Glass production cutting device

文档序号:1457962 发布日期:2020-02-21 浏览:27次 中文

阅读说明:本技术 一种玻璃生产切割装置 (Glass production cutting device ) 是由 向敏 于 2019-12-13 设计创作,主要内容包括:本发明公开了一种玻璃生产切割装置,涉及玻璃生产切割技术领域,为解决现有技术中的夹丝玻璃在切割的过程中内部的钢丝在受到切割时容易产生震动,从而可能会导致玻璃出现碎裂的问题。所述底座机箱的一侧设置有操作控制台,且操作控制台与底座机箱组合连接,所述底座机箱的上方设置有支撑工作台,且支撑工作台与底座机箱组合连接,所述支撑工作台的两侧均设置有侧电控滑杆,且侧电控滑杆与支撑工作台通过滑轨连接,所述支撑工作台的上方设置有玻璃切割加工台,且玻璃切割加工台与支撑工作台组合连接,所述玻璃切割加工台的上方设置有水平轨杆,且水平轨杆与侧电控滑杆通过螺钉连接,所述水平轨杆的一侧设置有垂直升降轨道。(The invention discloses a glass production cutting device, relates to the technical field of glass production cutting, and aims to solve the problem that in the prior art, when steel wires inside wired glass are cut, the glass is easy to vibrate, so that the glass can be cracked. One side of base machine case is provided with operation control platform, and operation control platform and base machine case built-up connection, the top of base machine case is provided with the support table, and supports workstation and base machine case built-up connection, the both sides of support table all are provided with the automatically controlled slide bar of side, and the automatically controlled slide bar of side passes through sliding rail with the support table and be connected, the top of support table is provided with glass-cutting processing platform, and glass-cutting processing platform and support table built-up connection, the top of glass-cutting processing platform is provided with the horizontal rail pole, and the horizontal rail pole passes through the screw connection with the automatically controlled slide bar of side, one side of horizontal rail pole is provided with the vertical lift track.)

1. The utility model provides a glass production cutting device, includes base machine case (1), its characterized in that: an operation control console (16) is arranged on one side of the base case (1), the operation control console (16) is connected with the base case (1) in a combined mode, a supporting workbench (2) is arranged above the base case (1), the supporting workbench (2) is connected with the base case (1) in a combined mode, side electric control slide bars (3) are arranged on two sides of the supporting workbench (2), the side electric control slide bars (3) are connected with the supporting workbench (2) through slide rails, a glass cutting machining table (8) is arranged above the supporting workbench (2), the glass cutting machining table (8) is connected with the supporting workbench (2) in a combined mode, a horizontal rail bar (4) is arranged above the glass cutting machining table (8), the horizontal rail bar (4) is connected with the side electric control slide bars (3) through screws, a vertical lifting rail (7) is arranged on one side of the horizontal rail bar (4), and the vertical lifting track (7) is connected with the horizontal track rod (4) in a sliding manner, the cutting operation assembly (5) is arranged on the outer side of the vertical lifting track (7), and the cutting operation assembly (5) is connected with the vertical lifting track (7) in a sliding manner.

2. The glass production cutting apparatus of claim 1, wherein: the outer surface of glass-cutting processing platform (8) is provided with and goes up and down to accomodate groove (10), the inside of going up and down to accomodate groove (10) is provided with separation shut-off plate (9), the surface of separation shut-off plate (9) is provided with sponge bed course (11).

3. The glass production cutting apparatus of claim 2, wherein: separation cutting board (9) and lift storage groove (10) built-up connection, separation cutting board (9) are connected through the viscose agent with sponge bed course (11).

4. The glass production cutting apparatus of claim 1, wherein: the outer surface of cutting operation subassembly (5) is provided with signal control machine box (13), and signal control machine box (13) and cutting operation subassembly (5) electric connection, the top of cutting operation subassembly (5) is provided with micro motor (6), and micro motor (6) and cutting operation subassembly (5) built-up connection.

5. The glass production cutting apparatus of claim 1, wherein: the bottom of cutting operation subassembly (5) is provided with flexible groove (14), and the inside in flexible groove (14) is provided with shock attenuation briquetting (15), one side in flexible groove (14) is provided with glass cutting blade (12).

6. The glass production cutting apparatus of claim 5, wherein: glass cutting blade (12) and cutting operation subassembly (5) built-up connection, the bottom of shock attenuation briquetting (15) is provided with the cotton.

