A bearing high-efficiency drying device
By using a drive wheel to drive a drive belt to roll and transport the bearing rings, and by using hot air heated by a fan, along with guide cones and air guide plates to adjust the direction of the hot air, the problem of the bearing rings and the mesh chain contact surface being difficult to dry is solved, achieving rapid all-round drying and flexible adaptability of the equipment.
Patent Information
- Application Number
- CN202510378566.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2045-03-28
AI Technical Summary
The existing bearing rings have a problem with excessively long drying time because the surface in contact with the mesh chain is not easily dried.
A high-efficiency bearing drying device was designed, which uses a drive wheel to drive a drive belt to roll and transport bearing rings, and uses hot air heated by a fan to dry the bearing rings from all directions. The hot air direction is adjusted by a guide cone and a guide plate to ensure that the hot air makes full contact with the inner and outer walls of the bearing rings. The device is combined with a flexible steel wire rope and an adjustment mechanism to adapt to bearing rings of different diameters.
It enables rapid, all-around drying of bearing rings, adapts to bearing rings of different diameters, shortens drying time, and improves drying efficiency and equipment flexibility.
Smart Images

Figure CN119879543B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of bearing drying equipment, in particular to a bearing high-efficiency drying equipment. BACKGROUND
[0002] The bearing is an important part in contemporary mechanical equipment, its main function is to reduce the friction between rotating parts through the rolling body, improve efficiency and reduce wear, bear radial and axial load, ensure the stable operation of shaft and rotating parts, fix the relative position of shaft and rotating parts, prevent deviation or vibration, reduce vibration and noise through smooth rotation, improve equipment operation quality, and is widely used in automobile, aviation, industrial machinery, household appliances, medical equipment and other fields.
[0003] The inner and outer bearing rings need to be dried before assembly, and the diameters of the inner and outer bearing rings are different. At present, when the bearing ring is dried, the bearing ring is placed on the net chain, and the bearing ring is conveyed and dried through the net chain. However, the surface in contact with the net chain is not easy to be dried, so that the bearing ring drying equipment is relatively long, and long time drying treatment is needed. SUMMARY
[0004] The present application provides a bearing high-efficiency drying equipment, which solves the problems raised in the background art.
[0005] The present application provides the following technical scheme: a bearing high-efficiency drying equipment, comprising an outer shell, the left and right sides of the outer shell are respectively provided with a feeding port and a discharging port, the outer wall of the back of the outer shell is provided with an air inlet, the inner wall of the outer shell is fixedly assembled with a partition plate, the top of the partition plate is provided with a conveying assembly, and the bottom of the partition plate is provided with a drying assembly;
[0006] The conveying assembly comprises a driving support, a driving wheel is installed in the inner cavity of the driving support, the inner wall of the driving wheel is fixedly sleeved on the power output shaft of a driving speed reducer, a bottom telescopic support is slidably connected to the inner wall of the driving support, a bottom roller is installed in the inner cavity of the bottom telescopic support, a limiting support is fixedly assembled to the top of the driving support, a top telescopic support is fixedly assembled to the inner wall of the limiting support, a top roller is installed in the inner cavity of the top telescopic support, driving belts are rotatably connected to the outer walls of the top roller, the bottom roller and the driving wheel, and a bottom support bracket is fixedly assembled to the bottom of the driving support;
[0007] The drying assembly comprises a fan, an electric heating bin is installed at the air outlet of the fan, a connecting pipe is installed at the air outlet of the electric heating bin, a branch pipe is fixedly assembled to the outer wall of the connecting pipe, a shunt bin is installed at both ends of the branch pipe, a plurality of shunt pipes are penetrated in the inner cavity of the shunt bin, the shunt pipes are communicated with a wind supply frame, and a wind deflector is fixedly assembled to the inner wall of the wind supply frame.
[0008] As a preferred technical scheme of the present application, the inner wall of the limiting support and the drive support is fixedly provided with an arc pipe, the inner wall of both ends of the arc pipe is slidably connected with a bottom limiting rod and a top limiting rod, the top limiting rod and the bottom limiting rod are connected through a steel wire rope, the outer edge of the steel wire rope is matched with the inner wall of the arc pipe, the bottom limiting rod is fixedly provided on the bottom telescopic support, and the top limiting rod is fixedly provided on the top telescopic support.
