A point-type clamping structure for industrial machinery
Through the design of the point clamping structure, the use of a self-locking motor and a rotating frame to change the support cone angle, combined with the ball and limit block of the clamping block, the problem that traditional clamping components are difficult to meet all-round processing is solved, and efficient and stable workpiece clamping and multi-angle adaptability are achieved.
Patent Information
- Application Number
- CN202510402325.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2045-04-01
AI Technical Summary
Traditional fixed-angle clamping components are difficult to meet all-round processing needs, resulting in the need to frequently replace fixtures or readjust the workpiece position, reducing production efficiency and increasing costs.
It adopts a point clamping structure, including a mounting frame, a clamping block, a support cone, a support plate, a drive assembly and an adjustment assembly. The transmission rod and the rotating frame are driven by a self-locking motor to change the inclination angle of the support cone, and the balls and limit blocks inside the clamping block are used to achieve multi-angle and multi-position workpiece clamping.
It realizes the flexible adjustment of workpieces in multi-angle processing, reduces the number of clamping times, improves processing efficiency, and can effectively clamp special-shaped parts to avoid workpiece shaking, adapting to the clamping needs of workpieces of different sizes.
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Figure CN119927827B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of point clamping, in particular to a point clamping structure for industrial machinery. Background Art
[0002] In modern industrial production, machining, assembly and other process links place extremely high demands on workpiece clamping. Accurate and stable clamping is one of the key factors to ensure product processing precision and quality.
[0003] In industrial manufacturing processes such as machining and assembly lines, various workpieces require precise positioning and secure clamping. Due to the diverse shapes and sizes of workpieces, traditional fixed-angle clamping components struggle to meet the full range of machining requirements when drilling, grinding, and other processes on irregularly shaped parts. This often requires frequent fixture replacement or workpiece repositioning, reducing production efficiency and increasing costs. Summary of the Invention
[0004] In response to the problems in the prior art, the present invention provides a point clamping structure for industrial machinery. In order to solve the above-mentioned problems, the present invention proposes a point clamping structure for industrial machinery, which solves the problem that the existing fixed-angle clamping components are difficult to meet all-round processing requirements, resulting in the need to frequently replace fixtures or readjust the workpiece position.
[0005] The technical solution adopted by the present invention to solve its technical problem is: a point clamping structure for industrial machinery, comprising a mounting frame, a plurality of clamping blocks, a supporting cone for supporting a workpiece, a supporting plate fixedly mounted on the upper end of the supporting cone, and a driving assembly for driving the clamping block to move, a rotating disk is provided at the top of the supporting plate, and a plurality of slide grooves are provided at the top of the rotating disk, the inner walls of the slide grooves are slidably connected with sliders, and the sliders are fixedly mounted on the bottom end of the clamping block, a first annular groove is longitudinally provided inside the clamping block, a second annular groove is transversely provided inside the clamping block which is offset from the first annular groove, the openings of the inner walls of the first annular groove and the second annular groove are both slidably connected to limiting blocks, the outer walls of the limiting blocks are fixedly connected to the clamping plate, and a plurality of balls are provided inside the first annular groove and the second annular groove;
[0006] The mounting frame is provided with an adjustment component for changing the inclination angle of the supporting cone, the adjustment component includes an adjustment box fixedly mounted on the top of the mounting frame, a self-locking motor is fixedly mounted on the middle of the bottom end of the mounting frame, the output end of the self-locking motor is fixedly connected to a transmission rod, the upper end of the transmission rod wall is fixedly connected to a rotating frame, a transmission gear assembly is provided on the rotating frame, a rotating ball fixedly mounted on the bottom end of the supporting cone is embedded in the top of the adjustment box, the bottom end of the rotating ball is fixedly connected to a ball gear, and the ball gear and the transmission gear assembly are meshed.
[0007] Specifically, the drive assembly includes a motor arranged in the support cone, the output end of the motor is fixedly connected to the rotating disk, the inner wall of the slide groove is rotatably connected with a reciprocating screw, and one end of the reciprocating screw is fixedly connected to a bevel gear, the bevel gears are meshed with an inner bevel gear ring, and the inner bevel gear ring is fixedly connected to the edge of the support plate.
[0008] Specifically, the reciprocating screw rods are all threadedly connected to the sliders, and the sliders are all stuck in the sliding grooves.
[0009] Specifically, the walls of the clamping plates are all provided with resistance-increasing patterns.
