CN221048153U - Hydraulic pressurizing device of steel ball grinding machine - Google Patents

Hydraulic pressurizing device of steel ball grinding machine Download PDF

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Publication number
CN221048153U
CN221048153U CN202420894910.8U CN202420894910U CN221048153U CN 221048153 U CN221048153 U CN 221048153U CN 202420894910 U CN202420894910 U CN 202420894910U CN 221048153 U CN221048153 U CN 221048153U
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plate
ball
steel ball
fixed
supporting ring
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CN202420894910.8U
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Chinese (zh)
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李鹏
于可
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Xinxiang Haisheng Cnc Technology Co ltd
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Xinxiang Haisheng Cnc Technology Co ltd
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Abstract

The utility model discloses a hydraulic pressurizing device of a steel ball grinding machine, and relates to the technical field of steel ball processing. The utility model comprises a grinding ball plate, a supporting ring, an inserting block and a conveying shell, wherein a fixed plate is fixed at the edge of the lower part of the inner wall of the grinding ball plate, the inserting block is arranged below the fixed plate, the supporting ring is arranged below the grinding ball plate, four corners of the top of the conveying shell are fixedly communicated with a hydraulic cylinder, piston rods are movably connected in the hydraulic cylinder, and the top ends of the four piston rods are jointly fixed at the bottom end of the supporting ring. The ball grinding plate, the support ring, the insert block and the conveying shell are arranged, so that the problems that the hydraulic pressurizing device of the steel ball grinding machine is easy to pressurize unevenly in the pressurizing process, and the ball plate is inconvenient to rotate due to overlarge friction force after being pressurized are solved, and the ball grinding machine has the advantages that: the steel ball grinding machine pressurizing device is more uniform in pressurizing process, and after the ball plate is pressurized, the friction of the ball plate can be better maintained, and smaller relative friction can be maintained.

