SBR guide rail drilling machine
By designing the SBR guide rail drilling machine and utilizing the cooperation of the sliding seat and the drilling assembly, the problem of inaccurate drilling of the fixed seat and the optical axis was solved, and high-precision processing of the guide rail was achieved.
Patent Information
- Application Number
- CN202422847888.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-21
AI Technical Summary
In the prior art, the fixing seat of the SBR guide rail and the optical axis drilling cannot accurately correspond to each other, resulting in insufficient machining accuracy of the guide rail.
An SBR guide rail drilling machine was designed, which included a frame, a processing table, a sliding seat, a fixed seat punching assembly and an optical axis punching assembly. The sliding seat drove the fixed seat and the optical axis punching assembly to correspond to the processing table respectively, so as to realize the precise positioning and movement of the drill bit and ensure the correspondence of the holes.
The precision and accuracy of the guide rail drilling are improved, ensuring that the mounting holes of the fixed seat and the optical axis correspond accurately, thereby improving the processing effect.
Smart Images

Figure CN223368269U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of guide rail drilling devices, and in particular to an SBR guide rail drilling machine. Background Art
[0002] SBR guide rails are a type of linear motion guide. Features: They offer high precision, ensuring smooth and accurate motion. They generally exhibit good wear resistance and rigidity, and are capable of withstanding certain loads. They are compact and take up little space. SBR guide rails are widely used in automation equipment, CNC machine tools, electronic equipment, and other fields for guiding and supporting linear motion. For example, in the motion systems of industrial robots, SBR guide rails ensure accurate linear motion of the robot's arms. They also provide precise motion control in some precision instruments and equipment.
[0003] The main body of the SBR guide rail is generally composed of a fixing seat at the bottom and an optical axis installed on the fixing seat. Corresponding mounting holes need to be drilled on both the fixing seat and the optical axis. How to make the mounting holes on the fixing seat and the guide rail correspond more accurately is a major problem in this industry. Utility Model Content
[0004] The utility model provides an SBR guide rail drilling machine, which solves the problem in the related art that the fixing seat and the optical axis of the guide rail cannot be accurately drilled.
[0005] The technical solution of the utility model is as follows:
[0006] An SBR guide rail drilling machine, comprising:
[0007] frame,
[0008] There are two processing tables, both of which are arranged on the frame, and are used to fix the fixed seat and the optical axis respectively.
[0009] A sliding seat is slidably arranged on the frame, and the two processing tables are located on both sides of the sliding seat.
[0010] A fixed seat punching assembly, wherein the fixed seat punching assembly is arranged on the sliding seat,
[0011] The optical axis punching assembly is arranged on the sliding seat, the fixed seat punching assembly and the optical axis punching assembly both slide with the sliding seat, and the fixed seat punching assembly and the optical axis punching assembly are respectively arranged corresponding to the two processing tables.
[0012] As a further technical solution, the fixing seat punching assembly includes:
[0013] The first movable seat is movably arranged on the sliding seat, and the moving direction of the first movable seat is perpendicular to the sliding direction of the sliding seat. There are several first movable seats.
[0014] a first drill bit, the first drill bit being arranged on one of the first movable seats;
[0015] a second drill bit, the second drill bit being arranged on one of the first movable seats,
[0016] A third drill bit is arranged on another of the first movable seats, and a drill diameter of the third drill bit is larger than a drill diameter of the second drill bit.
[0017] As a further technical solution, the optical axis punching assembly includes:
[0018] a fourth drill bit, the fourth drill bit being arranged on one of the sliding seats,
[0019] a fifth drill bit, the fifth drill bit being arranged on one of the sliding seats,
[0020] A sixth drill bit is arranged on another of the sliding seats.
[0021] As a further technical solution, it also includes a second movable seat, there are several second movable seats, the second movable seats are movably set on the sliding seat, the moving direction of the second movable seat is parallel to the moving direction of the sliding seat, and several first movable seats are slidably set on several second movable seats.
