Silicone oil fan clutch assembly assembling tool
By designing a silicone oil fan clutch assembly tooling and employing a combination of pneumatic and hydraulic systems, automated positioning and assembly of components of different specifications were achieved. This solved the problem of low installation efficiency of seals in existing technologies, improved assembly accuracy and efficiency, and reduced equipment investment costs.
Patent Information
- Application Number
- CN202511448966.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-11
- Publication Date
- 2025-12-19
AI Technical Summary
The installation of seals in existing silicone oil fan clutch assemblies requires separate tools and lacks rapid automated positioning and installation capabilities, which affects assembly efficiency and accuracy.
A silicone oil fan clutch assembly assembly fixture was designed, which uses a combination of pneumatic and hydraulic systems to achieve automated positioning and assembly of components of different specifications through multi-dimensional positioning and preset parameters.
It improves assembly accuracy and efficiency, reduces component damage rate caused by human error, lowers equipment investment costs and production flexibility, realizes coaxial automated operation, adapts to the production flexibility of various specifications, ensures the production efficiency of various specifications, and reduces equipment investment costs.
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Figure CN121156715A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of assembly tooling, in particular to a silicone oil fan clutch assembly tooling. BACKGROUND
[0002] The silicone oil fan clutch is a core component of the automobile cooling system, and its function is to automatically adjust the fan speed according to the engine temperature, balance the heat dissipation efficiency and energy consumption. Since its internal structure includes silicone oil cavity, bimetallic temperature sensor, sealing element, bearing and other precision components, and the assembly precision directly affects the clutch response sensitivity, sealing reliability and service life, therefore, the stability, accuracy and efficiency of the assembly tooling are extremely high.
[0003] The different sealing elements in the current clutch assembly require separate tools for installation, which is not conducive to quick automatic positioning and installation, and lacks a stable assembly positioning function for easy installation. SUMMARY
[0004] In view of the above problems in the prior art, the present application provides a silicone oil fan clutch assembly tooling.
[0005] The present application provides a silicone oil fan clutch assembly tooling, which specifically comprises: a tooling outer seat, the main body of the tooling outer seat is a surrounding structure with an opening on the front side; a surrounding frame is fixedly arranged inside and below the tooling outer seat; a supporting outer frame is fixedly arranged inside and below the middle of the tooling outer seat; a rotating sliding frame, the main body of the rotating sliding frame is a circular ring, four groups of guide support rods are fixedly arranged at equal intervals on the outside of the rotating sliding frame, and the guide support rods are slidingly arranged in the inside of the tooling outer seat in cooperation with the guide rails; six groups of control guide rods are fixedly arranged at equal intervals on the bottom of the rotating sliding frame; an assembly frame, the main body of the assembly frame is a circular ring, six groups of inner hinge seats are integrally arranged on the inside of the assembly frame, and each of the six groups of inner hinge seats is slidingly arranged on the outside of a control guide rod; a connecting top seat is fixedly arranged on the top of the rotating sliding frame, and a gas pump is fixedly arranged on the top rear side of the connecting top seat; a hydraulic cylinder is fixedly arranged on the top of the tooling outer seat, and the extension end of the hydraulic cylinder is fixedly connected to the top middle of the connecting top seat; two groups of electromagnetic valves are connected to the rear side of the gas pump through branch pipelines.
[0006] Optionally, a rear through slot is formed on the rear side of the tooling outer seat; a bottom shaft support is rotatably arranged inside and below the middle of the tooling outer seat in cooperation with a tapered roller bearing, and the bottom shaft support is located in the middle of the surrounding frame.
[0007] Optionally, four groups of side air cylinders are fixedly arranged on the inner wall of the surrounding frame, the extension end of each side air cylinder is fixedly provided with a surrounding roller frame, and two groups of shaft end surrounding rollers are rotatably arranged on the adjacent sides of the four groups of surrounding roller frames; the bottom shaft support is a hemispherical structure, and the shaft end surrounding rollers are higher than the bottom shaft support.
[0008] Optionally, the upper matching conical roller bearing rotatingly arranged for supporting the outer frame is provided with a rotating tray, which is in T-shaped structure and has a through hole structure in the middle.
[0009] Optionally, the rotating slide frame is integrally provided with six groups of protruding seats distributed at equal intervals on the outside; the bottom of the control guide rod is fixedly provided with a bottom hinge seat, and two groups of short connecting rods are hingedly arranged outside the bottom hinge seat.
