Cutting table for standard sample of colored glass
Patent Information
- Application Number
- CN202621245047.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-08-12
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2036-08-12
AI Technical Summary
然而,此类简易工作台缺乏精密导向机构,完全依赖操作人员徒手控制进给方向,难以保证切割面的平整度以及与基准面的垂直度
(1)调节组件采用固定于底座两端的支柱、水平贯穿悬梁端部的螺纹杆以及成对分布于悬梁两侧的调节螺母。通过旋拧两侧的调节螺母,可使悬梁沿螺纹杆平移,从而调节切割组件的工作位置。且成对设置的调节螺母分别从悬梁两侧将其夹紧固定,有效防止悬梁在切割过程中发生松动,提高了切割过程的稳定性。
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Figure CN224768679U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cutting equipment technology, specifically a glass standard sample cutting table. Background Technology
[0002] As a traditional man-made crystal material, glass, with its flowing colors and crystal-clear texture, is widely used in architectural decoration, art crafts, and high-end jewelry. In modern materials science and quality testing, evaluating the physical properties of glass often requires processing raw materials or large finished products into standard samples that meet national standards.
[0003] Currently, laboratories and small processing workshops often use handheld cutting machines with simple workbenches for sample preparation. However, these simple workbenches lack precision guiding mechanisms, relying entirely on operators to manually control the feed direction, making it difficult to guarantee the flatness of the cut surface and its perpendicularity to the reference plane. This results in difficulty controlling the dimensional tolerances of the samples, failing to meet the requirements of modern materials testing for sample geometric accuracy and surface quality. Utility Model Content
[0004] To address the technical problems existing in the background art, this utility model provides a glass standard sample cutting stage, which can achieve precise positioning and stable guidance of the cutting components, effectively improving the dimensional accuracy and ease of operation of sample cutting.
[0005] The technical solution adopted by this utility model to solve its technical problem is: A glass standard sample cutting stage, including: Base; Support ribs are horizontally positioned at the upper end of the base; Cantilever beams are arranged parallel to each other above the base; An adjustment component, connected between the base and the cantilever beam, is used to position the cantilever beam; The cutting component is slidably mounted on the cantilever beam; The adjustment components include: Support pillars are fixedly installed at both ends of the base; A threaded rod is horizontally mounted on the support column and passes through the end of the cantilever beam; Adjusting nuts are threaded onto the threaded rod and are distributed in pairs on both sides of the cantilever beam.
[0006] Furthermore, the cutting components include: A sliding frame, which can be slidably mounted on the cantilever beam; The lower pulley is rotatably mounted at the lower end of the sliding frame and can abut against the lower edge of the cantilever beam; The cutting wheel is rotatably mounted at the lower end of the sliding frame; The pressure plate is fixedly installed at the lower end of the sliding frame.
[0007] Furthermore, the cutting components also include: The upper pulley is rotatably mounted on the upper end of the sliding frame and abuts against the upper edge of the cantilever beam; Longitudinal holes are formed on both sides of the sliding frame. The two ends of the upper pulley's shaft extend into the longitudinal holes and can move longitudinally along the longitudinal holes. A longitudinal threaded hole is provided at the upper end of the sliding frame and communicates with the longitudinal elongated hole; The longitudinal adjusting bolt is threaded into the longitudinal threaded hole, and extends into the longitudinal elongated hole and abuts against the shaft of the upper pulley.
[0008] Furthermore, the cutting components also include: Side pulleys are rotatably mounted on both sides of the sliding frame and abut against the side edge of the cantilever beam; A transverse elongated hole is provided on both sides of the sliding frame. The two ends of the rotating shaft of the side pulley extend into the transverse elongated hole and can move laterally along the transverse elongated hole. A transverse threaded hole is provided on the sliding bracket and communicates with a transverse elongated hole; The lateral adjusting bolt is threaded into the lateral threaded hole and extends into the lateral elongated hole, abutting against the shaft of the side pulley.
[0009] Furthermore, the sliding frame has an inner cavity for accommodating the cantilever beam.
[0010] Furthermore, a side arm is provided on one side of the base, and the side arm is connected to an adjustable limit rod via a quick-connect handle.
[0011] Furthermore, the side arm includes: main body; Measuring tools are mounted on the main body; The slot is located on the main body and is parallel to the measuring tool. The quick-connect handle is adjustable and located in the slot.
[0012] Furthermore, the side arm also includes: The hinge base and fixing hole are located at one end of the main body. The hinge base is rotatably connected to the base, and the fixing hole is detachably connected to the base.
[0013] Furthermore, a magnet is provided at one end of the main body.
