Bearing press-fitting device
By designing a guide bearing press-fitting device and using hydraulic cylinders and shock-absorbing damping springs to alleviate vibration, the vibration problem of traditional bearing press-fitting equipment is solved, the press-fitting quality and efficiency are improved, and the stability of the product and the service life of the guide shaft are ensured.
Patent Information
- Application Number
- CN202422671846.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-11-04
AI Technical Summary
Traditional bearing press-fitting equipment experiences severe vibration during the bearing press-fitting process, which can lead to scratches on the bearing and shaft diameter, oscillations in the press-fitting curve, and breakage of the spiral spindle, affecting product quality.
A bearing pressing device is designed, which includes a guide shaft, transmission components, lifting components, shock-absorbing components and a power system. The guide sleeve is fixedly connected to the axle, the pressing force is provided by a hydraulic cylinder, and the shock-absorbing spring is used to alleviate vibration, thereby achieving automatic leveling and vibration reduction.
It effectively avoids the problems of cumbersome operation and strong vibration, improves the press-fitting quality and work efficiency, reduces the risk of scratches on bearings and shaft diameters, and improves the stability of the device and the service life of the guide shaft.
Smart Images

Figure CN223325812U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of bearing press-fitting tooling for rail transit vehicles, in particular to a bearing press-fitting device. Background Art
[0002] When rail transit vehicles are performing bearing press-fitting procedures, bearing press-fitting equipment is required for press-fitting operations.
[0003] Traditional bearing press-fitting trolleys are easy to move, simple to operate, and highly adaptable to different sites, making them widely used in bearing press-fitting processes. During the press-fitting of wheelset bearings on subway vehicles, operators visually adjust the coaxiality of the spiral spindle of the bearing press-fitting equipment with the wheelset shaft end bearing. This method is ineffective and produces poor quality. The coaxiality of the spiral spindle and the bearing is often not guaranteed, and severe vibration often occurs during the press-fitting process. Vibration problems frequently cause scratches on the bearings and shaft diameters, accompanied by oscillations in the press-fitting curve and breakage of the spiral spindle, which seriously affects the product quality of the wheelset shaft end bearing press-fitting.
[0004] Therefore, based on the above problems, how to solve the severe vibration during the press-fitting process and improve the press-fitting quality has become an important issue that technical personnel in this field need to solve urgently. Utility Model Content
[0005] The purpose of the utility model is to overcome the defects of the prior art and provide a bearing press-fitting device with low operating difficulty and high press-fitting quality.
[0006] In order to achieve the above purpose, the present invention provides the following technical solutions:
[0007] The utility model discloses a bearing press-fitting device, comprising:
[0008] a device body capable of displacement;
[0009] Transmission components for press-fit bearings;
[0010] The transmission component includes a guide shaft with a guide sleeve fixedly connected to the end thereof, and a press-fit shaft sleeve and a first hydraulic cylinder are sequentially mounted on the guide shaft;
[0011] a lifting component installed on the device body and connected to the first hydraulic cylinder for supporting the lifting of the transmission component; and
[0012] a power system providing a power source for the lifting component and the first hydraulic cylinder;
[0013] Among them, the device body is equipped with a shock-absorbing component corresponding to the tail end of the guide shaft for providing vertical vibration damping and buffering force, and the top of the shock-absorbing component is equipped with a V-shaped support block for supporting the transmission component, so that in the working state, the guide sleeve is connected to the axle shaft end, and the first hydraulic cylinder provides reciprocating buffering force to impact the press-fitted sleeve and press-fitted bearing.
[0014] Furthermore, the guide shaft is provided with a locking member and a locking sleeve at a position corresponding to the V-shaped support block;
[0015] The locking member is threadedly connected to the guide shaft;
[0016] One end of the locking sleeve contacts the locking member, and the other end contacts the first hydraulic cylinder.
[0017] Furthermore, the locking member is a nut or a threaded sleeve with a threaded hole.
[0018] Furthermore, the shock absorbing component is a shock absorbing damping spring;
[0019] The top end of the shock-absorbing and damping spring device is fixedly connected to the V-shaped support block, and the bottom end of the shock-absorbing and damping spring device is fixedly connected to a lead screw for spiral transmission with a support arranged on the device body.
[0020] Furthermore, the lifting component is provided with a support rod supporting the lifting of the first hydraulic cylinder and a second hydraulic cylinder connected to the power system;
[0021] The top end of the piston rod of the second hydraulic cylinder is slidably connected to the support rod through a slider.
[0022] Furthermore, the device body carries the power system, which includes a linear motor and a hydraulic pump.
[0023] Furthermore, a mounting hole is provided on the surface of the guide sleeve that contacts the end of the axle, and the mounting hole is fixedly connected to the axle via a bolt.