[0010] Optionally, the assembling frame is integrally provided with six groups of alignment mounting seats distributed at equal intervals; the alignment mounting seats are aligned with the protruding seats; the alignment mounting seats are fixedly provided with distance control cylinders in the middle; the telescopic ends of the distance control cylinders are fixed to the bottom of a group of protruding seats; two groups of supporting connecting rods are hingedly arranged in the inner hinge seat; the other ends of the supporting connecting rods are hingedly provided with moving hinge seats; and the two groups of supporting connecting rods are parallel.
[0011] Optionally, the moving hinge seat is rotatably provided with two groups of supporting wheels outside; the position close to the supporting wheels at the bottom of the moving hinge seat is rotatably provided with a wedge-shaped push block; the short connecting rod is hingedly arranged between the two sides of the lower supporting connecting rod; the bottom of the distance control cylinder is provided with a connecting pipe connected with a connecting pipe; and the connecting pipe is provided with a pipeline connected to a group of electromagnetic valves.
[0012] Optionally, the side cylinder is provided with a pipeline in communication through the inside of the surrounding frame, and the pipeline penetrates out of the surrounding frame and is connected to a group of electromagnetic valves.
[0013] The beneficial effects are as follows: The tooling ensures the assembly accuracy of each component from the source through the design of the benchmark first multi-dimensional positioning; first, taking the center shaft as the core benchmark, the bottom shaft support adopts a hemispherical structure matched with a conical roller bearing, which not only reduces the rotation friction of the center shaft, but also avoids its downward deviation; a plurality of side cylinders drive the shaft end surrounding roller to form a ring type lateral fixation, which can adapt to different diameter center shafts by adjusting the air pressure of the air pump to ensure that the center shaft is always in the assembly center; secondly, in the assembly of key sealing components such as shaft seals, the wedge-shaped push block can uniformly disperse the pushing force of the hydraulic cylinder, avoid local stress leading to shaft seal deformation, ensure the accurate fitting of the shaft seal and the sealing groove of the lower shell, and greatly improve the sealing performance; at the same time, the specific structure of the rotating tray plays a limiting role on the lower shell, and the rotating support design of the supporting wheel can not only assist in positioning, but also avoid scratching the surface of the center shaft, so that multiple links jointly ensure the coaxiality of each component and reduce the risk of subsequent assembly deviation.
[0014] The tooling utilizes a combination of pneumatic and hydraulic systems to automate multiple steps, replacing traditional manual assembly. In the central shaft fixing stage, simply opening the corresponding solenoid valve allows the air pump to automatically inflate the side cylinder, achieving a ring-shaped fixation. In the shaft seal pressing stage, the hydraulic cylinder automatically adjusts the height of the rotating slide frame, and the distance control cylinder automatically drives the support wheels for auxiliary positioning. Subsequent pressing of the wedge-shaped push block also requires no manual intervention. Furthermore, after assembling a single component, closing the solenoid valve resets all components without manual disassembly or adjustment, allowing for rapid transition to the next component assembly process. This creates a cyclical operation of positioning, assembly, resetting, and reassembly, significantly shortening the assembly cycle. In addition, automated operation reduces direct human contact with precision components, lowering the component damage rate due to human error and indirectly reducing costs.
[0015] The tooling features a self-adjusting mechanism based on preset parameters, giving it exceptional sizing adaptability. The program can pre-record parameters for components of varying thicknesses, and after each component assembly, it automatically adjusts the hydraulic cylinder's extension and retraction, and the distance control cylinder's stroke, based on the total thickness of the assembled components, eliminating the need for manual measurement and adjustment. For example, for a larger diameter center shaft, the side cylinder thrust can be enhanced by increasing the air pump's output pressure, ensuring stable mounting. For shaft seals or bearings of different thicknesses, the hydraulic cylinder automatically adapts to the pressing stroke, ensuring the wedge-shaped push block maintains a precise pressing position. This one-click adaptability design allows the same tooling to meet the assembly needs of various specifications of silicone oil fan clutch assemblies, eliminating the need for separate tooling designs for different product specifications, reducing equipment investment costs, and improving the flexibility of the production line. Attached Figure Description
[0016] Figure 1 A schematic diagram of the working state structure of an embodiment of the present invention is shown; Figure 2 An embodiment of the present invention is shown. Figure 1 A schematic diagram of the rear structure; Figure 3 A three-dimensional structural schematic diagram of an embodiment of the present invention is shown; Figure 4 A side-view structural schematic diagram of an embodiment of the present invention is shown; Figure 5 A schematic diagram of the assembly structure of the rotating slide frame in an embodiment of the present invention is shown; Figure 6 A side-view structural schematic diagram of the rotating sliding frame according to an embodiment of the present invention is shown; Figure 7 A schematic diagram of the connection structure of the wedge-shaped pusher block in an embodiment of the present invention is shown; Figure 8 An embodiment of the present invention is shown. Figure 7 A schematic diagram of the movement state structure.
