A fused quartz plate welding device with positioning effect

By designing a composite mechanism and positioning mechanism with positioning effect, combined with the design of the protective mechanism, the problems of stability and positioning of quartz plates in quartz plate welding equipment are solved, and high-precision and high-quality welding effects are achieved.

CN119525723BActive Publication Date: 2025-05-16XUZHOU QILE QUARTZ TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510008437.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-05-16
Estimated Expiration
2045-01-03

AI Technical Summary

Technical Problem

It is difficult for existing quartz plate welding equipment to maintain the stability and positioning of quartz plates during welding, resulting in low welding accuracy and unstable product quality.

Method used

A fused quartz plate welding equipment with positioning effect is designed, and the quartz plate is fixed in a specific position using a composite mechanism and a positioning mechanism. The stable welding of the quartz plate is achieved through the cooperation of the sliding frame body and the welding machine. At the same time, the protective mechanism optimizes the working environment and reduces safety hazards by blocking the welding light.

Benefits of technology

Through the design of this equipment, the quartz board remains stable during the welding process, improving welding accuracy and product quality, and avoiding welding offsets and safety hazards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a fused quartz plate welding device with a positioning effect, and the invention relates to the field of welding technology, including a composite mechanism. The fused quartz plate welding device with a positioning effect is designed with two fixing mechanisms, which are distributed on both sides of a composite base, and the quartz plate is placed inside the fixing mechanism, and the fixing mechanism plays a role in fixing the plate, thereby maintaining stability during welding, preventing deviation, improving welding accuracy, and avoiding affecting product quality. The fixing mechanism slides on the outside of the slide rail column, and moves to one side of the welding machine through two fixing mechanisms, achieving the effect of mechanical docking, avoiding deviation caused by manual docking, and the sliding frame slides inside the composite frame, driving the welding machine to perform horizontal operation, thereby achieving the effect of plate welding. When laser welding is performed, there is dazzling light, and the protective mechanism plays a shielding role on the light, optimizes the working environment, and avoids affecting the vision of personnel.
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Description

Technical Field

[0001] The invention relates to the technical field of welding, in particular to a fused quartz plate welding device with positioning effect. Background Art

[0002] Fused quartz plate welding equipment is a special equipment used to connect two or more fused quartz plates together. It uses specific welding technology and processes to fuse the edges or surfaces of the quartz plates under high temperature, high pressure or other physical and chemical effects to form a whole to meet specific size, shape and performance requirements. Quartz is widely used in engineering construction, insulation materials and decorative materials in real life. In actual use, it is often necessary to weld quartz according to different needs in order to assemble it into the required shape and size. In the conventional quartz welding process, the quartz material is generally chamfered and placed relatively horizontally, leaving some gaps, the solder is placed between the solder points, and the solder is melted with a spray gun to complete the welding. Summary of the invention

[0003] To achieve the above objectives, the present invention is implemented through the following technical solutions: a fused quartz plate welding device with positioning effect, comprising:

[0004] A composite mechanism, the composite mechanism is used for welding the quartz plate;

[0005] A positioning mechanism, the positioning mechanism is used to dock the quartz plate;

[0006] A processing mechanism, the processing mechanism is used to clean the composite mechanism;

[0007] The middle of the top of the composite mechanism is fixedly connected to the bottom of the positioning mechanism, and the two sides of the top of the composite mechanism are fixedly connected to the bottom of the processing mechanism;

[0008] Wherein, the composite mechanism includes a composite base, both sides of the outside of the composite base are fixedly connected with a composite frame, one side of the outside of the composite frame is slidably connected with a sliding frame, the sliding frame slides inside the composite frame, driving the welder to perform horizontal operation, thereby achieving the effect of plate welding, the side of the sliding frame away from the composite frame is slidably connected with the welder, the bottom of the welder is fixedly connected with a protective mechanism, there is dazzling light during laser welding, the protective mechanism is used to shield the light, thereby optimizing the working environment, avoiding affecting the eyesight of personnel, and reducing safety hazards, the top of the composite base is open A base groove is provided, and a slide rail column is fixedly connected to the inner side of the base groove, and a fixing mechanism is slidably connected to the outer side of the slide rail column. Two fixing mechanisms are provided and distributed on both sides of the composite base. The quartz plate is placed on the inner side of the fixing mechanism, and the plate is fixed by the fixing mechanism to maintain stability during welding, prevent deviation, improve welding accuracy, and avoid affecting product quality. The fixing mechanism slides on the outer side of the slide rail column and moves to one side of the welding machine through the two fixing mechanisms to achieve the effect of mechanical docking and avoid deviation caused by manual docking. The top of the composite base is fixedly connected to the bottom of the processing mechanism.

