Automobile shock absorber mounting device
By using an electric push rod to drive the slide plate and gears in an automated installation device, precise separation and fixing of nuts are achieved, solving the problem of low efficiency in traditional manual installation, significantly improving work efficiency and saving labor.
Patent Information
- Application Number
- CN202411715718.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2044-11-27
AI Technical Summary
Traditional manual installation methods are inefficient and labor-intensive when fixing car shock absorber spring mounts.
An automated installation device, comprising a housing, a dispensing assembly, an adjusting assembly, and a drive assembly, is used. An electric push rod drives a sliding plate to rotate, which in turn rotates a turntable and gears, enabling precise separation, transfer, and fixing of nuts.
It improves work efficiency, reduces labor requirements, and enables precise and efficient automated installation of nuts.
Smart Images

Figure CN119426973B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of automobile shock absorber, and relates to an automobile shock absorber installation equipment. BACKGROUND
[0002] In the precise assembly process of the automobile shock absorber, the shock support is first placed on the special clamp, then the spring is sleeved on the outer periphery of the telescopic oil cylinder of the shock support core component, then the dust cover and the spring seat are placed one by one outside the shock absorber oil cylinder, the spring seat is pressed, the spring seat passes through the oil cylinder, and the spring is compressed, and the high-strength nut is used to fix the threaded end at one end of the oil cylinder, so as to fix the spring seat.
[0003] However, in this link of fixing the spring seat, the traditional manual installation method needs the operator to manually install the nut on the threaded end at one end of the oil cylinder, and fasten it with a wrench, which affects the work efficiency and increases the labor. SUMMARY
[0004] The present application aims to provide an automobile shock absorber installation equipment that can solve the problems raised in the background art.
[0005] According to the technical scheme provided by the present application: an automobile shock absorber installation equipment, comprising a shell and a nut; the shell is provided with a first circular pipe, one end of the first circular pipe is provided with a distribution assembly, the other end of the first circular pipe is provided with an adjusting assembly, the adjusting assembly is located in the shell, a driving assembly is arranged above the adjusting assembly, a supporting assembly is arranged below the adjusting assembly, the supporting assembly and the driving assembly are both installed on the shell, the nuts are arranged in the distribution assembly and are arranged on the supporting assembly through the first circular pipe and the adjusting assembly, and the nuts are fixed under the driving of the driving assembly.
[0006] Preferably, the distribution assembly comprises a support plate, a circular ring, a turntable, a turntable shaft, a groove, an inclined rod and a sliding groove; the support plate is provided with a circular ring, the outer wall of the circular ring is provided with two inclined rods, the inclined rods are both provided with sliding grooves, and the two sliding grooves are on a straight line; the inner wall of the circular ring is rotatably provided with a turntable, the turntable is provided with two grooves, the grooves are communicated with the sliding grooves during the rotation of the turntable, the lower sliding groove is communicated with the upper end of the first circular pipe, and the turntable is provided with a turntable shaft.
[0007] Preferably, the distribution assembly further comprises a supporting rod, a first rotating rod, a supporting block, a second rotating rod and a rotating supporting block; the support plate is provided with two supporting rods, each supporting rod is provided with a supporting block, a first rotating rod is arranged between the two supporting blocks, one end of the first rotating rod extends out of one of the supporting blocks and is connected with the turntable shaft, a second rotating rod is arranged in the middle of the first rotating rod, and a rotating supporting block is rotatably arranged at the upper end of the second rotating rod.
[0008] Preferably, the driving assembly comprises an electric push rod, a motor connecting plate, a sliding plate, a motor, a rotating rod and a mounting cap; the electric push rod is mounted on the shell and a first through slot is formed in the shell; the output end of the electric push rod is provided with the motor connecting plate; the motor connecting plate is connected to the rotating support through the sliding plate; the sliding plate is located in the first through slot and is connected to the first through slot in a sliding mode; the lower end of the motor connecting plate is provided with the motor; the output end of the motor is provided with the rotating rod; and the mounting cap is arranged on the rotating rod.
[0009] Preferably, the driving assembly comprises a circular groove, a clamping cap, a clamping rod and a bolt; the output end of the motor is provided with the clamping cap; the clamping cap is internally provided with the clamping rod; the clamping cap is provided with the bolt; one end of the bolt extends into the clamping rod and fixes the clamping rod and the clamping cap; the lower end of the clamping rod is connected to the rotating rod; the interior of the rotating rod is provided with the circular groove; and the circular groove is communicated with the clamping cap.