[0009] As a preferred technical scheme of the present application, the outer wall of the limiting support is fixedly provided with a mounting support, the inner wall of the mounting support is movably sleeved with an adjusting screw rod, the outer edge of the adjusting screw rod is threadedly connected with a moving plate, and the moving plate is fixedly provided on the top telescopic support.
[0010] As a preferred technical scheme of the present application, the outer wall of the limiting support is fixedly provided with a connecting support, the inner wall of the connecting support is movably connected with a worm, the outer edge of the worm is threadedly connected with a worm wheel, and the worm wheel is fixedly sleeved on the adjusting screw rod.
[0011] As a preferred technical scheme of the present application, the outer wall of the drive support is fixedly provided with a top connecting piece, the outer wall of the bottom support bracket is fixedly provided with a bottom connecting piece, the inner wall of the bottom connecting piece and the top connecting piece is threadedly connected with a reverse screw rod and a normal screw rod respectively, and the top of the normal screw rod is fixedly sleeved on the power output shaft of the adjusting speed reduction servo motor.
[0012] As a preferred technical scheme of the present application, the four corners of the drive support are fixedly provided with a top limiting block, the bottom corners of the bottom support bracket are fixedly provided with a bottom limiting block, the inner wall of the bottom limiting block and the top limiting block is slidably connected with a sliding rod, and the sliding rod is installed on the outer shell.
[0013] As a preferred technical scheme of the present application, the bottom of the drive support is fixedly provided with a top blocking frame, the inner wall of the top blocking frame is fixedly provided with a plurality of top supporting pieces, the inner wall of the top supporting piece is slidably connected with a top extension supporting strip, the top extension supporting strip is fixedly provided on the bottom telescopic support, and the top extension supporting strip is located at the middle of the top blocking frame.
[0014] As a preferred technical scheme of the present application, the inner wall of the bottom support bracket is fixedly provided with a bottom supporting piece, the inner wall of the bottom supporting piece is slidably connected with a bottom extension supporting strip, the bottom extension supporting strip is located at the middle of the bottom support bracket, the top of the bottom support bracket and the bottom extension supporting strip is installed with a rubber piece, the outer wall of the bottom extension supporting strip is fixedly provided with a bottom moving support, the outer wall of the bottom telescopic support is fixedly provided with a top moving support, and the top moving support and the bottom moving support are slidably sleeved.
[0015] As a preferred technical scheme of the present application, the right side of the driving wheel is provided with a horizontal wheel, the top of the driving support is fixedly provided with a fixing support, the inner cavity of the fixing support is installed with a pressing wheel, the horizontal wheel is in the same horizontal plane as the bottom roller, and the center point of the driving wheel is higher than the center point of the horizontal wheel.
[0016] As a preferred technical scheme of the present application, the top of the shunt bin cavity is fixedly provided with a guide cone, the air deflectors are provided in plurality, the shunt pipe is located between two air deflectors, and the air supply frame is located at the center of the driving support and the bottom support bracket.
[0017] The present application has the following beneficial effects:
[0018] 1. The bearing high-efficiency drying equipment, by setting the bearing ring between the bottom support bracket and the driving support, driving the driving motor to run to drive the driving wheel to rotate, the driving wheel drives the driving belt to rotate when rotating, the driving belt drives the bearing ring to roll towards the bottom telescopic support when rotating, the bearing ring can be more fully contacted with hot air when rolling, thereby solving the problem that the bearing ring is placed on the net chain for conveying and drying when drying the bearing ring at present, and the surface in contact with the net chain is not easy to be dried, so that the bearing ring drying equipment is relatively long and needs to be dried for a long time.