Technical Field

The invention relates to the technical field of glass production and cutting, in particular to a glass production and cutting device.

Background

Wired glass is also known as shatter-resistant glass and wire glass. In the rolling production process, a silk screen is pressed into a semi-liquid glass ribbon to form special glass. The glass has the advantages that the glass has high strength compared with common glass, and when the glass is impacted or subjected to temperature drastic change, the glass is broken without being deficient and cracked without scattering, small pieces of angular fragments are prevented from flying out to hurt people, such as fire spread, and when the wired glass is heated and cracked, the wired glass can still keep a fixed state to play a role in isolating fire, so the wired glass is also called fireproof glass, and the defects that a wire mesh is easily oxidized by high-temperature radiation in the production process, and yellow and bubbles like rusty spots are possibly generated on the surface of the glass. Wired glass is commonly used in skylights, ceiling roofs, and doors and windows that are subject to vibration.

However, in the existing wired glass, when the steel wires inside the wired glass are cut, the steel wires are easy to vibrate, so that the glass can be cracked; thus, the existing requirements are not met, and a glass production cutting device is provided for the same.

Disclosure of Invention

The invention aims to provide a glass production cutting device, which solves the problem that the inner steel wire of wired glass is easy to vibrate when being cut during the cutting process, so that the glass can be cracked.

In order to achieve the purpose, the invention provides the following technical scheme: a glass production cutting device comprises a base case, wherein one side of the base case is provided with an operation control console which is connected with the base case in a combined manner, a supporting workbench is arranged above the base case and connected with the base case in a combined manner, two sides of the supporting workbench are respectively provided with a side electric control slide rod which is connected with the supporting workbench through a slide rail, a glass cutting machining platform is arranged above the supporting workbench and connected with the supporting workbench in a combined manner, a horizontal rail rod is arranged above the glass cutting machining platform and connected with the side electric control slide rods through screws, one side of the horizontal rail rod is provided with a vertical lifting rail which is connected with the horizontal rail rod in a sliding manner, and the outer side of the vertical lifting rail is provided with a cutting operation assembly, and the cutting operation assembly is connected with the vertical lifting track in a sliding manner.

Preferably, the outer surface of the glass cutting machining table is provided with a lifting storage groove, a separation cutting-off plate is arranged in the lifting storage groove, and a sponge cushion layer is arranged on the outer surface of the separation cutting-off plate.

Preferably, the separation cutting board is connected with the lifting storage groove in a combined mode, and the separation cutting board is connected with the sponge cushion layer through an adhesive.

Preferably, the outer surface of the cutting operation assembly is provided with a signal control machine box, the signal control machine box is electrically connected with the cutting operation assembly, a micro motor is arranged above the cutting operation assembly, and the micro motor is connected with the cutting operation assembly in a combined mode.

Preferably, the bottom of the cutting operation assembly is provided with a telescopic groove, a damping pressing block is arranged in the telescopic groove, and a glass cutting blade is arranged on one side of the telescopic groove.

Preferably, glass cutting blade and cutting operation subassembly built-up connection, the bottom of shock attenuation briquetting is provided with the cotton.

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

1. the damping pressing block is arranged in the telescopic groove of the cutting operation assembly, the pressing block extends out to press the surface of the glass when the cutting operation assembly works, the glass is clamped and fixed together with the cutting plate at the bottom of the cutting operation assembly, the damping pressing block is made of rubber materials with high relative hardness, when the pressing block is contacted with the glass to generate vibration during cutting, part of vibration can be absorbed through the characteristics of the rubber materials, so that the damping effect is achieved, the bottom end of the damping pressing block is wrapped with a layer of cotton cloth, the friction resistance between the pressing block made of the rubber materials and the surface of the glass is reduced, and therefore the pressing block can smoothly move on the surface of the glass in the moving and cutting process of the blade.

Drawings

FIG. 1 is an overall front view of the present invention;

FIG. 2 is a schematic view of the glass cutting station of the present invention;

FIG. 3 is a schematic view of a cutting operation assembly according to the present invention.

In the figure: 1. a base chassis; 2. supporting a worktable; 3. a side electric control slide bar; 4. a horizontal rail bar; 5. a cutting operation assembly; 6. a micro motor; 7. a vertical lifting rail; 8. a glass cutting processing table; 9. separating the cut-off plate; 10. a lifting storage groove; 11. a sponge cushion layer; 12. a glass cutting blade; 13. a signal control box; 14. a telescopic groove; 15. damping pressing blocks; 16. the console is operated.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.