[0017] List of reference signs: 1, tool outer seat; 101, rear through slot; 102, bottom shaft support; 2, surrounding frame; 201, side cylinder; 202, surrounding roller frame; 203, shaft end surrounding roller; 3, support outer frame; 301, rotating tray; 4, rotating sliding frame; 401, guide support rod; 402, protruding seat; 403, control guide rod; 404, bottom hinge seat; 405, short connecting rod; 5, assembly frame; 501, alignment mounting seat; 502, distance control cylinder; 503, inner hinge seat; 504, support connecting rod; 505, moving hinge seat; 506, support wheel; 507, wedge-shaped push block; 508, connecting pipe; 6, connecting top seat; 7, hydraulic cylinder; 8, air pump; 9, electromagnetic valve. DETAILED DESCRIPTION
[0018] In order to make the purpose, scheme and advantages of the technical scheme of the present application clearer, the technical scheme of the present application embodiment will be described clearly and completely below in combination with the drawings of the specific embodiments of the present application.
[0019] Embodiment 1: please refer to the drawings in the specification, Figures 1 to 8 as shown: The present application provides a silicone oil fan clutch assembly tool, which comprises: a tool outer seat 1, the main body of the tool outer seat 1 is a surrounding structure with an opening left on the front side; a surrounding frame 2 is fixedly arranged inside and below the tool outer seat 1; a support outer frame 3 is fixedly arranged inside and below the middle of the tool outer seat 1; a rotating sliding frame 4, the main body of the rotating sliding frame 4 is a circular ring, four groups of guide support rods 401 are fixedly arranged at equal intervals on the outside of the rotating sliding frame 4, and the guide support rods 401 are slidingly arranged in the inside of the tool outer seat 1 in cooperation with the guide rails; six groups of control guide rods 403 are fixedly arranged at the bottom of the rotating sliding frame 4; an assembly frame 5, the main body of the assembly frame 5 is a circular ring, six groups of inner hinge seats 503 are integrally arranged on the inner side of the assembly frame 5, and the six groups of inner hinge seats 503 are slidingly arranged on the outside of one group of control guide rods 403; a connecting top seat 6 is fixedly arranged at the top of the rotating sliding frame 4, an air pump 8 is fixedly arranged at the top rear side of the connecting top seat 6; a hydraulic cylinder 7 is fixedly arranged at the top of the tool outer seat 1, and the telescopic end of the hydraulic cylinder 7 is fixedly connected to the top middle of the connecting top seat 6; two groups of electromagnetic valves 9 are connected to the rear side of the air pump 8 through branch pipes.
[0020] Among them, the rear side of the tool outer seat 1 is provided with a rear through slot 101; a bottom shaft support 102 is rotatably arranged inside and below the middle of the tool outer seat 1 in cooperation with a tapered roller bearing, and the bottom shaft support 102 is located in the middle of the surrounding frame 2.
[0021] The inner wall of the surrounding frame 2 is fixedly provided with four groups of side air cylinders 201 in the middle, the telescopic ends of the side air cylinders 201 are fixedly provided with surrounding roller frames 202, and the adjacent sides of the four groups of surrounding roller frames 202 are rotatably provided with two groups of shaft end surrounding rollers 203; the bottom shaft support 102 is a hemispherical structure, and the shaft end surrounding roller 203 is higher than the bottom shaft support 102.
[0022] The upper part of the supporting outer frame 3 is rotatably provided with a rotating tray 301 matched with a tapered roller bearing, and the rotating tray 301 is a T-shaped structure, and the middle of the rotating tray 301 is a through hole structure.
[0023] The outer part of the rotating sliding frame 4 is integrally provided with six groups of protruding seats 402 distributed at equal intervals; the bottom of the control guide rod 403 is fixedly provided with a bottom hinge seat 404, and the outer part of the bottom hinge seat 404 is rotatably provided with two groups of short connecting rods 405.