[0010] Preferably, the adjusting assembly comprises a moving rod, a sliding rod, a rack, a gear, a first vertical plate, a fourth through slot, a gear rotating rod, a pull rope, a second circular tube and a spring; the sliding rod is slidably arranged in the shell; the sliding rod is provided with the rack; the upper end of the rack is provided with the moving rod; the moving rod is rotatably connected to the outer wall of the rotating rod; the lower end of the rack is engaged with the gear; and the gear is sleeved on the gear rotating rod; the first vertical plate is provided with the fourth through slot; the fourth through slot is rotatably provided with the gear rotating rod; the middle part of the gear rotating rod is provided with the pull rope; the other end of the pull rope extends out of the first vertical plate and is connected with the second circular tube; the upper end of the second circular tube is aligned with the lower end of the circular tube; and the spring is arranged between the second circular tube and the first vertical plate.
[0011] Preferably, the adjusting assembly further comprises a rectangular slot, a short shaft, a pull rod, a limiting rod, a second circular tube, a third circular tube and a fixing rod; the first vertical plate is provided with the rectangular slot; the rectangular slot is rotatably provided with the short shaft; the second circular tube is further provided with the pull rod and the limiting rod; and one end of the pull rod and the limiting rod respectively extends out of the first vertical plate.
[0012] Preferably, the supporting assembly comprises a second vertical plate, a spring telescopic rod and a supporting plate; three second vertical plates are arranged in the shell; a third through slot is formed between the three second vertical plates; three supporting plates are slidably arranged in the shell; the upper end of the supporting plate is outwardly bent; the three supporting plates are located between the three second vertical plates; and the spring telescopic rod is arranged between each second vertical plate and the opposite supporting plate.
[0013] The positive progress effect of the application is that:
[0014] The automobile shock absorber mounting device provided by the embodiment of the application has the following advantages:
[0015] 1. Through the precise control of the electric push rod, first drive the sliding plate to slide smoothly in the first groove, with the sliding of the sliding plate, it further promotes the second rotating rod to start to run downward, the downward movement of the second rotating rod effectively drives the rotation of the first rotating rod, the rotation of the first rotating rod in turn drives the rotation of the rotating disc, the groove on the rotating disc can accurately separate the nut located in the sliding groove one by one, and whenever a nut is successfully separated, it will be guided into another sliding groove below.
[0016] Once the nut is separated and falls into the sliding groove below, it will be transmitted by the first pipe and the second pipe and transmitted to the support plate, the two pipes not only ensure the rapid movement of the nut, but also ensure the stability and accuracy of the nut during transmission through the design inside.
[0017] In addition, the continuous downward movement of the electric push rod also triggers another mechanical linkage, in this process, the downward movement of the rack causes the rotation of the gear, and this rotation in turn pulls the second pipe to run to one side through the pull rope, the installation cap above is lowered, the bottom space is emptied, and it is ensured that the installation cap above can accurately cooperate with each nut transmitted;
[0018] In summary, the downward movement of the electric push rod makes the installation cap and the nut achieve accurate and efficient cooperation, and this cooperation process is a vivid embodiment of automatic processing technology, which discards the tediousness and inefficiency of traditional manual operation; not only improves the work efficiency, but also significantly saves the labor. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is the perspective view of the material distribution assembly of the present application.
[0020] Figure 2 is the rear perspective view of Figure 1 .
[0021] Figure 3 is the perspective view of the adjusting assembly of the present application.
[0022] Figure 4 is the enlarged view of the structure at A of Figure 3 .
[0023] Figure 5 is the sectional view of the rotating rod of the present application.
[0024] Figure 6 is the perspective view of the support assembly of the present application.
[0025] Figure 7 is the sectional view of the housing of the present application.