Description

Hydraulic pressurizing device of steel ball grinding machine
Technical Field
The utility model belongs to the technical field related to steel ball processing, and particularly relates to a hydraulic pressurizing device of a steel ball grinding machine.
Background
The steel ball lapping machine is characterized in that an electric appliance operation plate is rotatably arranged above the side of a material tray through an elbow pipe, the electric appliance operation plate is convenient to observe and operate, lapping liquid can not splash onto the operation plate surface, production safety machine equipment is effectively guaranteed, when a steel ball is lapped in the electric appliance operation plate, in order to increase the lapping efficiency of the steel ball, when the electric appliance lapping machine works, the pressure during lapping is required to be increased through a hydraulic pressurizing device, the lapping efficiency of the steel ball is accelerated, but the electric appliance lapping machine still has the following defects in actual use:
1. In the process of pressurizing a hydraulic pressurizing device of the steel ball grinding machine, the ball grinding plates are directly pushed by the hydraulic device to mutually extrude, in the extrusion process, the extrusion effect of the ball plates is directly adopted, in the extrusion process, generally, only one pressurizing point is needed, the pressurizing is uneven, the steel ball grinding process is caused, the extrusion is uneven, and the uniformity of grinding balls is influenced;
2. In the process of pressurizing by the hydraulic pressurizing device of the steel ball grinding machine, the ball plate is pressurized by the pressurizing structure, and when the ball plate is pressurized, the ball plate is driven to rotate due to the fact that the ball plate is pressed to the ball plate by the pressure, the friction force is overlarge, and the ball plate is inconvenient to rotate due to overlarge friction force of rotating the ball plate.
Disclosure of utility model
The utility model aims to provide a hydraulic pressurizing device of a steel ball grinding machine, which solves the problems that the hydraulic pressurizing device of the steel ball grinding machine is easy to pressurize unevenly in the pressurizing process and the friction force of the ball plate is too large to rotate after being pressurized and is inconvenient to rotate by arranging a ball grinding plate, a supporting ring, an inserting block and a conveying shell.
In order to solve the technical problems, the utility model is realized by the following technical scheme:
The utility model relates to a hydraulic pressurizing device of a steel ball lapping machine, which comprises a lapping plate, a supporting ring, inserting blocks and a conveying shell, wherein a fixed plate is fixed at the edge of the lower part of the inner wall of the lapping plate, the inserting blocks are arranged below the fixed plate, the supporting ring is arranged below the lapping plate, the conveying shell is arranged below the supporting ring, four corners at the top of the conveying shell are fixedly communicated with a hydraulic cylinder, piston rods are movably connected in the hydraulic cylinder, the top ends of the four piston rods are jointly fixed at the bottom end of the supporting ring, during operation, the lower part of a steel ball is supported on the supporting ring through the lapping plate, and during rotation of the lapping plate, the steel ball is lapped through the cooperation of the ball plate above the lapping plate, the lapping plate is supported through the supporting ring, and during power transmission through the inserting blocks, hydraulic oil in the supporting ring is conveyed into the hydraulic cylinder through the conveying shell, the piston rods in the hydraulic cylinder are driven to rise, so that the piston rods push the supporting ring to squeeze the lapping plate, and the lapping plate pushes the steel ball to squeeze the lapping plate.
Further, the bottom center of fixed plate is fixed with movable post, the bottom center of movable post has seted up the socket, and the fixed plate passes through the socket swing joint inserted block on the movable post for the inserted block is when rotating, drives the lapping plate and rotates.
Further, the bottom end of the ball grinding plate is fixed with a movable ring, the movable ring is movably connected in the inner wall of the upper part of the supporting ring, and the ball grinding plate is movably connected in the supporting ring through the movable ring, so that the ball grinding plate and the supporting ring are limited together.
Further, the top of supporting ring is annular array rotation and is connected with the gyro wheel, the bottom at the ball lapping plate is butt-jointed on the week side upper portion of gyro wheel, and the supporting ring passes through the gyro wheel butt on the ball lapping plate for when carrying out the work, the ascending pressure during operation that the supporting ring received, butt on the ball lapping plate, suitable pressure is received when making the steel ball lapping.
Further, the inserted block is movably connected in the socket, a mounting disc is fixed at the bottom end of the inserted block, mounting holes are vertically formed in the mounting disc at the outer side of the inserted block in a penetrating mode in an annular array, the inserted block is movably connected with a bolt for mounting through the mounting holes in the mounting disc, and the inserted block is mounted at the output position of the driving device through the bolt for mounting.
Further, the front side of carrying the shell is fixed to be linked together and is had the input tube, the fixed intercommunication in one side of carrying the shell has the manometer, carries the shell to pass through in input tube and the transport hydraulic oil pipeline intercommunication for in the hydraulic oil can input carrying the shell, survey the pressure of the hydraulic oil in the carrying the shell through the manometer.
The utility model has the following beneficial effects:
1. According to the steel ball grinding machine, the ball grinding plate, the supporting ring, the inserting block and the conveying shell are arranged, so that the problem that the steel ball grinding machine is easy to pressurize unevenly in the pressurizing process of the hydraulic pressurizing device is solved, when hydraulic oil enters the conveying shell, the pressure of the hydraulic oil in the conveying shell is increased, the hydraulic oil in the conveying shell is conveyed into the hydraulic cylinder to push the piston rod to rise, the supporting ring is pushed to push the ball grinding plate to rise, and when the steel ball grinding machine works in cooperation with the ball grinding plate, the steel ball during grinding is pressurized and ground, so that the pressurizing process of the hydraulic pressurizing device of the steel ball grinding machine is more even.
