Bearing seat structure convenient to clean
By designing an adjustable installation and support mechanism and combining the cleaning mechanism, the problems of the versatility and insufficient performance of the existing bearing seat cleaning devices are solved, efficient and comprehensive cleaning of different models of bearing seats is achieved, and the adaptive efficiency of the cleaning device is improved.
Patent Information
- Application Number
- CN202510849811.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2025-08-01
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The universality of existing bearing seat cleaning devices is limited and cannot be flexibly adjusted to adapt to bearing seats of different sizes. It is especially inefficient in multiple varieties and small batch production scenarios. Traditional cleaning equipment takes a long time and lacks effectiveness when dealing with large bearing seats.
A convenient cleaning bearing seat structure is designed, including installation mechanism, support mechanism and cleaning mechanism. Through adjustable support rods and cleaning rollers, coaxial support and all-round cleaning of bearing seats of different models can be achieved, which can adapt to diverse cleaning needs and increase the longitudinal working range when cleaning large bearing seats.
It achieves efficient and comprehensive cleaning of bearing seats of different models, breaks through the adaptation limitations of traditional cleaning equipment, significantly improves the versatility and cleaning efficiency of cleaning devices, and meets the needs of high precision and high efficiency in modern industries.
Smart Images

Figure CN120394413A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cleaning devices, and particularly to a convenient bearing housing structure for cleaning. Background Art
[0002] Among the numerous mechanical devices covered by the modern industrial system, the bearing housing, as the core component for supporting and stabilizing the bearing, is widely used in many key industrial fields such as automobile manufacturing, aerospace, heavy machinery, and motor production. With the continuous use of the bearing housing, a large amount of foreign matters such as metal debris, oil stains, and various impurities remaining from the processing process will inevitably accumulate in its internal cavity. The presence of these foreign matters seriously hinders the precise installation and use of the subsequent bearing inside the bearing housing, and is very likely to cause problems such as concentricity deviation and increased friction during the operation of the bearing, thereby significantly shortening the service life of the bearing and the bearing housing, and even triggering the malfunction shutdown of the entire mechanical device. Therefore, using professional cleaning equipment to perform efficient and thorough cleaning on the bearing housing has become a key link to ensure the stable operation of mechanical devices.
[0003] However, there are some deficiencies in the current design of bearing housing cleaning equipment: Firstly, the versatility of existing bearing housing cleaning devices is severely limited. Most of the cleaning devices circulating in the market, due to their fixed structural size design, can often only perfectly match a specific model of bearing housing. Once faced with bearing housings of different specifications and sizes, especially in the production scenarios of multiple varieties and small batches, these cleaning devices will be unable to cope, and cannot be flexibly adjusted to effectively clean bearing housings of different sizes, greatly restricting the improvement of production efficiency and the wide application of the equipment. Secondly, when dealing with larger-sized bearing housings, traditional cleaning equipment exposes more prominent efficiency bottlenecks. Since the length design of conventional cleaning rollers does not fully consider the depth requirements of large-sized bearing housings, during the actual cleaning operation, operators have to adopt a method of distinguishing depths and repeating operations multiple times to clean the entire inner wall of the bearing housing. In this way, not only does it greatly extend the cleaning time of a single bearing housing, increasing the labor cost and time cost, but also it cannot achieve the goal of comprehensively, thoroughly, and efficiently cleaning the inner wall of the bearing housing at one time, and it is difficult to meet the strict requirements of modern industrial production for high precision and high efficiency. Summary of the Invention
[0004] Aiming at the above problems, one object of the present invention is to make up for these deficiencies. More specifically, it provides a convenient bearing housing structure for cleaning, which improves the applicable range of the cleaning device, can place bearing housings of different sizes and models on this device for cleaning, and when facing a larger bearing housing, can adjust the depth of vertical cleaning, so as to complete the one-time cleaning of the inner wall of the bearing housing.