[0026] As shown in the figure: the shell 1; first through slot 11; second through slot 12; third through slot 13; electric push rod 2; motor connecting plate 21; slide plate 22; motor 23; rotating rod 24; round groove 241; cap 242; clamping rod 243; mounting cap 25; bolt 26; support plate 3; circular ring 31; rotating disc 32; rotating disc shaft 321; recess 33; inclined rod 34; sliding groove 35; support rod 36; first rotating rod 37; support block 38; second rotating rod 39; rotating support block 391; first circular pipe 4; moving rod 5; sliding rod 51; rack 52; gear 53; first vertical plate 54; rectangular groove 541; short shaft 542; fourth through slot 55; gear rotating rod 56; pull rope 57; pull rod 58; limiting rod 581; second circular pipe 59; spring 592; second vertical plate 6; spring telescopic rod 61; support plate 62. DETAILED DESCRIPTION
[0027] In order to make the technical scheme of the present application better understood, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work should belong to the scope of protection of the present application.
[0028] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "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 device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0029] As Figures 1-7 shown, the present application is a kind of automobile shock absorber installation equipment, including shell 1 and nut;The shell 1 is equipped with first circular pipe 4, one end of first circular pipe 4 is equipped with distribution assembly, distribution assembly and shell 1 are all installed on the support of equipment, the other end of first circular pipe 4 is equipped with adjusting assembly, adjusting assembly is located in shell 1, the upper portion of adjusting assembly is equipped with driving assembly, the lower portion of adjusting assembly is equipped with support assembly, support assembly and driving assembly are all installed on shell 1, nut is arranged in distribution assembly, and is arranged to support assembly through first circular pipe 4 and adjusting assembly, and under the driving of driving assembly, nut is fixed to the threaded end of one end of oil cylinder, to be used for fixing spring seat.
[0030] The material distributing assembly comprises a support plate 3, a circular ring 31, a rotating disc 32, a rotating disc shaft 321, a groove 33, an inclined rod 34 and a sliding groove 35; the support plate 3 is installed on a support of the device, the support plate 3 is provided with the circular ring 31, the outer wall of the circular ring 31 is provided with two inclined rods 34, the inclined rods 34 are each provided with two sliding grooves 35, the two sliding grooves 35 are on a straight line, the sliding grooves 35 are matched with the nuts, so that the nuts slide in the sliding grooves; the inner wall of the circular ring 31 is rotatably provided with the rotating disc 32, the rotating disc 32 is provided with two grooves 33, the grooves 33 are each matched with the nuts, the grooves 33 are communicated with the sliding grooves 35 in the process of rotation of the rotating disc 32, so that the lower sliding grooves 35 are communicated with the upper end of the first circular pipe 4, the rotating disc 32 is provided with the rotating disc shaft 321; in the process of rotation of the rotating disc shaft 321, the rotating disc 32 is driven to rotate, with the rotation of the rotating disc 32, the two grooves 33 are always matched with the sliding grooves 35, so that the nuts in the upper sliding grooves 25 are adjusted into the lower sliding grooves 25, the nuts in the upper sliding grooves 25 are separated out by the rotation of the rotating shaft 321, and are slid to the two support plates 62 through the inner walls of the first pipe 4 and the second pipe 59.
[0031] The material distributing assembly further comprises a support rod 36, a first rotating rod 37, a support block 38, a second rotating rod 39 and a rotating support block 391; the support plate 3 is provided with two support rods 36, each support rod 36 is provided with a support block 38, a first rotating rod 37 is arranged between the two support blocks 38, one end of the first rotating rod 37 extends out of one of the support blocks 38 and is connected with the rotating disc shaft 321, a second rotating rod 39 is arranged in the middle of the first rotating rod 37, and a rotating support block 391 is rotatably arranged at the upper end of the second rotating rod 39.
[0032] When the rotating support block 391 slides up and down in the first through groove 11, the first rotating rod 37 is driven to rotate by pushing the second rotating rod 39, and since the first rotating rod 37 is connected with the rotating shaft 321, the rotating shaft 321 connected with the first rotating rod 37 is driven to rotate at the same time.
[0033] The driving assembly comprises an electric push rod 2, a motor connecting plate 21, a sliding plate 22, a motor 23, a rotating rod 24 and a mounting cap 25; the housing 1 is provided with the electric push rod 2 and a first through groove 11, the output end of the electric push rod 2 is provided with the motor connecting plate 21, the motor connecting plate 21 and the rotating support block 391 are connected through the sliding plate 22, the sliding plate 22 is located in the first through groove 11 and is in sliding connection with the first through groove 11, the lower end of the motor connecting plate 21 is provided with the motor 23, the output end of the motor 23 is provided with the rotating rod 24, and the rotating rod 24 is provided with the mounting cap 25.