[0022] As a further technical solution, the invention further includes a first fixing component, which is arranged on a processing table close to the fixing seat punching component, and the first fixing component includes:
[0023] A first fixture is swingably arranged on the processing table, and one end of the first fixture is used to contact the fixed seat.
[0024] A connecting piece, one end of which is hinged to the other end of the first fixture, and the first fixture and the connecting piece are provided in pairs, and the two connecting pieces and the two first fixtures are symmetrically arranged on both sides of the processing table.
[0025] A moving member, the moving member is hinged to the other end of the two connecting members, and the movement of the moving member is used to drive the first clamp to swing,
[0026] A first linear drive device is provided on the processing table, a telescopic end of the first linear drive device is connected to the moving member, and the first linear drive device is used to drive the moving member to move.
[0027] As a further technical solution, it also includes a V-shaped groove and a second fixing component, the V-shaped groove and the second fixing component are both arranged on a processing table close to the optical axis punching component, and the second fixing component includes,
[0028] A second fixture, the middle portion of which is hinged to the processing table,
[0029] A second linear drive device, wherein the telescopic end of the second linear drive device is hinged to one end of the second clamp, and the second linear drive device is used to drive the second clamp to swing along the middle hinge point.
[0030] The working principle and beneficial effects of the utility model are as follows:
[0031] In the utility model, in order to solve the above technical problems, an SBR guide rail drilling machine is proposed, including a frame, a processing table, a sliding seat, a fixed seat punching assembly and an optical axis punching assembly. There are two processing tables, both of which are arranged on the frame. The two processing tables are respectively used to fix the fixed seat and the sliding seat is slidably arranged on the frame. The two processing tables are located on both sides of the sliding seat. The fixed seat punching assembly is arranged on the sliding part, and the optical axis punching assembly is arranged on the sliding seat. The fixed seat punching assembly and the optical axis punching assembly slide with the sliding seat, and the fixed seat punching assembly and the optical axis punching assembly are respectively arranged corresponding to the two processing tables.
[0032] During operation, the fixed seat of the guide rail is prevented from being close to the fixed seat. At this time, the fixed seat punching assembly will move and adjust the position, and the drill bit in the optical axis punching assembly will punch holes in the fixed seat. The optical axis to punching assembly has the same principle as the fixed seat punching assembly. The matching optical axis and fixed seat can be placed on the processing table on both sides of the sliding seat respectively, and the corresponding positions of the optical axis and the fixed seat can be adjusted at the same time, so the guide rail can be punched accurately to increase the punching accuracy. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] The preferred embodiments will be described below in a clear and understandable manner with reference to the accompanying drawings to further illustrate the above-mentioned characteristics, technical features, advantages and implementation methods of the present invention.
[0034] Figure 1 This is a schematic diagram of the structure of the utility model;
[0035] Figure 2 For this utility model Figure 1 A partial enlarged view of the middle part;
[0036] Figure 3 For this utility model Figure 1 A partial enlarged view of point B in the middle;
[0037] Figure 4 For this utility model Figure 1A partial enlarged view of point C in the middle;
[0038] In the figure: 1. Frame, 2. Processing table, 3. Sliding seat, 4. Fixed seat punching assembly, 5. Optical axis punching assembly, 401. First movable seat, 402. First drill bit, 403. Second drill bit, 404. Third drill bit, 502. Fourth drill bit, 503. Fifth drill bit, 504. Sixth drill bit, 6. Second movable seat, 7. First fixed assembly, 701. First fixture, 702. Connecting piece, 703. Moving piece, 704. First linear drive device, 8. Second fixed assembly, 801. V-groove, 802. Second fixture, 803. Second linear drive device. DETAILED DESCRIPTION
[0039] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the specific implementation methods of the present invention will be described below with reference to the accompanying drawings. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without inventive work.
[0040] To simplify the drawings, only the parts relevant to the utility model are schematically shown in each figure; they do not represent the actual structure of the product. Furthermore, to simplify the drawings and facilitate understanding, in some figures, only one of the components with the same structure or function is schematically shown or labeled. In this document, "one" not only means "only one" but also "more than one," and "several" includes "two" and "more than two."