[0005] In the first aspect of the present invention, a bearing seat structure convenient for cleaning is provided, which specifically includes: an installation mechanism; the installation mechanism includes a main body and an insertion slot, and the main body is in a circular plate-like structure; the insertion slot is opened at the outer edges of both sides and the rear end of the main body; a support mechanism is provided on the installation mechanism, the prefabricated frame of the support mechanism is sleeved on the outer end of the main body, and the insertion rod inside the prefabricated frame is inserted and matched with the insertion slot, and the inner end of the front side of the prefabricated frame is in contact with the built-in part inside the main body; a cleaning mechanism is provided on the installation mechanism, the frame of the cleaning mechanism is arranged at the upper end of the movable block inside the main body, two groups of installation rods are arranged at the bottom of the frame, the installation rods are inserted and matched with the docking slots inside the movable block, a guiding slot is opened at the rear end of the right side of the frame, a movable frame is slidably installed on the left side of the frame, the screw rod at the rear side of the movable frame penetrates through the guiding slot, and a nut is threadedly installed on the screw rod at the rear side of the movable frame, and the nut is located at the outer end of the rear side of the frame.
[0006] Preferably, the installation mechanism includes: a slot and a telescopic block; the slot is opened at the inner end of the front side of the main body; the telescopic block is slidably installed at the middle position of the lower end inside the main body through an elastic member, and the wedge-shaped structure on the telescopic block extends into the slot.
[0007] Preferably, the installation mechanism includes: a movable slot, a double-headed lead screw, a sliding seat and a rotating shaft; the movable slots are symmetrically opened at the inner ends of both sides of the main body; the double-headed lead screw is horizontally rotatably installed at the bottom of the main body; the sliding seat is slidably installed in each movable slot, and the sliding seat is threadedly connected with the double-headed lead screw; the rotating shaft is rotatably installed above the sliding seat.
[0008] Preferably, the installation mechanism includes: a built-in part, a movable block and a docking slot; the built-in part is inserted into the slot; the movable block is slidably installed in the built-in part through an elastic member; the docking slot is vertically opened at the inner end of the movable block, and the docking slot can be inserted and matched with the wedge-shaped structure on the telescopic block.
[0009] Preferably, the support mechanism includes: a prefabricated frame and an insertion rod; a circular ring groove is provided inside the prefabricated frame; the insertion rods are opened at the rear side and both ends of the lower part inside the prefabricated frame.
[0010] Preferably, the support mechanism includes: a rotating ring, a jack and an elastic block; the rotating ring is rotatably installed in the circular ring groove inside the prefabricated frame; the jacks are symmetrically and equidistantly arranged above the rotating ring; the elastic blocks are equidistantly and movably installed at the upper end inside the rotating ring through elastic members, and each group of elastic blocks is located between two adjacent jacks.
[0011] Preferably, the support mechanism includes: a fixed block, a bottom rod, a support rod, and a positioning hole; the fixed blocks are equidistantly arranged above the rotating ring, and the bottom side of the interior of the fixed block is penetrated by a spring block; the bottom rods are symmetrically arranged at the lower ends of the fixed blocks, and the bottom rods are inserted and matched with the insertion holes; the support rods are slidably installed inside the fixed blocks; the positioning holes are equidistantly opened at the inner ends of the support rods, and the positioning holes can be inserted and matched with the spring blocks.
[0012] Preferably, the cleaning mechanism includes: a cleaning roller and a fixed groove; the cleaning rollers are respectively rotatably installed at the right end inside the frame body and inside the movable frame; the fixed grooves are respectively opened at the outer sides of the upper ends of the frame body and the movable frame, and bolts are screwed at the outer ends of the fixed grooves.
[0013] Preferably, the cleaning mechanism includes: a main pipe and a sub-pipe; the main pipe is arranged at the outer end of the frame body, and the upper end of the front side of the main pipe penetrates the fixed groove at the outer end of the frame body; the sub-pipe is located at the outer end of the movable frame, and the upper end of the front side of the sub-pipe penetrates the fixed groove on the movable frame, and the sub-pipe can be telescopically moved up and down on the main pipe, and the sub-pipe is communicated with the main pipe.
