Motor bearing steel ball cleaning and drying all-in-one machine
By using the immersion-rotation cleaning structure and automated ball dispensing structure of the integrated cleaning and drying machine, the problems of low efficiency, unstable results, and high labor intensity in the cleaning process of motor bearing steel balls are solved, realizing an efficient and continuous cleaning and drying process, ensuring the cleanliness of the steel balls and the stability of the production process.
Patent Information
- Application Number
- CN202422986404.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-05
AI Technical Summary
In existing technologies, the cleaning process for steel balls in motor bearings is inefficient, has unstable cleaning results, is labor-intensive, poses safety risks, and the cleaning and drying processes are discontinuous, increasing labor costs and delays, thus affecting the quality of steel balls and production efficiency.
An integrated cleaning and drying machine is adopted, including an immersion and rotation cleaning structure, an automated ball dispensing structure, and a pull-down structure, to achieve continuous automated cleaning and drying of steel balls, reduce manual operation, and ensure cleanliness and quality stability.
It significantly improves cleaning and production efficiency, reduces labor intensity and costs, maintains the cleanliness and quality stability of steel balls, and ensures the continuity of the production process and high production standards.
Smart Images

Figure CN223587868U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to bearing steel ball processing technical field especially relates to a motor bearing steel ball cleaning drying all -in -one. BACKGROUND
[0002] In the production process of motor bearing, the surface quality plays a decisive role on the performance and life of the whole bearing, because the steel ball will be contaminated by oil stains, dust and other impurities in the manufacturing, storage and transportation process, if these pollutants are not removed in time, it will directly affect the precision, running stability and service life of the bearing, therefore, through using professional cleaning agent to clean and dry the steel ball thoroughly, ensure that it reaches high standard cleanliness and dryness before assembly, so as to guarantee the overall quality and reliability of motor bearing, improve the production efficiency and significantly reduce the bearing failure rate caused by steel ball pollution.
[0003] In the prior art, there are many drawbacks in the cleaning process of steel ball through the traditional hand brush mode, manual brushing not only has low efficiency, is difficult to meet the large-scale production demand, and the cleaning effect is unstable, and the quality is not the same due to the technical difference and fatigue of the operator, in addition, the labor intensity of hand brushing is big, long-term operation is not conducive to the health of the operator, and there is a safety risk of chemical cleaning agent contacting the skin, the hand brush can cause physical damage to the surface of the steel ball, affect its precision and service life, and increase the maintenance cost. UTILITY MODEL CONTENTS
[0004] The utility model aims at solving the shortcomings in the prior art, and provides a motor bearing steel ball cleaning drying all -in -one.
[0005] In order to achieve the above object, the utility model discloses the following technical scheme: a motor bearing steel ball cleaning and drying all -in -one, including operation platform, the operation platform top is fixed with the cleaning fluid loading storehouse, the operation platform top is fixed with the first lifting slide bar, one end of first lifting slide bar is fixed with the first upper support seat, the operation platform top is rotatably connected with the first lifting lead screw, the other end of first lifting lead screw is rotatably connected with the first upper support seat, the first lifting lead screw surface is connected with the first lifting seat of screw thread, the first lifting seat sliding connection is in the first lifting slide bar surface, the first lifting lead screw is rotated through the first motor drive, the first motor is fixed in the first upper support seat top, the first lifting seat one side is fixed with the steel ball cleaning round storehouse, the steel ball cleaning round storehouse bottom is penetrated and is set with the liquid inlet, the first lifting seat top and the steel ball cleaning round storehouse top are fixed with the first support plate, the first support plate top is fixed with the round rod bearing, the round rod bearing is rotatably connected with the horizontal rotary lever, one end of horizontal rotary lever is fixed with the first bevel gear, the other end of horizontal rotary lever is fixed with the third bevel gear, the first bevel gear surface is engaged with the second bevel gear, the second bevel gear is rotated through the second motor drive, the second motor is fixed in the first lifting seat top, the third bevel gear surface is engaged with the fourth bevel gear, the fourth bevel gear bottom is fixed with the vertical rotary lever, the vertical rotary lever other end is fixed with the cleaning rotary frame, the vertical rotary lever is rotatably connected with the first support plate.
