A linear guide slide with adjustment function
By designing a linear guide rail slide table with rotation and axial adjustment functions, the problem of inconvenient adjustment of the position of the installation components in the prior art is solved, and flexible connection with connecting components of different opening positions and sizes is realized, and the adjustment flexibility of the equipment is improved.
Patent Information
- Application Number
- CN202510285816.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-03-12
AI Technical Summary
When used, the existing linear guide rail slide table is not convenient to adjust the position of the mounting parts, resulting in the mounting parts that can only be connected to the connecting parts in a single opening position, and other sizes of connecting parts cannot be connected to the uncorrelated mounting parts, limiting the position and height adjustment of the equipment.
A linear guide rail slide table with adjustment function is designed, including a fixing frame, a fixing plate, a support seat, a servo motor, a synchronization belt assembly, a rotation adjustment mechanism and an axial adjustment mechanism. Through the cooperation of these components, the rotation and axial adjustment of the mounting block are realized, and the connecting parts of different opening positions and sizes are adapted to.
The linear guide rail slide platform can adjust the position of the mounting block so that it can be connected to the connecting parts that are inaccurate or incompatible with the openings on the equipment, reducing the limitations of the connecting parts and improving the flexibility of the position and height adjustment of the equipment.
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Figure CN119802172B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of guide rail slides, and in particular to a linear guide rail slide with an adjustment function. Background Art
[0002] Linear guide slides are widely used in precision machining industry, industrial automation field and measurement and testing equipment because they can flexibly adjust the position and height to meet different usage requirements.
[0003] When the linear guide slide is in use, the mounting parts on it need to be connected to the corresponding connecting parts on the equipment. The linear guide slide is operated to drive the connecting parts to move, thereby adjusting the position and height of the equipment.
[0004] The existing linear guide slides still have the following technical problems when in use, such as:
[0005] The existing linear guide slide is not convenient to adjust the position of the mounting component thereon when in use, so that the mounting component on the guide slide can only be connected to the connecting component at a single opening position, and the opening position of the connecting component on the device is not necessarily accurate, so that the mounting component cannot be connected to the connecting component with an inaccurate opening position;
[0006] In addition, when connecting components of other sizes are connected to mounting components, because the positions of the openings on the connecting components of other sizes do not correspond to the holes opened on the mounting components, the connecting components of other sizes cannot be connected to the mounting components whose openings do not correspond to each other, so that the connection between the mounting components and the connecting components is restricted.
[0007] Therefore, a linear guide slide with an adjustment function is needed to solve the above problems. Summary of the invention
[0008] The object of the present invention is to provide a linear guide slide with an adjustment function to solve the problem of limited connection between the mounting components on the existing linear guide slide and the connecting components on the equipment mentioned in the above background technology.
[0009] To achieve the above object, the present invention provides the following technical solutions:
[0010] 4. The repairing kit for automotive dents, according to claim 1, wherein the steering wheel is in the form of a button, and the steering column is connected to the steering column by a toothed wheel. The steering column is connected to the steering column by a toothed wheel. The steering column is connected to the steering column by a toothed wheel. The steering column is connected to the steering column by a toothed wheel. The steering column is connected to the steering column by a toothed wheel.
[0011] Preferably, the synchronous belt assembly consists of a synchronous belt and two drive rollers, the shaft end of one of the two drive rollers is connected to the shaft end of the servo motor through a belt drive group after the bearing passes through the support seat and the extension plate in turn, the positioning plate is connected between the two ends of the synchronous belt, and the sliding plate is connected to the upper surface of the positioning plate across the dustproof belt.