[0034] When the electric push rod 2 runs downward, the motor connecting plate 21 and the sliding plate 22 connected with the electric push rod 2 are driven to move downward synchronously, so that the sliding plate 22 slides up and down in the sliding groove 11; meanwhile, in the process of the downward movement of the motor connecting plate 21, the motor 23 is driven to rotate, and the motor 23 is started synchronously, driving the installation cap 25 to rotate, and in the process of the rotation of the installation cap 25, the electric push rod 2 drives the motor 23 to run downward, so that the installation cap 25 runs downward and moves to the nut, and the nut is screwed into the threaded end of the oil cylinder, thereby fixing the spring seat.
[0035] The driving assembly comprises a circular groove 241, a clamping cap 242, a clamping rod 243 and a bolt 26; the output end of the motor 23 is provided with the clamping cap 242, the clamping cap 242 is internally provided with the clamping rod 243, the clamping cap 242 is provided with the bolt 26, one end of the bolt 26 extends into the clamping rod 243 and fixes the clamping rod 243 and the clamping cap 242, the lower end of the clamping rod 243 is connected with the rotating rod 24, the rotating rod 24 is internally provided with the circular groove 241, and the circular groove 241 communicates with the clamping cap 242; the clamping cap 242 can be separated from the clamping rod 243 by rotating the bolt 26, so that the installation cap 25 can be replaced.
[0036] The adjusting assembly comprises a moving rod 5, a sliding rod 51, a rack 52, a gear 53, a first vertical plate 54, a fourth through groove 55, a gear rotating rod 56, a pull rope 57, a second circular pipe 59 and a spring 592; the sliding rod 51 is slidably arranged in the shell 1, the sliding rod 51 is provided with the rack 52, the upper end of the rack 52 is provided with the moving rod 5, the moving rod 5 is rotatably connected with the outer wall of the rotating rod 24, the lower end of the rack 52 is engaged with the gear 53, and the gear 53 is sleeved on the gear rotating rod 56; the first vertical plate 54 is provided with the fourth through groove 55, the fourth through groove 55 is rotatably provided with the gear rotating rod 56, the middle part of the gear rotating rod 56 is provided with the pull rope 57, the other end of the pull rope 57 extends out of the first vertical plate 54 and is connected with the second circular pipe 59, the upper end of the second circular pipe 59 is aligned with the lower end of the circular pipe 4, and the spring 592 is arranged between the second circular pipe 59 and the first vertical plate 54.
[0037] The adjusting assembly further comprises a rectangular groove 541, a short shaft 542, a pull rod 58, a limiting rod 581, the second circular pipe 59, a third circular pipe 591 and a fixing rod 593; the first vertical plate 54 is provided with the rectangular groove 541, the rectangular groove 541 is rotatably provided with the short shaft 542, and the second circular pipe 59 is further provided with the pull rod 58 and the limiting rod 581, and one end of each of the pull rod 58 and the limiting rod 581 extends out of the first vertical plate 54; the box body 1 is provided with a second through groove 12 for the pull rod 58 and the limiting rod 581 to pass through.
[0038] The screw cap is guided by the gravity and the first circular tube 4 inside, and falls smoothly into the internal space of the second circular tube 29. Then, the screw cap continues to fall and finally falls on the support plate 62, which stably catches the screw cap and ensures that the screw cap is in the predetermined position.
[0039] At the same time, the motor 23 in the entire device is executing its downward command, which directly drives the movement rod 5 connected thereto to move downward synchronously. The downward movement of the movement rod 5 not only changes its own position, but also drives the rotation of the gear 53 through the meshing relationship between the rack 52 and the gear 53 on the movement rod 5. The rotation of the gear 53 drives the gear rotating rod 56 connected thereto to start rotating, and the pull rope 57 wound on the gear rotating rod 56 is gradually tightened with the rotation.
[0040] The other end of the pull rope 57 is connected to the second circular tube 59. As the pull rope 57 is tightened, the second circular tube 59 is pulled and compresses the internal spring 592 along its movement path. As a result, the second circular tube 59 gradually moves away from the installation cap 25, providing enough space for the downward movement of the installation cap 25 to avoid collision between the two, ensuring the smooth operation of the device. In addition, as the second circular tube 59 moves, the installation cap 25 rotates to drive the screw cap and fix the threaded end of the screw cap cylinder.