[0006] Preferably, the first lifting seat top is fixed with a second support plate at the top of the steel ball cleaning circular bin, the second support plate is fixed with a second lower support seat at the top, the second lower support seat is fixed with a second lifting slide rod at the top, the second lifting slide rod is fixed with a second upper support seat at the top, the second lifting slide rod is rotatably connected with a second lifting lead screw at the top, the second lifting lead screw is driven to rotate by a fifth motor, the fifth motor is fixed at the top of the second upper support seat, the second lifting lead screw is threadedly connected with a second lifting seat on the surface, the second lifting seat is slidably connected on the surface of the second lifting slide rod, the second lifting seat is rotatably connected with a ball discharging rotary rod from top to bottom, the ball discharging rotary rod is fixed with a second gear at the top, the ball discharging rotary rod is fixed with a closing block at the bottom, the closing block is slidably connected to the bottom of the steel ball cleaning circular bin, a circular groove is formed through the first support plate top to the steel ball cleaning circular bin bottom, the ball discharging rotary rod is arranged in the circular groove, the radius of the circular groove is greater than the radius of the ball discharging rotary rod, the second gear is meshed with a first gear on the surface, the first gear is driven to rotate by a third motor, and the third motor is fixed at the top of the second lifting seat. In the prior art, the motor bearing steel ball cleaning and drying all-in-one machine needs to be manually taken out after completing the cleaning work and controlling the drying agent, which has the disadvantages of reducing production efficiency, increasing labor cost and labor intensity, and introducing secondary pollution or damage risk. This operation interrupts the continuity and automation of the cleaning and drying process, which is not conducive to maintaining the cleanliness and quality stability of the steel ball. In view of the problems, the utility model adopts an integrated ball discharging structure. When the control drying work is completed, the ball receiving facility is placed below the steel ball cleaning circular bin, then the fifth motor is started, the second lifting seat drives the closing block to descend under the driving of the fifth motor, when the descending height is greater than the thickness of the closing block, the third motor is started, the ball discharging rotary rod drives the closing block to rotate under the driving of the third motor, then the second bevel gear drives the cleaning rotary frame to rotate, and the steel ball falling process is completed, the production efficiency is improved, the labor cost and labor intensity are reduced, and the risk of secondary pollution or damage is reduced. The continuous and automatic operation process helps to maintain the cleanliness and quality stability of the steel ball, and ensures that the product meets the high standard production requirements.
[0007] Preferably, the operating machine top is fixed with a drying chamber shell, the inner wall of the drying chamber shell is fixed with a rotating rod, the surface of the rotating rod is rotatably connected with a falling ball plate, a torsional spring is arranged at the rotating connection position of the rotating rod and the falling ball plate, one end of the torsional spring is fixedly connected with the rotating rod, and the other end of the torsional spring is fixedly connected with the falling ball plate, the bottom of the falling ball plate is fixed with a first cable fixing block, the bottom of the first cable fixing block is fixed with a stretching cable, the other end of the stretching cable is fixed with a second cable fixing block, one side of the drying chamber shell is fixed with a fixed rod, the second cable fixing block is pulled by a pneumatic cylinder, the stretching cable passes around the bottom end of the fixed rod, and the pneumatic cylinder is fixed to the top of the operating machine. In the prior art, the dried steel balls still need a separate ball discharging device to enter the next process, which mainly includes increasing the operation steps and time, reducing the production efficiency, introducing additional labor cost and labor intensity, and interrupting the continuity of the production process, which causes delay and efficiency reduction in the production process. In view of the problems, the utility model adopts a pulling falling structure, after a series of related processes such as ball control drying are completed, the steel balls enter the drying structure, the heating element in the hot air blower above the drying structure is heated to a certain temperature, then hot air is blown out through the built-in fan, so that the heating of the object or space is realized. In the working process, the temperature control device is matched to control the temperature of the heating element, so as to ensure safe and effective heating effect. At this time, the pneumatic cylinder is started to pull the stretching cable, and the falling ball plate is offset downward under the action of the fixed rod. Under the action of gravity, the steel balls that are dried on the falling ball plate slide downward after drying is completed. After falling, the pneumatic cylinder is started, and the falling ball plate returns to the horizontal position under the action of the torsional spring, and the next round of drying operation is carried out. The operation steps can be eliminated, the production process is seamlessly connected, the production efficiency is significantly improved, the labor cost and labor intensity are reduced, the delay and efficiency reduction in the production process are reduced, the continuity and stability of the production process are maintained, and the performance and benefit of the overall production line are improved.