[0010] Specifically, the lower end of the rotating ball wall is fixedly connected to a limiting ring, the top wall of the regulating box is provided with a limiting ring groove, and the limiting rings are all clamped in the limiting ring groove.
[0011] Specifically, the upper end of the regulating box wall is fixedly connected to a limiting plate, and several telescopic rods are fixedly connected between the inner wall of the limiting plate and the outer wall of the supporting cone, and several outer ends of the telescopic rods are provided with springs, and the springs are fixedly distributed on the inner wall of the limiting plate and the outer wall of the supporting cone.
[0012] Specifically, the outer diameter of the limit block is adapted to the inner diameters of the openings of the first annular groove and the second annular groove.
[0013] Beneficial effects of the present invention:
[0014] (1) The present invention relates to a point-type clamping structure for industrial machinery. The self-locking motor in the adjustment assembly drives the transmission rod, rotating frame, and transmission gear assembly, which drives the ball gear and support cone to rotate, thereby changing the tilt angle of the support cone. This allows the workpiece to be adjusted to a suitable angle during processing, meeting the requirements of different processing techniques and achieving multi-angle processing. Taking the complex curved surface processing of mechanical parts as an example, the number of clamping times can be reduced, and processing efficiency can be improved;
[0015] (2) The point-type clamping structure for industrial machinery described in the present invention has a first annular groove and a second annular groove provided inside the clamping block. The balls in the groove cooperate with the limit block and the clamping plate, so that the clamping plate can flexibly adjust the angle when contacting the workpiece, closely fit the surface of the workpiece with irregular shapes, and effectively avoid shaking or displacement of the workpiece during the clamping process, thereby effectively clamping the irregular-shaped parts.
[0016] (3) The point-type clamping structure for industrial machinery described in the present invention has a drive assembly whose motor drives the rotating disk to rotate. The reciprocating screw and bevel gear drive enable the clamping block to move within the slide slot to adjust the clamping position. This allows for effective clamping of workpieces of different sizes. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The present invention will be further described below with reference to the accompanying drawings and examples.
[0018] Figure 1 A schematic diagram of a point-type clamping structure for industrial machinery provided by the present invention Figure 1 ;
[0019] Figure 2 This is a schematic diagram of the overall cross-sectional structure of a point-type clamping structure for industrial machinery provided by the present invention;
[0020] Figure 3 A schematic diagram of a ball gear structure with a point-type clamping structure for industrial machinery provided by the present invention;
[0021] Figure 4 Schematic diagram of the longitudinal and transverse cross-sectional structure of a clamping block of a point-type clamping structure for industrial machinery provided by the present invention Figure 2 ;
[0022] Figure 5 The present invention provides a point-type clamping structure for industrial machinery Figure 2 A in the middle is an enlarged structural diagram;
[0023] Figure 6 The present invention provides a point-type clamping structure for industrial machinery Figure 2 The enlarged structural diagram at B in the middle;
[0024] Figure 7 The present invention provides a point-type clamping structure for industrial machinery Figure 2 Enlarged structural diagram at point C in the middle.
[0025] In the figure: 1. Mounting frame; 11. Support cone; 12. Support plate; 2. Drive assembly; 201. Slide groove; 21. Motor; 22. Rotating disk; 23. Reciprocating screw; 24. Bevel gear; 25. Inner bevel gear ring; 3. Adjustment assembly; 301. Limiting ring groove; 31. Adjustment box; 32. Self-locking motor; 33. Transmission rod; 34. Rotating frame; 35. Transmission gear assembly; 36. Ball gear; 37. Rotating ball; 38. Limiting ring; 4. Limiting disk; 41. Telescopic rod; 42. Spring; 5. Clamping block; 501. First ring groove; 502. Second ring groove; 51. Slider; 52. Limiting block; 53. Clamping plate; 54. Ball. DETAILED DESCRIPTION
[0026] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.
[0027] like Figure 1-Figure 7 As shown, the present invention provides the following technical solutions:
[0028] Embodiment 1: A point clamping structure for industrial machinery includes a mounting frame 1, a plurality of clamping blocks 5, a support cone 11 for supporting a workpiece, a support plate 12 fixedly mounted on the upper end of the support cone 11, and a drive assembly 2 for driving the clamping block 5 to move.
[0029] When in use, the staff first installs the mounting frame 1 on the mechanical equipment, and then uses the driving component 2 to clamp the workpieces with the multiple clamping blocks 5.
