Surface polishing device for glass production

文档序号:774367 发布日期:2021-04-09 浏览:11次 中文

阅读说明:本技术 一种玻璃生产用表面抛光装置 (Surface polishing device for glass production ) 是由 姚铁军 张传月 麦文杰 项小敏 于 2020-12-15 设计创作,主要内容包括:本发明公开了一种玻璃生产用表面抛光装置,属于玻璃生产设备技术领域,该玻璃生产用表面抛光装置包括抛光装置和抛光设备,所述的抛光装置包括工作台,所述的工作台上方边缘设置有L型滑轨,所述的工作台中间上表面设置有固定轴,所述的固定轴的上方活动连接着旋转装盘,所述的抛光设备的底座上方固定连接着阀门盒、喷火枪以及火焰孔;所述的阀门盒控制喷火枪,工作人员将玻璃放在旋转装盘上,将阀门盒打开,喷火枪喷火的同时被移动滑块带动沿着L型滑轨运动,对玻璃相邻两边进行抛光,玻璃两边抛光完成后,工作人员将旋转装盘旋转一下就可以对另外两边抛光,可以很快地完成抛光工作,且减少工作人员的工作量。(The invention discloses a surface polishing device for glass production, which belongs to the technical field of glass production equipment and comprises a polishing device and polishing equipment, wherein the polishing device comprises a workbench, an L-shaped sliding rail is arranged at the edge above the workbench, a fixed shaft is arranged on the upper surface in the middle of the workbench, a rotary tray is movably connected above the fixed shaft, and a valve box, a flame gun and a flame hole are fixedly connected above a base of the polishing equipment; valve box control flame gun, the staff puts glass on rotatory sabot, opens the valve box, is moved along L type slide rail motion by the removal slider when flame gun spouts fire, polishes the adjacent both sides of glass, the back is accomplished in the polishing of glass both sides, the staff will rotate the sabot and rotate just can polish other both sides, can accomplish polishing work very fast, and reduce staff's work load.)

1. A surface polishing device for glass production, the polishing device (10) comprises a polishing device (20), a fixing device (30) and a cooling device (40);

the method is characterized in that: the polishing device (10) comprises a workbench (101), an L-shaped sliding rail (102) is arranged on the edge above the workbench (101), the lower surface of the L-shaped sliding rail (102) is fixedly connected to the lower surface of the edge, a fixed shaft (103) is arranged in the middle of the upper surface of the workbench (101), a rotary turntable (104) is arranged above the fixed shaft (103), the rotary turntable (104) is movably connected above the fixed shaft (103), the polishing equipment (20) is arranged above the L-shaped sliding rail (102), and the polishing equipment (20) comprises a movable sliding block (201), a base (202), a valve box (203), a flame gun (204) and a flame hole (205); the movable sliding block (201) is movably connected above the L-shaped sliding rail (102), and the lower surface of the base (202) is fixedly connected to the upper surface of the movable sliding block (201).

2. The surface polishing apparatus for glass production according to claim 1, characterized in that: a valve box (203), a flame gun (204) and a flame hole (205) are also fixedly connected above the base (202); the valve box (203) controls the flame gun (204), and the flame hole (205) is arranged at the front end of the flame gun (204).

3. The surface polishing apparatus for glass production according to claim 1, characterized in that: the fixing device (30) comprises a vertical rod (301), a horizontal rod (302), a first telescopic rod (303), a second telescopic rod 304 and a fixing block (305), wherein the vertical rod (301) is fixedly connected to the workbench (101), and the horizontal rod (302) is welded above the vertical rod (301).

4. A surface polishing device for glass production according to claim 3, wherein a first telescopic rod (303) and a second telescopic rod (304) are fixedly connected below the midpoint of the horizontal rod (302), and a fixed block (305) is connected just below the second telescopic rod (304).

5. The surface polishing apparatus for glass production according to claim 1, characterized in that: the cooling device (40) comprises an L-shaped air pipe (401), a circular ring switch (402) and an air hole (403); one end of the L-shaped air pipe (401) is fixedly connected to the valve box (203), the other end of the L-shaped air pipe is movably connected with the circular ring switch (402), the circular ring switch (402) is connected with the air hole (403) in front.

Technical Field

The invention belongs to the technical field of glass production equipment, and particularly relates to a surface polishing device for glass production.