[0009] Preferably, the protective mechanism includes an annular block, one side of the outside of the annular block is fixedly connected to a side of the welding machine close to the composite base, and the side of the outside of the annular block away from the composite base is fixedly connected to a spring rod, and the spring rod is connected to a cylindrical shell. When the welding machine is raised or lowered on the surface of the sliding frame, the cylindrical shell plays a protective role to avoid damage to the output end of the welding machine caused by excessive descent, thereby affecting the welding effect. The spring rod plays a shock-absorbing and buffering role, thereby reducing the pressure on the components. The side of the outside of the spring rod away from the annular block is fixedly connected to the cylindrical shell, and the cylindrical shell plays a shielding role to reduce welding light and avoid affecting human vision. The inner side of the cylindrical shell is fixedly connected to a diamond block, and the diamond block is arranged on the inner side of the cylindrical shell. The diamond block is made of black heat-absorbing material, thereby reducing the spread of light and optimizing the working environment.

[0010] Preferably, the fixing mechanism includes a fixed base, and the quartz plate is placed on the inner side of the fixed base. The square frame is controlled to move toward the middle of the fixed base by the first electric push rod, so as to fix the material, thereby facilitating uniform-speed docking and preventing displacement during docking from affecting the welding effect. The bottom of the fixed base is slidably connected to the outer side of the slide rail column, and a strip block is fixedly connected to the side of the fixed base away from the slide rail column. The fixed base slides on the outside of the slide rail column, so as to facilitate the movement of the quartz plate toward the middle of the equipment, and a first electric push rod is fixedly connected to one side of the strip block, and a square frame is fixedly connected to one side of the first electric push rod away from the strip block.

[0011] Preferably, an elastic rod is fixedly connected to the outer side of the square frame. When the square frame clamps the quartz plate, the elastic rod is squeezed by the clamping plate to achieve the effect of shock absorption and buffering, avoiding damage to the object caused by excessive squeezing, and playing a certain protective role. The side of the elastic rod away from the square frame is fixedly connected to the clamping plate, and the side of the clamping plate away from the elastic rod is fixedly connected to the bow frame. When the bow frame squeezes the quartz plate with the clamping plate, the middle part of the bow frame contracts to achieve the effect of wrapping the outer side of the quartz plate, thereby increasing the braking effect on the object and preventing the material from shifting. A limiting mechanism is fixedly connected to the middle of the top of the fixed base. Secondly, when the quartz plate is placed, the limiting mechanism plays a buffering role, reduces the collision of the quartz plate, reduces the wear between the quartz plate and components, and thus extends the service life of the equipment.

[0012] Preferably, the limiting mechanism includes a limiting base, the outer side of the limiting base is fixedly connected to a connecting shaft, and the limiting base is supported by a connecting rod to achieve a shock-absorbing and buffering effect, thereby maintaining the stability of the structure; the outer side of the connecting shaft is rotatably connected to a rotating block, and when the quartz plate is placed, it rubs against the rotating block to achieve a braking effect on the quartz plate, thereby avoiding the movement of the quartz plate during operation and preventing the welding accuracy from being affected; an annular groove is provided on the outer side of the rotating block, and the contact area is increased by providing the annular groove, and the anti-slip effect is secondly increased by the groove; the connecting shaft is fixedly connected to two sides of the rotating block, and the receiving bracket is fixedly connected to the side of the receiving bracket away from the rotating block.

[0013] Preferably, the positioning mechanism includes a positioning frame, and the top of the inner side of the positioning frame is fixedly connected to the second electric push rod. When the quartz plates are docked, the second electric push rod is used to control the extrusion plate to extrude the receiving plate, so as to fix the quartz plates, thereby keeping the quartz plates in a docking state, facilitating subsequent welding, and improving welding efficiency and welding quality. One side of the outside of the second electric push rod is fixedly connected to the extrusion plate, and the side of the outside of the extrusion plate close to the second electric push rod is fixedly connected to the auxiliary rod. The bottom of the inner side of the positioning frame is fixedly connected to a hydraulic rod, and the hydraulic rod supports the receiving plate, so as to maintain the normal operation of the equipment. The side of the outside of the hydraulic rod close to the extrusion plate is fixedly connected to the receiving plate, and the inner side of the extrusion plate is fixedly connected to a friction mechanism, and the friction force on the surface of the quartz plate is increased by the friction mechanism, so as to improve the fixing effect. After being fixed by the positioning mechanism, it is convenient for the composite mechanism to be welded, and at the same time it has a certain positioning effect and reduces the effect of welding offset.