[0014] Furthermore, a pad is provided at the upper end of the base, and the pad is located on both sides of the support rib.
[0015] The beneficial effects of this utility model are: (1) The adjustment assembly consists of pillars fixed to both ends of the base, a threaded rod horizontally passing through the end of the cantilever beam, and a pair of adjusting nuts distributed on both sides of the cantilever beam. By turning the adjusting nuts on both sides, the cantilever beam can be moved along the threaded rod, thereby adjusting the working position of the cutting assembly. The pair of adjusting nuts clamp and fix the cantilever beam from both sides, effectively preventing the cantilever beam from loosening during the cutting process and improving the stability of the cutting process.
[0016] (2) By setting an upper pulley at the upper end of the sliding frame to abut against the upper edge of the suspension beam, and cooperating with the longitudinal elongated hole, the longitudinal threaded hole and the longitudinal adjusting bolt, the shaft of the upper pulley can move up and down along the longitudinal elongated hole. The longitudinal adjusting bolt extends from the longitudinal threaded hole and abuts against the shaft of the upper pulley, thereby adjusting the clamping gap between the upper pulley and the lower pulley on the suspension beam. This allows the cutting assembly to slide smoothly.
[0017] (3) By setting side pulleys on both sides of the sliding frame to abut against the side edge of the cantilever beam, and cooperating with transverse elongated holes, transverse threaded holes and transverse adjusting bolts, the rotating shaft of the side pulleys can move laterally along the transverse elongated holes. The transverse adjusting bolts extend from the transverse threaded holes and abut against the rotating shaft of the side pulleys, thereby adjusting the degree of transverse tightness of the side pulleys against the side edge of the cantilever beam. This effectively prevents the sliding frame from laterally swaying during the cutting process and improves the accuracy of cutting straight lines.
[0018] (4) A side arm is provided on one side of the base, and the side arm is connected to an adjustable limiting rod via a quick-connect handle. The limiting rod is used to position and stop the sample to determine the cutting position. The quick-connect handle can quickly adjust and lock the position of the limiting rod, and can conveniently set and change the cutting size.
[0019] (5) The side arm also includes a hinge seat and a fixing hole at one end of the main body. The hinge seat is rotatably connected to the base, and the fixing hole is detachably connected to the base. In use, the side arm is unfolded around the hinge seat and fixed to the base through the fixing hole. When not in use, it can be folded up around the hinge seat for easy storage. In addition, the main body is also equipped with a magnet. When the side arm is unfolded to the working position, the magnet can magnetically attach to the base, and the side arm can be fixed to the base without the need for the fixing hole, making the unfolding and positioning of the side arm more convenient and quick. Attached Figure Description
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 yes Figure 1 A magnified view of a portion of location A in the middle; Figure 3 This is a structural diagram of the cutting component; Figure 4This is a schematic diagram of the sliding frame structure; Figure 5 This is a schematic diagram of the side arm structure.
[0022] In the picture: 1. Base, 2. Pad, 3. Support rib, 4. Adjustment assembly, 5. Cantilever beam, 6. Cutting assembly, 7. Side arm, 8. Quick-connect handle, 9. Limiting rod; 401. Support column; 402. Threaded rod; 403. Adjusting nut; 601. Sliding frame; 602. Upper pulley; 603. Side pulley; 604. Lower pulley; 605. Cutting wheel; 606. Pressure plate; 607. Longitudinal adjusting bolt; 608. Lateral adjusting bolt; 6011. Longitudinal elongated hole; 6012. Longitudinal threaded hole; 6013. Transverse elongated hole; 6014. Transverse threaded hole; 6015. Inner cavity; 701. Main body, 702. Measuring tool, 703. Slot, 704. Hinge seat, 705. Magnet, 706. Fixing hole. Detailed Implementation
[0023] The present invention will be further described in detail below with reference to the accompanying drawings.
[0024] like Figure 1 As shown, the glass standard sample cutting table has the following specific structure: a base 1. Support ribs 3 are horizontally positioned at the upper end of the base 1. The support ribs 3 elevate the sample, lifting it off the surface of the base 1, providing operating space for the pressure plate 606 of the cutting assembly 6, which helps ensure the flatness and consistency of the cut surface. Shims 2 are provided at the upper end of the base 1, located on both sides of the support ribs 3. The shims 2 provide a flat support surface for the sample, protecting the sample surface from scratches or indentations, thus improving cutting accuracy and sample surface quality. Cantilever beams 5 are arranged parallel to each other above the base 1. An adjusting assembly 4 is connected between the base 1 and the cantilever beams 5, used to position the cantilever beams 5. The cutting assembly 6 is slidably mounted on the cantilever beams 5 for cutting the sample.