[0014] The present invention provides a bearing seat structure convenient for cleaning, having the following beneficial effects: 1. By providing an installation mechanism and a support mechanism in the present invention, an internal part is inserted into the main body, a movable block is slidably installed in the internal part through an elastic member, a telescopic block limits the movable block, the two sides of the main body are movably installed with sliding seats with rotating shafts through a double-headed lead screw, a prefabricated frame is arranged outside the main body, and a rotating ring is rotatably installed on the prefabricated frame. The fixed block is inserted into the rotating ring, and a support rod with a positioning hole is slidably installed at the inner end of the fixed block. During use, the extending length of each support rod on the fixed block is adjusted so that the support rod can effectively support the bearing seat. By rotating the double-headed lead screw, the sliding seat drives the rotating shaft to move, and the rotating shaft is abutted against both sides of the inner wall of the bearing seat, so that the bearing seat can be coaxial with the main body, thus facilitating subsequent cleaning. By inserting the cleaning mechanism onto the movable block, the movable block can drive the frame body to move forward. No matter what type of bearing seat is being cleaned, the cleaning roller in the frame body can always be closely attached to the inner wall of the bearing seat. In this way, the device can break through the adaptation limitations of traditional cleaning equipment, has excellent versatility, can fully meet diverse cleaning requirements, and significantly improves the adaptation efficiency of the cleaning device; 2. The present invention is provided with a cleaning mechanism, a movable frame is slidably installed in the frame body, and a cleaning roller is rotatably installed in the movable frame and the frame body, the auxiliary pipe and the main pipe are respectively fixed to the outer sides of the movable frame and the frame body, and the auxiliary pipe is slidably connected to the main pipe. When it is necessary to clean a large bearing seat, the movable frame is pulled upward so that the cleaning rollers in the movable frame and the frame body are used alternately. While moving the movable frame, the auxiliary pipe and the main pipe are staggered, which can increase the longitudinal working range, so that the cleaning equipment can take into account the deep inner wall of the large bearing seat, and synchronously clean the deep inside the bearing seat, ensuring that every inch of the inner wall of the large bearing seat can be cleaned efficiently and accurately, effectively solving the efficiency bottleneck of traditional cleaning equipment in processing large bearing seats. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The following drawings will provide a better understanding of the present invention and will more clearly demonstrate the advantages of the present invention. The drawings described herein are for illustrative purposes only of selected embodiments, not all possible implementations, and are not intended to limit the scope of the present invention.
[0016] In the attached figure: Figure 1 A schematic diagram of a three-dimensional structure according to an embodiment of the present invention is shown.
[0017] Figure 2 An exploded view of an embodiment according to the present invention is shown.
[0018] Figure 3 A schematic diagram of the connection structure of the mounting mechanism and the supporting mechanism according to an embodiment of the present invention is shown.
[0019] Figure 4 A schematic diagram of a connection structure between a portion of a mounting mechanism and a frame according to an embodiment of the present invention is shown.
[0020] Figure 5 A schematic diagram of the internal structure of the installation mechanism according to an embodiment of the present invention is shown.
[0021] Figure 6 A schematic diagram of a side cross-sectional structure of a mounting mechanism according to an embodiment of the present invention is shown.
[0022] Figure 7 A partial cross-sectional structural schematic diagram of a support mechanism according to an embodiment of the present invention is shown.
[0023] Figure 8 A schematic diagram of the deployment effect of the cleaning mechanism according to an embodiment of the present invention is shown.