2. According to the utility model, the ball grinding plate and the supporting ring are arranged, so that the problem that the ball plate of the hydraulic pressurizing device of the steel ball grinding machine is inconvenient to rotate due to overlarge friction force after being pressurized is solved, and the supporting ring is abutted to the bottom of the ball grinding plate through the roller, so that the flexibility of rotation can be maintained when the ball grinding plate is extruded by the supporting ring, the relative friction change of the ball plate is smaller when the ball grinding machine works, and the ball grinding machine is convenient to rotate.
Drawings
FIG. 1 is a perspective view of an assembly structure of a hydraulic pressurizing device of a steel ball lapping machine;
FIG. 2 is a perspective view of a ball lapping plate structure;
FIG. 3 is a perspective view of a support ring structure;
FIG. 4 is a perspective view of a plug structure;
fig. 5 is a perspective view of a conveying shell structure.
Reference numerals:
1. Grinding the ball plate; 101. a fixing plate; 102. a movable column; 103. a socket; 104. a movable ring; 2. a support ring; 201. a roller; 3. inserting blocks; 301. a mounting plate; 302. a mounting hole; 4. a transport housing; 401. an input tube; 402. a pressure gauge; 403. a hydraulic cylinder; 404. a piston rod.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
Referring to fig. 1-5, the utility model discloses a hydraulic pressurizing device of a steel ball lapping machine, which comprises a lapping plate 1, a supporting ring 2, an inserting block 3 and a conveying shell 4, wherein a fixed plate 101 is fixed at the edge of the lower part of the inner wall of the lapping plate 1, the lapping plate 1 grinds steel balls on the fixed plate, the movable column 102 is connected through the fixed plate 101, the inserting block 3 is arranged below the fixed plate 101, when the fixed plate 101 works through the inserting block 3, the lapping plate 1 is connected with an externally driven power source, the supporting ring 2 is arranged below the lapping plate 1, the supporting ring 2 provides supporting function for the lapping plate 1, a conveying shell 4 is arranged below the supporting ring 2, four corners at the top of the conveying shell 4 are fixedly communicated with a hydraulic cylinder 403, piston rods 404 are movably connected in the hydraulic cylinder 403, the top ends of the four piston rods 404 are jointly fixed at the bottom end of the supporting ring 2, after the hydraulic oil enters the conveying shell 4, the pressure in the conveying shell 4 is increased, the hydraulic oil in the conveying shell 4 is conveyed into the hydraulic cylinder 403, the hydraulic oil is pushed by the hydraulic cylinder 403, the supporting ring 2 is pushed by the hydraulic oil in the hydraulic oil, and the supporting ring 2 is pushed by the hydraulic oil in the conveying shell, and the supporting ring 2 is pushed to lift the supporting ring 2, when the ball lapping plate 1 is pressed, and the ball is ground by the ball lapping plate is pressed.
As shown in fig. 1 and 2, a movable column 102 is fixed at the bottom center of the fixed plate 101, a socket 103 is provided at the bottom center of the movable column 102, and the fixed plate 101 is movably connected with the insert block 3 through the socket 103 at the bottom end of the movable column 102 at the bottom of the fixed plate 101, so that the insert block 3 drives the fixed plate 101 and the ball grinding plate 1 to rotate under the driving of an external driving structure.
As shown in fig. 1-3, a movable ring 104 is fixed at the bottom end of the ball grinding plate 1, the movable ring 104 is movably connected in the inner wall of the upper portion of the supporting ring 2, and the ball grinding plate 1 is movably connected in the supporting ring 2 through the movable ring 104, so that the position between the supporting ring 2 and the ball grinding plate 1 cannot deviate.
As shown in fig. 1 and 3, the top end of the supporting ring 2 is rotatably connected with rollers 201 in an annular array, the upper parts of the peripheral sides of the rollers 201 are abutted to the bottom of the ball grinding plate 1, and the supporting ring 2 is abutted to the bottom of the ball grinding plate 1 through the rollers 201, so that the rotational flexibility of the ball grinding plate 1 can be maintained when the ball grinding plate is extruded by the supporting ring 2.
As shown in fig. 1, 2 and 4, the insert 3 is movably connected in the socket 103, the bottom end of the insert 3 is fixed with a mounting disc 301, mounting holes 302 are vertically and penetratingly formed in the mounting disc 301 at the outer side of the insert 3 in an annular array, and the insert 3 is inserted in the socket 103 to transmit power when working, and is matched with the mounting holes 302 on the mounting disc 301 and mounted on a proper position of the driving assembly, so that the insert 3 is driven to rotate when the driving assembly rotates.
As shown in fig. 1 and 5, an input pipe 401 is fixedly connected to the front side of the conveying shell 4, the input pipe 401 is communicated with an output pipeline of a hydraulic oil conveying device, a pressure gauge 402 is fixedly connected to one side of the conveying shell 4, hydraulic oil is conveyed to the conveying shell 4 through the input pipe 401, and when the conveying shell works, extrusion pressure applied to the ball grinding plate 1 is measured through the pressure gauge 402.
The specific working principle of the utility model is as follows: when the ball grinding device is operated, after the ball plate arranged on the upper part is arranged on the ball grinding plate 1, external driving equipment is started to rotate, the insert block 3 is driven to rotate through the mounting plate 301, the movable column 102 is driven to rotate when the insert block 3 rotates, the fixed plate 101 is driven to rotate when the movable column 102 rotates, the ball grinding plate 1 is driven to rotate by the fixed plate 101, the ball is rounded, in order to increase the rounding efficiency of the ball, hydraulic oil is conveyed into the conveying shell 4 through the input pipe 401, the conveying shell 4 is uniformly conveyed into the hydraulic cylinder 403, the hydraulic oil pressure in the conveying shell 4 is measured through the pressure gauge 402, the upward pressure of the ball grinding plate 1 is determined, the piston rod 404 is extruded in the hydraulic cylinder 403 through the hydraulic oil, the supporting ring 2 is pushed to ascend, the bottom end of the ball grinding plate 1 is pushed by the roller 201 on the supporting ring 2, the ball grinding plate 1 is pushed to ascend to extrude the ball grinding plate 1 after the ball grinding plate 1 is enabled to bear the pressure, the supporting ring 2 is abutted against the bottom of the ball grinding plate 1 through the roller 201, and the supporting ring 2 can bear the rotation flexibility when the ball grinding plate 1 is enabled to bear the rotation.
The foregoing is only a preferred embodiment of the present utility model, and the present utility model is not limited thereto, and any modification, equivalent replacement, and improvement of some of the technical features described in the foregoing embodiments are all within the scope of the present utility model.