[0019] 2. The bearing high-efficiency drying equipment, by rotating the worm to drive the worm gear to rotate, the adjusting screw is driven to rotate when the worm gear rotates, the moving plate and the top telescopic support are moved in the limiting support when the adjusting screw rotates, the top telescopic support pushes the steel wire rope, the bottom limiting rod and the bottom telescopic support to move when moving, the length of the driving support and the bottom telescopic support is changed, the contact time of the driving belt and the bearing ring is longer, and the device can dry bearing rings of different diameters.
[0020] 3. The bearing high-efficiency drying equipment, by setting the guide cone in the shunt bin, the guide cone can guide the hot air, the hot air can enter the shunt pipe more stably, the hot air direction in the air supply frame can be changed by the setting of the air deflector, the hot air direction forms an angle with the bearing ring at this time, and the outer wall and the inner wall of the bearing ring can be better contacted with the hot air.
[0021] 4. The bearing high-efficiency drying equipment, through the setting of the arc pipe, the bottom limiting rod, the top limiting rod and the steel wire rope, the steel wire rope can be bent, the steel wire rope can slide in the arc pipe, the bottom telescopic support and the top telescopic support can be in the state of forming an obtuse angle and can be moved between the driving support and the limiting support, and when the contact surface between the driving belt and the bearing ring is large, the tightness of the driving belt is not affected. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a front perspective structural schematic view of the application;
[0023] Figure 2 It is a back perspective structural schematic view of the application;
[0024] Figure 3 It is a top structural schematic view of the application;
[0025] Figure 4 It is an internal structural schematic view of the application;
[0026] Figure 5 It is a conveying assembly structural schematic view of the application;
[0027] Figure 6 It is a driving support and bottom support bracket distance adjusting structural schematic view of the application;
[0028] Figure 7 It is a driving belt installation position schematic view of the application;
[0029] Figure 8 It is a conveying assembly cross-sectional structural schematic view of the application;
[0030] Figure 9 It is a top extension strip and top blocking bracket structural schematic view of the application;
[0031] Figure 10 It is a top moving support and bottom moving support structural schematic view of the application;
[0032] Figure 11 It is a drying assembly structural schematic view of the application;
[0033] Figure 12 It is a air deflector position schematic view of the application.
[0034] In the figure: 1, outer shell; 2, feed inlet; 3, discharge outlet; 4, air inlet; 5, partition; 6, conveying assembly; 7, drying assembly;
[0035] 601, drive support; 602, drive wheel; 603, drive reduction motor; 604, horizontal wheel; 605, fixed support; 606, compression wheel; 607, bottom telescopic support; 608, bottom roller; 609, limiting support; 610, top telescopic support; 611, top roller; 612, drive belt; 613, mounting support; 614, adjusting screw; 615, moving plate; 616, worm gear; 617, worm; 618, connecting support; 619, arc pipe; 620, bottom limiting rod; 621, top limiting rod; 622, steel wire rope; 623, bottom support bracket; 624, bottom support piece; 625, bottom extension support strip; 626, rubber piece; 627, top blocking bracket; 628, top support piece; 629, top extension support strip; 630, top moving support; 631, bottom moving support; 632, bottom connecting piece; 633, top connecting piece; 634, reverse screw; 635, positive screw; 636, adjusting reduction servo motor; 637, bottom limiting block; 638, top limiting block; 639, slide rod;
[0036] 701, fan; 702, electric heating bin; 703, connecting pipe; 704, branch pipe; 705, shunt bin; 706, guide cone; 707, shunt pipe; 708, air supply frame; 709, air deflector. DETAILED DESCRIPTION
[0037] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0038] Please refer to Figures 1-12 A bearing efficient drying device, including shell body 1, the left and right sides of shell body 1 are provided with feed inlet 2 and discharge port 3 respectively, the outer wall of the back of shell body 1 is provided with air inlet 4, the inner wall of shell body 1 is fixedly equipped with partition 5, the top of partition 5 is installed with conveying assembly 6, the bottom of partition 5 is installed with drying assembly 7;
[0039] In the above structure, through the setting of feed inlet 2 and discharge port 3, the bearing ring after cleaning enters from feed inlet 2, then is conveyed through conveying assembly 6, and is dried through drying assembly 7, and the dried bearing ring is discharged from discharge port 3;
[0040] The conveying assembly 6 comprises a driving support 601, a driving wheel 602 is installed in the inner cavity of the driving support 601, the inner wall of the driving wheel 602 is fixedly sleeved on the power output shaft of a driving speed reduction motor 603, a bottom telescopic support 607 is slidably connected to the inner wall of the driving support 601, a bottom roller 608 is installed in the inner cavity of the bottom telescopic support 607, a limiting support 609 is fixedly assembled at the top of the driving support 601, a top telescopic support 610 is fixedly assembled to the inner wall of the limiting support 609, a top roller 611 is installed in the inner cavity of the top telescopic support 610, the outer wall of the top roller 611, the bottom roller 608 and the driving wheel 602 are all rotatably connected with a driving belt 612, and a bottom support bracket 623 is fixedly assembled to the bottom of the driving support 601.