[0014] Preferably, the friction mechanism includes a connecting rod, the two sides of the outside of the connecting rod are fixedly connected to the inner side of the extrusion plate, the outer side of the connecting rod is fixedly connected with a tooth-marked column, and a groove is provided on the outer side of the tooth-marked column to increase the friction force on the friction belt and improve the fixing speed, the outer side of the tooth-marked column is sleeved with a friction belt, and when the friction belt contacts the quartz plate, it has a slight rotation effect, and the inertia generated by docking or shaking is slowed down through a certain rotation, thereby further accelerating the stabilization effect, the outer side of the friction belt is fixedly connected with a suction cup, and the suction cup is adsorbed on the surface of the quartz plate, thereby increasing the friction force on the object and achieving the effect of traction and fixing.

[0015] Preferably, the processing mechanism includes a processing frame, the bottom of which is slidably connected to a slide block. When the quartz plate is welded, there is a certain amount of debris, which can be easily operated on the quartz plate by sliding the processing frame on the surface of the slide block. The side of the slide block away from the processing frame is fixedly connected to the top of the composite base. The top of the processing frame is fixedly connected to a ventilation pipe, the inner side of the ventilation pipe is fixedly connected to a rotating mechanism, and the outer side of the ventilation pipe close to the rotating mechanism is plugged with a collecting shell. The debris moves to the inside of the collecting shell through the rotating mechanism, and the collecting shell plays a role in storing debris and impurities. To facilitate subsequent disassembly and cleaning, a fan is fixedly connected to the outside of the collection shell, and the fan cleans the debris on the surface of the quartz plate from the square pipe mouth through the ventilation pipe, so as to achieve the effect of cleaning impurities, facilitate subsequent processing of the quartz plate, and avoid debris accumulation inside the equipment to prevent affecting the operation of the equipment. The inner wall of the collection shell is fixedly connected to a friction plate, and the side of the outside of the ventilation pipe away from the rotating mechanism is fixedly connected to a square pipe mouth, and the rotating mechanism is driven to rotate by wind force, so as to achieve the effect of cleaning the inner wall debris, reduce debris adsorption, and prevent affecting the subsequent ventilation effect. The fallen debris enters the collection shell through wind force.

[0016] Preferably, the rotating mechanism includes a fixed bracket, the outer side of the fixed bracket is fixedly connected to the inner wall of the ventilation pipe, a rotating shaft is fixedly connected between the opposite surfaces of the fixed bracket, and a connecting column is rotatably connected to the outer side of the rotating shaft. The wind force generated by the fan drives the connecting column to rotate, and the connecting column drives the friction block to rotate, so as to rub the inner wall of the pipe, and clean the debris on the inner wall of the pipe by friction, thereby having a certain cleaning effect on the attached debris, avoiding excessive accumulation of debris and affecting the subsequent ventilation effect, the outer side of the connecting column is fixedly connected to the friction block, and the outer side of the friction block is provided with a block surface groove, and the block surface groove is provided to increase friction through the groove, thereby improving the cleaning effect, and secondly, the chip removal effect is increased through the groove, and the attachment of debris is reduced to avoid affecting the subsequent cleaning effect.

[0017] The present invention provides a fused quartz plate welding device with positioning effect. It has the following beneficial effects:

[0018] 1. The fused quartz plate welding equipment with positioning effect is designed with a composite mechanism. Two fixing mechanisms are arranged on both sides of the composite base. The quartz plate is placed on the inner side of the fixing mechanism. The fixing mechanism plays a role of fixing the plate, thereby maintaining stability during welding, preventing displacement, improving welding accuracy, and avoiding affecting product quality. The fixing mechanism slides on the outer side of the slide rail column and moves to one side of the welding machine through two fixing mechanisms, thereby achieving the effect of mechanical docking and avoiding deviation caused by manual docking. The sliding frame slides on the inner side of the composite frame and drives the welding machine to perform horizontal operation, thereby achieving the effect of plate welding. There is dazzling light during laser welding, and the protective mechanism is used to block the light, thereby optimizing the working environment, avoiding affecting personnel's eyesight, and reducing safety hazards.

[0019] Second, the fused quartz plate welding equipment with positioning effect is designed with a protective mechanism, and a spring rod is connected to the cylindrical shell. When the welding machine is raised or lowered on the surface of the sliding frame, the cylindrical shell plays a protective role to avoid excessive descent to damage the output end of the welding machine and affect the welding effect. The spring rod plays a shock-absorbing and buffering role to reduce the pressure on the components. Secondly, the cylindrical shell plays a shielding role to reduce welding light and avoid affecting human vision. The diamond block is arranged on the inner side of the cylindrical shell, and the diamond block is made of black heat-absorbing material to reduce the spread of light, thereby optimizing the working environment.