[0008] Preferably, the operating machine top is fixed with a ball receiving bearing seat, a ball receiving rotating rod is rotatably connected through the ball receiving bearing seat from top to bottom, the top of the ball receiving rotating rod is fixed with a ball receiving seat, and the ball receiving rotating rod is driven to rotate by a fourth motor. The fourth motor is fixed to the bottom of the ball receiving bearing seat. After the cleaning and drying control processes are completed, the fourth motor is started to drive the ball receiving seat to rotate, and after counterclockwise rotation of ninety degrees, the ball receiving seat comes to the position directly below the steel ball cleaning circular bin ball outlet. The ball receiving seat is provided with an inclined downward plane. After the steel ball falls, the steel ball falls into the next process under the action of gravity, and the cleaning, drying control and drying processes of the steel ball are connected.
[0009] Preferably, the cleaning rotating frame is fixed with rubber pads on each side. The rubber pads can prevent the steel balls from being damaged by the collision between the surface of the rotating frame and the steel balls.
[0010] Preferably, the operating machine is fixed with a damping spring shock absorber at the bottom. The damping spring shock absorber can prevent the steel balls from being damaged by the vibration of the machine during operation, and further prolong the service life of the machine.
[0011] Preferably, the damping spring shock absorber is provided with anti-skid lines at the bottom. The anti-skid lines can increase the contact area between the machine and the ground, so that the machine can run more stably.
[0012] Beneficial effects:
[0013] 1. In the prior art, the steel balls are cleaned by traditional manual brushing, which has many disadvantages. Manual brushing has low efficiency and cannot meet the demand of large-scale production. Moreover, the cleaning effect is unstable, and the quality is different due to the difference in skills and fatigue of the operators. In addition, manual brushing has high labor intensity, is harmful to the health of the operators, and has the risk of skin contact with chemical cleaning agents. Manual brushing can cause physical damage to the surface of the steel balls, affect the precision and service life of the steel balls, and increase the maintenance cost. To solve the above problems, the immersion rotating cleaning structure is adopted to significantly improve the cleaning efficiency, meet the demand of large-scale production, ensure the consistency of the cleaning effect, reduce the quality fluctuation caused by manual operation, reduce the labor intensity through automatic cleaning, improve the working environment, reduce the occupational health risk, avoid the danger of direct skin contact with chemical cleaning agents, prevent physical damage to the surface of the steel balls through precise control of the automatic equipment, maintain the original precision and prolong the service life, and thus effectively reduce the maintenance cost.
[0014] 2. In the prior art, the motor bearing steel ball cleaning and drying machine needs to be manually taken out after cleaning and drying the cleaning agent, which has the disadvantages of reducing production efficiency, increasing labor cost and labor intensity, and introducing secondary pollution or damage risk. This operation interrupts the continuity and automation of the cleaning and drying process, which is not conducive to maintaining the cleanliness and quality stability of the steel balls. To solve the above problems, the integrated ball output structure is adopted to significantly improve the production efficiency, reduce the labor cost and labor intensity, and reduce the risk of secondary pollution or damage. The continuous and automatic operation process helps to maintain the cleanliness and quality stability of the steel balls, and ensures that the products meet the high standard production requirements.