[0024] Reference Signs List 1. Installation mechanism; 101, main body; 1011, insertion slot; 102. Slot; 1021. Telescopic block; 103. Movable slot; 1031. Double-headed lead screw; 104. Sliding seat; 1041. Rotating shaft; 105. Built-in part; 1051. Movable block; 1052. Docking slot; 2. Support mechanism; 201. Prefabricated frame; 2011. Insert rod; 202. Swivel ring; 2021. Jack; 2022. Elastic block; 203. Fixed block; 2031. Bottom rod; 2032. Support rod; 2033. Positioning hole; 3. Cleaning mechanism; 301. Frame body; 3011. Installation rod; 3012. Guide groove; 302. Movable frame; 3021. Nut; 303. Cleaning roller; 304. Fixed slot; 305. Main pipe; 3051. Sub-pipe. Detailed implementation manner
[0025] For the purposes, technical solutions, and advantages of the embodiments of the present invention to be clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings of the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0026] Example 1: Please refer to Figures 1 to 8 as shown: The present invention provides a bearing housing structure convenient for cleaning, including: an installation mechanism 1; the installation mechanism 1 includes a main body 101 and an insertion slot 1011, and the main body 101 is a circular plate-like structure; the insertion slot 1011 is opened at the outer edges on both sides and the rear end of the main body 101; a support mechanism 2 is provided on the installation mechanism 1, the prefabricated frame 201 of the support mechanism 2 is sleeved on the outer end of the main body 101, and the insertion rod 2011 inside the prefabricated frame 201 is inserted and matched with the insertion slot 1011, and the inner end of the front side of the prefabricated frame 201 is in contact with the built-in part 105 inside the main body 101; a cleaning mechanism 3 is provided on the installation mechanism 1, the frame body 301 of the cleaning mechanism 3 is arranged at the upper end of the movable block 1051 inside the main body 101, two groups of installation rods 3011 are arranged at the bottom of the frame body 301, the installation rods 3011 are inserted and matched with the docking slots 1052 inside the movable block 1051, a guiding slot 3012 is opened at the rear end of the right side of the frame body 301, a movable frame 302 is slidably installed on the left side of the frame body 301, the screw rod at the rear side of the movable frame 302 penetrates through the guiding slot 3012, and a nut 3021 is threadedly installed on the screw rod at the rear side of the movable frame 302, and the nut 3021 is located at the outer end of the rear side of the frame body 301.
[0027] As the second embodiment of the present invention, on the basis of Embodiment 1, as Figures 2 to 6 shown, the installation mechanism 1 includes: a slot 102 and a telescopic block 1021; the slot 102 is opened at the inner end of the front side of the main body 101; the telescopic block 1021 is slidably installed at the middle position of the lower end inside the main body 101 through an elastic member, and the wedge-shaped structure on the telescopic block 1021 extends into the slot 102; a movable slot 103, a double-headed lead screw 1031, a sliding seat 104 and a rotating shaft 1041; the movable slots 103 are symmetrically opened at the inner ends of both sides of the main body 101; the double-headed lead screw 1031 is horizontally rotatably installed at the bottom of the main body 101; the sliding seat 104 is slidably installed in each movable slot 103, and the sliding seat 104 is threadedly connected with the double-headed lead screw 1031; the rotating shaft 1041 is rotatably installed above the sliding seat 104; a built-in part 105, a movable block 1051 and a docking slot 1052; the built-in part 105 is inserted into the inside of the slot 102; the movable block 1051 is slidably installed in the built-in part 105 through an elastic member; the docking slot 1052 is vertically opened at the inner end of the movable block 1051, and the docking slot 1052 can be inserted and matched with the wedge-shaped structure on the telescopic block 1021.
[0028] The present invention is provided with a disc-shaped main body 101, and a sliding seat 104 with a rotating shaft 1041 is slidably installed in the movable slots 103 on both sides of the main body 101, so that the sliding seat 104 is controlled by a double-headed lead screw 1031. A circular insertion slot 1011 is formed at the outer edge of the main body 101, and the prefabricated frame 201 can be inserted into the outside of the main body 101 through the insertion slot 1011. When the bearing group is placed on the upper end of the main body 101 through the support mechanism 2, by moving the sliding seats 104 to both sides simultaneously, the rotating shaft 1041 can adjust the position of the bearing seat on the main body 101, so that the bearing seat is coaxial with the center of the main body 101. A rectangular built-in member 105 is inserted into the insertion slot 102 at the front end of the main body 101, and a cleaning mechanism 3 can be movably installed in the built-in member 105 through a movable block 1051. When the frame body 301 is not installed, by inserting the wedge-shaped structure on the telescopic block 1021 into the docking slot 1052, the movable block 1051 can be fixed in the built-in member 105.