[0041] In the above structure, through the setting of the bottom support bracket 623 and the driving support 601, when the bearing ring is located between the bottom support bracket 623 and the driving support 601, the driving speed reduction motor 603 is driven to rotate the driving wheel 602, at this time, the driving wheel 602 can drive the driving belt 612 to rotate, the driving belt 612 is tightly combined with the driving wheel 602, when the driving belt 612 rotates counterclockwise, the bearing ring is rolled on the bottom support bracket 623, at this time, the bottom support bracket 623 rotates clockwise, so that the bearing ring can move.
[0042] The drying assembly 7 comprises a fan 701, an electric heating bin 702 is installed at the air outlet of the fan 701, a connecting pipe 703 is installed at the air outlet of the electric heating bin 702, a branch pipe 704 is fixedly assembled to the outer wall of the connecting pipe 703, a shunt bin 705 is installed at both ends of the branch pipe 704, a plurality of shunt pipes 707 penetrate the inner cavity of the shunt bin 705, the shunt pipes 707 are communicated with a wind supply frame 708, and a wind deflector 709 is fixedly assembled to the inner wall of the wind supply frame 708.
[0043] In the above structure, the fan 701 draws air from the outside into the electric heating bin 702, the air is heated by the electric heating bin 702, then the heated hot air is blown into the branch pipe 704 by the fan 701, and then enters the shunt bin 705, the shunt pipe 707 and the wind supply frame 708, the hot air is sprayed from the wind supply frame 708, and the hot air contacts the bearing ring, so that the moisture on the bearing ring is evaporated.
[0044] In a preferred implementation: the inner wall of the limiting support 609 and the driving support 601 are fixedly provided with the arc pipe 619, the inner wall of both ends of the arc pipe 619 is slidingly connected with the bottom limiting rod 620 and the top limiting rod 621 respectively, the top limiting rod 621 and the bottom limiting rod 620 are connected through the steel wire rope 622, the outer edge of the steel wire rope 622 is attached to the inner wall of the arc pipe 619, the bottom limiting rod 620 is fixedly provided on the bottom telescopic support 607, and the top limiting rod 621 is fixedly provided on the top telescopic support 610.
[0045] In the above structure, by pulling the bottom telescopic support 607 outward, the bottom telescopic support 607 drives the bottom limiting rod 620, the arc pipe 619 and the top limiting rod 621 to move in the arc pipe 619, and the top telescopic support 610 is retracted into the limiting support 609. The steel wire rope 622 is deformed by external force, so that the shape of the steel wire rope 622 can slide in the shape of an arc. The arc pipe 619 wraps and limits the steel wire rope 622, so that the steel wire rope 622 will not be bent. Therefore, when the top telescopic support 610 is retracted into the limiting support 609, the bottom telescopic support 607 can be pushed to move outward, so that the overall length of the driving support 601 and the bottom telescopic support 607 is lengthened, and the contact surface between the driving belt 612 and the bearing ring is also lengthened. The device can dry different circumferences of the bearing ring.
[0046] In a preferred implementation: the outer wall of the limiting support 609 is fixedly provided with the mounting support 613, the inner wall of the mounting support 613 movably sleeved with the adjusting screw 614, the outer edge of the adjusting screw 614 is threadedly connected with the moving plate 615, and the moving plate 615 is fixedly provided on the top telescopic support 610.