Background

Glass polishing, which means that lines, scratches and other flaws on the surface of glass are removed by a chemical or physical method, so that the transparency and the refractive index of the glass are improved, and the glass is more vitrified; the traditional glass polishing mainly adopts mechanical grinding, and the mode has poor polishing quality, high labor intensity of operators and low production efficiency; the glass is polished by a flame mode in the prior art, the flame is used for softening the surface of the glass and impacting the glass by firepower, so that the material marks on the surface of a glass product can be solved, but the operation process of the glass product needs a worker to move a flame gun and the glass ceaselessly, the working intensity of the worker is high, and the production efficiency is low.

Disclosure of Invention

The invention provides a surface polishing device for glass production, aiming at the problems of poor mechanical grinding and polishing quality and low production efficiency of the prior art.

In order to solve the above problems, the present invention adopts the following technical solutions.

A surface polishing device for glass production comprises polishing equipment, a fixing device and a cooling device; the polishing device comprises a workbench, wherein an L-shaped sliding rail is arranged at the edge above the workbench, the lower surface of the L-shaped sliding rail is fixedly connected with the lower surface of the edge, a fixed shaft is arranged in the middle of the upper surface of the workbench, a rotary loading disc is arranged above the fixed shaft, the rotary loading disc is movably connected above the fixed shaft, the polishing equipment is arranged above the L-shaped sliding rail, and the polishing device comprises a movable sliding block, a base, a valve box, a flame gun and a flame hole; the movable sliding block is movably connected above the L-shaped sliding rail, and the lower surface of the base is fixedly connected to the upper surface of the movable sliding block.

Preferably, a valve box, a flame gun and a flame hole are also fixedly connected above the base; the valve box controls the flame gun, and the flame hole is arranged at the front end of the flame gun.

Preferably, the fixing device comprises a vertical rod, a horizontal rod, a first telescopic rod, a second telescopic rod and a fixing block, the vertical rod is fixedly connected to the workbench, the horizontal rod is welded above the vertical rod,

preferably, a first telescopic rod and a second telescopic rod are fixedly connected below the middle point of the horizontal rod, and a fixed block is connected right below the second telescopic rod.

Preferably, the cooling device comprises an L-shaped air pipe, a circular ring switch and an air hole; one end of the L-shaped air pipe is fixedly connected to the valve box, the other end of the L-shaped air pipe is movably connected with a circular ring switch 402, and the front of the circular ring switch is connected with an air hole.

Advantageous effects

Compared with the prior art, the invention has the beneficial effects that:

(1) according to the surface polishing device for glass production, the flame gun and the rotary turntable are matched for use, the flame gun is driven by the movable sliding block to move along the L-shaped sliding rail when flaming, two adjacent sides of a glass workpiece are polished, after polishing of the two adjacent sides of the glass workpiece is completed, a worker can polish the other two sides by rotating the rotary tray, polishing work can be completed quickly, the workload of the worker is greatly reduced, and the method is rapid.

(2) Above-mentioned surface finish device is used in glass production increases the fixing device who sets up, controls the fixed glass of fixed block with first telescopic link and the cooperation of second telescopic link, has avoided the condition that glass work piece position changes among the polishing process, brings the convenience for staff's work.

(3) The surface polishing device for glass production is additionally provided with another cooling device, and the cooling device is used for blowing air to the melted part for cooling. The surface of the glass is smooth after heating and melting, and the glass has no sharp corner, can be rapidly cooled and solidified after being blown and cooled, so that the strength of the glass is higher, the polishing quality of the glass can be effectively improved, and the production efficiency of the glass is improved.

Drawings

FIG. 1 is a schematic structural view of the present invention;

FIG. 2 is an enlarged view of the structure of the polishing apparatus in example 1;

FIG. 3 is a front view of the polishing apparatus in example 1;

FIG. 4 is a schematic view showing the construction of a polishing apparatus for producing glass in example 2;

FIG. 5 is a front view of the fixing apparatus in embodiment 2;

fig. 6 is a schematic structural view of a cooling apparatus in embodiment 3.

The corresponding relationship between the reference numbers of the figures and the names of the components in the figures is as follows:

10. a polishing device; 101. a work table; 102. an L-shaped slide rail; 103. a fixed shaft; 104. rotating the turntable;

20. a polishing device; 201. moving the slide block; 202. a base; 203. a valve box; 204. a flame gun;

205. a flame hole;

30. a fixing device; 301. a vertical rod; 302. a horizontal bar; 303. a first telescopic rod; 304. a second telescopic rod;

305. a fixed block;

40. a cooling device; 401. an L-shaped trachea; 402. a circular ring switch; 403. air holes; 5. a glass workpiece.