[0012] Preferably, the anti-displacement mechanism comprises a piston frame coaxially fixedly connected to the mounting groove, and a piston plate is seamlessly slidably connected in the piston frame, a positioning plate is arranged at equal angles on the lower surface of the piston plate, and a positioning flat tube is arranged at equal angles on the inner bottom surface of the piston frame, which is nested in the outer side of the corresponding positioning plate, the inner bottom surface of the mounting groove is provided with a sliding groove along the axis of the support seat, and a protrusion on the lower surface of the toggle block is slidably connected in the sliding groove, a limiting shaft coaxial therewith is also provided in the sliding groove, and the limiting shaft movably passes through the protrusion on the lower surface of the toggle block, springs 2 are arranged between both sides of the protrusion on the lower surface of the toggle block and both ends of the sliding groove, and the two springs 2 are movably nested in the outer side of the limiting shaft, roller assemblies are rollingly connected at the recesses on both sides of the toggle block, and the roller assemblies are installed on the corresponding outer ends of the piston rod, a piston tube corresponding to the piston rod is provided on the inner side of the mounting groove, the inner end of the piston rod is seamlessly slidably connected to the inner end of the corresponding piston tube opening, and the piston tube is through-connected with the piston frame through the corresponding connecting pipe.
[0013] Preferably, the rotation adjustment mechanism includes a rotating disk connected to the upper surface of the piston plate with a coaxial bearing, and a mounting tube is connected to the side of the rotating disk at an equal angle, the mounting tube is provided with through holes penetrating the upper and lower sides thereof, and a driving rod movably passes through the through holes, the open end of the mounting tube movably extends into the inner end of an angle limiter, and the inner end of each angle limiter is arranged corresponding to the side of the corresponding driving rod, a spring is arranged between the open end of the mounting tube and the outer end of the corresponding angle limiter, and the spring is movably nested in the outer side of the corresponding angle limiter, a mounting disk coaxial with the rotating disk is arranged above the rotating disk, and the upper end of the driving rod is connected to the lower surface of the mounting disk at an equal angle.
[0014] Preferably, the angle limiter is composed of a prismatic rod and an arc rod, the open end of the mounting tube is arranged as a prismatic through hole, the prismatic through hole matches the prismatic rod, and is used to limit the arc rod to prevent it from rotating around the axis of the prismatic rod, and the outer arc surface of the arc rod and the inner annular surface of the mounting groove are both rough surfaces.
[0015] Preferably, a right-angled triangular prism block is arranged at the inner end of the angle limiter, and the side surface corresponding to the driving rod and the inner end of the angle limiter is also arranged as a right-angled triangular prism block, and the inclined surfaces of two corresponding right-angled triangular prism blocks are in contact and connection.
[0016] Preferably, the through hole is an inverted L-shaped structure, whose wider inner width matches the maximum width of the driving rod, and whose narrower inner width matches the minimum width of the driving rod, and the length of the through hole matches the length of the driving rod. The driving rod is limited by the narrower inner width of the through hole to prevent it from swinging, so that it can only move in the vertical direction.
[0017] Preferably, the axial adjustment mechanism includes a cross-shaped slide groove arranged on the upper surface of the mounting plate, and a cross-shaped slider is slidably connected in the slide groove, the slider is fixedly connected to a limit frame on both sides along the axis direction of the slide groove, and the inner ends of corresponding axial positioning members are slidably connected in both ends of each limit frame, and the four axial positioning members are exposed on the outer portion of the limit frame and are provided with oblique grooves passing through both sides thereof, and the four oblique grooves are respectively movably penetrated by the four lower ends of the driving frame, the driving frame is coaxially fixedly connected to the lower surface of the mounting block, the four lower ends of the driving frame are all U-shaped structures, and the side of the axial positioning member facing the side of the slide groove and the inner side surface of the slide groove are also rough surfaces.
[0018] Preferably, adjustment grooves are arranged at equal angles on the rotating disk, and a corresponding strip through groove is arranged above each adjustment groove, the strip through grooves pass through the upper and lower sides of the mounting disk, and a corresponding locking hole is arranged above each strip through groove, the locking hole passes through the upper and lower sides of the mounting block, and a protrusion at the lower end of the locking block is slidably connected in the adjustment groove.
[0019] Preferably, the protrusion at the lower end of the locking block is a square structure, which is used to limit the locking block so that it can only move along the axis of the adjustment slot but cannot rotate. A threaded hole is provided at the upper end of the locking block.