[0041] When the electric push rod 2 starts to reset, the running direction of the entire device is reversed. At this time, the rack 52 moves upward with the upward movement of the movement rod 5, which causes the previously compressed spring 592 to release energy and push the second circular tube 59 to reset to its initial position. This resetting process not only prepares for the entry of the next screw cap, but also ensures that the entire device can continue to operate efficiently. Through such design, each screw cap can smoothly slide in the second circular tube 59 until it completes its designated assembly task. The automation and intelligence level of the entire process has been significantly improved.
[0042] The support assembly comprises a second vertical plate 6, a spring telescopic rod 61 and a support plate 62; three second vertical plates 6 are arranged in the shell 1 and are distributed in equal distances in the circumferential direction, and a third through slot 13 is arranged between the three second vertical plates 6; three support plates 62 are slidably arranged in the shell 1, the upper end of the support plate 62 is curved outward, the upper end of the support plate 62 is flush with the lower end of the second circular pipe 59, the three support plates 62 are located between the three second vertical plates 6, and the spring telescopic rod 61 is arranged between each second vertical plate 6 and the opposite support plate 62; when the nut comes down from the second pipe 59, the three support plates 62 support the nut, so that the nut is stably parked in the center of the three support plates 62, to ensure the stability of the nut, and when the mounting cap 25 moves downward, the mounting cap 25 extrudes the three support plates 62, so that the support plates 62 move outward synchronously and compress the spring telescopic rod 61, and the mounting cap 25 moves downward at the same time, and drives the nut to move downward and is fixed to the threaded end of one end of the oil cylinder.
[0043] Through the precise control of the electric push rod 2, the slide plate 22 is first driven to slide smoothly in the first through slot 11, and with the sliding of the slide plate 22, it further drives the second rotating rod 39 to start to move downward, the downward movement of the second rotating rod 39 effectively drives the rotation of the first rotating rod 31, the rotation of the first rotating rod 31 further drives the rotation of the rotating disc 32, and the groove 33 on the rotating disc 32 can accurately separate the nuts in the slide groove 35 one by one, and each time a nut is successfully separated, it will be guided into another slide groove 35 below.
[0044] Once the nuts are separated and fall into the slide groove 35 below, they will be transmitted by the first pipe 4 and the second pipe 59 and transmitted to the support plate 62, and the two pipes not only ensure the rapid movement of the nuts, but also ensure the stability and accuracy of the nuts during the transmission process through the design inside the two pipes.
[0045] In addition, the continuous downward movement of the electric push rod 2 also triggers another mechanical linkage, in which the downward movement of the rack 52 causes the rotation of the gear 53, and this rotating action further drives the second pipe 59 to move to one side through the pull rope 57, and the mounting cap 25 above descends, and the bottom space is emptied, so that the mounting cap 25 above can accurately cooperate with each nut transmitted;
[0046] In summary, the downward movement of the electric push rod 2 enables the accurate and efficient cooperation between the mounting cap 25 and the nut, and this cooperation process is a vivid embodiment of automatic processing technology, which abandons the tediousness and inefficiency of traditional manual operation, improves the work efficiency and significantly saves the labor.
[0047] It is understood that the above embodiments are only exemplary for illustrating the principles of the present application, and the present application is not limited thereto. Various modifications and improvements can be made by those skilled in the art without departing from the spirit and scope of the present application, and these modifications and improvements are also considered as the protection scope of the present application.