[0041] It should be noted that, unless otherwise specified or limited, the terms "mounted," "connected," and "connected" should be understood broadly. For example, they can refer to fixed, detachable, or integral connections; mechanical or electrical connections; direct or indirect connections through an intermediary; and internal communication between two components. Those skilled in the art will understand the specific meanings of these terms in this utility model based on the specific circumstances.
[0042] In addition, in the description of the present application, the terms "first", "second", etc. are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0043] Example 1
[0044] Reference Figures 1 to 4, which is the first embodiment of the utility model, proposes an SBR guide rail drilling machine, including the frame diagram: 11, there are two processing tables 2, and the two processing tables 2 are both arranged on the frame diagram: 11, the two processing tables 2 are respectively used to fix the fixed seat and the optical axis, and the sliding seat 3 is slidably arranged on the frame diagram: 11, the two processing tables 2 are located on both sides of the sliding seat 3, the fixed seat punching assembly 4 is arranged on the sliding seat 3, and the optical axis punching assembly 5 is arranged on the sliding seat 3, the fixed seat punching assembly 4 and the optical axis punching assembly 5 both slide with the sliding seat 3, and the fixed seat punching assembly 4 and the optical axis punching assembly 5 are respectively arranged corresponding to the two processing tables 2.
[0045] In this embodiment, in order to solve the above-mentioned technical problems, an SBR guide rail drilling machine is proposed, including the rack diagram: 1, a processing table 2, a sliding seat 3, a fixed seat punching assembly 4 and an optical axis punching assembly 5. There are two processing tables 2, and the two processing tables 2 are both arranged on the rack diagram: 1. The two processing tables 2 are respectively used to fix the fixed seat and, the sliding seat 3 is slidably arranged on the rack diagram: 1. The two processing tables 2 are located on both sides of the sliding seat 3, the fixed seat punching assembly 4 is arranged on the sliding part, and the optical axis punching assembly 5 is arranged on the sliding seat 3. The fixed seat punching assembly 4 and the optical axis punching assembly 5 slide with the sliding seat 3, and the fixed seat punching assembly 4 and the optical axis punching assembly 5 are respectively arranged corresponding to the two processing tables 2. The fixed seat of the guide rail is prevented from being close to the fixed seat. At this time, the fixed seat punching assembly 4 will move and adjust the position, and the drill bit in the optical axis punching assembly 5 will punch the fixed seat. The optical axis to punching assembly has the same principle as the fixed seat punching assembly 4. The matching optical axis and fixed seat can be placed on the processing table 2 on both sides of the sliding seat 3, and the corresponding positions of the optical axis and the fixed seat can be adjusted at the same time, so the guide rail can be punched accurately to increase the punching accuracy.
[0046] Example 2
[0047] Compared with Example 1, further, the fixed seat punching assembly 4 includes a first movable seat 401, the first movable seat 401 is movably set on the sliding seat 3, the moving direction of the first movable seat 401 is perpendicular to the sliding direction of the sliding seat 3, there are several first movable seats 401, the first drill bit 402 is set on one first movable seat 401, the second drill bit 403 is set on one first movable seat 401, and the third drill bit 404 is set on another first movable seat 401, and the drill bit diameter of the third drill bit 404 is larger than the drill bit diameter of the second drill bit 403.
[0048] In this embodiment, the fixed seat punching assembly 4 includes a first movable seat 401 that is movably arranged on the sliding seat 3, and the moving direction of the first movable seat 401 is perpendicular to the sliding direction of the sliding seat 3. There are several first movable seats 401, and the first drill bit 402 is arranged on one first movable seat 401, the second drill bit 403 is arranged on the first movable seat 401, and the third drill bit 404 is arranged on another first movable seat 401. The drill diameter of the third drill bit 404 is larger than the drill diameter of the second drill bit 403. During operation, the first movable seat 401 can drive the first drill bit 402, the second drill bit 403 and the third drill bit 404 to move. During the processing of the fixed seat, it is necessary to process side-by-side holes. When processing the middle hole, the first drill bit 402 can be used to directly punch the hole. However, when processing the holes on both sides, it is necessary to first use the second drill bit 403 to make a mark, and then use the third drill bit 404 to punch the hole to prevent the drill bit from bending due to the downward pressure due to direct drilling, thereby causing deviation in the drilling.