[0020] Compared with the prior art, the beneficial effects of the present invention are as follows: the linear guide slide with an adjustment function can adjust the position of the mounting block, thereby enabling the mounting block to be connected to a connecting component on the device with an inaccurate opening or a non-corresponding opening position, thereby reducing the restrictions on the connection between the mounting block and the connecting component on the device:
[0021] 1. The rotating disk and the piston plate bearing are connected so that the rotating disk and its upper structure can rotate, thereby facilitating the adjustment of the angle of the mounting block. In addition, the slider slides in the slide groove, so that the mounting block can be moved along the axis of the slide groove, so that the mounting block can be adjusted axially. Through the above-mentioned angle adjustment and axial adjustment, the mounting block can be connected to the connecting component on the equipment with inaccurate openings or opening positions that do not correspond, which greatly reduces the restrictions on the connection between the mounting block and the connecting component on the equipment;
[0022] 2. By passing the bolt through the locking hole and the corresponding strip-shaped through groove and connecting with the threaded hole opened at the upper end of the corresponding locking block, the mounting block, the mounting plate and the rotating plate can be gradually approached. In the process of the three approaching, the driving rod gradually squeezes the corresponding angle limiter, so that the arc rod on the angle limiter contacts and squeezes the inner side of the mounting groove, thereby fixing the rotation angle of the mounting block. In addition, the axial positioning member gradually contacts and squeezes the inner side of the slide groove, so as to fix the distance moved by the mounting block along the axis direction of the slide groove, thereby ensuring that after the mounting block and the connecting component are connected, the equipment can stably move with the synchronous belt assembly;
[0023] 3. During the use of the linear guide slide, due to its frequent emergency stops, the toggle block tends to move along the sliding groove under the action of inertia, and then the piston rod tends to move into the piston tube, so that the gas in the piston tube tends to be transported into the piston frame. At this time, the air pressure in the piston frame will tend to increase, so that the piston disk has a tendency to drive the rotating disk to move upward, so that the mounting block, the mounting disk and the rotating disk have a tendency to squeeze each other, preventing the mounting block from moving due to the emergency stop of the linear guide slide, which helps the equipment to move stably with the synchronous belt assembly. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a schematic diagram of the main structure of the present invention;
[0025] Figure 2 It is a schematic diagram of the explosion structure of the present invention;
[0026] Figure 3 This is a schematic diagram of the explosion structure of the sliding plate and the mounting block connected to each other in the present invention;
[0027] Figure 4 For the present invention Figure 3 Schematic diagram of the structure viewed from above;
[0028] Figure 5 For the present invention Figure 4 A schematic diagram of the enlarged structure of point A;
[0029] Figure 6It is a schematic diagram of the cross-sectional structure of the connection between the sliding plate and the mounting block of the present invention;
[0030] Figure 7 For the present invention Figure 6 A schematic diagram of the enlarged structure of point B in the middle;
[0031] Figure 8 This is a schematic diagram of the connection structure between the mounting block and the mounting groove of the present invention;
[0032] Fig. 9 For the present invention Figure 8 The schematic diagram of the enlarged structure of point C in the middle;
[0033] Fig.10 This is a schematic diagram of the top view of the connection structure between the mounting groove and the toggle block of the present invention;
[0034] Fig.11 It is a schematic diagram of a partial cross-sectional structure of a sliding plate of the present invention;
[0035] Fig.12 For the present invention Fig.11 Schematic diagram of the enlarged structure at point D.
[0036] In the figure: 1. fixed frame; 2. fixed plate; 3. support seat; 4. dustproof belt; 5. extension plate; 6. servo motor; 7. belt drive group; 8. sliding plate; 9. mounting block; 10. synchronous belt assembly; 11. positioning plate; 12. locking hole; 13. mounting plate; 14. rotating plate; 15. piston plate; 16. angle limiter; 17. limit shaft; 18. driving frame; 19. locking block; 20. mounting tube; 21. mounting groove; 22. piston frame; 23. positioning flat tube; 24. positioning plate; 25. slide groove; 26. inclined groove; 27. axial positioning member; 28. limit frame; 29. slider; 30. sliding groove; 31. toggle block; 32. spring one; 33. through hole; 34. driving rod; 35. piston tube; 36. connecting pipe; 37. roller assembly; 38. piston rod; 39. spring two; 40. adjusting groove. DETAILED DESCRIPTION
[0037] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. 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 creative work are within the scope of protection of the present invention.