[0024] In the above technical solution, the utility model provides a bearing press-fitting device with the following beneficial effects:
[0025] The bearing pressing device designed by the present invention avoids the problems of complicated and inconvenient operation, strong vibration, poor pressing quality and low efficiency compared with the prior art in which the operator visually adjusts to ensure the horizontal pressing of the bearing pressing device. In the bearing pressing device, one end of the guide shaft of the transmission component is adjusted by a lifting component to meet the axle height, and the other end is supported by a shock-absorbing component. There is no need for manual visual leveling, which reduces the risks of scratches on the bearing and the shaft diameter, fluctuations in the pressing curve, and poor product quality. The device is simple to operate and has good stability. At the same time, the device can have its own shock-absorbing function through the shock-absorbing component, which effectively alleviates the vibration problem of the bearing pressing device, improves the operation quality, and relieves the locking pressure on the guide shaft, effectively prolongs the service life of the guide shaft, and improves work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.
[0027] Figure 1 This is an axonometric diagram of a bearing press-fitting device disclosed in the utility model;
[0028] Figure 2 This is a front full sectional view of a bearing press-fitting device disclosed in the utility model;
[0029] Figure 3 This is a top view of a bearing press-fitting device disclosed in the utility model;
[0030] Figure 4 It is a left view of a bearing press-fitting device disclosed in the utility model.
[0031] Description of reference numerals:
[0032] 10. Device body; 11. Universal wheel;
[0033] 20. Guide shaft; 21. Guide sleeve; 22. Press-fit sleeve; 23. First hydraulic cylinder; 24. Locking sleeve; 25. Locking piece;
[0034] 30. Lifting component; 31. Second hydraulic cylinder; 32. Support rod; 33. Push rod;
[0035] 40. Shock-absorbing damping spring; 41. V-shaped support block; 42. Lead screw;
[0036] 50. Linear motor;
[0037] 60. Hydraulic pump. DETAILED DESCRIPTION
[0038] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.
[0039] See also Figure 1-3 As shown;
[0040] The utility model discloses a bearing press-fitting device, comprising:
[0041] The device body 10 has universal wheels 11 installed at its lower part for moving the device body 10;
[0042] A transmission component is used for press-fitting bearings. The transmission component has a guide shaft 20, one end of which is fixedly connected to a guide sleeve 21. Three mounting holes are opened at the end of the guide sleeve 21, which is fixedly connected to the end of the axle by three bolts to ensure that the position of the guide sleeve 21 is fixed and the coaxiality between the guide sleeve 21 and the axle is avoided by visual inspection. During press-fitting, the bearing is sleeved on the outside of the guide sleeve 21. The outside of the guide shaft 20 is sleeved with a press-fitting sleeve 22 and a first hydraulic cylinder 23 in sequence from the end of the guide sleeve 21. One end of the press-fitting sleeve 22 contacts the bearing, and the other end contacts the first hydraulic cylinder 23. The first hydraulic cylinder 23 provides press-fitting force for the press-fitting sleeve 22.
[0043] The lifting component 30 is installed on the upper part of the device body 10 and is used to support the transmission component so that the transmission component meets the axle height requirement. The top end of the lifting component 30 is connected to the first hydraulic cylinder 23.
[0044] The power system provides a power source for the lifting component 30 and the first hydraulic cylinder 23. The device body 10 carries the power system, which includes a linear motor 50 and a hydraulic pump 60 installed on the device body 10. The hydraulic pump 60 is an aluminum alloy hydraulic pump 60. The linear motor 50 can enable the hydraulic pump 60 to realize the driving function, and the hydraulic pump 60 can convert the mechanical energy input by the linear motor 50 into liquid pressure energy output to the hydraulic cylinder.
[0045] Shock-absorbing component: a shock-absorbing component is installed at the tail end of the guide shaft 20 corresponding to the device main body 10. The shock-absorbing component is used to provide vertical vibration damping and buffering force. A V-shaped support block 41 for supporting the transmission component is installed on the top of the shock-absorbing component. When working, the guide sleeve 21 is connected to the axle shaft end, and the first hydraulic cylinder 23 is started to provide reciprocating buffering force to impact the press-fitted sleeve 22 to realize press-fitted bearings.
[0046] See also Figure 2 As shown:
[0047] Preferably, the guide shaft 20 is provided with a locking member 25 and a locking sleeve 24 at a position corresponding to the V-shaped support block 41;
[0048] The locking member 25 is threadedly connected to the guide shaft 20. The locking member 25 is a nut or a screw sleeve with a screw hole, which can be screwed with the guide shaft 20. The locking member 25 cooperates with the guide sleeve 21 to clamp the locking sleeve 24, the first hydraulic cylinder 23, and the press-fit sleeve 22 that are sequentially mounted on the guide shaft 20. The screw transmission also enables the spacing between the locking member 25 and the guide sleeve 21 to be adjustable.
[0049] One end of the locking sleeve 24 contacts the locking member 25 , and the other end contacts the first hydraulic cylinder 23 .
[0050] See also Figure 4 As shown:
[0051] Preferably, the shock absorbing component is a shock absorbing damping spring 40;
[0052] A V-shaped support block 41 is fixedly connected to the top of the shock-absorbing and damping spring device 40, and the locking sleeve 24 is supported by the V-shaped support block 41. A screw 42 is fixedly connected to the bottom end of the shock-absorbing and damping spring device 40, which is used for spiral transmission with a support set on the device body 10. The height of the V-shaped support block 41 can be adjusted by cooperating with the support, thereby cooperating with the lifting component 30 to ensure that the guide shaft 20 is in a horizontal state and the pressing accuracy is guaranteed. At the same time, the shock-absorbing and damping spring device 40 relieves and reduces the force and vibration of the guide shaft 20.