[0015] 3. In the existing technology, the drawbacks of requiring a separate ball-unloading device after drying steel balls before they can enter the next process mainly include increased operation steps and time, reduced production efficiency, and the introduction of additional labor costs and labor intensity. This design interrupts the continuity of the production process, leading to delays and decreased efficiency. To address these issues, this utility model adopts a pull-down structure, which eliminates additional operation steps, achieves seamless connection of the production process, significantly improves production efficiency, reduces labor costs and labor intensity, and reduces delays and decreased efficiency in the production process. This helps maintain the continuity and stability of the production process and improves the overall performance and efficiency of the production line. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0017] Figure 2 This is a three-dimensional structural diagram of the integrated cleaning and drying structure of this utility model;
[0018] Figure 3 for Figure 2 Enlarged view of point A in the middle;
[0019] Figure 4 for Figure 2 Enlarged view of point B in the middle.
[0020] Legend:
[0021] 1. Operating platform; 101. First lifting screw; 102. First lifting slide bar; 103. First upper support seat; 104. First lifting seat; 105. First motor; 106. Steel ball cleaning chamber; 107. Liquid inlet; 108. First support plate; 109. Round rod load-bearing component; 110. Horizontal rotating rod; 111. First bevel gear; 112. Second bevel gear; 113. Second motor; 114. Third bevel gear; 115. Fourth bevel gear; 116. Vertical rotating rod; 117. Cleaning rotating frame; 118. Cleaning fluid loading chamber; 119. Second support plate; 120. Second lifting slide bar; 121. Second lifting screw 1. Second upper support seat; 123. Third motor; 124. First gear; 125. Second gear; 126. Second lifting seat; 127. Second lower support seat; 128. Enclosing block; 129. Ball receiving seat; 130. Fourth motor; 131. Ball receiving rotating rod; 132. Ball discharging rotating rod; 133. Ball receiving bearing seat; 134. Fifth motor; 135. Hot air blower; 2. Drying chamber shell; 201. Rotating rod; 202. Ball dropping plate; 203. Torsion spring; 204. First cable fixing block; 205. Second cable fixing block; 206. Stretching cable; 207. Fixing rod; 208. Cylinder; 3. Damping spring shock absorber. DETAILED DESCRIPTION
[0022] In order to make the technical means, creative features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments and drawings, but the following embodiments are only preferred embodiments of the utility model, not all. Based on the embodiments in the embodiments, other embodiments obtained by those skilled in the art without making creative efforts all belong to the protection scope of the utility model.
[0023] The specific embodiments of the utility model are described below in combination with the drawings. Specific embodiments:
[0025] With reference to Figures 1-4The utility model provides an electric machine bearing steel ball cleaning and drying integrated machine, including operation machine 1, the top of operation machine 1 is fixed with cleaning liquid loading bin 118, the top of operation machine 1 is fixed with first lifting slide rod 102, and the other end of first lifting slide rod 102 is fixed with first upper support seat 103, and the top of operation machine 1 is rotatably connected with first lifting lead screw 101, and the other end of first lifting lead screw 101 is rotatably connected with first upper support seat 103, and the surface of first lifting lead screw 101 is threadedly connected with first lifting seat 104, and first lifting seat 104 is slidably connected to the surface of first lifting slide rod 102, and first lifting lead screw 101 is driven to rotate by first motor 105, and first motor 105 is fixed to the top of first upper support seat 103, and the side of first lifting seat 104 is fixed with steel ball cleaning round bin 106, and the bottom of steel ball cleaning round bin 106 is provided with liquid inlet hole 107, and the top of first lifting seat 104 and the top of steel ball cleaning round bin 106 are fixed with first support plate 108, and the top of first support plate 108 is fixed with round rod bearing 109, and round rod bearing 109 is rotatably connected with horizontal rotary rod 110, and one end of horizontal rotary rod 110 is fixed with first bevel gear 111, and the other end of horizontal rotary rod 110 is fixed with third bevel gear 114, and the surface of first bevel gear 111 is engaged with second bevel gear 112, and second bevel gear 112 is driven to rotate by second motor 113, and second motor 113 is fixed to the top of first lifting seat 104, and