Machine shell bearing pressing machine and implementation method thereof
By designing an automated casing bearing pressing machine, the problem of difficult riveting of non-standard bearings in the existing technology is solved, and efficient and stable bearing and casing pressing operations are achieved, which reduces labor intensity and improves production efficiency.
Patent Information
- Application Number
- CN202510865352.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-26
- Publication Date
- 2025-09-12
AI Technical Summary
Existing bearing pressing machines are difficult to effectively match non-standard or special-purpose bearings, and cannot achieve efficient riveting operations.
A casing bearing pressing machine was designed, which included a four-station turntable, a bearing pressing assembly, a casing blanking assembly, and a bearing loading assembly. The machine was operated automatically by a PLC controller. Combined with structures such as a carrier, a guide rod, a floating block, and an inner support, the machine could realize automatic pressing and blanking of the bearing and the casing.
It realizes the automatic pressing of non-standard bearings, improves work efficiency, reduces labor intensity, and avoids turntable tilt through supporting bearings and photoelectric detection, ensuring the stability and accuracy of operation.
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Figure CN120619804A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of bearing pressing, and in particular relates to a casing bearing pressing machine and an implementation method thereof. Background Art
[0002] Bearing press-fitting is a common processing technology in the manufacturing industry, which is used to press the bearing and the workpiece together.
[0003] The end of the casing generally requires riveting bearings. However, most existing bearing pressing machines use conventional standard bearings for riveting, which cannot match well with non-standard or special-purpose bearings.
[0004] Therefore, there is an urgent need for a casing bearing pressing machine that can perform riveting on non-standard and special-purpose bearings. Summary of the Invention
[0005] The present invention aims to provide a housing bearing pressing machine to solve the problems mentioned in the above background technology. The housing bearing pressing machine provided by the present invention has the characteristics of being able to perform riveting on non-standard and special-purpose bearings.
[0006] Another object of the present invention is to provide a method for implementing a casing bearing pressing machine.
[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a casing bearing pressing machine, comprising a casing, a four-station turntable is installed in the middle position above the casing, a carrier is installed on each station on the four-station turntable, and a bearing pressing assembly, a casing unloading assembly and a bearing loading assembly are installed in sequence on the circumferential side of the four-station turntable above the casing, wherein a casing unloading belt is provided on one side of the casing unloading assembly, and a gasket feeding vibration plate and a bearing feeding vibration plate are respectively provided on both sides of the bearing loading assembly, and the gasket feeding vibration plate, the casing unloading belt and the bearing feeding vibration plate are all connected to the PLC controller signal.
[0008] In order to press the bearings and gaskets into the casing, the carrier further includes a base, the two ends above the base are respectively connected to guide rods, the floating block is slidably connected to the guide rods, the guide rod is provided with a spring located below the floating block, a top rod passing through the floating block is installed in the middle position above the base, and the floating block is provided with an inner support member mounted on the outside of the top rod.
[0009] In order to drive the turntable to rotate at equal angles, the four-station turntable further includes a cam divider, the turntable is installed on the output end of the cam divider, and the cam divider is connected to the PLC controller signal.
[0010] In order to press the housing and the bearing, the bearing pressing assembly further includes a first support seat, a pressing cylinder is installed on the upper end of the first support seat, and a lower pressing block is installed on the output end of the pressing cylinder.
[0011] In order to prevent the bearing pressing assembly from causing the turntable to tilt during the pressing operation, the bearing pressing assembly further includes a support block, the upper end of the support block is connected to a support bearing, and a wear-resistant block is installed on the bottom surface of the turntable corresponding to each work station.
[0012] In order to realize the unloading of the casing, the casing unloading assembly further includes a second support seat, a transverse cylinder is installed above the second support seat, a first mounting plate is installed on the output end of the transverse cylinder, a unloading lifting cylinder is installed on the upper end of the first mounting plate, a first lifting plate is sliding on the first mounting plate, the output end of the unloading lifting cylinder is connected to the first lifting plate, a clamping cylinder is installed on the first lifting plate, and a clamping claw is installed on the output end of the clamping cylinder.
[0013] In order to drive the gasket picking and placing assembly and the bearing picking and placing assembly to move horizontally, the bearing loading assembly further includes a third support seat, a transverse movement module is installed above the third support seat, and the gasket picking and placing assembly and the bearing picking and placing assembly are respectively installed on the output end of the transverse movement module. The bearing loading assembly also includes a separation assembly, which is arranged below the gasket picking and placing assembly and the bearing picking and placing assembly, and the transverse movement module is connected to the PLC controller signal.