[0024] The outer part of the assembling frame 5 is integrally provided with six groups of alignment mounting seats 501 distributed at equal intervals, and the alignment mounting seats 501 are aligned with the protruding seats 402; the alignment mounting seats 501 are fixedly provided with control distance air cylinders 502 in the middle, the telescopic ends of the control distance air cylinders 502 are fixedly arranged at the bottom of a group of protruding seats 402; the inner hinge seats 503 are rotatably provided with two groups of supporting connecting rods 504 in the middle, and the other ends of the supporting connecting rods 504 are rotatably provided with moving hinge seats 505; the two groups of supporting connecting rods 504 are parallel.
[0025] The outer part of the moving hinge seat 505 is rotatably provided with two groups of supporting wheels 506; the bottom of the moving hinge seat 505 is rotatably provided with wedge-shaped push blocks 507 near the supporting wheels 506; the short connecting rods 405 are rotatably arranged at the middle of the two sides of the lower supporting connecting rods 504; the bottom of the control distance air cylinder 502 is provided with a connecting pipe 508 connected with a pipe, and the pipe is connected to a group of electromagnetic valves 9.
[0026] The side air cylinders 201 are connected by pipes arranged in the inner part of the surrounding frame 2, and the pipes are connected to a group of electromagnetic valves 9.
[0027] The installation sequence of each component is as follows: Each component is assembled by positioning one by one, the central shaft is installed first, then the lower shell, shaft seal, bearing and other different components are installed in sequence outside the central shaft, so as to ensure the coaxiality of each component and the central shaft, and avoid deviation in subsequent assembly; Central shaft installation and positioning (core reference assembly): The first step is to insert the center axis into the rotating tray 301. The rotating tray 301 has a through-hole structure in the middle, which can accommodate the center axis. When the center axis is completely inserted into the rotating tray 301, the bottom of the center axis will naturally contact the bottom shaft support 102. The bottom shaft support 102 is designed as a hemisphere and matches the tapered roller bearing, which can reduce the friction resistance during the subsequent rotation of the center axis through the rotating support function, and provide bottom support for the center axis to prevent it from sagging and deviating. The second step is to fix the side. Open the electromagnetic valve 9 connected to the side cylinder 201, start the air pump 8 to inflate, and the compressed air will pass through the pipeline into each group of side cylinders 201 through the group of electromagnetic valves 9. After the side cylinder 201 is inflated, it will be expanded outward, and the surrounding roller frame 202 fixed thereto will be centered to the center axis. The shaft end surrounding roller 203 adjacent to the surrounding roller frame 202 is arranged to directly contact the outer wall of the center axis, and the "encircling" contact of the four groups of shaft end surrounding rollers 203 realizes the lateral fixation of the center axis. If the diameter of the center axis is larger or stronger stability is required, the output air pressure of the air pump 8 can be increased to enhance the pushing force of the side cylinder 201, and the fixing effect can be further improved. After positioning is completed, the electromagnetic valve 9 is closed to maintain the expansion state of the side cylinder 201, so as to ensure that the center axis does not move in the subsequent assembly. Lower shell and shaft seal installation (key sealing component assembly): Lower shell pre-installation: first, the lower shell is sleeved on the outside of the positioned center axis, and the bottom of the lower shell is attached to the upper surface of the rotating tray 301. The rotating tray 301 has a T-shaped structure, and the protruding part can limit the lower shell to prevent horizontal sliding during assembly, ensuring the coaxiality of the lower shell and the center axis. Adjustment before shaft seal assembly: when installing the shaft seal or similar sealing components, the height of the press-fitting component needs to be adjusted first. At this time, the extension hydraulic cylinder 7 is extended, and the extension end of the hydraulic cylinder 7 will drive the connected top seat 6 to descend. The connecting top seat 6 is fixedly connected with the rotating slide frame 4, so the rotating slide frame 4 will descend synchronously. Through this action, the height of the wedge-shaped push block 507 associated below the rotating slide frame 4 can be adjusted, so that the wedge-shaped push block 507 is aligned with the preset assembly position of the shaft seal, preparing for subsequent precise press-fitting. Auxiliary positioning: open the electromagnetic valve 9 connected by the connecting pipe 508, start the air pump 8 to inflate, the air will pass through the group of electromagnetic valves 9 and the connecting pipe 508 into each group of distance control air cylinders 502; after the distance control air cylinder 502 is inflated, it is expanded, which will increase the distance between the rotating sliding frame 4 and the assembly frame 5 connected at both ends; the inner hinge seat 503 on the inside of the assembly frame 5 is slidingly arranged outside the control guide rod 403, when the distance increases, the control guide rod 403 will pull the short connecting