the surface of third bevel gear 114 is engaged with fourth bevel gear 115, and the bottom of fourth bevel gear 115 is fixed with vertical rotary rod 116, and the other end of vertical rotary rod 116 is fixed with cleaning rotary frame 117, and vertical rotary rod 116 is rotatably connected with first support plate 108. In the prior art, the steel ball is cleaned by the traditional hand brush, and the hand brush cleaning has many disadvantages, such as low efficiency, unstable cleaning effect, quality difference caused by the difference in technology and fatigue of the operator, large labor intensity, health risk of the operator caused by long-term operation, physical damage to the surface of the steel ball, influence on the precision and service life of the steel ball, and increase of maintenance cost. In view of the problems, the utility model adopts the soaking rotary cleaning structure, first, the bearing steel ball is placed in the steel ball cleaning round bin 106, the first motor 105 is started to make the steel ball cleaning round bin 106 slide down to the cleaning liquid loading bin 118 containing the cleaning agent, the cleaning agent enters the steel ball cleaning round bin 106 along the liquid inlet hole 107 and fully contacts the steel ball, then the second motor 113 is started to drive the vertical rotary rod 116 to rotate the cleaning rotary frame 117, to achieve the cleaning effect, after cleaning, the first motor 105 is started to lift the steel ball cleaning round bin 106 and rotate the cleaning rotary frame 117 to further dry the cleaning liquid, and then the drying process is carried out.
[0026] The second supporting plate 119 is fixed on the top of the first lifting seat 104 and the top of the steel ball cleaning circular bin 106, the second lower supporting seat 127 is fixed on the top of the second supporting plate 119 and the top of the first supporting plate 108, the second lifting sliding rod 120 is fixed on the top of the second lower supporting seat 127, the second upper supporting seat 122 is fixed on the top of the second lifting sliding rod 120, the second lifting lead screw 121 is rotatably connected to the top of the second lifting sliding rod 120, the second lifting lead screw 121 is driven to rotate by the fifth motor 134, the fifth motor 134 is fixed on the top of the second upper supporting seat 122, the second lifting seat 126 is threadedly connected to the surface of the second lifting lead screw 121, the second lifting seat 126 is slidably connected to the surface of the second lifting sliding rod 120, the ball discharging rotating rod 132 is rotatably connected through the second lifting seat 126 from top to bottom, the second gear 125 is fixed on the top of the ball discharging rotating rod 132, the closing block 128 is fixed on the bottom of the ball discharging rotating rod 132, the closing block 128 is slidably connected to the bottom of the steel ball cleaning circular bin 106, the circular groove is arranged through the first supporting plate 108 from top to bottom to the bottom of the steel ball cleaning circular bin 106, the ball discharging rotating rod 132 is arranged in the circular groove, the radius of the circular groove is greater than the radius of the ball discharging rotating rod 132, the first gear 124 is meshed with the surface of the second gear 125, the first gear 124 is driven to rotate by the third motor 123, and the third motor 123 is fixed on the top of the second lifting seat 126. In the prior art, the motor bearing steel ball cleaning and drying all-in-one machine needs to be manually taken out after completing the cleaning work and the drying of the cleaning agent, which mainly includes the following disadvantages: reducing production efficiency, increasing labor cost and labor intensity, and introducing secondary pollution or damage risk. The continuity and automation of the cleaning and drying process are interrupted in the operation, which is not conducive to maintaining the cleanliness and quality stability of the steel ball. In view of the problems, the utility model adopts an integrated ball discharging structure. When the drying work is completed, the ball receiving facility is placed below the steel ball cleaning circular bin 106, then the fifth motor 134 is started, the second lifting seat 126 drives the closing block 128 to descend under the driving of the fifth motor 134, when the descending height is greater than the thickness of the closing block 128, the third motor 123 is started, the ball discharging rotating rod 132 drives the closing block 128 to rotate under the driving of the third motor 123, then the second bevel gear 112 is started to drive the cleaning rotating frame 117 to rotate, and the steel ball falling process is completed.