[0025] like Figure 2 As shown, the specific structure of the adjusting component 4 includes a support column 401, which is fixedly mounted on both ends of the base 1. A threaded rod 402 is horizontally mounted on the support column 401 and passes through the end of the cantilever beam 5. Adjusting nuts 403 are threaded onto the threaded rod 402 and are distributed in pairs on both sides of the cantilever beam 5. By tightening the adjusting nuts 403 on both sides, the cantilever beam 5 can be moved along the threaded rod 402, thereby adjusting the working position of the cutting component 6. Furthermore, the paired adjusting nuts 403 clamp and fix the cantilever beam 5 from both sides, effectively preventing the cantilever beam 5 from loosening during the cutting process and improving the stability of the cutting process.
[0026] like Figure 3 , 4 As shown, the specific structure of the cutting assembly 6 includes a sliding frame 601, which is slidably mounted on the suspension beam 5. The sliding frame 601 has an inner cavity 6015 for accommodating the suspension beam 5. A lower pulley 604 is rotatably mounted on the lower end of the sliding frame 601 and abuts against the lower edge of the suspension beam 5. A cutting wheel 605 is rotatably mounted on the lower end of the sliding frame 601. A pressure plate 606 is fixedly mounted on the lower end of the sliding frame 601. When the sliding frame 601 rotates around the lower pulley 604, it can cause the cutting wheel 605 or the pressure plate 606 to press onto the sample. When the cutting wheel 605 presses onto the sample, it can cut the sample. When the pressure plate 606 presses onto the sample, it can break the cut sample along the cutting line.
[0027] The cutting assembly 6 also includes an upper pulley 602, which is rotatably mounted on the upper end of the sliding frame 601 and abuts against the upper edge of the cantilever beam 5. Longitudinal holes 6011 are formed on both sides of the sliding frame 601, and the two ends of the shaft of the upper pulley 602 extend into the longitudinal holes 6011, allowing it to move longitudinally along the holes. A longitudinal threaded hole 6012 is formed on the upper end of the sliding frame 601 and communicates with the longitudinal holes 6011. A longitudinal adjusting bolt 607 is threaded into the longitudinal threaded hole 6012, extending into the longitudinal holes 6011 and abutting against the shaft of the upper pulley 602. Through this structure, the clamping gap between the upper pulley 602 and the lower pulley 604 and the cantilever beam 5 can be adjusted, allowing the cutting assembly 6 to slide smoothly.
[0028] The cutting assembly 6 also includes side pulleys 603, which are rotatably mounted on both sides of the sliding frame 601 and abut against the side edge of the cantilever beam 5. Transverse elongated holes 6013 are formed on both sides of the sliding frame 601, and the two ends of the rotating shafts of the side pulleys 603 extend into the transverse elongated holes 6013, allowing them to move laterally along the transverse elongated holes 6013. Transverse threaded holes 6014 are formed on the sliding frame 601 and communicate with the transverse elongated holes 6013. Transverse adjusting bolts 608 are threaded into the transverse threaded holes 6014, extending into the transverse elongated holes 6013 and abutting against the rotating shafts of the side pulleys 603. Through this structure, the lateral tightness of the side pulleys 603 against the side edge of the cantilever beam 5 can be adjusted. This effectively prevents the sliding frame 601 from laterally swaying during cutting, improving the accuracy of the cut straight line.
[0029] like Figure 5 As shown, a side arm 7 is provided on one side of the base 1, and the side arm 7 is connected to an adjustable limiting rod 9 via a quick-connect handle 8. The quick-connect handle 8 is existing technology. The limiting rod 9 is used to position and stop the sample to determine the cutting position. The quick-connect handle 8 can quickly adjust and lock the position of the limiting rod 9, and can easily set and change the cutting size.
[0030] The side arm 7 includes a main body 701. A measuring tool 702 is disposed on the main body 701. In a specific embodiment, the measuring tool 702 is a ruler. A slot 703 is formed on the main body 701 and is arranged parallel to the measuring tool 702. A quick-connect handle 8 is adjustablely disposed in the slot 703. The side arm 7 also includes a hinge seat 704 and a fixing hole 706. The hinge seat 704 and the fixing hole 706 are disposed at one end of the main body 701. The hinge seat 704 is rotatably connected to the base 1, and the fixing hole 706 is detachably connected to the base 1. A magnet 705 is disposed at one end of the main body 701. In use, the side arm 7 is unfolded around the hinge seat 704 and fixed to the base 1 through the fixing hole 706. When not in use, it can be folded up around the hinge seat 704 for easy storage. In addition, the main body 701 is also equipped with a magnet 705. When the side arm 7 is extended to the working position, the magnet 705 can magnetically attach to the iron base 1, so that the side arm 7 and the base 1 can be fixed without the need for the fixing hole 706, making the extension and positioning of the side arm 7 more convenient and quick.