[0047] In the above structure, the adjusting screw 614 is rotated to drive the moving plate 615 to move, and the top telescopic support 610 moves when the moving plate 615 moves. Therefore, when the adjusting screw 614 rotates clockwise, the top telescopic support 610 moves upward and the bottom telescopic support 607 moves inward. When the adjusting screw 614 rotates counterclockwise, the top telescopic support 610 moves downward and the bottom telescopic support 607 moves outward.
[0048] In a preferred implementation: the outer wall of the limiting support 609 is fixedly provided with the connecting support 618, the inner wall of the connecting support 618 movably connected with the worm 617, the outer edge of the worm 617 is threadedly connected with the worm gear 616, and the worm gear 616 is fixedly sleeved on the adjusting screw 614.
[0049] In the structure, the worm 617 is rotated to drive the worm gear 616 to rotate, the worm gear 616 drives the adjusting screw rod 614 to rotate when rotating, the worm 617 and the worm gear 616 are engaged to have the self-locking function, the top telescopic support 610 can be adjusted, the worm 617 and the worm gear 616 can prevent the driving belt 612 from moving the top telescopic support 610 when rotating, and the stability of the device is improved.
[0050] In a preferred embodiment: the outer wall of the driving support 601 is fixedly provided with a top connecting plate 633, the outer wall of the bottom support bracket 623 is fixedly provided with a bottom connecting plate 632, the inner walls of the bottom connecting plate 632 and the top connecting plate 633 are respectively threadedly connected with a reverse screw rod 634 and a normal screw rod 635, and the top of the normal screw rod 635 is fixedly sleeved on the power output shaft of the adjusting speed reduction servo motor 636.
[0051] In the structure, the adjusting speed reduction servo motor 636 is operated to drive the normal screw rod 635 and the reverse screw rod 634 to rotate, the top connecting plate 633 is driven to move upward and the bottom connecting plate 632 is driven to move downward when the normal screw rod 635 and the reverse screw rod 634 rotate clockwise, the distance between the bottom support bracket 623 and the driving support 601 is increased, different diameter bearing rings can be located between the bottom support bracket 623 and the driving support 601, and the flexibility of the device is improved.
[0052] In a preferred embodiment: the four corners of the driving support 601 are fixedly provided with top limiting blocks 638, the bottom corners of the bottom support bracket 623 are fixedly provided with bottom limiting blocks 637, the inner walls of the bottom limiting blocks 637 and the top limiting blocks 638 are slidably connected with slide rods 639, and the slide rods 639 are installed on the outer shell 1.
[0053] In the structure, the four slide rods 639 are arranged, the slide rods 639 can drive the bottom support bracket 623 and the driving support 601 to move up and down in the vertical state, the stability of the up and down movement of the bottom support bracket 623 and the driving support 601 is improved, the bottom support bracket 623 and the driving support 601 can be driven to ascend and descend when the normal screw rod 635 and the reverse screw rod 634 rotate.
[0054] In a preferred embodiment: the bottom of the driving support 601 is fixedly provided with a top blocking frame 627, the inner wall of the top blocking frame 627 is fixedly provided with a plurality of top supporting plates 628, the inner wall of the top supporting plate 628 is slidably connected with a top extension support strip 629, the top extension support strip 629 is fixedly provided on the bottom telescopic support 607, and the top extension support strip 629 is located at the middle of the top blocking frame 627.
[0055] In the structure, the driving belt 612 is in contact with the top stopper 627 and the top extension support 629, and is located between the top stopper 627 and the bearing ring, so that the bearing ring can be rotated when the driving belt 612 rotates. When the bottom telescopic support 607 is extended, the top extension support 629 moves on the top support piece 628, so that the length of the top stopper 627 is also extended, and the bearing ring can be in full contact with the driving belt 612, thereby improving the rationality of the device.