Claims (6)

1. The utility model provides a hydraulic pressure device of steel ball lapping machine, includes lapping plate (1), support ring (2), inserts (3) and carries shell (4), its characterized in that: fixed plate (101) are fixed with in lapping ball board (1) inner wall lower part edge, the below of fixed plate (101) is provided with inserted block (3), the below of lapping ball board (1) is provided with supporting ring (2), the below of supporting ring (2) is provided with carries shell (4), all fixed intercommunication in four corners at carrying shell (4) top has hydraulic cylinder (403), swing joint has piston rod (404) in hydraulic cylinder (403), four the top of piston rod (404) is fixed in the bottom of supporting ring (2) jointly.
2. The hydraulic pressurizing device of the steel ball lapping machine according to claim 1, wherein: the bottom center of fixed plate (101) is fixed with movable post (102), socket (103) have been seted up at the bottom center of movable post (102).
3. The hydraulic pressurizing device of the steel ball lapping machine according to claim 1, wherein: the bottom end of the ball grinding plate (1) is fixed with a movable ring (104), and the movable ring (104) is movably connected in the inner wall of the upper part of the supporting ring (2).
4. The hydraulic pressurizing device of the steel ball lapping machine according to claim 1, wherein: the top of the supporting ring (2) is connected with rollers (201) in an annular array rotation mode, and the upper parts of the peripheral sides of the rollers (201) are abutted to the bottom of the ball grinding plate (1).
5. The hydraulic pressurizing device of the steel ball lapping machine according to claim 2, wherein: the plug block (3) is movably connected in the socket (103), a mounting disc (301) is fixed at the bottom end of the plug block (3), and mounting holes (302) are vertically formed in the mounting disc (301) at the outer side of the plug block (3) in a circular array in a penetrating mode.
6. The hydraulic pressurizing device of the steel ball lapping machine according to claim 1, wherein: the front side of the conveying shell (4) is fixedly communicated with an input pipe (401), and one side of the conveying shell (4) is fixedly communicated with a pressure gauge (402).
CN202420894910.8U 2024-04-28 2024-04-28 Hydraulic pressurizing device of steel ball grinding machine Active CN221048153U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202420894910.8U CN221048153U (en) 2024-04-28 2024-04-28 Hydraulic pressurizing device of steel ball grinding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202420894910.8U CN221048153U (en) 2024-04-28 2024-04-28 Hydraulic pressurizing device of steel ball grinding machine

Publications (1)

Publication Number Publication Date
CN221048153U true CN221048153U (en) 2024-05-31

Family

ID=91224216

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202420894910.8U Active CN221048153U (en) 2024-04-28 2024-04-28 Hydraulic pressurizing device of steel ball grinding machine

Country Status (1)

Country Link
CN (1) CN221048153U (en)

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