also do not belong to the innovation point of the present case.
[0038] In the present case, the first lifting air cylinder 3, the second lifting air cylinder 18, the white edge dividing air cylinder 35, the first whole-plate clamping air cylinder 4, the second whole-plate clamping air cylinder 15, the first pushing air cylinder 26, the baling dividing air cylinder 22, the single-row displacement air cylinder 29 and the baling air cylinder are not the innovation points of the present case.
[0039] The first lifting cylinder 3 is driven by the feeding and carrying sliding block to move on the feeding and carrying sliding rail 33. The main body positioning block 8 on the first lifting cylinder 3 is adsorbed by lifting the first lifting cylinder 3, and then the whole page resistance sheet with white edges not removed in the previous process (which can be a feeding structure) is carried to the first whole page positioning table 2. After the whole page resistance sheet is carried to the first whole page positioning table 2, the first lifting cylinder 3 piston part rises, the first whole page clamping cylinder 4 clamps the whole page resistance sheet with white edges not removed, and the position of the whole page resistance sheet can be corrected. Then the first lifting cylinder 3 piston part descends, the main body positioning block 8 is pressed on the main body position of the whole page resistance sheet, and the white edge separation block 9 is pressed on the white edge of the whole page resistance sheet. The white edge separation cylinder 35 works to drive the white edge separation block 9 to move downward along the white edge separation gap 10, so that the white edge of the whole page resistance sheet is separated along the notch of the whole page resistance sheet white edge position. After separation, the white edge separation cylinder 35 piston part rises to reset to drive the white edge separation block 9 to return to the initial position, the first lifting cylinder 3 piston part rises to drive the main body positioning block 8 and the white edge separation block 9 to move upward, and then it is driven by the feeding and carrying sliding block to return to the feeding platform position for the next feeding and white edge separation.
[0040] According to needs, a vacuum hole 34 can also be arranged at the bottom end face of the white edge separation block 9, and a white edge collecting structure can be arranged below the middle part of the feeding and carrying sliding rail 33. After the white edge separation block 9 completes the white edge separation along with the downward movement of the white edge separation cylinder 35 piston part, the white edge is adsorbed, and then it is sent to the white edge collecting structure by the feeding and carrying sliding block. The white edge collecting structure can be a collecting groove. After the feeding and carrying sliding block moves to above the collecting groove, the first lifting cylinder 3 piston part descends, the white edge separation cylinder 35 piston part descends, and the white edge separation block 9 releases the white edge in the collecting groove. Then the first lifting cylinder 3 and the white edge separation cylinder 35 reset and move to the corresponding position of the previous process (which can be a feeding structure) for feeding.
[0041] After the white edge of the whole page resistance sheet is separated, the first pushing cylinder 26 works to drive the first pushing plate 36 to push the whole page resistance sheet with white edges removed to the second whole page positioning table, and the second clamping cylinder works to correct the position of the whole page resistance sheet on the second whole page positioning table. The middle row of resistance sheets in the whole page resistance sheet are located on the middle row positioning table 14, and the positions of the notches on both sides of the middle row of resistance sheets are adapted to the strip separation gap 17.