[0020] 3. The fused quartz plate welding equipment with positioning effect, through the design of the fixing mechanism, places the quartz plate on the inner side of the fixed base, and controls the square frame to move toward the middle of the fixed base through the first electric push rod, so as to achieve the fixing effect of the material, so as to facilitate uniform speed docking and prevent the offset during docking from affecting the welding effect. The fixed base slides on the outside of the slide rail column, so as to facilitate the quartz plate to move toward the middle of the equipment. When the square frame clamps the quartz plate, the elastic rod is squeezed by the clamping plate to achieve the effect of shock absorption and buffering, avoid damage to the object caused by excessive squeezing, and play a certain protective role. Secondly, when the bow frame squeezes the quartz plate with the clamping plate, the middle part of the bow frame is contracted to achieve the wrapping effect on the outside of the quartz plate, thereby increasing the braking effect on the object and preventing the material from offsetting. Secondly, when placing the quartz plate, the limiting mechanism plays a buffering role, reduces the collision of the quartz plate, reduces the wear between the quartz plate and the components, and thus extends the service life of the equipment.

[0021] Fourth, the fused quartz plate welding equipment with positioning effect is designed with a positioning mechanism. After the quartz plate is aligned, the second electric push rod is used to control the extrusion plate to extrude the receiving plate, so as to fix the quartz plate, so that the quartz plate remains in a docking state, which is convenient for subsequent welding, and improves welding efficiency and welding quality. The hydraulic rod supports the receiving plate to maintain the normal operation of the equipment, and the friction force on the surface of the quartz plate is increased by the friction mechanism to improve the fixing effect. After being fixed by the positioning mechanism, it is convenient for the composite mechanism to weld, and at the same time, it has a certain positioning effect and reduces the effect of welding offset.

[0022] 5. The fused quartz plate welding equipment with positioning effect is designed with a processing mechanism. When the quartz plate is welded, there will be certain debris. The processing frame slides on the surface of the slide block to facilitate the operation of the quartz plate. The fan cleans the debris on the surface of the quartz plate from the square pipe mouth through the ventilation pipe, so as to achieve the effect of cleaning impurities, which is convenient for subsequent processing of the quartz plate and avoids the accumulation of debris inside the equipment to prevent the operation of the equipment from being affected. The debris moves to the inside of the collection shell through the rotating mechanism, and the collection shell plays the role of storing debris and impurities, which is convenient for subsequent disassembly and cleaning. The rotating mechanism is driven by wind to rotate, so as to achieve the effect of cleaning the inner wall debris, reduce debris adsorption, and prevent affecting the subsequent ventilation effect. The fallen debris enters the collection shell through wind. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a schematic diagram of the external structure of the fused quartz plate welding device with positioning effect of the present invention;

[0024] Figure 2 This is a schematic diagram of the structure of the quartz plate welding equipment of the present invention;

[0025] Figure 3 It is a schematic diagram of the composite mechanism structure of the present invention;

[0026] Figure 4 It is a schematic diagram of the structure of the protection mechanism of the present invention;

[0027] Figure 5 It is a schematic diagram of the fixing mechanism structure of the present invention;

[0028] Figure 6 It is a schematic diagram of the structure of the limiting mechanism of the present invention;

[0029] Figure 7 It is a schematic diagram of the positioning mechanism structure of the present invention;

[0030] Figure 8 It is a schematic diagram of the friction mechanism structure of the present invention;

[0031] Fig. 9It is a schematic diagram of the cross-sectional structure of the processing mechanism of the present invention;

[0032] Fig.10 It is a schematic diagram of the structure of the rotating mechanism of the present invention.

[0033] In the figure: 1. composite mechanism; 2. positioning mechanism; 3. processing mechanism; 11. composite base; 12. composite frame; 13. sliding frame; 14. welding machine; 15. protection mechanism; 16. base groove; 17. slide rail column; 18. fixing mechanism; 151. annular block; 152. spring rod; 153. cylindrical shell; 154. diamond block; 181. fixed base; 182. strip block; 183. first electric push rod; 184. square frame; 185. elastic rod; 186. clamping plate; 187. bow frame; 188. limiting mechanism; 1881. limiting base; 1882. connecting shaft; 1883. rotating block; 1884, annular groove; 1885, receiving bracket; 1886, connecting rod; 21, positioning frame; 22, second electric push rod; 23, auxiliary rod; 24, extrusion plate; 25, hydraulic rod; 26, receiving plate; 27, friction mechanism; 271, connecting rod; 272, tooth mark column; 273, friction belt; 274, suction cup; 31, processing frame; 32, slide block; 33, ventilation pipe; 34, rotating mechanism; 35, collecting shell; 36, fan; 37, friction plate; 38, square pipe mouth; 341, fixed bracket; 342, rotating shaft; 343, connecting column; 344, friction block; 345, block surface groove. DETAILED DESCRIPTION

[0034] The present invention is further described in detail below in conjunction with the accompanying drawings and specific embodiments. The embodiments of the present invention are provided for the purpose of illustration and description, and are not intended to be exhaustive or to limit the present invention to the disclosed forms. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are selected and described in order to better illustrate the principles and practical applications of the present invention, and to enable those of ordinary skill in the art to understand the present invention and thereby design various embodiments with various modifications suitable for specific uses.