[0014] In order to realize the picking and placing of gaskets, further, the gasket picking and placing assembly includes a second mounting plate, a picking and placing lifting cylinder is installed on the upper end of the second mounting plate, a second lifting plate is sliding on the second mounting plate, the output end of the picking and placing lifting cylinder is connected to the second lifting plate, and a suction nozzle is installed on the second lifting plate. The structure of the bearing picking and placing assembly is the same as that of the gasket picking and placing assembly.
[0015] In order to achieve the separation of the bearings, the separation component further includes a fourth support seat, and a bearing separator and a gasket separator are respectively installed above the fourth support seat, wherein the bearing separator includes a material block and a separation cylinder, a slide groove is provided above the material block, a separation block is provided inside the slide groove, the output end of the separation cylinder is connected to the separation block, a feed groove is provided on the side of the material block, and a dividing groove corresponding to the feed groove is provided on the separation block, and the structure of the gasket separator is the same as that of the bearing separator.
[0016] Furthermore, in the present invention, a method for implementing the housing bearing pressing machine includes the following steps:
[0017] (1) Manually place the casing on the carrier at the casing loading station and press the start button;
[0018] (2) The four-station turntable rotates one station, driving the housing to move to the bottom of the bearing pressing assembly, and the pressing cylinder drives the lower pressing block downward to press the bearing into the housing;
[0019] (3) The four-station turntable continues to rotate one station, and the pressed casing moves to the bottom of the casing unloading assembly. The unloading lifting cylinder drives the clamping claw to descend to the set position, and the clamping claw cylinder drives the clamping claw to clamp the casing. Then the unloading lifting cylinder resets upward, and the transverse cylinder drives the clamping claw to move to the top of the casing unloading belt. The casing unloading assembly places the casing on the casing unloading belt.
[0020] (4) The four-station turntable continues to rotate one station, and the empty carrier moves to the bearing loading assembly. The bearing loading assembly places the separated bearings and gaskets on the upper end of the ejector rod in sequence;
[0021] (5) The four-station turntable continues to rotate one station, and the carrier equipped with bearings and gaskets moves to the casing loading station, thus completing the cycle.
[0022] Compared with the prior art, the present invention has the following beneficial effects:
[0023] 1. The present invention realizes automatic loading of bearings and gaskets through the bearing loading assembly, realizes automatic pressing of bearings and casings through the bearing pressing assembly, realizes automatic unloading of the casing after pressing through the casing unloading assembly and the casing unloading belt, realizes the automated operation of casing-bearing pressing, improves work efficiency, and reduces labor intensity.
[0024] 2. The present invention supports and positions the casing through the inner support member. When the bearing pressing assembly moves downward, the inner support member can move downward with the floating block, thereby pressing the bearing and gasket into the casing under the action of the push rod.
[0025] 3. After the bearings of the present invention are vibrated and leveled by the bearing feeding vibration plate, they enter the distribution trough through the feeding trough. The separation cylinder drives the separation block to be pushed out for the bearing pick-up and place assembly to absorb, thereby realizing the separation of the bearings. The separation method of the gasket is the same.
[0026] 4. The present invention supports the lower part of the pressing station through the support bearing, so as to prevent the turntable from tilting when the bearing pressing assembly is performing the pressing operation.
[0027] 5. The present invention uses a second photoelectric detection to detect whether the casing blanking component is missed. When a missed component occurs, a signal is output to the PLC controller to alarm and shut down the machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a structural schematic diagram of the present invention.
[0029] Figure 2It is a schematic structural diagram of the present invention from a top view.
[0030] Figure 3 It is a structural schematic diagram of the bearing feeding assembly of the present invention.
[0031] Figure 4 This is a structural schematic diagram of the gasket pick-and-place assembly of the present invention.
[0032] Figure 5 Schematic diagram of the structure of the separation component of the present invention.
[0033] Figure 6 It is a structural schematic diagram of the casing blanking assembly of the present invention.
[0034] Figure 7 It is a structural schematic diagram of the casing unloading belt of the present invention.
[0035] Figure 8 Schematic diagram of the structure of the carrier of the present invention.