[0038] See also Figure 1-Figure 12 , the present invention provides the following technical solutions:
[0039] Embodiment 1: In order to solve the problem that the position of the mounting components on the linear guide slide is constant, which makes it impossible to connect with the connecting components of inaccurate opening positions or other sizes of the equipment, the following technical solution is provided, specifically, a linear guide slide with an adjustment function, including a slide frame consisting of a fixed frame 1, a fixed plate 2 and a support seat 3, wherein the fixed frame 1 and the fixed plate 2 are respectively fixedly connected to the two ends of the support seat 3, and the fixed frame 1 is also fixedly connected to an extension plate 5, and a servo motor 6 is installed on the extension plate 5, the servo motor 6 is connected to the synchronous belt assembly 10 through a belt drive group 7, and a dustproof cover for dustproofing the synchronous belt assembly 10 is also connected between the fixed frame 1 and the fixed plate 2. Belt 4, the synchronous belt assembly 10 is arranged inside the support seat 3, and the synchronous belt assembly 10 is connected to the sliding plate 8 through the positioning plate 11, the upper surface of the sliding plate 8 is provided with a mounting groove 21, and a rotation adjustment mechanism is installed inside the mounting groove 21, the upper end of the rotation adjustment mechanism is provided with an axial adjustment mechanism, and the axial adjustment mechanism is connected with a mounting block 9, the synchronous belt assembly 10 is composed of a synchronous belt and two transmission rollers, the shaft end of one of the two transmission rollers is successively passed through the support seat 3 and the extension plate 5 by the bearing, and is connected to the shaft end of the servo motor 6 through the belt drive group 7, the positioning plate 11 is connected between the two ends of the synchronous belt, and the sliding plate 8 is connected to the upper surface of the positioning plate 11 across the dustproof belt 4.
[0040] The rotation adjustment mechanism includes a rotating disk 14 connected to the upper surface of the piston plate 15 by a coaxial bearing, and the side of the rotating disk 14 is connected to a mounting tube 20 at equal angles, and a through hole 33 is opened on the mounting tube 20 to pass through the upper and lower sides thereof, and a driving rod 34 is movably penetrated in the through hole 33, and the open end of the mounting tube 20 is movably extended into the inner end of the angle limiter 16, and the inner end of each angle limiter 16 is correspondingly arranged with the side of the corresponding driving rod 34, and a locking member 34 is arranged between the open end of the mounting tube 20 and the outer end of the corresponding angle limiter 16. A spring 32 is arranged, and the spring 32 is movably nested in the outer side of the corresponding angle limiter 16. A mounting plate 13 coaxial with the rotating disk 14 is arranged above the rotating disk 14, and the upper end of the driving rod 34 is connected to the lower surface of the mounting plate 13 at an equal angle. When in use, the rotating disk 14 is connected to the piston plate 15 through the coaxial bearing, so that the rotating disk 14 can drive the structure above it to rotate, so that the mounting block 9 can be rotated. When the mounting disk 13 is close to the rotating disk 14, the driving rod 34 will squeeze the corresponding angle limiter 16, and the rotating disk 14 will be rotated. The angle limiter 16 is in contact with the rough inner annular surface of the mounting groove 21, thereby limiting the rotation angle of the rotating disk 14, so that the rotation angle of the mounting block 9 is limited. The angle limiter 16 is composed of a prismatic rod and an arc rod. The open end of the mounting tube 20 is set as a prismatic through hole, which is consistent with the prismatic rod and is used to limit the arc rod to prevent it from rotating around the axis of the prismatic rod. The outer arc surface of the arc rod and the inner annular surface of the mounting groove 21 are both rough surfaces. The inner end of the angle limiter 16 is provided with a right-angle triangle. The prism block, the side surface corresponding to the inner end of the driving rod 34 and the angle limiter 16 is also a right-angled triangular prism block, and the inclined surfaces of the two corresponding right-angled triangular prism blocks are in contact and connected. The through hole 33 is an inverted L-shaped structure, and its wider inner width coincides with the maximum width of the driving rod 34, and its narrower inner width coincides with the minimum width of the driving rod 34. The length of the through hole 33 coincides with the length of the driving rod 34. The driving rod 34 is limited by the narrow inner width of the through hole 33 to prevent it from swinging, so that it can only move in the vertical direction.