[0029] As the third embodiment of the present invention, on the basis of Embodiment 1, as Figure 3 and Figure 7 shown, the support mechanism 2 includes: a prefabricated frame 201 and a plug rod 2011; a circular ring groove is provided inside the prefabricated frame 201; the plug rod 2011 is provided at the rear side and both ends below the inside of the prefabricated frame 201; a rotating ring 202, a jack 2021 and a spring block 2022; the rotating ring 202 is rotatably installed in the circular ring groove inside the prefabricated frame 201; the jacks 2021 are symmetrically and equidistantly arranged above the rotating ring 202; the spring blocks 2022 are movably installed at equal intervals inside the upper end of the rotating ring 202 through elastic members, and each group of spring blocks 2022 is located between two adjacent jacks 2021; a fixing block 203, a bottom rod 2031, a support rod 2032 and a positioning hole 2033; the fixing blocks 203 are equidistantly arranged above the rotating ring 202, and the bottom side inside the fixing block 203 is penetrated by the spring blocks 2022; the bottom rods 2031 are symmetrically arranged at the lower ends of the fixing blocks 203, and the bottom rods 2031 are inserted and matched with the jacks 2021; the support rods 2032 are slidably installed inside the fixing blocks 203; the positioning holes 2033 are equidistantly opened at the inner ends of the support rods 2032, and the positioning holes 2033 can be inserted and matched with the spring blocks 2022.
[0030] In the present invention, a prefabricated frame 201 is provided at the outer end of the main body 101. The insertion rod 2011 is inserted into the insertion slot 1011, so that the prefabricated frame 201 is fixed on the main body 101. A rotating ring 202 is rotatably installed inside the prefabricated frame 201. The bottom rod 2031 of the fixing block 203 is inserted into the insertion hole 2021, so that the fixing block 203 is inserted above the rotating ring 202. A support rod 2032 with a positioning hole 2033 is slidably installed inside the fixing block 203. By inserting the elastic block 2022 into the positioning hole 2033, the support rod 2032 can be fixed on the fixing block 203. When placing the bearing seat, the support rod 2032 can support the bearing seat. Through the rotational cooperation between the rotating ring 202 and the prefabricated frame 201, the bearing seat can rotate at the upper end of the main body 101.
[0031] As the 4th embodiment of the present invention, on the basis of Embodiment 1, as Figure 4 and Figure 8 shown, the cleaning mechanism 3 includes: a cleaning roller 303 and a fixing groove 304; the cleaning rollers 303 are respectively rotatably installed at the right end inside the frame body 301 and inside the movable frame 302; the fixing grooves 304 are respectively opened at the outer sides of the upper ends of the frame body 301 and the movable frame 302, and a bolt is screwed at the outer end of the fixing groove 304; a main pipe 305 and a sub-pipe 3051; the main pipe 305 is arranged at the outer end of the frame body 301, and the upper end of the front side of the main pipe 305 penetrates through the fixing groove 304 at the outer end of the frame body 301; the sub-pipe 3051 is located at the outer end of the movable frame 302, and the upper end of the front side of the sub-pipe 3051 penetrates through the fixing groove 304 on the movable frame 302. The sub-pipe 3051 can be telescopically moved up and down on the main pipe 305, and the sub-pipe 3051 is communicated with the main pipe 305.
[0032] In the present invention, by providing the frame body 301, the installation rod 3011 is inserted into the docking groove 1052, so that the frame body 301 is fixed on the movable block 1051. The movable frame 302 is slidably installed on the frame body 301 along the guiding groove 3012. The nut 3021 at the rear side of the movable frame 302 is tightened, so that the movable frame 302 is fixed on the frame body 301, and the two cleaning rollers 303 on the movable frame 302 and the frame body 301 are staggered. While the movable frame 302 moves upward, the sub-pipe 3051 fixed on the fixing groove 304 at the side end of the movable frame 302 rises from the main pipe 305. After the cleaning rollers 303 on the frame body 301 and the movable frame 302 are in contact with the inner wall of the bearing seat, the main pipe 305 is connected to the cleaning agent delivery pipe. While the bearing seat rotates with the rotation of the rotating ring 202, the cleaning agent can be sprayed onto the inner end of the bearing seat through the nozzles at the front ends of the main pipe 305 and the sub-pipe 3051, and then, with the cooperation of the cleaning rollers 303, the inner wall of the bearing seat is cleaned.