[0036] Figure 9 Schematic diagram of the cross-sectional structure of the carrier of the present invention.
[0037] Figure 10 It is a structural schematic diagram of the cooperation between the bearing press assembly and the four-station turntable of the present invention.
[0038] In the figure: 1. Chassis; 2. Gasket feeding vibration plate; 3. Carrier; 31. Base; 32. Spring; 33. Floating block; 34. Inner support; 35. Guide rod; 36. Ejector; 4. Four-station turntable; 41. Cam divider; 42. Turntable; 43. Wear-resistant block; 5. Bearing pressing assembly; 51. First support seat; 52. Pressing cylinder; 53. Lower pressing block; 54. Support bearing; 55. Support block; 6. Casing unloading belt; 61. Baffle; 62. First photoelectric; 7. Casing unloading assembly; 71. Second support seat; 72. First mounting plate; 73. Unloading lifting cylinder; 74. Transverse movement cylinder; 75, clamping cylinder; 76, clamping claw; 77, first lifting plate; 8, bearing loading assembly; 81, third support seat; 82, gasket pick-up and placement assembly; 821, second mounting plate; 822, pick-up and placement lifting cylinder; 823, suction nozzle; 824, second lifting plate; 83, bearing pick-up and placement assembly; 84, transverse movement module; 85, second photoelectric; 86, separation assembly; 861, fourth support seat; 862, material block; 863, separation cylinder; 864, loading guide; 865, separation block; 866, material distribution trough; 867, feed trough; 868, slide; 9, bearing feeding vibration plate. DETAILED DESCRIPTION
[0039] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0040] Example 1
[0041] See also Figures 1-10 The present invention provides the following technical solutions: a casing bearing pressing machine, comprising a chassis 1, a four-station turntable 4 is installed in the middle position above the chassis 1, and a carrier 3 is installed on each station of the four-station turntable 4. A bearing pressing assembly 5, a casing unloading assembly 7 and a bearing feeding assembly 8 are installed in sequence on the circumferential side of the four-station turntable 4 above the chassis 1, wherein a casing unloading belt 6 is provided on one side of the casing unloading assembly 7, and a gasket feeding vibration disk 2 and a bearing feeding vibration disk 9 are respectively provided on both sides of the bearing feeding assembly 8. The gasket feeding vibration disk 2 is used for aligning the gaskets, and the bearing feeding vibration disk 9 is used for aligning the bearings. The gasket feeding vibration disk 2, the casing unloading belt 6 and the bearing feeding vibration disk 9 are all connected to the PLC controller signal.
[0042] By adopting the above technical solution, the present invention realizes automatic loading of bearings and gaskets through the bearing loading component 8, realizes automatic pressing of bearings and casings through the bearing pressing component 5, realizes automatic unloading of the casing after pressing through the casing unloading component 7 and the casing unloading belt 6, realizes the automated operation of casing-bearing pressing, improves work efficiency, and reduces labor intensity.
[0043] Specifically, the carrier 3 includes a base 31, and the two ends above the base 31 are respectively connected to guide rods 35, the floating block 33 is slidably connected to the guide rod 35, and the guide rod 35 is sleeved with a spring 32 located below the floating block 33. After the bearing pressing action is completed, the floating block 33 is reset upward, and a top rod 36 passing through the floating block 33 is installed in the middle position above the base 31, and an inner support member 34 is installed on the floating block 33 and sleeved on the outside of the top rod 36.
[0044] By adopting the above technical solution, the casing is supported and positioned by the inner support member 34. When the bearing pressing assembly 5 moves downward, the inner support member 34 can move downward with the floating block 33, thereby pressing the bearing and gasket into the casing under the action of the push rod 36.
[0045] Specifically, the four-station turntable 4 includes a cam divider 41 , a turntable 42 is mounted on the output end of the cam divider 41 , and the cam divider 41 is connected to the PLC controller signal.
[0046] By adopting the above technical solution, the cam divider 41 drives the turntable 42 to rotate at equal angles.
[0047] Specifically, the bearing pressing assembly 5 includes a first support seat 51 , a pressing cylinder 52 is installed on the upper end of the first support seat 51 , and a lower pressing block 53 is installed on the output end of the pressing cylinder 52 .
[0048] By adopting the above technical solution, the pressing cylinder 52 drives the lower pressing block 53 to move downward to press the housing and the bearing.