[0042] The single-row displacement cylinder 29 drives the strip dividing cylinder 22 and the strip dividing block 23 to move towards the middle row positioning table 14, and after moving to the position, the second lifting cylinder 18 works to drive the middle row positioning block 21 to press on the middle row positioning strip. At this time, the middle row positioning block 21, the middle row positioning table 14 and the middle row resistors of the white border removing whole plate resistors are matched; the two strip dividing blocks 23 are located on the left and right row resistors of the whole plate resistors; then, the strip dividing cylinder 22 works to drive the strip dividing block 23 to press the resistors of the corresponding row of the left and right row resistors of the whole plate resistors along the strip dividing gap 17, so that the left and right row resistors are separated along the notch at the joint position with the middle row resistors; because of the existence of the vacuum hole 34, the separated resistors are respectively adsorbed on the corresponding strip dividing block 23 and the middle row positioning block 21. The piston of the strip dividing cylinder 22 rises to drive the strip dividing block 23 to rise, and after the piston part of the strip dividing cylinder 22 rises to the position, the lifting cylinder works to drive the lifting seat to rise, and after rising to the position, the single-row displacement cylinder 29 drives the corresponding side strip dividing block 23 to run away from the middle row positioning block 21 to the position; then, the single strip moving cylinder 31 works to drive the strip translation plate 32, the lifting cylinder, the strip dividing block 23 and the middle row positioning block 21 to move to the upper of the next work station, and then the lifting cylinder drives the strip dividing block 23 and the middle row positioning block 21 to move the single strip resistors thereon to the next work station, and then the lifting cylinder rises to the position, and the single strip moving cylinder 31 drives the lifting cylinder to return to the upper of the second whole plate positioning table to divide the whole plate resistors into strips next time.
[0043] In the description of the present application, it should be understood that the terms "center", "transverse", "upper", "lower", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined as "first", "second" can be explicitly or implicitly included one or more of the features. In the description of the present application, unless otherwise stated, the meaning of "a plurality of" is two or more. In addition, the term "comprising" and any variation thereof is intended to cover non-exclusive inclusion.
[0044] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0045] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments. Unless the context clearly indicates otherwise, the singular forms “a” and “an” as used herein are also intended to include the plural. It should also be understood that the terms “comprising” and / or “including” as used herein specify the presence of the stated features, integers, steps, operations, units, and / or components, without excluding the presence or addition of one or more other features, integers, steps, operations, units, components, and / or combinations thereof.
[0046] The present invention has been described above by way of example with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any non-substantial improvements made using the inventive concept and technical solution; or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.
Claims
1. A processing device for dividing a whole resistance sheet of an oil level sensor into strips, characterized by: The first whole plate setting table is arranged on the rack for setting the whole plate resistance sheet to be divided, and the second whole plate setting table is arranged in front of the first whole plate setting table for setting the whole plate resistance sheet to be divided into strips; The first lifting cylinder is arranged above the first whole plate setting table, and the piston part of the first lifting cylinder is provided with a white edge dividing structure which can be lifted with the first lifting cylinder; the white edge dividing structure is used for removing the white edges at both ends of the whole plate resistance sheet; The second lifting cylinder is arranged above the second whole plate setting table, and the piston part of the second lifting cylinder is provided with a strip dividing structure which can be lifted with the second lifting cylinder; the strip dividing structure divides the whole plate resistance sheet after the white edges are removed into three resistance sheets; The rack is further provided with a carrying structure for carrying the whole plate resistance sheet after the white edges are removed from the first whole plate setting table to the second whole plate setting table.
2. The processing device for dividing the whole plate resistance sheet of the oil level sensor into strips according to claim 1, wherein: The first whole plate clamping cylinder is arranged below the first whole plate setting table, and the piston part of the first whole plate clamping cylinder is provided with two first clamping plates which can be clamped and released; the two first clamping plates are arranged on the left and right sides of the first whole plate setting table; the spacing between the two first clamping plates is matched with the whole plate resistance sheet without white edges; The white edge dividing structure comprises a first lifting seat arranged on the piston part of the first lifting cylinder, the first lifting seat is provided with a first pressing support column, the bottom of the first pressing support seat is provided with a main body positioning block matched with the main body of the whole plate resistance sheet, and the bottom end face of the main body positioning block is formed with a group of vacuum holes; the first lifting seat is further provided with a white edge dividing cylinder, the piston part of the white edge dividing cylinder is provided with a white edge dividing block which can be lifted with the white edge dividing cylinder, and the white edge dividing block is arranged on the left and right sides of the main body positioning block; the white edge dividing gap matched with the white edges of the whole plate resistance sheet and the white edge dividing block is arranged between the outer wall on the left and right sides of the first whole plate positioning table and the first clamping plate on the same side, and the white edge dividing block can be lifted along the white edge dividing gap.