[0056] In a preferred embodiment: the inner wall of the bottom support bracket 623 is fixedly provided with a bottom support piece 624, the inner wall of the bottom support piece 624 is slidably connected with a bottom extension support 625, the bottom extension support 625 is located in the middle of the bottom support bracket 623, the top of the bottom support bracket 623 and the bottom extension support 625 are both provided with a rubber piece 626, the outer wall of the bottom extension support 625 is fixedly provided with a bottom moving support 631, the outer wall of the bottom telescopic support 607 is fixedly provided with a top moving support 630, and the top moving support 630 and the bottom moving support 631 are slidably connected.
[0057] In the structure, the bottom telescopic support 607 is connected with the bottom extension support 625 through the bottom moving support 631 and the top moving support 630. When the bottom telescopic support 607 is extended, the bottom moving support 631, the top moving support 630 and the bottom extension support 625 are moved outward, so that the length of the bottom support bracket 623 can also be extended. At this time, the length of the bottom support bracket 623 is the same as the length of the top stopper 627. When the distance between the bottom support bracket 623 and the driving support 601 becomes longer, the top moving support 630 slides in the bottom moving support 631, and the top moving support 630 and the bottom moving support 631 are still connected, thereby improving the rationality of the device.
[0058] In a preferred embodiment: the right side of the driving wheel 602 is provided with a horizontal wheel 604, the top of the driving support 601 is fixedly provided with a fixed support 605, the inner cavity of the fixed support 605 is provided with a pressing wheel 606, the horizontal wheel 604 and the bottom roller 608 are on the same horizontal plane, and the center point of the driving wheel 602 is higher than the center point of the horizontal wheel 604.
[0059] In the structure, the compression wheel 606 is arranged to limit the driving belt 612, so that the contact area between the driving belt 612 and the driving wheel 602 is larger, and the driving wheel 602 can drive the driving belt 612 to rotate more stably, improving the stability of the driving belt 612. The distance between the driving wheel 602 and the bottom support bracket 623 is greater than the distance between the horizontal wheel 604 and the bottom support bracket 623, so that the driving wheel 602 is easy to enter the bearing ring. When the bearing ring gradually contacts the driving belt 612, the driving belt 612 can drive the bearing ring to rotate, improving the rationality of the device.
[0060] In a preferred embodiment: the top of the inner cavity of the shunt bin 705 is fixedly provided with a guide cone 706, the air deflector 709 is provided with a plurality of air deflectors, and the shunt pipe 707 is located between two air deflectors 709. The air supply frame 708 is located at the center of the driving support 601 and the bottom support bracket 623.
[0061] In the structure, the guide cone 706 is arranged to guide the air from the branch pipe 704, so that the hot air can be guided into the shunt pipe 707, and the airflow is more stable. The air deflector 709 is arranged, and the hot air of the shunt pipe 707 is fed between the two air deflectors 709. At this time, the two air deflectors 709 can guide the hot air, so that the direction of the hot air flow forms an angle with the bearing ring. The hot air can contact the outer wall and the inner wall of the bearing ring. Since the inner wall of the bearing ring has a curvature, the inner wall of the bearing ring can be fully dried.