Detailed Description

The invention is further described below in connection with specific embodiments of the invention.

Example 1

As shown in fig. 1-3, which is a schematic structural view of a polishing apparatus for producing glass according to a preferred embodiment of the present invention, the polishing apparatus 10 is used with a worktable 101, an L-shaped slide rail 102 is disposed at an edge of an upper surface of the worktable 101, a lower surface of the L-shaped slide rail 102 is fixedly connected to the lower surface of the edge, a fixed shaft 103 is disposed at a middle portion of the upper surface of the worktable 101, a rotary turntable 104 is disposed above the fixed shaft 103, and the rotary turntable 104 is movably connected above the fixed shaft 103 for placing a glass workpiece 5; a polishing device 20 is arranged above the L-shaped slide rail 102, and the polishing device 20 comprises a movable slide block 201, a base 202, a valve box 203, a flame gun 204 and a flame hole 205; the movable sliding block 201 is movably connected above the L-shaped sliding rail 102, the movable sliding block 201 can drive the whole polishing device 20 to move, the lower surface of the base 202 is fixedly connected to the upper surface of the movable sliding block 201 and is used for bearing the weight of the flame gun 204, and the valve box 203, the flame gun 204 and the flame hole 205 are also fixedly connected above the base 202; the valve box 203 controls the flame gun 204, and the flame hole 205 is arranged at the front end of the flame gun 204.

In this embodiment, when the glass workpiece 5 needs to be polished, a worker places the glass workpiece 5 on the rotary turntable 104, opens the valve box 203 of the flame gun 204, and the flame gun 204 is driven by the movable slider 201 to move along the L-shaped slide rail 102 while flaminging, so as to polish two adjacent sides of the glass workpiece 5.

Example 2

As shown in fig. 4-5, which are schematic structural views of a surface polishing apparatus for glass production according to another preferred embodiment of the present invention, in example 1, a fixing device 30 is further provided for fixing a glass workpiece 5, the fixing device 30 includes a vertical rod 301, a horizontal rod 302, a first telescopic rod 303, a second telescopic rod 304, and a fixing block 305, the vertical rod 301 is fixedly connected to the worktable 101, the horizontal rod 302 is welded above the vertical rod 301, the first telescopic rod 303 and the second telescopic rod 304 are fixedly connected below a midpoint of the horizontal rod 302, the fixing block 305 is connected directly below the second telescopic rod 304, and the fixing block 305 fixes the glass workpiece 5.

In this embodiment, in order to prevent the glass workpiece 5 from changing in position due to the impulsive force of the flame gun 204 and the rotation of the rotary turntable 104 during the polishing process, a fixing device 30 is additionally provided, the worker firstly retracts the first telescopic rod 303 and the second telescopic rod 304 upwards, and then places the glass workpiece 5 above the rotary turntable 104, the first telescopic rod 303 and the second telescopic rod 304 extend downwards to fix the glass workpiece 5 by the fixing block 305, and the fixing device 30 is provided to avoid the situation that the position of the glass workpiece 5 changes during the polishing process, so that convenience is brought to the work of the worker.

Example 3

As shown in fig. 6, which is a schematic structural diagram of a polishing apparatus for glass production according to a preferred embodiment of the present invention, on the basis of examples 1 and 2, a cooling apparatus 40 is further provided, wherein the cooling apparatus 40 includes an L-shaped air pipe 401, a circular switch 402, and an air hole 403; one end of the L-shaped air pipe 401 is fixedly connected to the valve box 203, the other end of the L-shaped air pipe is movably connected with a circular ring switch 402, and the front of the circular ring switch 402 is connected with an air hole 403.

In this embodiment, the glass work 5 is heated and melted by using the flame gun 204, and the cooling device 40 is used to blow air to cool the melted portion. The surface of the glass is smooth after heating and melting, and the glass has no sharp corner, and can be rapidly cooled and solidified after being blown and cooled, so that the glass has higher strength, and the polishing quality of the glass can be effectively improved.

While the invention has been described in further detail in connection with specific embodiments thereof, it will be understood that the invention is not limited thereto, and that various other modifications and substitutions may be made by those skilled in the art without departing from the spirit of the invention, which should be considered to be within the scope of the invention as defined by the appended claims.

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