[0031] Based on the above-described preferred embodiments of this utility model, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the technical concept of this utility model. The technical scope of this utility model is not limited to the contents of the specification, but must be determined according to the scope of the claims.
Claims
1. A cutting table for glass standard samples, characterized in that, include: Base (1); Support rib (3) is horizontally positioned at the upper end of the base (1); The cantilever beams (5) are arranged parallel to each other above the base (1); Adjustment component (4) is connected between the base (1) and the suspension beam (5) for positioning the suspension beam (5); The cutting component (6) is slidably mounted on the cantilever beam (5); The adjustment component (4) includes: The support column (401) is fixedly installed at both ends of the base (1); A threaded rod (402) is horizontally mounted on the support column (401) and passes through the end of the cantilever beam (5); Adjusting nuts (403) are threaded onto the threaded rod (402) and are distributed in pairs on both sides of the cantilever beam (5).
2. The glass standard sample cutting stage according to claim 1, characterized in that, The cutting component (6) includes: A sliding frame (601) is slidably mounted on the suspension beam (5); The lower pulley (604) is rotatably disposed at the lower end of the sliding frame (601) and can abut against the lower edge of the cantilever beam (5); A cutting wheel (605) is rotatably mounted at the lower end of the sliding frame (601); The pressure plate (606) is fixedly disposed at the lower end of the sliding frame (601).
3. The glass standard sample cutting stage according to claim 2, characterized in that, The cutting assembly (6) further includes: The upper pulley (602) is rotatably disposed on the upper end of the sliding frame (601) and abuts against the upper edge of the suspension beam (5); Longitudinal holes (6011) are provided on both sides of the sliding frame (601). The two ends of the rotating shaft of the upper pulley (602) extend into the longitudinal holes (6011) and can move longitudinally along the longitudinal holes (6011). A longitudinal threaded hole (6012) is provided at the upper end of the sliding frame (601) and communicates with the longitudinal elongated hole (6011); The longitudinal adjusting bolt (607) is threaded into the longitudinal threaded hole (6012), and the longitudinal adjusting bolt (607) extends into the longitudinal elongated hole (6011) and abuts against the shaft of the upper pulley (602).
4. The glass standard sample cutting stage according to claim 2, characterized in that, The cutting assembly (6) further includes: Side pulleys (603) are rotatably disposed on both sides of the sliding frame (601) and abut against the side edge of the cantilever beam (5); A transverse elongated hole (6013) is provided on both sides of the sliding frame (601). The two ends of the rotating shaft of the side pulley (603) extend into the transverse elongated hole (6013) and can move laterally along the transverse elongated hole (6013). A transverse threaded hole (6014) is provided on the sliding frame (601) and communicates with the transverse elongated hole (6013); A transverse adjusting bolt (608) is threaded into the transverse threaded hole (6014), and the transverse adjusting bolt (608) extends into the transverse elongated hole (6013) and abuts against the shaft of the side pulley (603).
5. The glass standard sample cutting stage according to claim 2, characterized in that, The sliding frame (601) has an inner cavity (6015) for accommodating the cantilever beam (5).
6. The glass standard sample cutting stage according to claim 1, characterized in that, A side arm (7) is provided on one side of the base (1), and the side arm (7) is connected to a position-adjustable limit rod (9) via a quick-connect handle (8).
7. The glass standard sample cutting stage according to claim 6, characterized in that, The side arm (7) includes: Main body (701); A measuring tool (702) is disposed on the main body (701); A slot (703) is provided on the main body (701) and is arranged parallel to the measuring tool (702). The quick-connect handle (8) is adjustable in position and is located in the slot (703).
8. The glass standard sample cutting stage according to claim 7, characterized in that, The side arm (7) also includes: A hinge seat (704) and a fixing hole (706) are provided at one end of the main body (701). The hinge seat (704) is rotatably connected to the base (1), and the fixing hole (706) is detachably connected to the base (1).
9. The glass standard sample cutting stage according to claim 8, characterized in that, A magnet (705) is provided at one end of the main body (701).
10. The glass standard sample cutting stage according to claim 1, characterized in that, A pad (2) is provided at the upper end of the base (1), and the pad (2) is located on both sides of the support rib (3).