Welding system
By designing a welding system that includes a filter glass goggle and an arched top plate, the problems of sparks and strong light during welding were solved, providing convenient observation and operation functions and improving safety and comfort.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-15
- Publication Date
- 2026-04-07
AI Technical Summary
Sparks and intense light generated during welding may affect the surrounding environment and operator safety.
A welding system comprising a protective goggle and an arc-shaped top plate was designed. The goggle is made of filter glass and is connected to the arc-shaped top plate by rotation to effectively eliminate the effects of sparks and strong light. It is also equipped with multiple operating structures to facilitate observation and clamping of the welding parts.
It effectively eliminates the effects of sparks and intense light during the welding process, while providing convenient observation and operation functions, improving operator safety and the comfort of the working environment.
Smart Images

Figure CN121798233A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of welding processing, and more particularly to a welding system. BACKGROUND
[0002] Welding is a way of joining two or more metal or thermoplastic pieces together. It permanently fixes two or more workpieces together by heating, melting and cooling at the joint. Welding is widely used in manufacturing, such as manufacturing ships, cars, airplanes, buildings, pipelines and other important facilities. Welding is also commonly used to repair metal or plastic parts. Currently, the welding system produces sparks and strong light during the welding process, and these sparks and strong light may affect the surrounding environment and even injure the operator. SUMMARY
[0003] In order to overcome the shortcomings of the prior art, the present application provides a welding system, which has the beneficial effect of eliminating the influence of sparks and strong light generated during welding.
[0004] A welding system includes a visor and an arc-shaped top plate, the upper side of the visor is rotatably connected with the arc-shaped top plate, and the visor is placed obliquely along the inclined edge of the arc-shaped top plate.
[0005] It also includes a handle I, a top frame, a support column and a bottom frame, the handle I is screw-connected at the center of the visor, the arc-shaped top plate is welded to the top of the top frame, four support columns are welded to the bottom of the top frame, and the four support columns are welded to the top of the bottom frame.
[0006] It also includes an operating table, a fixed clamp body, a sliding clamp body, a screw rod I and a T-shaped handle, the fixed clamp body is welded to the operating table, the operating table is provided with a groove, the lower end of the sliding clamp body is inserted into the groove and can slide transversely along the groove, the sliding clamp body is screw-connected with the screw rod I, and the T-shaped handle is screw-connected to one end of the screw rod I.
[0007] It also includes a slot rod, a clamping screw I and a top column, the slot rod is provided with a groove at the lower end, the upper end of the fixed clamp body can be inserted into the groove, the upper end of the slot rod is slidingly connected with the top column, and the clamping screw I is screw-connected to the top column. BRIEF DESCRIPTION OF DRAWINGS
[0008] The present application will be further described in detail below in combination with the drawings and specific implementation methods.
[0009] Figure 1 Structure diagram of the welding system Figure 1 ;
[0010] Figure 2 Structure diagram of the welding system Figure 2 ;
[0011] Figure 3 Structure diagram of the welding systemFigure 3 ;
[0012] Figure 4 Structure of a visor Figure 1 ;
[0013] Figure 5 Structure of a visor Figure 2 ;
[0014] Figure 6 Structure of a circular plate Figure 1 ;
[0015] Figure 7 Structure of a circular plate Figure 2 ;
[0016] Figure 8 Structure of an operating table Figure 1 ;
[0017] Figure 9 Structure of an operating table Figure 2 ;
[0018] Figure 10 Structure of a slot rod Figure 1 ;
[0019] Figure 11 Structure of a bracket Figure 1 ;
[0020] Figure 12 Structure of a bracket Figure 2 .
[0021] In the figure: visor 101; arc-shaped top plate 102; handle I 103;
[0022] Circular plate 201; top bracket 202; protective plate 203; handle 204; support column 205; bottom bracket 206; spring stop column 207; handle I 208; driven wheel 209; driving wheel 210; transmission wheel 211;
[0023] Operating table 301; fixed clamp body 302; sliding clamp body 303; screw I 304; T-shaped handle 305; handle II 306; cylinder 307;
[0024] Slot rod 401; knife holder 402; cleaning scraper 403; screw II 404; clamping screw I 405; motor 406; top column 407;
[0025] Bracket 501; crossbar I 502; crossbar II 503; V-shaped bracket 504; circular bracket 505; clamping screw II 506; handle II 507; screw III 508. DETAILED DESCRIPTION
[0026] AsFigures 4-5 As shown in
[0027] The welding system further comprises a handle I 103, a top frame 202, a support column 205 and a bottom frame 206. The handle I 103 is screw-connected at the center of the eye shield 101. The arc-shaped top plate 102 is welded and connected above the top frame 202. Four support columns 205 are welded and connected below the top frame 202. The four support columns 205 are welded and connected above the bottom frame 206. The bottom frame 206 is vertically aligned with the top frame 202. Thus, the arc-shaped top plate 102 is fixed. Pulling the handle I 103 can rotate the eye shield 101 around the arc-shaped top plate 102, and then the eye shield 101 is lifted upward. Thus, the effect of facilitating opening of the eye shield 101 for direct observation of the welding result is achieved.