[0033] The specific usage mode and function of this embodiment: In the present invention, as Figures 1 to 8As shown in the figure, a sliding seat 104 is slidably installed in the movable slots 103 at both ends of the main body 101, so that the sliding seat 104 is controlled by the double-headed lead screw 1031 on the bottom side of the main body 101. An internal member 105 with a movable block 1051 is inserted into the insertion slot 1011 inside the main body 101, and the docking slot 1052 in the telescopic block 1021 is inserted and combined with the movable block 1051. A prefabricated frame 201 is sleeved on the outside of the main body 101, so that the insertion rod 2011 is inserted into the insertion slot 1011 in the main body 101. A rotating ring 202 is rotatably installed inside the prefabricated frame 201. The bottom rod 2031 is inserted into the insertion hole 2021, so that the fixed block 203 is fixed on the rotating ring 202. According to the size of the bearing seat, the extending length of the support rod 2032 on the fixed block 203 is adjusted. Then, the elastic block 2022 is inserted into the positioning hole 2033 at the corresponding position. The bottom side of the bearing seat is placed on the support rod 2032. Then, the screw is rotated to move the sliding seat 104 to both sides, and the rotating shaft 1041 pushes the bearing seat to be corrected, so that the bearing seat is coaxial with the main body 101. At this time, the frame body 301 is inserted onto the movable block 1051 through the installation rod 3011, so that the installation rod 3011 pushes the telescopic block 1021 out of the docking slot 1052. The elastic member pushes the frame body 301 forward through the movable block 1051, and the cleaning roller 303 on the frame body 301 and the movable frame 302 is attached to the inner wall of the bearing seat. Then, according to the longitudinal depth of the inner wall of the bearing seat, the movable frame 302 is moved so that the working depth of the cleaning roller 303 can completely cover the inner wall depth of the bearing seat. After tightening the nut 3021, the movable frame 302 is fixed on the frame body 301. While the movable frame 302 is moving, the main pipe 305 and the sub-pipe 3051 are staggered. The main pipe 305 is connected to the cleaning agent delivery pipe, so that the cleaning agent is sprayed onto the inner wall of the bearing seat through the nozzles on the main pipe 305 and the sub-pipe 3051. By rotating the bearing seat along the circular ring groove in the prefabricated frame 201, the cleaning roller 303 wipes and cleans the inner wall of the bearing seat.
[0034] In this article, the following points need to be noted: 1. The attached drawings of the embodiments of the present invention only relate to the structures involved in the embodiments of the present invention. Other structures can refer to the general design.
[0035] 2. Without conflict, the embodiments of the present invention and the features in the embodiments can be combined with each other to obtain new embodiments.
[0036] The above is only the specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can easily think of changes or substitutions, which should all be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.
Claims
1. A bearing housing structure that is convenient for cleaning, comprising: Mounting mechanism (1); the mounting mechanism (1) includes a main body (101) and an insertion slot (1011), the main body (101) is a circular plate-like structure; the insertion slot (1011) is opened at the outer edges of both sides and the rear end of the main body (101); characterized in that a support mechanism (2) is provided on the mounting mechanism (1), the prefabricated frame (201) of the support mechanism (2) is sleeved on the outer end of the main body (101), and the insertion rod (2011) inside the prefabricated frame (201) is inserted and matched with the insertion slot (1011), and the inner end of the front side of the prefabricated frame (201) is in contact with the built-in part (105) inside the main body (101); a cleaning mechanism (3) is provided on the mounting mechanism (1), the frame body (301) of the cleaning mechanism (3) is arranged at the upper end of the movable block (1051) inside the main body (101), two groups of mounting rods (3011) are arranged at the bottom of the frame body (301), and the mounting rods (3011) are inserted and matched with the docking slots (1052) inside the movable block (1051), a guiding slot (3012) is opened at the rear end of the right side of the frame body (301), a movable frame (302) is slidably mounted on the left side of the frame body (301), the screw rod at the rear side of the movable frame (302) penetrates through the guiding slot (3012), and a nut (3021) is threadedly mounted on the screw rod at the rear side of the movable frame (302), and the nut (3021) is located at the outer end of the rear side of the frame body (301).