[0049] Specifically, the casing unloading assembly 7 includes a second support base 71, a transverse cylinder 74 is installed above the second support base 71, a first mounting plate 72 is installed on the output end of the transverse cylinder 74, a unloading lifting cylinder 73 is installed on the upper end of the first mounting plate 72, a first lifting plate 77 slides on the first mounting plate 72, the output end of the unloading lifting cylinder 73 is connected to the first lifting plate 77, a clamping cylinder 75 is installed on the first lifting plate 77, and a clamping claw 76 is installed on the output end of the clamping claw cylinder 75.
[0050] By adopting the above technical solution, the casing can be cut into pieces.
[0051] Specifically, a first pair of photoelectric sensors 62 is installed on the feed end of the casing unloading belt 6, and a baffle 61 is installed on the discharge end of the casing unloading belt 6. The first pair of photoelectric sensors 62 is connected to the PLC controller signal. When the first pair of photoelectric sensors 62 senses the casing, it indicates that the casing on the casing unloading belt 6 is full, and a prompt message can be issued through a buzzer to remind the staff to remove the casing in time.
[0052] By adopting the above technical solution, the pressed casing is transported backwards by the casing unloading belt 6 .
[0053] Specifically, the bearing loading assembly 8 includes a third support seat 81, and a transverse movement module 84 is installed above the third support seat 81. The gasket picking and placing assembly 82 and the bearing picking and placing assembly 83 are respectively installed on the output end of the transverse movement module 84. The bearing loading assembly 8 also includes a separation assembly 86, and the separation assembly 86 is arranged below the gasket picking and placing assembly 82 and the bearing picking and placing assembly 83. The transverse movement module 84 is connected to the PLC controller signal.
[0054] By adopting the above technical solution, the gasket pick-up and placement assembly 82 and the bearing pick-up and placement assembly 83 are driven by the transverse movement module 84 to move horizontally.
[0055] Specifically, the gasket picking and placing assembly 82 includes a second mounting plate 821, a picking and placing lifting cylinder 822 is installed on the upper end of the second mounting plate 821, a second lifting plate 824 slides on the second mounting plate 821, the output end of the picking and placing lifting cylinder 822 is connected to the second lifting plate 824, and a suction nozzle 823 is installed on the second lifting plate 824. The structure of the bearing picking and placing assembly 83 is the same as that of the gasket picking and placing assembly 82.
[0056] By adopting the above technical solution, the gasket can be taken and placed.
[0057] Specifically, the separation component 86 includes a fourth support seat 861, and the fourth support seat 861 is connected to a loading guide 864 at one end close to the four-station turntable 4. A bearing separator and a gasket separator are respectively installed above the fourth support seat 861, wherein the bearing separator includes a material block 862 and a separation cylinder 863, and a slide groove 868 is provided above the material block 862, and a separation block 865 is provided inside the slide groove 868. The output end of the separation cylinder 863 is connected to the separation block 865, and a feed trough 867 is provided on the side of the material block 862. A material distribution trough 866 corresponding to the feed trough 867 is provided on the separation block 865. The structure of the gasket separator is the same as that of the bearing separator.
[0058] By adopting the above technical solution, the bearings are vibrated and aligned by the bearing feeding vibration plate 9, and then enter the distribution trough 866 through the feeding trough 867. The separation cylinder 863 drives the separation block 865 to be pushed out for the bearing picking and placing assembly 83 to absorb, thereby realizing the separation of the bearings.
[0059] Example 2
[0060] The difference between this embodiment and embodiment 1 is that: specifically, the bearing pressing assembly 5 also includes a support block 55, the upper end of the support block 55 is connected to a support bearing 54, and a wear-resistant block 43 is installed at each work station corresponding to the bottom surface of the turntable 42. The wear-resistant block 43 prevents direct friction between the support bearing 54 and the turntable 42, which causes wear of the turntable 42. The support bearing 54 converts the sliding friction between the support block 55 and the wear-resistant block 43 into rolling friction, thereby reducing friction.
[0061] By adopting the above technical solution, the support bearing 54 is supported below the pressing station, thereby preventing the bearing pressing assembly 5 from tilting the turntable 42 during the pressing operation.
[0062] Example 3
[0063] The difference between this embodiment and embodiment 1 is that: specifically, the fourth support seat 861 is located at one end of the four-station turntable 4 and is equipped with a second photoelectric device 85, and the second photoelectric device 85 is connected to the PLC controller signal.