rod 405 outside the bottom hinge seat 404 to rotate, the short connecting rod 405 will in turn drive the supporting connecting rod 504 to rotate, and finally the moving hinge seat 505 at the end of the supporting connecting rod 504 and the supporting wheel 506 will move towards the center shaft, until the supporting wheel 506 is attached to the outside of the center shaft; the supporting wheel 506 adopts a rotating structure, which can rotate synchronously with the center shaft during the up and down movement of the moving hinge seat 505, which not only avoids scratching the surface of the center shaft, but also maintains the stable movement of the moving hinge seat 505, providing lateral auxiliary support for shaft seal press fitting; Shaft seal automatic press fitting: continue to extend the hydraulic cylinder 7 to further lower the connecting top seat 6 and the rotating sliding frame 4, and the wedge-shaped push block 507 will move downward synchronously with the moving hinge seat 505 until it contacts the center position of the shaft seal; the wedge-shaped structure of the wedge-shaped push block 507 can evenly distribute the pushing force of the hydraulic cylinder 7 to the shaft seal, avoiding excessive local stress that causes the shaft seal to deform; under the action of uniform pushing force, the shaft seal will move downward along the center shaft until it is completely embedded in the sealing groove of the lower shell, realizing automatic assembly of the shaft seal without manual press fitting, improving assembly efficiency and sealing performance; Example 2: Cyclic assembly operation: after completing the shaft seal assembly, open the electromagnetic valve 9 to reverse the air pump 8 to exhaust, the distance control air cylinder 502 and the side air cylinder 201 will reset, the supporting wheel 506 will be separated from the center shaft, the shaft end surrounding roller 203 will be retracted, and the rotating sliding frame 4 will be reset by retracting the hydraulic cylinder 7, so that the above-mentioned process can be followed to sequentially install bearings, end covers and other components, realizing continuous assembly of multiple components; Example 3: Precise adjustment principle: the thickness parameters of each component are pre-set and recorded by the program, after completing the assembly of each component, the program will automatically adjust the extension amount of the hydraulic cylinder 7 (control press fitting height) and the stroke of the distance control air cylinder 502 (control the opening and closing distance of the supporting wheel 506) according to the total thickness of the assembled components, without manual measurement and adjustment, which can automatically adapt to components of different thicknesses, realize precise automatic assembly, and adapt to various specifications of silicon oil fan clutch assemblies.
[0028] The specific use and effect of this embodiment: in this application, when in use, each component is installed one by one, the center shaft is installed first, and then different components are installed outside the center shaft in sequence; Figure 1 First, the central axis is inserted into the rotating tray 301, and after passing through the rotating tray 301, the bottom of the central axis contacts the bottom shaft support 102, which is supported by the rotating support function; open the electromagnetic valve 9 connected to the side cylinder 201, start the air pump 8 to inflate, and the air enters each group of side cylinders 201 through the group of electromagnetic valves 9, and the side cylinders 201 are opened to center the surrounding roller frame 202. The shaft end surrounding roller 203 contacts the central axis to fix the central axis, and the air pressure can be increased to enhance stability; at this time, close the electromagnetic valve 9 to maintain positioning; Install the lower shell and shaft seal; when installing the shaft seal or similar components, extend the hydraulic cylinder 7 to lower the connecting top seat 6 and the rotating slide frame 4, which can adjust the height of the wedge-shaped push block 507; Open the electromagnetic valve 9 connected to the connecting pipe 508, start the air pump 8 to inflate, and the air enters each group of distance control cylinders 502 through the group of electromagnetic valves 9 and connecting pipes 508, which opens each group of distance control cylinders 502, thereby increasing the distance between the rotating slide frame 4 and the assembly frame 5. By controlling the guide rod 403 to pull the short connecting rod 405 to rotate, the support connecting rod 504 is rotated, the moving hinge base 505 and the support wheel 506 are moved towards the central axis, the support wheel 506 is attached to the outside of the central axis, and the support wheel 506 can maintain stable movement during the up and down movement of the moving hinge base 505; The extending hydraulic cylinder 7 drives the connecting top seat 6 to continue to descend, and the wedge-shaped push block 507 contacts the center position of the shaft seal or similar components to generate a uniform pushing force, which assembles the shaft seal or similar components downward, thereby realizing automatic assembly; By repeating the above steps, different components can be installed in sequence, and the thickness of each component is recorded by the program to automatically adjust the installation position of the next assembly component, realizing precise automatic assembly; Open the electromagnetic valve 9 to reverse the air pump 8 to reset the distance control cylinder 502 and the side cylinder 201.