[0035] The first embodiment, as Figures 1 to 6 As shown, the present invention provides a technical solution: a fused quartz plate welding device with a positioning effect, comprising a composite mechanism 1, the composite mechanism 1 is used to weld the quartz plate;

[0036] A positioning mechanism 2, the positioning mechanism 2 is used to dock the quartz plate;

[0037] A processing mechanism 3, the processing mechanism 3 is used to clean the composite mechanism 1;

[0038] The middle of the top of the composite mechanism 1 is fixedly connected to the bottom of the positioning mechanism 2, and both sides of the top of the composite mechanism 1 are fixedly connected to the bottom of the processing mechanism 3;

[0039] Among them, the composite mechanism 1 includes a composite base 11, and the two sides of the outside of the composite base 11 are fixedly connected with a composite frame 12, one side of the outside of the composite frame 12 is slidably connected with a sliding frame 13, the side of the outside of the sliding frame 13 away from the composite frame 12 is slidably connected with a welding machine 14, and the bottom of the welding machine 14 is fixedly connected with a protective mechanism 15. The top of the composite base 11 is provided with a base groove 16, the inner side of the base groove 16 is fixedly connected with a slide rail column 17, and the outer side of the slide rail column 17 is slidably connected with a fixing mechanism 18, and the top of the composite base 11 is fixedly connected to the bottom of the processing mechanism 3. Two fixing mechanisms 18 are provided, which are distributed on both sides of the composite base 11. The quartz plate is placed inside the fixing mechanism 18, and the fixing mechanism 18 plays a role in fixing the plate, so as to maintain stability during welding, prevent deviation, improve welding accuracy, and avoid affecting product quality. The fixing mechanism 18 slides on the outside of the slide rail column 17 and moves to the side of the welder 14 through the two fixing mechanisms 18, so as to achieve the effect of mechanical docking and avoid deviation caused by manual docking. The sliding frame 13 slides on the inside of the composite frame 12, driving the welder 14 to perform horizontal operation, so as to achieve the effect of plate welding. There is dazzling light during laser welding, and the protective mechanism 15 plays a role in shielding the light, so as to optimize the working environment, avoid affecting people's eyesight, and reduce safety hazards.

[0040] The protection mechanism 15 includes an annular block 151, one side of the annular block 151 is fixedly connected to the side of the welding machine 14 close to the composite base 11, a spring rod 152 is fixedly connected to the side of the annular block 151 away from the composite base 11, a cylindrical shell 153 is fixedly connected to the side of the spring rod 152 away from the annular block 151, and a diamond block 154 is fixedly connected to the inner side of the cylindrical shell 153. The spring rod 152 is connected to the cylindrical shell 153. When the welding machine 14 is raised and lowered on the surface of the sliding frame 13, the cylindrical shell 153 plays a protective role to avoid excessive descent to damage the output end of the welding machine 14 and affect the welding effect. The spring rod 152 plays a shock-absorbing and buffering role, thereby reducing the pressure of the components. Secondly, the cylindrical shell 153 plays a shielding role to reduce the welding light and avoid affecting the human vision. The diamond block 154 is arranged on the inner side of the cylindrical shell 153. The diamond block 154 is made of black heat-absorbing material to reduce the spread of light, thereby optimizing the working environment.

[0041] The fixing mechanism 18 includes a fixing base 181, the bottom of which is slidably connected to the outside of the slide rail column 17, a strip block 182 is fixedly connected to the side of the outside of the fixing base 181 away from the slide rail column 17, a first electric push rod 183 is fixedly connected to the side of the outside of the strip block 182, and a square frame 184 is fixedly connected to the side of the outside of the first electric push rod 183 away from the strip block 182. The quartz plate is placed inside the fixing base 181, and the square frame 184 is controlled to move toward the middle of the fixing base 181 by the first electric push rod 183, so as to fix the material, thereby facilitating uniform docking and preventing deviation during docking that affects the welding effect. The fixing base 181 slides on the outside of the slide rail column 17, so as to facilitate the quartz plate to move toward the middle of the equipment.