[0064] By adopting the above technical solution, the second photoelectric device 85 is used to detect whether the casing blanking component 7 is missed. When a missed catch occurs, a signal is output to the PLC controller to alarm and shut down.
[0065] Example 4
[0066] Furthermore, the method for implementing the housing bearing pressing machine described in the present invention includes the following steps:
[0067] (1) Manually place the housing on the carrier 3 at the housing loading station and press the start button;
[0068] (2) The four-station turntable 4 rotates one station, driving the housing to move to the bottom of the bearing pressing assembly 5. The pressing cylinder 52 drives the lower pressing block 53 to move downward, pressing the bearing into the housing;
[0069] (3) The four-station turntable 4 continues to rotate one station, and the pressed casing moves to the bottom of the casing unloading assembly 7. The unloading lifting cylinder 73 drives the clamping claw 76 to descend to the set position. The clamping claw cylinder 75 drives the clamping claw 76 to clamp the casing. Then the unloading lifting cylinder 73 resets upward, and the transverse cylinder 74 drives the clamping claw 76 to move to the top of the casing unloading belt 6. The casing unloading assembly 7 places the casing on the casing unloading belt 6.
[0070] (4) The four-station turntable 4 continues to rotate one station, and the empty carrier moves to the bearing loading assembly 8. The bearing loading assembly 8 places the separated bearings and gaskets on the upper end of the ejector rod 36 in sequence;
[0071] (5) The four-station turntable 4 continues to rotate one station, and the carrier 3 equipped with bearings and gaskets moves to the casing loading station, thereby completing the cycle.
[0072] In the present invention, the gasket feeding vibration plate 2 and the bearing feeding vibration plate 9 are both selected from X type; the cam divider 41 is selected from the 70DF-drive angle 90 degrees-4 position (right rotation) type of Yude Seiko; the pressing cylinder 52 is selected from the SDAJ80-50-10SBX type of AirTac; the casing unloading belt 6 is selected from the EMB02-W100-L1.340X type of Yiheta; the first photoelectric 62 is selected from Panasonic's CX-411 type; the unloading lifting cylinder 73 is selected from AirTac's MA20 -100SU type; the transverse cylinder 74 adopts AirTac's QMTL20-150 type; the gripper cylinder 75 adopts AirTac's HFZ20 type; the pick-and-place lifting cylinder 822 adopts AirTac's MDJ16-30-10S type; the transverse module 84 adopts Wanhou's WHKK6010C-400A1-F2CS-T400W type; the second photoelectric device 85 adopts Panasonic's EX-L211D type; the separation cylinder 863 adopts AirTac's MD16-15S type.
[0073] In summary, the present invention achieves automatic loading of bearings and gaskets through the bearing loading assembly 8, automatic pressing of bearings and housings through the bearing pressing assembly 5, and automatic unloading of the housing after pressing through the housing unloading assembly 7 and the housing unloading belt 6, thereby achieving automated operation of housing-bearing pressing, improving work efficiency and reducing labor intensity. The present invention supports and positions the housing through the internal support member 34. When the bearing pressing assembly 5 moves downward, the internal support member 34 can move downward with the floating block 33, thereby pressing the bearing and gasket into the housing under the action of the push rod 36. After the bearing of the present invention is vibrated and aligned by the bearing feeding vibration plate 9, it enters the distribution trough 866 through the feed trough 867. The separation cylinder 863 drives the separation block 865 to be pushed out for the bearing pick-up and placement assembly 83 to absorb, thereby achieving bearing separation. The gasket separation method is the same. The present invention supports the bearing 54 below the pressing station to prevent the bearing pressing assembly 5 from causing the turntable 42 to tilt during the pressing operation. The present invention detects whether the casing blanking component 7 is missed by the second photoelectric detection 85. When missed, a signal is output to the PLC controller to alarm and shut down the machine.
[0074] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A housing bearing pressing machine, comprising a housing, characterized in that: A four-station turntable is installed in the middle position above the chassis, and a carrier is installed on each station on the four-station turntable. Above the chassis, on the circumferential side of the four-station turntable, a bearing pressing assembly, a casing unloading assembly and a bearing loading assembly are installed in sequence. Among them, a casing unloading belt is provided on one side of the casing unloading assembly, and a gasket feeding vibration plate and a bearing feeding vibration plate are respectively provided on both sides of the bearing loading assembly. The gasket feeding vibration plate, the casing unloading belt and the bearing feeding vibration plate are all connected to the PLC controller signal.