3. The processing device for dividing the whole resistance sheet of the oil level sensor into strips according to claim 2, characterized in that: The piston part of the white edge dividing cylinder is provided with a dividing positioning plate which can be lifted with the white edge dividing cylinder, the dividing positioning plate is provided with a detachable dividing horizontal plate, the left and right ends of the dividing horizontal plate extend downward to form the white edge dividing blocks; the middle part of the whole plate dividing horizontal plate is provided with an upper avoiding notch matched with the first pressing support column.
4. The processing device for dividing the whole resistance sheet of the oil level sensor into strips according to any one of claims 1 to 3, characterized in that: The second whole plate setting table comprises a middle row positioning table matched with the middle row resistance sheets of the whole plate resistance sheet; the second whole plate clamping cylinder is arranged below the second whole plate setting table, and the piston part of the second whole plate clamping cylinder is provided with two second clamping plates which can be clamped and released; the two second clamping plates are arranged on the left and right sides of the second whole plate setting table, respectively; the strip dividing gap matched with the left and right rows of resistance sheets of the whole plate resistance sheet is arranged between the outer wall on the left and right sides of the middle row positioning table and the second clamping plate on the same side. The strip dividing structure comprises a second lifting seat arranged on the piston part of the second lifting cylinder, a second pressing support column arranged on the second lifting seat, and a middle row positioning block arranged on the bottom of the second pressing support seat and matched with the middle row of resistance pieces of the whole page resistance piece; the second lifting seat is arranged on the left and right sides of the second pressing support column, and a strip dividing cylinder is arranged on each side; the piston part of the strip dividing cylinder is arranged with a strip dividing block capable of ascending and descending along the strip dividing gap; the strip dividing block is matched with the left and right rows of resistance pieces of the whole page resistance piece; The bottom end surface of the middle row positioning block and the strip dividing block is arranged with a group of vacuum holes.
5. The apparatus for processing of oil level sensor whole plate resistance sheet into strips as claimed in claim 4 wherein: The conveying structure comprises a first pushing positioning seat arranged behind the first whole page setting table, a first pushing cylinder arranged on the first pushing positioning seat, a first pushing plate arranged on the piston part of the first pushing cylinder and capable of moving forward and backward, and a first avoiding gap arranged on the first whole page setting table and matched with the first pushing plate; the first avoiding gap is communicated with the strip dividing gap. The front end of the frame arranged on the middle row positioning table is arranged with a first limiting plate matched with the front side of the whole page resistance piece.
6. The apparatus for processing of oil level sensor whole plate resistance sheet into strips as claimed in claim 5 wherein: The outer wall of each strip dividing block arranged on the side away from the middle row positioning block is shaped with a limiting gap matched with the second clamping plate on the corresponding side.
7. The apparatus for processing of oil level sensor gage resistor segments into strips as claimed in claim 6 wherein: The left and right sides of the second lifting seat arranged on the second pressing support column are arranged with a single row displacement cylinder, the piston part of the single row displacement cylinder is arranged with a single row positioning seat capable of moving left and right, and the strip dividing cylinder is arranged on the single row positioning seat on the corresponding side.
8. The apparatus for processing of oil level sensor gage resistor segments into strips according to claim 7, wherein: The frame arranged above the first whole page setting table is arranged with a feeding conveying slide rail, the feeding conveying slide rail is arranged with a feeding conveying slide block capable of sliding thereon, the feeding conveying slide rail is arranged with a feeding displacement seat capable of moving thereon, and the first lifting cylinder is arranged on the feeding displacement seat.
9. The apparatus for processing of oil level sensor gage resistor segments into strips according to claim 8, wherein: The frame is further arranged with a single strip displacement cylinder, the single strip displacement cylinder is arranged with a strip translation plate capable of moving forward and backward thereon, and the second lifting cylinder is arranged on the strip translation plate.