[0041] The axial adjustment mechanism includes a cross-shaped slide 25 arranged on the upper surface of the mounting plate 13, and a cross-shaped slider 29 is slidably connected in the slide 25, and the slider 29 is fixedly connected to the limit frame 28 on both sides along the axial direction of the slide 25, and the inner ends of the corresponding axial positioning members 27 are slidably connected in both ends of each limit frame 28, and the four axial positioning members 27 are exposed on the outer part of the limit frame 28 and are provided with oblique grooves 26 passing through both sides thereof, and the four oblique grooves 26 are respectively movably penetrated by the four lower ends of the driving frame 18, and the driving frame 18 is coaxially fixedly connected to the lower surface of the mounting block 9, and the four lower ends of the driving frame 18 are all U-shaped structures, and the side of the axial positioning member 27 facing the side of the slide 25 and the inner side surface of the slide 25 are also rough surfaces. When in use, the position of the mounting block 9 along the axial direction of the slide 25 can be adjusted by moving the slider 29 in the slide 25. When the block 9 and the mounting disk 13 are close to each other, the four lower ends of the driving frame 18 will move downward, and then through the inclined groove 26, the two axial positioning members 27 on the same side will move away from each other, so that the axial positioning members 27 contact the rough inner side surface of the extrusion slide groove 25, so as to fix the position of the mounting block 9. Adjustment grooves 40 are arranged at equal angles on the rotating disk 14, and a corresponding strip through groove is arranged above each adjustment groove 40. The strip through groove runs through the upper and lower sides of the mounting disk 13, and a corresponding locking hole 12 is arranged above each strip through groove. The locking hole 12 runs through the upper and lower sides of the mounting block 9. The convex block at the lower end of the locking block 19 is slidably connected in the adjusting groove 40. The convex block at the lower end of the locking block 19 is a square structure, which is used to limit the locking block 19 so that it can only move along the axis of the adjusting groove 40 but cannot rotate. A threaded hole is provided at the upper end of the locking block 19.
[0042] Embodiment 2: The linear guide rail slide in this embodiment, based on embodiment 1, can utilize the inertia generated by frequent emergency stops of the guide rail slide during use to reduce the possibility of displacement of the position of the installation part thereon. Specifically, an anti-displacement mechanism is also provided in the installation groove 21.
[0043] The anti-displacement mechanism includes a piston frame 22 coaxially fixedly connected to the mounting groove 21, and a piston sheet 15 is seamlessly slidably connected in the piston frame 22, a positioning sheet 24 is arranged at equal angles on the lower surface of the piston sheet 15, and a positioning flat tube 23 is arranged at equal angles on the inner bottom surface of the piston frame 22 and is nested in the outer side of the corresponding positioning sheet 24, a sliding groove 30 is arranged along the axis of the support seat 3 on the inner bottom surface of the mounting groove 21, and a protrusion on the lower surface of the toggle block 31 is slidably connected in the sliding groove 30, a limiting shaft 17 coaxial therewith is also arranged in the sliding groove 30, and the limiting shaft 17 movably passes through the protrusion on the lower surface of the toggle block 31, springs 39 are arranged between both sides of the protrusion on the lower surface of the toggle block 31 and both ends of the sliding groove 30, and the two springs 39 are movably nested in the outer side of the limiting shaft 17, the recesses on both sides of the toggle block 31 are rollingly connected with roller assemblies 37, and the roller assemblies 37 are rollingly connected to the recesses on both sides of the toggle block 31, and the roller assemblies 37 are rollingly connected to the recesses on both sides of the toggle block 31. The wheel assembly 37 is installed on the outer end of the corresponding piston rod 38, and a piston tube 35 corresponding to the piston rod 38 is provided on the inner side of the mounting groove 21. The inner end of the piston rod 38 is seamlessly slidably connected to the inner end of the opening of the corresponding piston tube 35, and the piston tube 35 is connected to the piston frame 22 through the corresponding connecting pipe 36. When in use, since the linear guide slide often stops suddenly, the toggle block 31 will have a tendency to move along the sliding groove 30 under the action of inertia. At this time, due to the structural shape of the toggle block 31, the piston rod 38 will have a tendency to be squeezed, so that the gas in the piston tube 35 has a tendency to be transported into the piston frame 22, so that the piston plate 15 in the piston frame 22 has a tendency to move upward, so that the mounting block 9, the mounting disk 13 and the rotating disk 14 will not move away from each other, thereby ensuring the stability of the position of the mounting block 9.