[0042] The outer side of the square frame 184 is fixedly connected with an elastic rod 185, the side of the elastic rod 185 away from the square frame 184 is fixedly connected with a clamping plate 186, the side of the clamping plate 186 away from the elastic rod 185 is fixedly connected with an arch frame 187, and the middle of the top of the fixed base 181 is fixedly connected with a limiting mechanism 188. When the square frame 184 clamps the quartz plate, the elastic rod 185 is squeezed by the clamping plate 186, so as to achieve the effect of shock absorption and buffering, avoid excessive squeezing to damage the object, and play a certain protective role. Secondly, when the arch frame 187 is squeezed by the clamping plate 186 on the quartz plate, the middle part of the arch frame 187 is contracted, so as to wrap the outer side of the quartz plate, thereby increasing the braking effect on the object and preventing the material from shifting. Secondly, when the quartz plate is placed, the limiting mechanism 188 plays a buffering role, reduces the collision of the quartz plate, reduces the wear between the quartz plate and the components, and thus prolongs the service life of the equipment.

[0043] The limiting mechanism 188 includes a limiting base 1881, a connecting shaft 1882 is fixedly connected to the outer side of the limiting base 1881, a rotating block 1883 is rotatably connected to the outer side of the connecting shaft 1882, an annular groove 1884 is provided on the outer side of the rotating block 1883, a receiving bracket 1885 is fixedly connected to the two sides of the outer side of the connecting shaft 1882 close to the rotating block 1883, and a connecting rod 1886 is fixedly connected to the outer side of the receiving bracket 1885 away from the rotating block 1883. The limiting base 1881 is supported by the connecting rod 1886 to achieve the effect of shock absorption and buffering, thereby maintaining the stability of the structure. Secondly, when the quartz plate is placed, it rubs against the rotating block 1883 to achieve the braking effect on the quartz plate, thereby preventing the quartz plate from moving during operation and preventing the welding accuracy from being affected. By providing the annular groove 1884, the contact area is increased by the groove, and the anti-slip effect is increased by the groove.

[0044] The second embodiment is based on the first embodiment. Figures 7 and 8As shown, the positioning mechanism 2 includes a positioning frame 21, a second electric push rod 22 is fixedly connected to the top of the inner side of the positioning frame 21, a squeeze plate 24 is fixedly connected to one side of the outer side of the second electric push rod 22, an auxiliary rod 23 is fixedly connected to the side of the squeeze plate 24 near the second electric push rod 22, a hydraulic rod 25 is fixedly connected to the bottom of the inner side of the positioning frame 21, a receiving plate 26 is fixedly connected to the side of the outer side of the hydraulic rod 25 near the squeeze plate 24, and a friction mechanism 27 is fixedly connected to the inner side of the squeeze plate 24. When the quartz plate is aligned, the squeezing plate 24 is controlled by the second electric push rod 22 to squeeze the receiving plate 26, so as to achieve the effect of fixing the quartz plate, so that the quartz plate is kept in a docking state, which is convenient for subsequent welding, and improves welding efficiency and welding quality. The hydraulic rod 25 supports the receiving plate 26 to maintain the normal operation of the equipment, and the friction force on the surface of the quartz plate is increased by the friction mechanism 27 to improve the fixing effect. After being fixed by the positioning mechanism 2, it is convenient for the composite mechanism 1 to be welded, and at the same time, it has a certain positioning effect and reduces the effect of welding deviation.

[0045] The friction mechanism 27 includes a connecting rod 271, both sides of the outside of the connecting rod 271 are fixedly connected to the inside of the extrusion plate 24, a tooth mark column 272 is fixedly connected to the outside of the connecting rod 271, a friction belt 273 is sleeved on the outside of the tooth mark column 272, and a suction cup 274 is fixedly connected to the outside of the friction belt 273. When the friction belt 273 contacts the quartz plate, it has a slight rotation effect, and the inertia generated by docking or shaking is slowed down by a certain rotation, and the stabilization effect is further accelerated. At the same time, the suction cup 274 is adsorbed on the surface of the quartz plate to increase the friction force on the object, and play a traction and fixing effect. The tooth mark column 272 is provided with a groove on the outside to increase the friction force on the friction belt 273 and improve the fixing speed.