[0049] Example 3
[0050] Compared to Examples 1-2, the optical axis drilling assembly 5 further includes fourth drill bits 502 and 502, which are disposed on one of the sliding seats 3, the fifth drill bit 503 disposed on one of the sliding seats 3, and the sixth drill bit 504 disposed on another of the sliding seats 3. The assembly further includes a second movable seat 6, wherein the plurality of second movable seats 6 are movably disposed on the sliding seat 3, the movement direction of the second movable seat 6 being parallel to the movement direction of the sliding seat 3, and a plurality of first movable seats 401 being slidably disposed on the plurality of second movable seats 6.
[0051] In this embodiment, the optical axis punching assembly 5 includes a fourth drill bit 502, a fifth drill bit 503 and a sixth drill bit 504, which are respectively arranged on a sliding seat 3. There are several second movable seats 6, and the second movable seats 6 are movably arranged on the sliding seat 3. The moving direction of the second movable seat 6 is parallel to the moving direction of the sliding seat 3. Several first movable seats 401 are slidably arranged on several second movable seats 6. In the studio, when processing is required on the optical axis, holes are punched respectively by the fourth drill bit 502, the fifth drill bit 503 and the sixth drill bit 504. However, because there is no need to print points, the drill bits of the optical axis punching assembly 5 do not need to be moved. The second movable seat 6 can drive the drill bits in the same row for fine-tuning, and the movement of the sliding seat 3 is responsible for major adjustments. This can increase the processing accuracy and improve the processing effect.
[0052] Example 4
[0053] Compared with Examples 1-3, it further includes a first fixing component 7, which is arranged on the processing table 2 near the fixed seat punching component 4, and the first fixing component 7 includes a first clamp 701, and the first clamp 701 is swingably arranged on the processing table 2, and one end of the first clamp 701 is used to contact the fixed seat, and one end of the connecting member 702 is hinged to the other end of the first clamp 701, and there are two first clamps 701 and the connecting member 702, and the two connecting members 702 and the two first clamps 701 are symmetrically arranged on both sides of the processing table 2, and the moving member 703 is hinged to the other end of the two connecting members 702, and the movement of the moving member 703 is used to drive the first clamp 701 to swing, and the first linear drive device 704 is arranged on the processing table 2, and the telescopic end of the first linear drive device 704 is connected to the moving member 703, and the first linear drive device 704 is used to drive the moving member 703 to move.
[0054] In this embodiment, the first fixing component 7 is used to fix the fixing seat on the processing table 2. The first linear drive device 704 drives the moving key to move, thereby driving the first clamp 701 to swing through the connecting member 702, thereby clamping the fixing seat. After the fixing seat is clamped by the first fixing component 7, drilling processing is performed through the drilling component.
[0055] Example 5
[0056] Compared with Examples 1-4, it also includes a V-groove 801 and a second fixing component 8, and the V-groove 801 and the second fixing component 8 are both arranged on the processing table 2 close to the optical axis punching component 5. The second fixing component 8 includes a second clamp 802, the middle part of the second clamp 802 is hinged to the processing table 2, and a second linear drive device 803. The telescopic end of the second linear drive device 803 is hinged to one end of the second clamp 802, and the second linear drive device 803 is used to drive the second clamp 802 to swing along the middle hinge point.
[0057] This embodiment also includes a V-shaped groove 801 and a second fixing component 8. The V-shaped groove 801 is used to stably place the optical axis on the processing table 2. Since the optical axis is a cylinder, the V-shaped groove 801 can keep it stable. The second fixing component 8 includes a second clamp 802 and a second linear drive device 803. The second linear drive device 803 drives one end of the second clamp 802 to swing along the middle hinge point, thereby clamping the optical axis. The second clamp 802 only needs to press the optical axis from top to bottom.