[0053] See also Figure 1 As shown:
[0054] Preferably, the lifting component 30 is provided with a support rod 32 supporting the lifting of the first hydraulic cylinder 23 and a second hydraulic cylinder 31 connected to the power system, and the top end of the piston rod of the second hydraulic cylinder 31 is slidably connected to the support rod 32 through a slider.
[0055] Specifically, the lifting component 30 includes a base, on which a second hydraulic cylinder 31 is installed. One end of a support rod 32 is rotatably connected to the base, and the other end of the support rod 32 is connected to the first hydraulic cylinder 23 through a push rod 33. The top end of the piston rod of the second hydraulic cylinder 31 is slidably connected to the support rod 32 through a slider. When the piston rod of the second hydraulic cylinder 31 is extended, the support rod 32 is driven to rotationally support the lifting of the transmission component.
[0056] In the above technical solution, the utility model provides a bearing press-fitting device, and the method of use is:
[0057] First, move the device body 10 to the desired position using the four universal wheels 11 and adjust the lifting component 30 to the desired height;
[0058] Bolt the guide sleeve 21 with the guide shaft 20 screwed onto it to the three holes at the end of the axle;
[0059] Install the bearing unit, press-fit sleeve 22, first hydraulic cylinder 23, locking sleeve 24, and locking piece 25 onto the guide shaft 20 in this order and secure them with the locking piece 25. The bearing unit is sleeved onto the guide sleeve 21, with one end in contact with the axle and the other end in contact with the press-fit sleeve 22.
[0060] The lead screw 42 is adjusted to the required height for contact with the locking sleeve 24, and the bearing pressing device is started. The hydraulic pressure is generated by the linear motor 50 and the hydraulic pump 60, so that the first hydraulic cylinder 23 continuously performs reciprocating impact motion to complete the bearing pressing work.
[0061] In the bearing press-fitting device, the end of the transmission component is supported by a shock-absorbing component, and the first hydraulic cylinder performs rapid reciprocating linear motion. The transmission component effectively alleviates frequent vibrations during operation through the shock-absorbing component. The device is simple to operate, has low difficulty, and has good press-fitting quality, while also helping to improve work efficiency.
[0062] The above description is merely illustrative of certain exemplary embodiments of the present invention. It goes without saying that those skilled in the art will be able to modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A bearing press-fitting device, characterized in that: include: a displaceable device body (10); Transmission components for press-fit bearings; The transmission component comprises a guide shaft (20) with a guide sleeve (21) fixedly connected to the end thereof, and a press-fit shaft sleeve (22) and a first hydraulic cylinder (23) are sequentially mounted on the guide shaft (20); and further comprises a lifting component (30) installed on the device body (10) and connected to the first hydraulic cylinder (23) for supporting the lifting of the transmission component; and a power system providing a power source for the lifting component (30) and the first hydraulic cylinder (23); The device body (10) is provided with a shock-absorbing component for vertically providing a vibration-damping and buffering force corresponding to the tail end of the guide shaft (20), and a V-shaped support block (41) for supporting the transmission component is provided at the top end of the shock-absorbing component, so that in the working state, the guide sleeve (21) is connected to the axle end, and the first hydraulic cylinder (23) provides a reciprocating buffering force to impact the press-fitted sleeve (22) and the press-fitted bearing.
2. A bearing press-fitting device according to claim 1, It is characterized by: The guide shaft (20) is provided with a locking member (25) and a locking sleeve (24) at a position corresponding to the V-shaped support block (41); The locking member (25) is threadedly connected to the guide shaft (20); One end of the locking sleeve (24) contacts the locking member (25), and the other end contacts the first hydraulic cylinder (23).
3. A bearing press-fitting device according to claim 2, characterized in that ; The locking piece (25) is a nut or a threaded sleeve with a threaded hole.
4. A bearing press-fitting device according to claim 1, characterized in that; The shock absorbing component is a shock absorbing damping spring device (40); The top end of the shock-absorbing and damping spring device (40) is fixedly connected to the V-shaped support block (41), and the bottom end of the shock-absorbing and damping spring device (40) is fixedly connected to a lead screw (42) for spiral transmission with a support provided on the device body (10).
5. A bearing press-fitting device according to claim 1, characterized in that; The lifting component (30) is provided with a support rod (32) for supporting the lifting of the first hydraulic cylinder (23) and a second hydraulic cylinder (31) connected to the power system; The top end of the piston rod of the second hydraulic cylinder (31) is slidably connected to the support rod (32) via a slider.
6. A bearing press-fitting device according to claim 1, characterized in that ; The device body (10) carries the power system, which includes a linear motor (50) and a hydraulic pump (60).
7. A bearing press-fitting device according to claim 1, It is characterized by: A mounting hole is provided on the surface of the guide sleeve (21) that contacts the end of the axle, and the mounting hole is fixedly connected to the axle via a bolt.