[0062] The working principle is that when in use, the bearing ring enters between the bottom support bracket 623 and the driving support 601 through the feeding port 2, and rolls on the bottom support bracket 623, when the bearing ring contacts the driving belt 612, the driving reduction motor 603 is operated to drive the driving wheel 602 to rotate, the driving wheel 602 drives the driving belt 612 to rotate when rotating, the driving belt 612 drives the bearing ring to rotate clockwise when rotating counterclockwise, and the bearing ring rolls towards the bottom telescopic support 607, when the bearing ring enters between the driving support 601 and the bottom support bracket 623, the fan 701 sucks the air outside into the electric heating bin 702, and the air is heated by the electric heating bin 702, then the hot air enters the connecting pipe 703, the branch pipe 704, the flow dividing bin 705, the flow dividing pipe 707 and the air supply frame 708, the hot air in the air supply frame 708 is guided by the two air deflectors 709, so that the direction of the hot air flow forms an angle with the direction of the bearing ring, at this time the hot air contacts the outer wall and the inner wall of the bearing ring, and gradually the moisture on the bearing is evaporated, when a larger bearing ring needs to be dried, the rubber sheet 626 is rotated to drive the positive screw rod 635 and the reverse screw rod 634 to rotate, when the positive screw rod 635 and the reverse screw rod 634 rotate, the top connecting sheet 633 and the driving support 601 can be driven to move upwards, the bottom connecting sheet 632 and the bottom support bracket 623 move downwards, at this time the distance between the bottom support bracket 623 and the driving support 601 becomes larger, when the contact time of the driving belt 612 and the bearing ring needs to be increased, the worm 617 is rotated to drive the worm wheel 616 to rotate, when the worm wheel 616 rotates the adjusting screw rod 614 is rotated, the adjusting screw rod 614 drives the moving plate 615 and the top telescopic support 610 to move in the limiting support 609, at this time the top telescopic support 610 moves to push the steel wire rope 622, the bottom limiting rod 620 and the bottom telescopic support 607 to move, at this time the length of the driving support 601 and the bottom telescopic support 607 becomes longer, the bottom telescopic support 607 moves outward to drive the limiting support 609 to move in the bottom telescopic support 607, so that the length of the top support 627 also becomes longer, at the same time the bottom telescopic support 607 moves to drive the top moving support 630 and the bottom moving support 631 to move, the bottom extension support 625 on the bottom moving support 631 follows the movement, at this time the bottom extension support 625 moves on the bottom support bracket 623, so that the length of the bottom support bracket 623 becomes longer, and the bearing ring is dried and discharged through the discharge port 3.
[0063] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and illustrative figures, it should be apparent that the scope of the present application is not limited to these specific embodiments.
[0064] While the embodiments of the application have been shown and described herein, it will be understood by those skilled in the art that many changes, modifications, substitutions and alterations to these embodiments can be made without departing from the principles and spirits of the application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A bearing high efficiency drying apparatus comprising an outer housing (1), characterized in that: The left and right sides of the outer shell (1) are respectively provided with a feeding port (2) and a discharging port (3), the outer wall of the back of the outer shell (1) is provided with an air inlet (4), the inner wall of the outer shell (1) is fixedly provided with a partition plate (5), the top of the partition plate (5) is provided with a conveying assembly (6), and the bottom of the partition plate (5) is provided with a drying assembly (7). The conveying assembly (6) comprises a driving support (601), a driving wheel (602) is installed in the inner cavity of the driving support (601), the inner wall of the driving wheel (602) is fixedly sleeved on the power output shaft of a driving speed reducer (603), a bottom telescopic support (607) is slidably connected to the inner wall of the driving support (601), a bottom roller (608) is installed in the inner cavity of the bottom telescopic support (607), a limiting support (609) is fixedly assembled to the top of the driving support (601), a top telescopic support (610) is fixedly assembled to the inner wall of the limiting support (609), a top roller (611) is installed in the inner cavity of the top telescopic support (610), driving belts (612) are rotatably connected to the outer walls of the top roller (611), the bottom roller (608) and the driving wheel (602), and a bottom supporting bracket (623) is fixedly assembled to the bottom of the driving support (601). The drying assembly (7) comprises a fan (701), an electric heating bin (702) is installed at the air outlet of the fan (701), a connecting pipe (703) is installed at the air outlet of the electric heating bin (702), a branch pipe (704) is fixedly assembled to the outer wall of the connecting pipe (703), shunt bins (705) are installed at the two ends of the branch pipe (704), a plurality of shunt pipes (707) penetrate the inner cavity of the shunt bin (705), the shunt pipes (707) and a wind supply frame (708) are in communication, and a wind deflector (709) is fixedly assembled to the inner wall of the wind supply frame (708).
2. A high efficiency drying apparatus for a bearing according to claim 1, wherein: The inner walls of the limiting support (609) and the driving support (601) are both fixedly provided with arc pipes (619), the inner walls of the two ends of the arc pipes (619) are slidably connected with a bottom limiting rod (620) and a top limiting rod (621) respectively, the top limiting rod (621) and the bottom limiting rod (620) are connected through a steel wire rope (622), the outer edge of the steel wire rope (622) is attached to the inner wall of the arc pipe (619), the bottom limiting rod (620) is fixedly assembled to the bottom telescopic support (607), and the top limiting rod (621) is fixedly assembled to the top telescopic support (610).
