Miniature bearing height detector
Technical Field
The utility model relates to a height detector, relates to the technical field of miniature bearings, and in particular relates to a miniature bearing height detector.
Background
The bearing is an essential part in mechanical equipment, is mainly used for supporting the mechanical rotating body, reduces the friction coefficient in the motion process of the mechanical rotating body, and further ensures the rotation precision of the mechanical rotating body. The bearings are classified into rolling bearings and sliding bearings according to the difference in friction properties of the moving elements, and both the rolling bearings and the sliding bearings are composed of ferrules having different diameters, so that the production quality of the ferrules directly affects the production quality of the bearings. In order to ensure that the bearing can effectively support the mechanical rotating body, the produced bearing needs to be accurately detected.
The following problems exist in the prior art:
The existing detection device cannot rapidly detect the height of the bearing, and an operator cannot adjust the angle of the bearing to measure for many times, so that measured bearing data are inaccurate, the measurement result is inaccurate, the quality of the bearing is not up to the standard, and the sales of the bearing is affected.
Disclosure of utility model
The utility model provides a miniature bearing height detector, which aims to solve the problems that the existing detection device cannot quickly detect the height of a bearing, an operator cannot adjust the angle of the bearing to measure for many times, the measured bearing data is inaccurate, the measured result is inaccurate, the quality of the bearing is not up to standard, and the sales of the bearing is influenced, so that the effects of quickly measuring the bearing, measuring the height of the bearing at a plurality of angles and improving the measurement quality of the bearing are achieved.
In order to solve the technical problems, the utility model adopts the following technical scheme:
The utility model provides a miniature bearing height detector, includes the device main part, the last fixedly connected with support column of device main part, one side outer wall fixedly connected with backup pad of support column, the inside rotation of one end of backup pad is connected with pivot one, the inside rotation in center of device main part is connected with the carousel, the inside rotation that the support column was kept away from to the device main part is connected with pivot two, the bottom fixedly connected with bracing piece all around of device main part, the bottom fixedly connected with rubber base of bracing piece.
The technical scheme of the utility model is further improved as follows: the upper surface of the rotary table is fixedly connected with a first limit column, the upper surface of the rotary table is fixedly connected with a second limit column, the outer wall of one end of the rotary shaft, which is far away from the support plate, is fixedly connected with a rotary plate, the outer wall of one end of the rotary plate, which is far away from the rotary shaft, is rotationally connected with a rotary drum, the outer wall of one end of the rotary shaft, which is close to the support plate, is fixedly connected with a rotary rod, the outer wall of one end of the rotary rod, which is far away from the rotary shaft, is fixedly connected with a bearing shaft, the inner wall of one end of the support plate, which is far away from the rotary rod, is rotationally connected with the inner part of the bearing shaft, the one end outer wall swing joint that the two-way threaded rod is close to the bull stick has limiting plate one, the inside sliding connection of the outer wall of limiting plate one and backup pad, the one end outer wall swing joint that the two-way threaded rod is close to the spandrel has limiting plate two, the outer wall of limiting plate two and the inside sliding connection of backup pad, one side outer wall fixedly connected with slide caliper that limiting plate one is close to limiting plate two, one side outer wall fixedly connected with scale table that slide caliper kept away from the support column, the inside that limiting plate two is close to the backup pad has been seted up the hole, the inside and the outer wall sliding connection of scale table of hole.
By adopting the technical scheme, the rotary table, the first limit column, the second limit column, the supporting plate, the first rotary shaft, the rotary plate, the rotary drum, the rotary rod, the bidirectional threaded rod, the first limit plate, the vernier caliper, the dial gauge, the second limit plate, the hole and the bearing shaft are matched together, and the bearing is fixed on the detector and the height is measured.
The technical scheme of the utility model is further improved as follows: the device is characterized in that a hole is formed in one end of the device main body, which is close to the second rotating shaft, grooves are formed in two ends of the inside of the hole, a movable block is connected to the inside of the hole in a sliding mode, the outer walls of the two ends of the movable block are connected with the inside of the grooves in a sliding mode, a pull rod is fixedly connected to the top of the movable block, the bottom of the pull rod is connected with the upper surface of the device main body in a sliding mode, a spring is fixedly connected to one side, away from the inside of the movable block, of the hole, and one end, close to the pull rod, of the spring is fixedly connected to one side, close to the spring, of the movable block.
By adopting the technical scheme, the device main body, the second rotating shaft, the hole, the groove, the movable block, the pull rod and the spring are matched together to control the position of the movable block.