[0027] The operation machine table 1 top is fixed with drying chamber shell 2, the inner wall of drying chamber shell 2 is fixed with rotary rod 201, the surface of rotary rod 201 is rotatably connected with drop ball plate 202, and the rotary rod 201 and drop ball plate 202 are rotatably connected with torsional spring 203, one end of torsional spring 203 is fixedly connected with rotary rod 201, the other end of torsional spring 203 is fixedly connected with drop ball plate 202, the bottom of drop ball plate 202 is fixed with first cable fixing block 204, the bottom of first cable fixing block 204 is fixed with tensile cable 206, the other end of tensile cable 206 is fixed with second cable fixing block 205, one side of drying chamber shell 2 is fixed with fixed rod 207, second cable fixing block 205 is driven and pulled by air cylinder 208, tensile cable 206 passes around the bottom end of fixed rod 207, and air cylinder 208 is fixed on the top of operation machine table 1.In the prior art, the steel balls after drying need a separate ball discharging device to enter the next process, and the disadvantages mainly include increasing operation steps and time, reducing production efficiency, introducing additional labor cost and labor intensity, the continuity of production process is interrupted in this design, which causes delay and efficiency reduction in the production process, aiming at such problems, the pulling and falling structure is used, after a series of related processes such as ball discharging after drying control, the steel balls enter the drying structure, the heating element in the hot air blower 135 above the drying structure is heated to a certain temperature, then hot air is blown out by the built-in fan, so that the heating of the object or space is realized, in the working process, the temperature control device is matched to control the temperature of the heating element, to ensure safe and effective heating effect, at this time, air cylinder 208 is started to pull tensile cable 206, under the action of fixed rod 207, drop ball plate 202 is offset downward, under the action of gravity, the steel balls originally on drop ball plate 202 for drying slide downward after drying, after falling, air cylinder 208 is started, drop ball plate 202 returns to the horizontal position under the action of torsional spring 203, and the next round of drying operation is carried out.
[0028] The operation machine table 1 top is fixed with ball receiving seat 133, ball receiving seat 133 top to bottom is rotatably connected with ball receiving rotating rod 131, ball receiving rotating rod 131 top is fixed with ball seat 129, ball receiving rotating rod 131 is driven to rotate by fourth motor 130, and fourth motor 130 is fixed on the bottom of ball receiving seat 133.After completing the cleaning and drying control process, fourth motor 130 is started to drive ball seat 129 to rotate, after counterclockwise rotation by ninety degrees, ball seat 129 comes to the position directly below the ball discharging position of steel ball cleaning circular bin 106, and the inclined downward plane provided with ball seat 129 is matched, after the steel ball falls, the steel ball falls into the next process under the action of gravity.
[0029] The rubber pad is fixed on each side of the cleaning rotating frame 117, which can prevent the steel balls from being damaged by the collision between the surface of the cleaning rotating frame 117 and the steel balls during the rotation. The damping spring shock absorber 3 is fixed at the bottom of the machine 1, which can prevent the steel balls from being damaged by the vibration generated during the operation of the machine, and further prolong the service life of the machine. The anti-skid lines are arranged on the bottom of the damping spring shock absorber 3, which can increase the contact area between the machine and the ground when the machine contacts the ground, so that the machine can run more stably.