[0046] The third embodiment is based on the first and second embodiments. Figures 9 and 10As shown, the processing mechanism 3 includes a processing frame 31, the bottom of the processing frame 31 is slidably connected to a slide block 32, the outer side of the slide block 32 away from the processing frame 31 is fixedly connected to the top of the composite base 11, the top of the processing frame 31 is fixedly connected to a ventilation pipe 33, the inner side of the ventilation pipe 33 is fixedly connected to a rotating mechanism 34, the outer side of the ventilation pipe 33 is plugged into a collecting shell 35 on the side close to the rotating mechanism 34, the outer side of the collecting shell 35 is fixedly connected to a fan 36, the inner wall of the collecting shell 35 is fixedly connected to a friction plate 37, and the outer side of the ventilation pipe 33 is fixedly connected to a square pipe mouth 38 on the side away from the rotating mechanism 34. When the quartz plate is welded, there is a certain amount of debris. The processing frame 31 slides on the surface of the slide rail block 32 to facilitate the operation of the quartz plate. The fan 36 cleans the debris on the surface of the quartz plate from the square pipe mouth 38 through the ventilation pipe 33, so as to achieve the effect of cleaning impurities, which is convenient for the subsequent processing of the quartz plate and avoids the accumulation of debris inside the equipment to prevent the equipment from affecting the operation. The debris moves to the inside of the collection shell 35 through the rotating mechanism 34, and the collection shell 35 plays the role of storing debris and impurities, which is convenient for subsequent disassembly and cleaning. The rotating mechanism 34 is driven by wind to rotate, so as to achieve the effect of cleaning the inner wall debris, reduce the adsorption of debris, and prevent the subsequent ventilation effect from being affected. The friction plate 37 increases the friction force on the debris, and the fallen debris enters the inside of the collection shell 35 through wind.

[0047] The rotating mechanism 34 includes a fixed bracket 341, the outer side of the fixed bracket 341 is fixedly connected to the inner wall of the ventilation pipe 33, a rotating shaft 342 is fixedly connected between the opposite surfaces of the fixed bracket 341, a connecting column 343 is rotatably connected to the outer side of the rotating shaft 342, a friction block 344 is fixedly connected to the outer side of the connecting column 343, and a block surface groove 345 is provided on the outer side of the friction block 344. The wind force generated by the fan 36 drives the connecting column 343 to rotate, and the connecting column 343 drives the friction block 344 to rotate, so as to achieve friction with the inner wall of the pipeline, and clean the debris on the inner wall of the pipeline by friction, thereby having a certain cleaning effect on the attached debris, avoiding excessive accumulation of debris and affecting the subsequent ventilation effect, and secondly, by opening the block surface groove 345, the friction force is increased by grooving, and the cleaning effect is improved, and secondly, the chip removal effect is increased by grooving, reducing the attachment of debris and avoiding affecting the subsequent cleaning effect.

[0048] When in use, the positioning mechanism 2 is arranged on both sides of the composite mechanism 1 close to the welding machine 14, and the processing mechanism 3 is arranged on the top of the composite base 11. The staff places the quartz plate inside the fixing mechanism 18 on both sides of the composite base 11, and the fixing mechanism 18 is used to fix the quartz plate, so as to keep the object stable during welding and avoid shaking during operation, which affects the subsequent welding quality. Secondly, the fixing mechanism 18 is slidably connected with the slide rail column 17, and the fixing mechanisms 18 on both sides are controlled to move toward the middle of the composite mechanism 1 by sliding, so as to achieve the docking effect of the quartz plate, facilitate subsequent welding, avoid manual calibration, reduce welding fault tolerance, and improve work efficiency. When the two quartz plates are docked, the positioning mechanism 2 is used to slowly squeeze the adjacent quartz plates until the quartz plates are docked, thereby fixing the quartz plates to avoid collision between the two quartz plates, playing a certain protective role, and adapting to the welding machine 14 to play a pre-positioning role, so as to avoid displacement during welding. After the quartz plate is welded, the processing mechanism 3 slides on the surface of the quartz plate to clean the surface debris and avoid affecting subsequent operations, thereby reducing debris on the surface of equipment and objects and preventing debris accumulation from affecting the equipment, thereby extending the service life of the equipment. The fan 36 inside the processing mechanism 3 generates wind to cool the welding point of the quartz plate and avoid harm to the human body during subsequent operations. After the operation is completed, the fixing mechanism 18 at one end releases the fixation of the quartz plate, making it easier for the fixing mechanism 18 at the other end to move the object out.

[0049] Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field and related fields without creative work should fall within the scope of protection of the present invention. The structures, devices and operating methods not specifically described and explained in the present invention are implemented according to the conventional means in the field unless otherwise specified and limited.