The technical scheme of the utility model is further improved as follows: the bottom fixedly connected with connecting rod of movable block, the outer wall of connecting rod and the inside sliding connection of hole dig, one side outer wall bottom fixedly connected with buckle that the connecting rod is close to pivot two, the bottom fixedly connected with gear two of pivot, gear groove has been seted up to the periphery of gear two, the outer wall of buckle and the inside sliding connection of gear groove, the bottom fixedly connected with spliced pole of carousel, the spliced pole outer wall is connected with the inside rotation of device main part, the bottom fixedly connected with gear one of spliced pole, the outer wall and the outer wall transmission of gear two of gear one are connected.
By adopting the technical scheme, the movable block, the connecting rod, the hole digging, the second rotating shaft, the buckle, the second gear, the gear groove, the rotary table, the connecting column and the first gear are matched together, and the measuring angle of the bearing is controlled.
Compared with the prior art, the utility model has the following beneficial effects:
1. The utility model provides a miniature bearing height detector, which achieves the effect of measuring a bearing more simply and conveniently through the arrangement of a rotary drum, a bidirectional threaded rod, a first limiting plate, a second limiting plate and a vernier caliper, and adjusts the measuring angle of the bearing through the arrangement of a second rotating shaft, a movable block and a first gear, thereby achieving the effects of measuring for multiple times and improving the measuring quality of the bearing.
2. The utility model provides a miniature bearing height detector, which is characterized in that a bearing is fixed on the detector through the arrangement of a turntable, a first limit column and a second limit column, so that the effect of rapidly arranging the bearing and improving the measuring efficiency is achieved.
3. The utility model provides a miniature bearing height detector, which is more stable in measurement by arranging a support rod and a rubber base, so as to achieve the effect of improving the stability of the detector.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic perspective view of a structural rotor plate according to the present utility model;
FIG. 3 is a schematic perspective cross-sectional view of a structural bi-directional threaded rod of the present utility model;
FIG. 4 is a schematic perspective cross-sectional view of the structural tie of the present utility model;
FIG. 5 is a schematic perspective view of a structural turntable according to the present utility model;
fig. 6 is a schematic perspective view of a buckle structure according to the present utility model.
In the figure: 1. a device body; 11. digging holes; 111. a groove; 12. a movable block; 121. a pull rod; 122. a connecting rod; 123. a buckle; 13. a spring; 2. a support column; 3. a support plate; 31. a first rotating shaft; 311. a rotating plate; 312. a rotating drum; 32. a rotating rod; 321. a two-way threaded rod; 33. a first limiting plate; 331. a vernier caliper; 332. a scale; 34. a limiting plate II; 341. a hole; 35. a bearing shaft; 4. a turntable; 41. a first limit column; 42. a second limit column; 43. a connecting column; 44. a first gear; 5. a second rotating shaft; 51. a second gear; 511. a gear groove; 6. a support rod; 61. and a rubber base.
Detailed Description
The utility model is further described in connection with the following detailed description, in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the utility model easy to understand.
As shown in fig. 1-4, the utility model provides a miniature bearing height detector, which comprises a device main body 1, the upper surface of the device main body 1 is fixedly connected with a support column 2, one side outer wall of the support column 2 is fixedly connected with a support plate 3, one end of the support plate 3 is internally and rotatably connected with a first rotating shaft 31, the center of the device main body 1 is internally and rotatably connected with a rotary table 4, the inner part of the device main body 1 far away from the support column 2 is rotatably connected with a second rotating shaft 5, the bottom of the periphery of the device main body 1 is fixedly connected with a support rod 6, the bottom of the support rod 6 is fixedly connected with a rubber base 61, the upper surface of the rotary table 4 is fixedly connected with a first limiting column 41, the upper surface of the rotary table 4 is fixedly connected with a second limiting column 42, one end outer wall of the first rotating shaft 31 far away from the support plate 3 is fixedly connected with a rotating plate 311, one end outer wall of the rotating plate 311 far away from the first rotating shaft 31 is rotatably connected with a rotary drum 312, one end outer wall of the first rotating shaft 31, which is close to the supporting plate 3, is fixedly connected with a rotating rod 32, one end outer wall of the rotating rod 32, which is far away from the first rotating shaft 31, is fixedly connected with a bidirectional threaded rod 321, one end of the supporting plate 3, which is far away from the first rotating shaft 31, is fixedly connected with a bearing shaft 35, one end of the bidirectional threaded rod 321, which is far away from the rotating rod 32, is rotationally connected with the inside of the bearing shaft 35, one end outer wall of the bidirectional threaded rod 321, which is close to the rotating rod 32, is movably connected with a first limiting plate 33, the outer wall of the first limiting plate 33 is slidably connected with a second limiting plate 34, the outer wall of the second limiting plate 34 is slidably connected with the inside of the supporting plate 3, one side outer wall of the first limiting plate 33, which is close to the second limiting plate 34, is fixedly connected with a vernier caliper 331, one side outer wall of the vernier caliper 331, which is far away from the supporting column 2, is fixedly connected with a scale 332, the second limiting plate 34 is provided with a hole 341 close to the inner part of the supporting plate 3, and the inner part of the hole 341 is in sliding connection with the outer wall of the dial gauge 332;
Through placing bearing pair Ji Xianwei post one 41 and spacing post two 42 on carousel 4, again manual rotation rotary drum 312 and rotating plate 311 drives pivot one 31 and bull stick 32 and rotates in backup pad 3, and two-way threaded rod 321 rotates in spandrel 35 for limiting plate one 33 and limiting plate two 34 are removed on two-way threaded rod 321, and the bottom of limiting plate one 33 and limiting plate two 34 extrudees the bearing, and slide caliper 331 removes in hole 341, observes the scale 332 and records data simultaneously, reaches the purpose of measuring the bearing height.