[0030] The working principle of the utility model is: firstly, the bearing steel ball is put into the steel ball cleaning round bin 106, the first motor 105 is started to make the steel ball cleaning round bin 106 slide down to the cleaning liquid loading bin 118 filled with cleaning agent, the cleaning agent enters the steel ball cleaning round bin 106 along the liquid inlet hole 107 and fully contacts the steel ball, then the second motor 113 is started to drive the vertical rotating rod 116 to drive the cleaning rotating frame 117 to rotate, so as to achieve the cleaning effect, after cleaning, the first motor 105 is started, the steel ball cleaning round bin 106 is lifted and the cleaning rotating frame 117 is rotated to further dry the cleaning liquid, then the drying process is carried out, after the drying and ball discharging processes are completed, the steel ball enters the drying structure, the heating element in the air heater 135 above the drying structure is heated to a certain temperature, then hot air is blown out through the built-in fan, so that the object or space is heated, in the working process, the temperature control device is matched to control the temperature of the heating element, so that the safe and effective heating effect is ensured, at this time, the cylinder 208 is started to pull the stretching cable 206, under the action of the fixed rod 207, the ball falling plate 202 is offset downward, under the action of gravity, the steel ball on the ball falling plate 202 is dried and then slides down, after the ball falling, the cylinder 208 is started, the ball falling plate 202 returns to the horizontal position under the action of the torsional spring 203, and the next drying operation is carried out, after the cleaning and drying processes are completed, the fourth motor 130 is started to drive the ball receiving seat 129 to rotate, and the ball receiving seat 129 is located directly below the ball discharging position of the steel ball cleaning round bin 106 after rotating counterclockwise by ninety degrees, and the inclined downward plane provided on the ball receiving seat 129 is matched, after the steel ball falls, the steel ball falls into the next process under the action of gravity.
[0031] In the utility model, unless another definite provision and limitation, first feature is "on" or "under" second feature can include that first and second features are in direct contact, also can include that first and second features are not in direct contact but contact through other feature between them. Moreover, first feature "on", "above" and "on" second feature include that first feature is directly above and obliquely above second feature, or only indicate that first feature horizontal height is higher than second feature. First feature "under", "below" and "under" second feature include that first feature is directly below and obliquely below second feature, or only indicate that first feature horizontal height is less than second feature.
[0032] The basic principle, main features and advantages of the utility model are shown and described above. The skilled in the art should understand that the utility model is not limited by the above examples, the above examples and the description in the specification are only preferred examples of the utility model, and are not used to limit the utility model, various changes and improvements of the utility model are possible without departing from the spirit and scope of the utility model, and all fall within the scope of the claimed utility model. The scope of protection of the utility model is defined by the appended claims and their equivalents.
Claims
1. A motor bearing steel ball cleaning and drying all-in-one machine, comprising an operating machine table (1), characterized in that: The operation machine (1) top fixed with cleaning liquid loading warehouse (118), the operation machine (1) top fixed with first lifting slide bar (102), one end of first lifting slide bar (102) is fixed with first upper support seat (103), the operation machine (1) top rotary connection has first lifting lead screw (101), the other end of first lifting lead screw (101) is rotatably connected with first upper support seat (103), the surface of first lifting lead screw (101) is screw connected with first lifting seat (104), first lifting seat (104) is connected on the surface of first lifting slide bar (102) slidingly, first lifting lead screw (101) is driven to rotate by first motor (105), first motor (105) is fixed on the top of first upper support seat (103), one side of first lifting seat (104) is fixed with steel ball cleaning round warehouse (106), the bottom of steel ball cleaning round warehouse (106) is penetrated and is provided with liquid inlet hole (107), the top of first lifting seat (104) and the top of steel ball cleaning round warehouse (106) are fixed with first support plate (108), the top of first support plate (108) is fixed with round bar bearing (109), round bar bearing (109) is rotatably connected with horizontal rotary rod (110), one end of horizontal rotary rod (110) is fixed with first bevel gear (111), the other end of horizontal rotary rod (110) is fixed with third bevel gear (114), the surface of first bevel gear (111) is engaged with second bevel gear (112), second bevel gear (112) is driven to rotate by second motor (113), second motor (113) is fixed on the top of first lifting seat (104), the surface of third bevel gear (114) is engaged with fourth bevel gear (115), the bottom of fourth bevel gear (115) is fixed with vertical rotary rod (116), the other end of vertical rotary rod (116) is fixed with cleaning rotary frame (117), vertical rotary rod (116) is rotatably connected with first support plate (108).