Claims
1. An automotive shock absorber installation device, characterized in that, Includes a housing (1) and nuts; the housing (1) is provided with a first round tube (4), one end of the first round tube (4) is provided with a material distribution component, the other end of the first round tube (4) is provided with an adjustment component, the adjustment component is located inside the housing (1), a driving component is provided above the adjustment component, and a support component is provided below the adjustment component. The support component and the driving component are both installed on the housing (1). The nuts are arranged in the material distribution component and arranged on the support component through the first round tube (4) and the adjustment component. Under the drive of the driving component, the nuts are fixed. The material distribution assembly includes a support plate (3), a support rod (36), a first rotating rod (37), a support block (38), a second rotating rod (39), and a rotating support block (391); the support plate (3) is provided with two support rods (36), each support rod (36) is provided with a support block (38), the first rotating rod (37) is provided between the two support blocks (38), one end of the first rotating rod (37) extends out to one of the support blocks (38) and is connected to the turntable shaft (321), the second rotating rod (39) is provided in the middle of the first rotating rod (37), and the rotating support block (391) is rotatably provided at the upper end of the second rotating rod (39); The drive assembly includes an electric push rod (2); a motor connecting plate (21); a sliding plate (22); a motor (23); a rotating rod (24); and a mounting cap (25). The housing (1) is equipped with an electric push rod (2) and has a first through slot (11). The output end of the electric push rod (2) is provided with a motor connecting plate (21). The motor connecting plate (21) and the rotating support block (391) are connected by a sliding plate (22). The sliding plate (22) is located in the first through slot (11) and is slidably connected with the first through slot (11). The lower end of the motor connecting plate (21) is provided with a motor (23). The output end of the motor (23) is provided with a rotating rod (24). The rotating rod (24) is provided with a mounting cap (25). The adjustment assembly includes a moving rod (5), a sliding rod (51), a rack (52), a gear (53), a first vertical plate (54), a fourth through slot (55), a gear rotating rod (56), a pull rope (57), a second round tube (59), and a spring (592); the sliding rod (51) is slidably provided inside the housing (1), and a rack (52) is provided on the sliding rod (51). The upper end of the rack (52) is provided with a moving rod (5), and the moving rod (5) is rotatably connected to the outer wall of the rotating rod (24). The lower end of the rack (52) is connected to the gear (592). 3) Meshing, the gear (53) is sleeved on the gear rod (56); a fourth through groove (55) is provided on the first vertical plate (54), the gear rod (56) is rotatably provided on the groove wall of the fourth through groove (55), a pull rope (57) is provided in the middle of the gear rod (56), the other end of the pull rope (57) extends out of the first vertical plate (54) and is connected to the second round tube (59), the upper end of the second round tube (59) is aligned with the lower end of the round tube (4), and a spring (592) is provided between the second round tube (59) and the first vertical plate (54); The adjustment assembly also includes a rectangular groove (541), a short shaft (542), a pull rod (58), a limiting rod (581), a second round tube (59), a third round tube (591), and a fixing rod (593); a rectangular groove (541) is provided on the first vertical plate (54), and a short shaft (542) is rotatably provided in the rectangular groove (541). A pull rod (58) and a limiting rod (581) are also provided on the second round tube (59), and one end of the pull rod (58) and the limiting rod (581) respectively extends out of the first vertical plate (54).
2. The automotive shock absorber installation device as described in claim 1, characterized in that: The material distribution assembly includes a ring (31), a turntable (32), a turntable shaft (321), a groove (33), an inclined rod (34), and a sliding groove (35); the support plate (3) is provided with a ring (31), and the outer wall of the ring (31) is provided with two inclined rods (34), and each inclined rod (34) is provided with a sliding groove (35), and the two sliding grooves (35) are on a straight line; the inner wall of the ring (31) is provided with a turntable (32), and the turntable (32) is provided with two grooves (33), and the grooves (33) communicate with the sliding grooves (35) respectively as the turntable (32) rotates, so that the lower sliding groove (35) communicates with the upper end of the first round tube (4), and the turntable (32) is provided with a turntable shaft (321).
3. The automotive shock absorber installation device as described in claim 2, characterized in that: The drive assembly includes a circular groove (241), a cap (242), a lever (243), and a bolt (26). The output end of the motor (23) is provided with a cap (242), and a lever (243) is provided inside the cap (242). A bolt (26) is provided on the cap (242), and one end of the bolt (26) extends into the lever (243) and fixes the lever (243) to the cap (242). The lower end of the lever (243) is connected to the rotating rod (24). A circular groove (241) is provided inside the rotating rod (24), and the circular groove (241) communicates with the cap (242).
4. The automotive shock absorber installation equipment as described in claim 3, characterized in that: The support assembly includes a second vertical plate (6), a spring telescopic rod (61), and a support plate (62); the housing (1) is provided with three second vertical plates (6), and a third through groove (13) is provided between the three second vertical plates (6); three support plates (62) are slidably provided in the housing (1), the upper end of the support plate (62) is bent outward, the three support plates (62) are located between the three second vertical plates (6), and a spring telescopic rod (61) is provided between each second vertical plate (6) and the opposite support plate (62).
Citation Information
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