2. The convenient cleaning bearing seat structure according to claim 1, characterized in that: The mounting mechanism (1) includes: a slot (102) and a telescopic block (1021); the slot (102) is opened at the inner end of the front side of the main body (101); the telescopic block (1021) is slidably mounted at the middle position of the lower end inside the main body (101) through an elastic member, and the wedge-shaped structure on the telescopic block (1021) extends into the slot (102).
3. The structure of a bearing housing according to claim 2, wherein: The mounting mechanism (1) includes: a movable slot (103), a double-headed lead screw (1031), a sliding seat (104) and a rotating shaft (1041); the movable slots (103) are symmetrically opened at the inner ends of both sides of the main body (101); the double-headed lead screw (1031) is horizontally rotatably mounted at the bottom of the main body (101); the sliding seat (104) is slidably mounted in each movable slot (103), and the sliding seat (104) is threadedly connected with the double-headed lead screw (1031); the rotating shaft (1041) is rotatably mounted above the sliding seat (104).
4. A bearing housing structure convenient for cleaning according to claim 3, characterized in that: The mounting mechanism (1) includes: a built-in part (105), a movable block (1051) and a docking slot (1052); the built-in part (105) is inserted inside the slot (102); the movable block (1051) is slidably mounted in the built-in part (105) through an elastic member; the docking slot (1052) is vertically opened at the inner end of the movable block (1051), and the docking slot (1052) can be inserted and matched with the wedge-shaped structure on the telescopic block (1021).
5. The convenient cleaning bearing seat structure according to claim 1, characterized in that: The support mechanism (2) includes: a prefabricated frame (201) and insertion rods (2011); an annular groove is provided inside the prefabricated frame (201); the insertion rods (2011) are arranged at the rear side and both ends below the inside of the prefabricated frame (201).
6. The convenient cleaning bearing seat structure according to claim 5, characterized in that: The support mechanism (2) includes: a rotating ring (202), insertion holes (2021), and elastic blocks (2022); the rotating ring (202) is rotatably installed in the annular groove inside the prefabricated frame (201); the insertion holes (2021) are symmetrically and equidistantly arranged above the rotating ring (202); the elastic blocks (2022) are movably installed at equal intervals at the upper end inside the rotating ring (202) through elastic members, and each group of elastic blocks (2022) is located between two adjacent insertion holes (2021).
7. The structure of a bearing housing according to claim 6, wherein: The support mechanism (2) includes: fixed blocks (203), bottom rods (2031), support rods (2032), and positioning holes (2033); the fixed blocks (203) are equidistantly arranged above the rotating ring (202), and the bottom sides inside the fixed blocks (203) are penetrated by the elastic blocks (2022); the bottom rods (2031) are symmetrically arranged at the lower ends of the fixed blocks (203), and the bottom rods (2031) are inserted and matched with the insertion holes (2021); the support rods (2032) are slidably installed inside the fixed blocks (203); the positioning holes (2033) are equidistantly arranged at the inner ends of the support rods (2032), and the positioning holes (2033) can be inserted and matched with the elastic blocks (2022).
8. A bearing housing structure that is convenient for cleaning according to claim 1, characterized in that: The cleaning mechanism (3) includes: cleaning rollers (303) and fixing grooves (304); the cleaning rollers (303) are respectively rotatably installed at the right end inside the frame body (301) and inside the movable frame (302); the fixing grooves (304) are respectively opened at the outer sides of the upper ends of the frame body (301) and the movable frame (302), and bolts are screwed at the outer ends of the fixing grooves (304).
9. The structure of a bearing housing according to claim 8, wherein: The cleaning mechanism (3) includes: a main pipe (305) and a sub-pipe (3051); the main pipe (305) is arranged at the outer end of the frame body (301), and the upper end of the front side of the main pipe (305) penetrates the fixing groove (304) at the outer end of the frame body (301); the sub-pipe (3051) is located at the outer end of the movable frame (302), and the upper end of the front side of the sub-pipe (3051) penetrates the fixing groove (304) on the movable frame (302). The sub-pipe (3051) can be telescopically moved up and down on the main pipe (305), and the sub-pipe (3051) is communicated with the main pipe (305).