Claims

1. A fused quartz plate welding device with positioning effect, characterized in that: include: A composite mechanism (1), the composite mechanism (1) being used for welding a quartz plate; A positioning mechanism (2), the positioning mechanism (2) being used to dock the quartz plates; A processing mechanism (3), the processing mechanism (3) is used to clean the composite mechanism (1); The middle of the top of the composite mechanism (1) is fixedly connected to the bottom of the positioning mechanism (2), and both sides of the top of the composite mechanism (1) are fixedly connected to the bottom of the processing mechanism (3); The composite mechanism (1) comprises a composite base (11), the composite base (11) having two sides fixedly connected to the composite frame (12), the composite frame (12) having one side slidably connected to the sliding frame (13), the sliding frame (13) having one side away from the composite frame (12) being slidably connected to the welding machine (14), the welding machine (14) having a protective mechanism (15) fixedly connected to the bottom, the composite base (11) having a base groove (16) formed at the top, the inner side of the base groove (16) being fixedly connected to the sliding rail column (17), the outer side of the sliding rail column (17) being slidably connected to the fixing mechanism (18), and the top of the composite base (11) being fixedly connected to the bottom of the processing mechanism (3); The fixing mechanism (18) comprises a fixing base (181), the bottom of the fixing base (181) is slidably connected to the outer side of the slide rail column (17), a side of the fixing base (181) away from the slide rail column (17) is fixedly connected to a strip block (182), a side of the strip block (182) is fixedly connected to a first electric push rod (183), and a side of the first electric push rod (183) away from the strip block (182) is fixedly connected to a square frame (184); An elastic rod (185) is fixedly connected to the outer side of the square frame (184); a clamping plate (186) is fixedly connected to the outer side of the elastic rod (185) away from the square frame (184); a bow-shaped frame (187) is fixedly connected to the outer side of the clamping plate (186) away from the elastic rod (185); and a limiting mechanism (188) is fixedly connected to the middle of the top of the fixed base (181); The limiting mechanism (188) comprises a limiting base (1881), the outer side of the limiting base (1881) is fixedly connected to a connecting shaft (1882), the outer side of the connecting shaft (1882) is rotatably connected to a rotating block (1883), the outer side of the rotating block (1883) is provided with an annular groove (1884), the outer side of the connecting shaft (1882) close to the rotating block (1883) is fixedly connected to a receiving bracket (1885), and the outer side of the receiving bracket (1885) away from the rotating block (1883) is fixedly connected to a connecting rod (1886).

2. The fused quartz plate welding device with positioning effect according to claim 1, characterized in that: The protection mechanism (15) comprises an annular block (151), one side of the outside of the annular block (151) being fixedly connected to a side of the welding machine (14) close to the composite base (11), a side of the outside of the annular block (151) away from the composite base (11) being fixedly connected to a spring rod (152), a side of the outside of the spring rod (152) away from the annular block (151) being fixedly connected to a cylindrical outer shell (153), and a diamond-shaped block (154) being fixedly connected to the inner side of the cylindrical outer shell (153).

3. The fused quartz plate welding device with positioning effect according to claim 1, characterized in that: The positioning mechanism (2) comprises a positioning frame (21), a second electric push rod (22) is fixedly connected to the top of the inner side of the positioning frame (21), an extrusion plate (24) is fixedly connected to one side of the outer side of the second electric push rod (22), an auxiliary rod (23) is fixedly connected to the outer side of the extrusion plate (24) close to the second electric push rod (22), a hydraulic rod (25) is fixedly connected to the bottom of the inner side of the positioning frame (21), a receiving plate (26) is fixedly connected to the outer side of the hydraulic rod (25) close to the extrusion plate (24), and a friction mechanism (27) is fixedly connected to the inner side of the extrusion plate (24).

4. The fused quartz plate welding device with positioning effect according to claim 3, characterized in that: The friction mechanism (27) comprises a connecting rod (271), the two sides of the outside of the connecting rod (271) being fixedly connected to the inside of the extrusion plate (24), the outside of the connecting rod (271) being fixedly connected to a tooth mark column (272), the outside of the tooth mark column (272) being sleeved with a friction belt (273), and the outside of the friction belt (273) being fixedly connected to a suction cup (274).

5. The fused quartz plate welding device with positioning effect according to claim 1, characterized in that: The processing mechanism (3) comprises a processing frame (31), the bottom of the processing frame (31) is slidably connected to a slide rail block (32), the outer side of the slide rail block (32) away from the processing frame (31) is fixedly connected to the top of the composite base (11), the top of the processing frame (31) is fixedly connected to a ventilation pipe (33), the inner side of the ventilation pipe (33) is fixedly connected to a rotating mechanism (34), the outer side of the ventilation pipe (33) close to the rotating mechanism (34) is plug-connected to a collection shell (35), the outer side of the collection shell (35) is fixedly connected to a fan (36), the inner wall of the collection shell (35) is fixedly connected to a friction plate (37), and the outer side of the ventilation pipe (33) away from the rotating mechanism (34) is fixedly connected to a square pipe opening (38).

6. The fused quartz plate welding device with positioning effect according to claim 5, characterized in that: The rotating mechanism (34) comprises a fixed bracket (341), the outer side of the fixed bracket (341) is fixedly connected to the inner wall of the ventilation pipe (33), a rotating shaft (342) is fixedly connected between opposite surfaces of the fixed bracket (341), a connecting column (343) is rotatably connected to the outer side of the rotating shaft (342), a friction block (344) is fixedly connected to the outer side of the connecting column (343), and a block surface groove (345) 2 is provided on the outer side of the friction block (344).

Citation Information

Patent Citations

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