[0030] Embodiment 2: The technical solution of this embodiment is different from that of embodiment 1 and includes: an adjustment component 3 for changing the inclination angle of the support cone 11 is provided on the mounting frame 1, the adjustment component 3 includes an adjustment box 31 fixedly mounted on the top of the mounting frame 1, a self-locking motor 32 is fixedly mounted on the middle of the bottom end of the mounting frame 1, the output end of the self-locking motor 32 is fixedly connected to a transmission rod 33, the upper end of the transmission rod 33 is fixedly connected to a rotating frame 34, the rotating frame 34 is provided with a transmission gear assembly 35, the top of the adjustment box 31 is embedded with a rotating ball 37 fixedly mounted on the bottom end of the support cone 11, the rotating ball The bottom end of 37 is fixedly connected to a ball gear 36, and the ball gear 36 is meshed with the transmission gear assembly 35. The lower end of the ball wall of the rotating ball 37 is fixedly connected to a limit ring 38. A limit ring groove 301 is provided on the top wall of the adjusting box 31, and the limit rings 38 are all stuck in the limit ring groove 301. The upper end of the box wall of the adjusting box 31 is fixedly connected to the limit disk 4. Several telescopic rods 41 are fixedly connected between the inner wall of the limit disk 4 and the outer wall of the support cone 11, and the outer ends of the several telescopic rods 41 are provided with springs 42, which are fixedly distributed on the inner wall of the limit disk 4 and the outer wall of the support cone 11.
[0031] During use, when the tilt angle needs to be adjusted, first start the self-locking motor 32, and when the rotating frame 34 is driven to rotate to the required angle through the transmission rod 33, start the transmission gear assembly 35 to engage and drive the ball gear 36 to rotate. At this time, the ball gear 36 will rotate and slide along the limiting ring groove 301 through the limiting ring 38, so that the rotating ball 37 drives the support cone 11 and the support plate 12 to rotate and tilt, and then the tilt angle when clamping the workpiece can be adjusted to adapt to different working conditions. In addition, the support cone 11 will be tilted by the provided several springs 42 and telescopic rods 41, which can limit the support cone 11.
[0032] Embodiment 3: The technical solution of this embodiment is different from that of embodiment 2 and includes: the drive assembly 2 includes a motor 21 arranged in the support cone 11, the output end of the motor 21 is fixedly connected to the rotating disk 22, the inner wall of the slide 201 is penetrated by a reciprocating screw 23 that is rotatably connected, and one end of the reciprocating screw 23 is fixedly connected to a bevel gear 24, the bevel gear 24 is meshed with an inner bevel gear ring 25, and the inner bevel gear ring 25 is fixedly connected to the edge of the support plate 12, the reciprocating screw 23 is threadedly connected to the slider 51, and the slider 51 is stuck in the slide 201, the top of the support plate 12 is provided with a rotating disk 22, and the rotating A plurality of slide grooves 201 are provided at the top of the disk 22, and a slider 51 is slidably connected to the inner wall of the slide groove 201, and the slider 51 is fixedly installed at the bottom end of the clamping block 5. A first annular groove 501 is longitudinally penetrated inside the clamping block 5, and a second annular groove 502 is penetrated and displaced laterally from the first annular groove 501 inside the clamping block 5. The openings of the inner walls of the first annular groove 501 and the second annular groove 502 are slidably connected to the limit block 52, and the outer wall of the limit block 52 is fixedly connected to the clamping plate 53. A plurality of balls 54 are provided inside the first annular groove 501 and the second annular groove 502, and the wall of the clamping plate 53 is provided with a resistance-increasing pattern.
[0033] When in use, first place the workpiece on the rotating disk 22, then start the motor 21 to drive the rotating disk 22 to rotate, the rotating disk 22 will engage the inner bevel gear ring 25 through a plurality of bevel gears 24, thereby driving a plurality of reciprocating screws 23 to rotate, at this time the reciprocating screws 23 will drive the clamping block 5 to move toward the workpiece for clamping through the slider 51, and the workpieces of different calibers can be clamped by adjustment, which is very practical, and when the clamping block 5 clamps the workpiece, the clamping plate 53 will contact the workpiece to apply clamping force, When the surface of the workpiece is uneven, the clamping plate 53 on one side will first contact the workpiece, and then drive several balls 52 to roll along the first annular groove 501 through the limit block 52, so that the clamping plate 53 on the other side presses against the workpiece, thereby effectively clamping the workpiece with an uneven longitudinal outer wall. Similarly, through the transversely arranged second annular groove 502, the transverse clamping plate 53 can effectively clamp the workpiece with an uneven transverse outer wall, and the friction between the clamping plate 53 and the workpiece can be increased by the resistance-increasing grooves.
