Thin-wall bearing and processing method thereof
11221045 · 2022-01-11
Inventors
Cpc classification
F16C43/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2220/62
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2223/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2226/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2220/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/64
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2240/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/583
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C33/58
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C43/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A thin-wall bearing, including an outer ring and an inner ring. The inner ring surface of the outer ring is provided with an outer ring raceway, and the outer ring surface of the inner ring is provided with an inner ring raceway. A steel ball and a cage for installing the steel ball are arranged between the outer ring raceway and the inner ring raceway. A plurality of screw holes are evenly distributed in a circle around the side wall of the outer ring, and knurled screws are provided in the screw holes, respectively. The fit between the knurled screw and the screw hole 10-Φ9 is to be N6/h5. The radial clearance of the thin-wall bearing is greater than or equal to 0.01 but less than or equal to 0.09. A processing method of the thin-wall bearing.
Claims
1. A bearing, comprising an outer ring and an inner ring, an outer ring raceway is arranged on an inner ring surface of the outer ring, an inner ring raceway is arranged on an outer ring surface of the inner ring, a steel ball and a cage for installing the steel ball are arranged between the outer ring raceway and the inner ring raceway, wherein a plurality of screw holes are evenly distributed in a circle around the side wall of the outer ring, a diameter of each of the plurality of screw holes is 9 mm, a knurled screw is provided in each of the plurality of screw holes, a fit between the knurled screw and each of the plurality of screw holes is N6/h5, and a radial clearance of the bearing is greater than or equal to 0.01 mm but less than or equal to 0.09 mm.
2. A processing method of the bearing of claim 1, wherein the knurled screws are non-standard screws, wherein the processing method comprises the following process steps: processing the bearing, comprising processing the outer ring, the inner ring, the cage and the steel ball according to a process size and requirements of the bearing by forging bar stock or tube stock first to obtain a rough blank, then annealing the rough blank, then performing turning and screw hole processing to obtain a processed semi-finished product, performing heat treatment and quenching on the processed semi-finished product, then grinding two end faces of the processed semi-finished product, then performing grinding on an outer circle surface of the outer ring, then performing finer grinding on the outer circle surface of the outer ring, and then performing grinding on the outer ring raceway, and finally carrying out demagnetization cleaning; wherein the screw hole processing comprises unifying a size of the knurled screw to control the fit, determining the size of the screw hole, and performing hole drilling; applying a reamer to carry out actual differential reaming to complete the processing of the screw hole according to the actual diameter of the knurled screw; controlling an interference amount between the plurality of screw holes and the knurled screw<0.015 mm; assembling the bearing, comprising assembling the outer ring, the inner ring, the steel ball and the cage together after being processed; controlling a minimum clearance of the bearing to be 0.045 mm; and installing the knurled screws, comprising screwing the knurled screws into the plurality of screw holes on the outer ring respectively to finish the processing of the bearing.
3. The processing method according to claim 2, wherein verifying a deformation amount of the plurality of screw holes after the heat treatment and the quenching of the outer ring through a process test in the step of processing the bearing, and modifying a reaming size of the plurality of screw holes before the quenching.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3) In the figure, 1—the outer ring, 2—inner ring, 3—steel ball, 4—cage, 5—sealing ring, 6—screw hole, 7—knurled screw.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(4) As shown in
(5) A processing method of the thin-wall bearing described above, the knurled screw 7 is a non-standard screw, and there is a difference in diameter between the sizes of the knurled screw. The processing method including the steps as below:
(6) Bearing Processing
(7) According to the process size and requirements of thin-wall bearing, the outer ring 1, the inner ring 2, the cage 4, and the steel ball 3 are processed, respectively;
(8) Bearing Assembly
(9) The outer ring 1, inner ring 3, steel ball 3 and cage 4 are assembled together after processed;
(10) Installing Knurled Screws
(11) The knurled screws 5 are screwed into the screw holes 6 on the outer ring 1 to complete the processing of thin-wall bearing.
(12) In the processing method of the outer ring 1 described in step (1), the bar stock or tube stock is forged first, the rough blank is annealed after forging, then the turning process and the screw hole process are performed, and the processed semi-finished product is performed heat treatment and quenching, and then the two end faces of the processed semi-finished product is performed grinding. And then, rough grinding is performed on the outer circle surface of the outer ring, then fine grinding is performed on the outer circle surface of the outer ring, then rough grinding and fine grinding are performed on the outer raceway, and finally demagnetize cleaning is carried out.
(13) Processing method of screw hole 6; the size of the knurled screw 7 is unified to be 9 mm, the diameter difference from each other is controlled by +0.05 mm, the size of screw hole 6 is determined to be 8.7 mm, and drilling a hole by 8.7 mm drill bit; according to the actual diameter of knurled screw 7, a 9 mm reamer is used for actual reaming to complete the processing of the screw hole 6. The interference amount between the screw hole 6 and the knurled screw 7 is controlled to be ≤0.015, that is to say, the knurled screw is used for trial insertion, and it can be tapped gently without loosening. Through the process test to verify the deformation amount of the screw hole 6 after heat treatment and quenching, has performed on the outer ring 1, to correct the reaming size of the screw hole 6 before quenching.
(14) The minimum clearance of the bearing is controlled to be 0.045 in the bearing assembly in step 2.
(15) Due to the limited expression of words and the infinite concrete structure objectively, for those ordinary person skilled in the art, without departing from the principle of the present disclosure, various improvements, modifications or changes can be made, or the above technical features can be combined in a certain way by the those ordinary person skilled in the art, when these improvements, modifications, changes or combinations, or the solution using the concept and the solution of the present disclosure without improvement is directly applied to other occasions, it should be regarded as falling into the scope of the present disclosure.