Claims
1. A silicone oil fan clutch assembly assembly tooling, characterized in that, include: Tooling outer seat (1), the main body of the tooling outer seat (1) is an enclosed structure with an opening on the front side; A frame (2) is fixedly installed inside the lower part of the tooling outer seat (1); a support frame (3) is fixedly installed inside the middle and lower part of the tooling outer seat (1); a rotating slide frame (4), the main body of which is circular, and four sets of guide support rods (401) are fixedly installed at equal intervals on the outside of the rotating slide frame (4), and the guide support rods (401) are slidably installed inside the tooling outer seat (1) in cooperation with the guide rail; six sets of control guide rods (403) are fixedly installed at equal intervals on the bottom of the rotating slide frame (4); an assembly frame (5), the assembly frame (5) The main body is a ring shape. The inner side of the assembly frame (5) is provided with six sets of inner hinge seats (503). Each of the six sets of inner hinge seats (503) slides outside a set of control guide rods (403). The top of the rotating slide frame (4) is fixedly provided with a connecting top seat (6). The rear side of the top of the connecting top seat (6) is fixedly provided with an air pump (8). The top of the tooling outer seat (1) is fixedly provided with a hydraulic cylinder (7). The telescopic end of the hydraulic cylinder (7) is fixedly connected to the middle of the top of the connecting top seat (6). The rear side of the air pump (8) is provided with a branch pipe connected to two sets of solenoid valves (9).
2. The silicone oil fan clutch assembly assembly tooling as described in claim 1, characterized in that, The tooling outer seat (1) has a rear through groove (101) on its rear side; the tooling outer seat (1) has a bottom shaft support (102) which is rotatably provided in the middle of the lower part of the interior with a tapered roller bearing, and the bottom shaft support (102) is located in the middle of the frame (2).
3. The silicone oil fan clutch assembly assembly tooling as described in claim 2, characterized in that, Four sets of side cylinders (201) are fixedly installed in the middle of the inner wall of the frame (2). Each side cylinder (201) has a roller frame (202) fixedly installed at its telescopic end. Two sets of shaft end rollers (203) are rotatably installed on the adjacent sides of the four sets of roller frames (202). The bottom shaft support (102) is a hemispherical structure, and the shaft end rollers (203) are higher than the bottom shaft support (102).
4. The silicone oil fan clutch assembly assembly tooling as described in claim 1, characterized in that, A rotating tray (301) is rotatably mounted on the upper part of the supporting frame (3) in conjunction with a tapered roller bearing. The rotating tray (301) has a T-shaped structure and a through hole in the middle.
5. The silicone oil fan clutch assembly assembly tooling as described in claim 1, characterized in that, The rotating slide frame (4) is integrally provided with six sets of equidistant protrusions (402); the bottom of the control guide rod (403) is fixedly provided with a bottom hinge (404), and two sets of short connecting rods (405) are hinged to the outside of the bottom hinge (404).
6. The silicone oil fan clutch assembly assembly tooling as described in claim 5, characterized in that, The assembly frame (5) is integrally provided with six sets of equidistant alignment mounting seats (501), which are aligned with the protruding seats (402). Each alignment mounting seat (501) is fixedly provided with a distance control cylinder (502), and the telescopic end of the distance control cylinder (502) is fixed at the bottom of a set of protruding seats (402). Each inner hinge seat (503) is hinged with two sets of support rods (504), and the other end of the support rod (504) is hinged with a movable hinge seat (505). The two sets of support rods (504) are parallel.
7. The silicone oil fan clutch assembly assembly tooling as described in claim 6, characterized in that, Two sets of support wheels (506) are rotatably provided on the outside of the movable hinge (505); wedge-shaped push blocks (507) are rotatably provided on the bottom of the movable hinge (505) near the support wheels (506); the short connecting rod (405) is hinged to the middle of the two sides of the lower support connecting rod (504); the bottom of the distance control cylinder (502) is provided with a pipe connected to a connecting pipe (508), and a pipe is provided on the outside of the connecting pipe (508) connected to a set of solenoid valves (9).
8. The silicone oil fan clutch assembly assembly tooling as described in claim 1, characterized in that, The side cylinder (201) is connected to the inside of the enclosure (2) by a pipe, and the pipe extends out of the enclosure (2) and connects to a set of solenoid valves (9).