[0034] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above-described embodiments. The above-described embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A point clamping structure for industrial machinery, comprising a mounting frame (1), a plurality of clamping blocks (5), a support cone (11) for supporting a workpiece, a support plate (12) fixedly mounted on the upper end of the support cone (11), and a drive assembly (2) for driving the clamping blocks (5) to move, characterized in that: A rotating disk (22) is provided at the top of the support plate (12), and a plurality of sliding grooves (201) are provided at the top of the rotating disk (22), the inner walls of the sliding grooves (201) are slidably connected to sliders (51), and the sliders (51) are fixedly installed at the bottom of the clamping block (5), a first annular groove (501) is longitudinally penetrated inside the clamping block (5), a second annular groove (502) is transversely penetrated inside the clamping block (5) and is offset from the first annular groove (501), the openings of the inner walls of the first annular groove (501) and the second annular groove (502) are slidably connected to the limiting blocks (52), the outer walls of the limiting blocks (52) are fixedly connected to the clamping plate (53), and a plurality of balls (54) are provided inside the first annular groove (501) and the second annular groove (502); The mounting frame (1) is provided with an adjustment assembly (3) for changing the inclination angle of the support cone (11), the adjustment assembly (3) comprising an adjustment box (31) fixedly mounted on the top of the mounting frame (1), a self-locking motor (32) fixedly mounted at the middle of the bottom end of the mounting frame (1), an output end of the self-locking motor (32) fixedly connected to a transmission rod (33), an upper end of a rod wall of the transmission rod (33) fixedly connected to a rotating frame (34), a transmission gear assembly (35) provided on the rotating frame (34), a rotating ball (37) fixedly mounted on the bottom end of the support cone (11) embedded in the top end of the adjustment box (31), a ball gear (36) fixedly connected to the bottom end of the rotating ball (37), and the ball gear (36) and the transmission gear assembly (35) are in meshing connection.
2. The point-type clamping structure for industrial machinery according to claim 1, characterized in that: The drive assembly (2) includes a motor (21) disposed in a support cone (11), an output end of the motor (21) is fixedly connected to a rotating disk (22), a reciprocating screw (23) is rotatably connected to the inner wall of the slide groove (201), and one end of the reciprocating screw (23) is fixedly connected to a bevel gear (24), and the bevel gear (24) is meshedly connected to an inner bevel gear ring (25), and the inner bevel gear ring (25) is fixedly connected to the edge of the support plate (12).
3. The point-type clamping structure for industrial machinery according to claim 2, characterized in that: The reciprocating screw rods (23) are all threadedly connected to the sliders (51), and the sliders (51) are all stuck in the slide grooves (201).
4. The point-type clamping structure for industrial machinery according to claim 1, characterized in that: The wall of the clamping plate (53) is provided with resistance-increasing patterns.
5. The point-type clamping structure for industrial machinery according to claim 1, characterized in that: The lower end of the ball wall of the rotating ball (37) is fixedly connected to a limiting ring (38), the top wall of the regulating box (31) is provided with a limiting ring groove (301), and the limiting ring (38) is clamped in the limiting ring groove (301).
6. The point-type clamping structure for industrial machinery according to claim 1, characterized in that: The upper end of the wall of the regulating box (31) is fixedly connected to a limit plate (4), and a plurality of telescopic rods (41) are fixedly connected between the inner wall of the limit plate (4) and the outer wall of the support cone (11), and the outer ends of the plurality of telescopic rods (41) are provided with springs (42), and the springs (42) are fixedly distributed on the inner wall of the limit plate (4) and the outer wall of the support cone (11).
7. The point-type clamping structure for industrial machinery according to claim 1, characterized in that: The outer diameter of the limit block (52) is adapted to the inner diameters of the openings of the first annular groove (501) and the second annular groove (502).
Citation Information
Patent Citations
Clamping device for assisting in maintaining electromechanical equipment
CN111251221A
Adjusting mechanism for finish machining equipment of glasses production line
CN113858080A