[0044] The contents not described in detail in this specification belong to the prior art known to professional and technical personnel in this field.
[0045] Although 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 the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A linear guide slide with an adjustment function, comprising a slide frame consisting of a fixed frame (1), a fixed plate (2) and a support seat (3), wherein the fixed frame (1) and the fixed plate (2) are respectively fixedly connected to two ends of the support seat (3), characterized in that: The fixed frame (1) is also fixedly connected to an extension plate (5), and a servo motor (6) is installed on the extension plate (5). The servo motor (6) is connected to the synchronous belt assembly (10) through a belt transmission group (7), and a dustproof belt (4) for preventing dust from the synchronous belt assembly (10) is also connected between the fixed frame (1) and the fixed plate (2). The synchronous belt assembly (10) is arranged inside the support seat (3), and the synchronous belt assembly (10) is connected to a sliding plate (8) through a positioning plate (11). The upper surface of the sliding plate (8) is provided with a mounting groove (21), and a rotation adjustment mechanism is installed inside the mounting groove (21). The upper end of the rotation adjustment mechanism is provided with an axial adjustment mechanism, and the axial adjustment mechanism is connected to a mounting block (9). The mounting groove (21) is also provided with an anti-displacement mechanism, and the anti-displacement mechanism includes a sliding groove (30) installed in the mounting groove (21) along the axis of the support seat (3), and a toggle block (31) is slidably connected in the sliding groove (30). The sliding groove (30) is provided with a coaxial limiting shaft (17), and the limiting shaft (17) movably penetrates the convexity on the lower surface of the toggle block (31). Springs (39) are provided between the two sides of the convexity on the lower surface of the toggle block (31) and the two ends of the sliding groove (30), and the two springs (39) are movably nested on the outer side of the limiting shaft (17). The toggle block (31) is provided with depressions on both sides parallel to the axis of the limiting shaft (17), and a rolling element is provided in each depression. The piston rod (38) is movably connected to the toggle block (31) and is mounted on the outer end of the corresponding piston rod (38). A piston tube (35) corresponding to the piston rod (38) is arranged on the inner side of the mounting groove (21). The axis of the roller assembly (37) and the piston rod (38) connected thereto in a rolling manner in the recess on the toggle block (31) are both arranged perpendicularly and eccentrically to the axis of the limit shaft (17). The inner end of the piston rod (38) is seamlessly slidably connected to the inner end of the opening of the corresponding piston tube (35).
2. The linear guide slide with adjustment function according to claim 1, characterized in that: The synchronous belt assembly (10) is composed of a synchronous belt and two transmission rollers. The shaft end of one of the two transmission rollers is connected to the shaft end of the servo motor (6) through a belt drive group (7) after the bearing passes through the support seat (3) and the extension plate (5). The positioning plate (11) is connected between the two ends of the synchronous belt, and the sliding plate (8) is connected to the upper surface of the positioning plate (11) across the dustproof belt (4).
3. The linear guide slide with adjustment function according to claim 2, characterized in that: The anti-displacement mechanism comprises a piston frame (22) coaxially fixedly connected to the mounting groove (21), and a piston plate (15) is seamlessly slidably connected to the piston frame (22), a positioning plate (24) is arranged at an equal angle on the lower surface of the piston plate (15), and a positioning flat tube (23) is arranged at an equal angle on the inner bottom surface of the piston frame (22) and is nested on the outer side of the corresponding positioning plate (24), and the piston tube (35) is connected to the piston frame (22) through a corresponding connecting tube (36).