2. The housing bearing pressing machine according to claim 1, characterized in that: The carrier includes a base, with guide rods connected to both ends above the base, a floating block slidably connected to the guide rods, a spring located below the floating block is sleeved on the guide rod, a top rod passing through the floating block is installed in the middle position above the base, and an inner support member sleeved on the outside of the top rod is installed on the floating block.
3. The housing bearing pressing machine according to claim 1, characterized in that: The four-station turntable includes a cam divider, a turntable is installed on the output end of the cam divider, and the cam divider is connected to the PLC controller signal.
4. The housing bearing pressing machine according to claim 3, characterized in that: The bearing pressing assembly comprises a first support seat, a pressing cylinder is installed on the upper end of the first support seat, and a lower pressing block is installed on the output end of the pressing cylinder.
5. The housing bearing pressing machine according to claim 4, characterized in that: The bearing pressing assembly further comprises a support block, the upper end of which is connected to a support bearing, and a wear-resistant block is respectively installed on the bottom surface of the turntable corresponding to each work station.
6. The housing bearing pressing machine according to claim 1, characterized in that: The casing unloading assembly includes a second support base, a transverse cylinder is installed above the second support base, a first mounting plate is installed on the output end of the transverse cylinder, a unloading lifting cylinder is installed on the upper end of the first mounting plate, a first lifting plate is sliding on the first mounting plate, the output end of the unloading lifting cylinder is connected to the first lifting plate, a clamping cylinder is installed on the first lifting plate, and a clamping claw is installed on the output end of the clamping claw cylinder.
7. The housing bearing pressing machine according to claim 1, characterized in that: The bearing loading assembly includes a third support seat, a transverse module is installed above the third support seat, and a gasket picking and placing assembly and a bearing picking and placing assembly are respectively installed on the output end of the transverse module. The bearing loading assembly also includes a separation assembly, which is arranged below the gasket picking and placing assembly and the bearing picking and placing assembly. The transverse module is connected to the PLC controller signal.
8. The housing bearing pressing machine according to claim 7, characterized in that: The gasket picking and placing assembly includes a second mounting plate, a picking and placing lifting cylinder is installed on the upper end of the second mounting plate, a second lifting plate is slid on the second mounting plate, the output end of the picking and placing lifting cylinder is connected to the second lifting plate, and a suction nozzle is installed on the second lifting plate. The structure of the bearing picking and placing assembly is the same as that of the gasket picking and placing assembly.
9. The housing bearing pressing machine according to claim 7, characterized in that: The separation assembly includes a fourth support seat, and a bearing separator and a gasket separator are respectively installed above the fourth support seat, wherein the bearing separator includes a material block and a separation cylinder, a slide groove is provided above the material block, a separation block is provided inside the slide groove, the output end of the separation cylinder is connected to the separation block, a feed groove is provided on the side of the material block, and a distribution groove corresponding to the feed groove is provided on the separation block, and the structure of the gasket separator is the same as that of the bearing separator.
10. The method for implementing a housing bearing pressing machine according to any one of claims 1 to 9, characterized in that: The following steps are involved: (1) Manually place the casing on the carrier at the casing loading station and press the start button; (2) The four-station turntable rotates one station, driving the housing to move to the bottom of the bearing pressing assembly, and the pressing cylinder drives the lower pressing block downward to press the bearing into the housing; (3) The four-station turntable continues to rotate one station, and the pressed casing moves to the bottom of the casing unloading assembly. The unloading lifting cylinder drives the clamping claw to descend to the set position, and the clamping claw cylinder drives the clamping claw to clamp the casing. Then the unloading lifting cylinder resets upward, and the transverse cylinder drives the clamping claw to move to the top of the casing unloading belt. The casing unloading assembly places the casing on the casing unloading belt. (4) The four-station turntable continues to rotate one station, and the empty carrier moves to the bearing loading assembly. The bearing loading assembly places the separated bearings and gaskets on the upper end of the ejector rod in sequence; (5) The four-station turntable continues to rotate one station, and the carrier equipped with bearings and gaskets moves to the casing loading station, thus completing the cycle.