Referring to fig. 1-3, an embodiment of the present invention is shown: a glass production cutting device comprises a base case 1, wherein one side of the base case 1 is provided with an operation control console 16, the operation control console 16 is connected with the base case 1 in a combined manner, a supporting workbench 2 is arranged above the base case 1, the supporting workbench 2 is connected with the base case 1 in a combined manner, two sides of the supporting workbench 2 are respectively provided with a side electric control slide bar 3, the side electric control slide bars 3 are connected with the supporting workbench 2 through slide rails to realize the cutting-off operation of glass, a glass cutting processing table 8 is arranged above the supporting workbench 2, the glass cutting processing table 8 is connected with the supporting workbench 2 in a combined manner, a horizontal rail rod 4 is arranged above the glass cutting processing table 8, the horizontal rail rod 4 is connected with the side electric control slide bars 3 through screws, one side of the horizontal rail rod 4 is provided with a vertical lifting rail 7, and the vertical lifting rail 7 is connected with the horizontal rail rod 4 in a sliding manner, the cutting position is adjusted according to different cutting requirements, the cutting operation assembly 5 is arranged on the outer side of the vertical lifting rail 7, and the cutting operation assembly 5 is connected with the vertical lifting rail 7 in a sliding mode to control the cutting depth of the blade.

Further, the outer surface of glass-cutting processing platform 8 is provided with the lift and accomodates groove 10, and the inside of accomodating groove 10 that goes up and down is provided with separation cutting board 9, and after glass was placed, the cutting board just can be lifted glass, makes cutting position and mesa keep certain interval, is favorable to the cutting-off operation of blade, and the surface of separation cutting board 9 is provided with sponge bed course 11, prevents that the face from scraping the glass surface flower.

Further, separation cutting off board 9 and lift storage groove 10 built-up connection, separation cutting off board 9 passes through the viscose agent with sponge bed course 11 and is connected, reinforcing stability.

Further, the surface of cutting operation subassembly 5 is provided with signal control machine box 13, and signal control machine box 13 and cutting operation subassembly 5 electric connection, are convenient for carry out operation control, and the top of cutting operation subassembly 5 is provided with micro motor 6, provides the required kinetic energy of subassembly, and micro motor 6 and cutting operation subassembly 5 built-up connection.

Further, the bottom of cutting operation subassembly 5 is provided with flexible groove 14, and the inside in flexible groove 14 is provided with damping pressure block 15, damping pressure block 15 itself adopts the higher rubber material of relative hardness, can absorb partly vibrations through the characteristic that contacts briquetting and glass when the cutting produces vibrations through the rubber material, thereby play absorbing effect, one side of flexible groove 14 is provided with glass cutting blade 12, not only can cut glass, can also cut off to the steel wire layer of inside, and the work efficiency is improved.

Further, glass cutting blade 12 and cutting operation subassembly 5 built-up connection, the bottom of shock attenuation briquetting 15 is provided with the cotton, reduces the frictional resistance between briquetting and the glass surface, makes things convenient for the briquetting to remove.

The working principle is as follows: when the glass cutting machine is used, wired glass to be cut is placed on the glass cutting processing table 8, the glass needs to be straightened in the placing process, then the machine is started, the separating cutting plates 9 on the table top can be lifted from the temporal parts of the lifting containing grooves 10 to lift the glass above, a certain distance is reserved between every two cutting plates, gaps are selected to cut the glass when the glass is cut, a certain distance is reserved between the glass cutting position and the table top, the cutting operation of the blades is facilitated, the sponge cushion layer 11 is further arranged on the outer surface of the separating cutting plates 9 to prevent the surface of the glass from scratching, the position of the cutting assembly is well adjusted after the glass is lifted, then the cutting operation assembly 5 is lowered to a specified height, the damping pressing block 15 inside the telescopic groove 14 can stretch out, the damping pressing block 15 is made of rubber material with relatively high hardness, and one part of the pressing block can be absorbed through the characteristic of the rubber material when the pressing block is contacted with the glass to generate vibration in the cutting process The vibrations of branch to play absorbing effect, after briquetting and glass contact, glass cutting blade 12 just can begin work, cuts glass through the rotation of self, can also cut off to the steel wire layer of inside simultaneously, can wrap up the one deck cotton in the bottom of shock attenuation briquetting 15 at last, reduces the frictional resistance between briquetting and the glass surface of rubber material, is favorable to the briquetting to remove the cutting along with the blade together.

It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

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