4. The linear guide slide with adjustment function according to claim 3, characterized in that: The rotation adjustment mechanism comprises a rotating disk (14) connected to the upper surface of the piston plate (15) by a coaxial bearing, and a mounting tube (20) is connected to the side of the rotating disk (14) at an equal angle, the mounting tube (20) is provided with a through hole (33) penetrating the upper and lower sides thereof, and a driving rod (34) is movably inserted into the through hole (33), the open end of the mounting tube (20) movably extends into the inner end of an angle limiter (16), and the inner end of each angle limiter (16) is arranged corresponding to the side of the corresponding driving rod (34), a spring (32) is arranged between the open end of the mounting tube (20) and the outer end of the corresponding angle limiter (16), and the spring (32) is movably nested in the outer side of the corresponding angle limiter (16), and a mounting disk (13) coaxial with the rotating disk (14) is arranged above the rotating disk (14), and the upper end of the driving rod (34) is equiangularly connected to the lower surface of the mounting disk (13).
5. The linear guide slide with adjustment function according to claim 4, characterized in that: The angle limiter (16) is composed of a prismatic rod and an arcuate rod. The open end of the mounting tube (20) is provided with a prismatic through hole. The prismatic through hole matches the prismatic rod and is used to limit the arcuate rod to prevent it from rotating around the axis of the prismatic rod. The outer arc surface of the arcuate rod and the inner annular surface of the mounting groove (21) are both rough surfaces.
6. The linear guide slide with adjustment function according to claim 5, characterized in that: The inner end of the angle stopper (16) is provided with a right-angled triangular prism block, and the side surfaces corresponding to the inner end of the angle stopper (16) and the driving rod (34) are also provided with a right-angled triangular prism block, and the inclined surfaces of the two corresponding right-angled triangular prism blocks are in contact and connected.
7. The linear guide slide with adjustment function according to claim 6, characterized in that: The through hole (33) is an inverted L-shaped structure, wherein the wider inner width thereof matches the maximum width of the driving rod (34), and the narrower inner width thereof matches the minimum width of the driving rod (34), and the length of the through hole (33) matches the length of the driving rod (34). The driving rod (34) is limited by the narrow inner width of the through hole (33) to prevent it from swinging, so that it can only move in the vertical direction.
8. The linear guide slide with adjustment function according to claim 7, characterized in that: The axial adjustment mechanism comprises a cross-shaped slide groove (25) arranged on the upper surface of the mounting plate (13), and a cross-shaped slider (29) is slidably connected in the slide groove (25), and the slider (29) is fixedly connected to the limit frame (28) on both sides along the axis direction of the slide groove (25), and the inner end of the corresponding axial positioning member (27) is slidably connected in both ends of each limit frame (28), and the four axial positioning members (27) are exposed on the outer side of the limit frame (28) and are provided with oblique grooves (26) passing through the two sides thereof, and the four oblique grooves (26) are respectively movably penetrated by the four lower ends of the driving frame (18), and the driving frame (18) is coaxially fixedly connected to the lower surface of the mounting block (9), and the four lower ends of the driving frame (18) are all U-shaped structures, and the side of the axial positioning member (27) facing the side of the slide groove (25) and the inner side surface of the slide groove (25) are also rough surfaces.
9. The linear guide slide with adjustment function according to claim 8, characterized in that: The rotating disk (14) is provided with adjustment grooves (40) at equal angles, and a corresponding strip-shaped through groove is provided above each adjustment groove (40), the strip-shaped through groove passes through the upper and lower sides of the mounting disk (13), and a corresponding locking hole (12) is provided above each strip-shaped through groove, the locking hole (12) passes through the upper and lower sides of the mounting block (9), and a protrusion at the lower end of the locking block (19) is slidably connected in the adjustment groove (40).
10. The linear guide slide with adjustment function according to claim 9, characterized in that: The protrusion at the lower end of the locking block (19) is a square structure and is used to limit the locking block (19) so that it can only move along the axis of the adjustment slot (40) but cannot rotate. The upper end of the locking block (19) is provided with a threaded hole.
Citation Information
Patent Citations
Accurate clamping high-precision synchronous belt linear sliding table
CN119427017A