3. A high efficiency bearing drying apparatus according to claim 1, wherein: The outer wall of the limiting support (609) is fixedly provided with a mounting support (613), an adjusting screw rod (614) is movably sleeved on the inner wall of the mounting support (613), a moving plate (615) is threadedly connected to the outer edge of the adjusting screw rod (614), and the moving plate (615) is fixedly assembled to the top telescopic support (610).
4. A high efficiency bearing drying apparatus according to claim 1, wherein: The outer wall of the limiting support (609) is fixedly provided with a connecting support (618), the inner wall of the connecting support (618) is movably connected with a worm (617), the outer edge of the worm (617) is threadedly connected with a worm wheel (616), and the worm wheel (616) is fixedly sleeved on the adjusting lead screw (614).
5. A bearing high efficiency drying apparatus according to claim 1, wherein: The outer wall of the driving support (601) is fixedly provided with a top connecting plate (633), the outer wall of the bottom support bracket (623) is fixedly provided with a bottom connecting plate (632), the inner walls of the bottom connecting plate (632) and the top connecting plate (633) are respectively threadedly connected with a reverse screw rod (634) and a normal screw rod (635), and the top of the normal screw rod (635) is fixedly sleeved on the power output shaft of the adjusting speed reduction servo motor (636).
6. A high efficiency bearing drying apparatus as claimed in claim 1, wherein: The four corners of the driving support (601) are all fixedly provided with top limiting blocks (638), the bottom corners of the bottom support bracket (623) are all fixedly provided with bottom limiting blocks (637), the inner walls of the bottom limiting blocks (637) and the top limiting blocks (638) are all slidably connected with slide rods (639), and the slide rods (639) are installed on the outer shell (1).
7. A bearing high efficiency drying apparatus according to claim 1, wherein: The bottom of the driving support (601) is fixedly provided with a top blocking frame (627), the inner wall of the top blocking frame (627) is fixedly provided with a plurality of top supporting plates (628), the inner wall of the top supporting plate (628) is slidably connected with a top extension supporting strip (629), the top extension supporting strip (629) is fixedly provided on the bottom telescopic support (607), and the top extension supporting strip (629) is located at the middle of the top blocking frame (627).
8. A bearing high efficiency drying apparatus according to claim 1, wherein: The inner wall of the bottom support bracket (623) is fixedly provided with a bottom supporting plate (624), the inner wall of the bottom supporting plate (624) is slidably connected with a bottom extension supporting strip (625), the bottom extension supporting strip (625) is located at the middle of the bottom support bracket (623), the top of the bottom support bracket (623) and the bottom extension supporting strip (625) is all installed with a rubber sheet (626), the outer wall of the bottom extension supporting strip (625) is fixedly provided with a bottom moving support (631), the outer wall of the bottom telescopic support (607) is fixedly provided with a top moving support (630), and the top moving support (630) and the bottom moving support (631) are slidably sleeved.
9. A bearing high efficiency drying apparatus according to claim 1, wherein: The right side of the driving wheel (602) is provided with a horizontal wheel (604), the top of the driving support (601) is fixedly provided with a fixed support (605), the inner cavity of the fixed support (605) is installed with a compression wheel (606), the horizontal wheel (604) and the bottom roller (608) are on the same horizontal plane, and the center point of the driving wheel (602) is higher than that of the horizontal wheel (604).
10. A high efficiency drying apparatus for a bearing as set forth in claim 1, wherein: The top of the inner cavity of the flow distribution bin (705) is fixedly provided with a guide cone (706), the air deflector (709) is provided with a plurality of air deflectors, and the flow distribution pipe (707) is located between two air deflectors (709). The air supply frame (708) is located at the center of the driving support (601) and the bottom support bracket (623).
Citation Information
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