As shown in fig. 4, the utility model provides a miniature bearing height detector, wherein a hole 11 is formed in one end, close to a second rotating shaft 5, of a device main body 1, grooves 111 are formed in two ends of the interior of the hole 11, movable blocks 12 are slidably connected in the interior of the hole 11, outer walls of two ends of each movable block 12 are slidably connected with the interiors of the grooves 111, a pull rod 121 is fixedly connected to the top of each movable block 12, the bottom of each pull rod 121 is slidably connected with the upper surface of the device main body 1, a spring 13 is fixedly connected to one side, far from the interior of each movable block 12, of the hole 11, and one end, close to the pull rod 121, of each spring 13 is fixedly connected with one side, close to the spring 13, of each movable block 12;
The movable block 12 and the connecting rod 122 are driven to move in the hole 11 and the groove 111 by manually pulling the pull rod 121, the spring 13 is extruded, and the connecting rod 122 drives the buckle 123 to move away from the gear groove 511, so that the aim of controlling the rotation of the second rotating shaft 5 is fulfilled.
As shown in fig. 5-6, the utility model provides a miniature bearing height detector, the bottom of a movable block 12 is fixedly connected with a connecting rod 122, the outer wall of the connecting rod 122 is in sliding connection with the inside of a hole 11, the bottom of the outer wall of one side of the connecting rod 122, which is close to a second rotating shaft 5, is fixedly connected with a buckle 123, the bottom of the second rotating shaft 5 is fixedly connected with a second gear 51, the periphery of the second gear 51 is provided with a gear groove 511, the outer wall of the buckle 123 is in sliding connection with the inside of the gear groove 511, the bottom of a turntable 4 is fixedly connected with a connecting column 43, the outer wall of the connecting column 43 is in rotating connection with the inside of a device main body 1, the bottom of the connecting column 43 is fixedly connected with a first gear 44, and the outer wall of the first gear 44 is in transmission connection with the outer wall of the second gear 51;
Through rotating pivot two 5 and gear two 51, gear two 51 drives gear one 44 and spliced pole 43 and rotates in device main part 1, and carousel 4 drives the bearing and rotates to adjust bearing measurement angle, and rethread rotary drum 312 makes limiting plate one 33 and limiting plate two 34 measure the bearing extrusion, reaches different angle measurement bearings's purpose.
The working principle of the miniature bearing height detector is specifically described below.
As shown in fig. 1-6, when in use, the support rod 6 and the rubber base 61 are placed on the horizontal tabletop, the first bearing pair Ji Xianwei and the second limiting post 42 are placed on the turntable 4, the rotary drum 312 and the rotary plate 311 are manually rotated to drive the first rotating shaft 31 and the rotary rod 32 to rotate in the support plate 3 on the support column 2, the bidirectional threaded rod 321 rotates in the shaft 35, the first limiting plate 33 and the second limiting plate 34 move on the bidirectional threaded rod 321, the bottoms of the first limiting plate 33 and the second limiting plate 34 press the bearings, the vernier caliper 331 moves in the hole 341, the dial 332 is observed and data are recorded, the rotary drum 312 is reversed, the first limiting plate 33 and the second limiting plate 34 release the bearings, then the pull rod 121 is manually pulled to drive the movable block 12 and the connecting rod 122 to move in the hole 11 and the groove 111, the spring 13 is extruded, the connecting rod 122 drives the buckle 123 to move away in the gear groove 511, then the second rotating shaft 5 and the second gear 51 drives the first gear 44 and the connecting post 43 to rotate in the device body 1, the turntable 4 drives the bearing to rotate, the dial 332 is adjusted, and the second bearing pair is measured, and the second bearing pair 312 is measured, and the second bearing pair 34 is measured.
The foregoing utility model has been generally described in great detail, but it will be apparent to those skilled in the art that modifications and improvements can be made thereto. Accordingly, it is intended to cover modifications or improvements within the spirit of the inventive concepts.