[0058] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, and all of these should be included in the scope of the claims of the present invention.
Claims
1. An SBR guide rail drilling machine, characterized in that: include, Rack (1), There are two processing tables (2), both of which are arranged on the frame (1), and the two processing tables (2) are used to fix the fixed seat and the optical axis respectively. A sliding seat (3), wherein the sliding seat (3) is slidably arranged on the frame (1), and the two processing tables (2) are located on both sides of the sliding seat (3). A fixed seat punching assembly (4), wherein the fixed seat punching assembly (4) is arranged on the sliding seat (3), An optical axis punching assembly (5), wherein the optical axis punching assembly (5) is arranged on the sliding seat (3), the fixed seat punching assembly (4) and the optical axis punching assembly (5) both slide following the sliding seat (3), and the fixed seat punching assembly (4) and the optical axis punching assembly (5) are respectively arranged corresponding to the two processing tables (2).
2. The SBR guide rail drilling machine according to claim 1, characterized in that: The fixing seat punching assembly (4) comprises: The first movable seat (401) is movably arranged on the sliding seat (3), and the moving direction of the first movable seat (401) is perpendicular to the sliding direction of the sliding seat (3). There are a plurality of the first movable seats (401). a first drill bit (402), wherein the first drill bit (402) is arranged on one of the first movable seats (401), a second drill bit (403), wherein the second drill bit (403) is arranged on one of the first movable seats (401), A third drill bit (404), the third drill bit (404) is arranged on another of the first movable seats (401), and the drill diameter of the third drill bit (404) is larger than the drill diameter of the second drill bit (403).
3. The SBR guide rail drilling machine according to claim 2, characterized in that: The optical axis punching assembly (5) comprises: a fourth drill bit (502), the fourth drill bit (502) being arranged on one of the sliding seats (3), a fifth drill bit (503), the fifth drill bit (503) being arranged on one of the sliding seats (3), A sixth drill bit (504), the sixth drill bit (504) is arranged on another of the sliding seats (3).
4. The SBR guide rail drilling machine according to claim 3, characterized in that: It also includes a second movable seat (6), there are a plurality of the second movable seats (6), the second movable seats (6) are movably arranged on the sliding seat (3), the moving direction of the second movable seat (6) is parallel to the moving direction of the sliding seat (3), and a plurality of the first movable seats (401) are slidably arranged on the plurality of the second movable seats (6).
5. The SBR guide rail drilling machine according to claim 1, characterized in that: It also includes a first fixing component (7), which is arranged on the processing table (2) near the fixing seat punching component (4), and the first fixing component (7) includes: A first clamp (701), wherein the first clamp (701) is swingably arranged on the processing table (2), and one end of the first clamp (701) is used to contact with a fixed seat, A connecting piece (702), one end of the connecting piece (702) is hinged to the other end of the first clamp (701), there are two first clamps (701) and two connecting pieces (702), and the two connecting pieces (702) and the two first clamps (701) are symmetrically arranged on both sides of the processing table (2). A moving member (703), the moving member (703) is hinged to the other ends of the two connecting members (702), and the moving member (703) is used to drive the first clamp (701) to swing. A first linear drive device (704) is provided on the processing table (2), a telescopic end of the first linear drive device (704) is connected to the moving member (703), and the first linear drive device (704) is used to drive the moving member (703) to move.
6. The SBR guide rail drilling machine according to claim 1, characterized in that: It also includes a V-shaped groove (801) and a second fixing component (8), wherein the V-shaped groove (801) and the second fixing component (8) are both arranged on a processing table (2) close to the optical axis punching component (5), and the second fixing component (8) includes: A second clamp (802), the middle portion of which is hinged on the processing table (2), A second linear drive device (803), wherein the telescopic end of the second linear drive device (803) is hinged to one end of the second clamp (802), and the second linear drive device (803) is used to drive the second clamp (802) to swing along a middle hinge point.