2. The motor bearing steel ball cleaning and drying all-in-one machine according to claim 1, characterized in that: The top of the first lifting seat (104) is fixed with a second support plate (119) on the top of the steel ball cleaning circular bin (106), the top of the second support plate (119) is fixed with a second lower support base (127) on the top of the first support plate (108), the top of the second lower support base (127) is fixed with a second lifting slide rod (120), the top of the second lifting slide rod (120) is fixed with a second upper support base (122), the top of the second lifting slide rod (120) is rotatably connected with a second lifting lead screw (121), the second lifting lead screw (121) is driven to rotate by a fifth motor (134), the fifth motor (134) is fixed on the top of the second upper support base (122), the surface of the second lifting lead screw (121) is threadedly connected with a second lifting seat (126), the second lifting seat (126) is slidably connected to the surface of the second lifting slide rod (120), a ball outlet rotating rod (132) penetrates and rotatably connects the top to the bottom of the second lifting seat (126), the top of the ball outlet rotating rod (132) is fixed with a second gear (125), the bottom of the ball outlet rotating rod (132) is fixed with an enclosed block (128), the enclosed block (128) is slidably connected to the bottom of the steel ball cleaning circular bin (106), a circular groove is formed through the top of the first support plate (108) to the bottom of the steel ball cleaning circular bin (106), the ball outlet rotating rod (132) is arranged in the circular groove, the radius of the circular groove is greater than the radius of the ball outlet rotating rod (132), the surface of the second gear (125) is engaged with a first gear (124), the first gear (124) is driven to rotate by a third motor (123), and the third motor (123) is fixed on the top of the second lifting seat (126).
3. The motor bearing steel ball cleaning and drying all-in-one machine according to claim 1, characterized in that: The top of the operation machine (1) is fixed with a drying chamber shell (2), the inner wall of the drying chamber shell (2) is fixed with a rotating rod (201), the surface of the rotating rod (201) is rotatably connected with a ball falling plate (202), a torsional spring (203) is arranged at the rotating connection position of the rotating rod (201) and the ball falling plate (202), one end of the torsional spring (203) is fixedly connected with the rotating rod (201), and the other end of the torsional spring (203) is fixedly connected with the ball falling plate (202). The bottom of the ball falling plate (202) is fixed with a first cable fixing block (204), the bottom of the first cable fixing block (204) is fixed with a stretching cable (206), the other end of the stretching cable (206) is fixed with a second cable fixing block (205), one side of the drying chamber shell (2) is fixed with a fixed rod (207), the second cable fixing block (205) is pulled by a cylinder (208), the stretching cable (206) passes around the bottom end of the fixed rod (207), and the cylinder (208) is fixed on the top of the operation machine (1).
4. The motor bearing steel ball cleaning and drying all-in-one machine according to claim 1, characterized in that: The operating machine (1) top is fixed with a ball receiving bearing seat (133), the ball receiving bearing seat (133) top-to-bottom is rotatably connected with a ball receiving rotary rod (131), the ball receiving rotary rod (131) top is fixed with a ball receiving seat (129), the ball receiving rotary rod (131) is driven to rotate by a fourth motor (130), and the fourth motor (130) is fixed to the bottom of the ball receiving bearing seat (133).
5. The motor bearing steel ball cleaning and drying all-in-one machine according to claim 1, characterized in that: The cleaning rotary frame (117) is fixed with rubber pads on each side.
6. The motor bearing steel ball cleaning and drying all-in-one machine according to claim 1, characterized in that: The operating machine (1) bottom is fixed with a damping spring shock absorber (3).
7. The motor bearing steel ball cleaning and drying all-in-one machine according to claim 6, characterized in that: The damping spring shock absorber (3) bottom is provided with anti-skid lines.