[0028] As shown in Figures 4-7 This example can achieve the effect of facilitating opening of the eye shield 101 for direct observation of the welding result.
[0029] The welding system further comprises a handle I 103, a top frame 202, a support column 205 and a bottom frame 206. The handle I 103 is screw-connected at the center of the eye shield 101. The arc-shaped top plate 102 is welded and connected above the top frame 202. Four support columns 205 are welded and connected below the top frame 202. The four support columns 205 are welded and connected above the bottom frame 206. The bottom frame 206 is vertically aligned with the top frame 202. Thus, the arc-shaped top plate 102 is fixed. Pulling the handle I 103 can rotate the eye shield 101 around the arc-shaped top plate 102, and then the eye shield 101 is lifted upward. Thus, the effect of facilitating opening of the eye shield 101 for direct observation of the welding result is achieved.
[0030] As shown in Figures 6-7 This example can achieve the effect of facilitating opening or closing of the protective plate 203.
[0031] The welding system further comprises a protective plate 203, a handle 204 and a spring stop column 207. The lower end of the protective plate 203 is tightly attached above the bottom frame 206. The handle 204 is welded and connected above the protective plate 203. The handle 204 has a plurality of rubber rings. The spring stop column 207 is welded and connected above the bottom frame 206. The spring stop column 207 is provided with a round shaft. The protective plate 203 is rotationally connected with the spring stop column 207. The front end of the round shaft is screw-connected with a stop plate. A spring is sleeved on the round shaft. The round shaft of the spring stop column 207 is rotationally connected with the protective plate 203. One end of the spring is pressed on the protective plate 203. The other end of the spring is pressed on the stop plate. Thus, the spring tightly presses the protective plate 203 on the spring stop column 207. The handle 204 can be pulled forward to separate the protective plate 203 from the spring stop column 207. Thus, the protective plate 203 is rotated around the round shaft of the spring stop column 207. Thus, the effect of facilitating opening or closing of the protective plate 203 is achieved.
[0032] AsFigures 6-7 As shown in
[0033] Since the welding system further comprises the round plate 201, the handle I 208, the driven wheel 209, the driving wheel 210 and the transmission wheel 211, the center of the guard plate 203 is provided with a round hole, the round plate 201 is rotationally connected at the center of the guard plate 203, the round plate 201 is provided with an operating hole, the driven wheel 209 is key-connected on the round plate 201, the chassis 206 is provided with a boss in the upper side, the handle I 208 is rotationally connected on the front side of the boss of the chassis 206, the driving wheel 210 is key-connected on the handle I 208 and closely attached to the back side of the boss of the chassis 206, the three transmission wheels 211 are transmission wheel I, transmission wheel II and transmission wheel III respectively, the three transmission wheels are rotationally connected on the back side of the boss of the chassis 206, the transmission wheel I is engaged with the driving wheel 210 and the right driven wheel 211, the transmission wheel II is engaged with the driving wheel 210 and the transmission wheel III, the transmission wheel III is engaged with the transmission wheel II and the left driven wheel 211, and then when the handle I 208 is rotated, the driving wheel 210 is rotated, and then the driven wheel 209 and the round plate 201 are rotated through the transmission wheel 211, and then the position of the operating hole on the round plate 201 is changed.
[0034] As shown in Figures 6-7 This example can achieve the effect of facilitating clamping of welding parts.
[0035] Since the welding system further comprises the operating table 301, the fixed clamp body 302, the sliding clamp body 303, the screw I 304 and the T-shaped handle 305, the fixed clamp body 302 is welded on the operating table 301, the operating table 301 is provided with a groove, the lower end of the sliding clamp body 303 is inserted into the groove and can slide transversely along the groove, one end of the screw I 304 is rotationally connected on the operating table 301, the other end of the screw I 304 is screw-connected with the T-shaped handle 305, the sliding clamp body 303 is screw-connected with the screw I 304, and then when the T-shaped handle 305 is manually rotated, the screw I 304 is rotated, and then the sliding clamp body 303 is driven to move along the groove of the operating table 301 by the screw I 304, and then the part is fixed between the sliding clamp body 303 and the fixed clamp body 302, and then the effect of facilitating clamping of welding parts is achieved.
[0036] As shown in Figures 6-12 This example can achieve the effect of facilitating changing the angle of the operating table 301.
[0037] Since the welding system further comprises handle II 306, cylinder 307, round frame 505 and clamping screw II 506, handle II 306 is screw-connected to the left and right sides of operation table 301, cylinder 307 is welded and connected below operation table 301, cylinder 307 is rotationally connected to round frame 505, clamping screw II 506 is screw-connected to round frame 505, and then pushing handle II 306 can make operation table 301 rotate around round frame 505, and then when operation table 301 is rotated to a suitable angle, clamping screw II 506 is screwed to fix the angle of operation table 301, thereby achieving the effect of facilitating the change of the angle of operation table 301.
[0038] As shown in Figures 4-5 , this example can achieve the effect of fixing the position of slot rod 401 and operation table 301.
[0039] Since the welding system further comprises slot rod 401, clamping screw I 405 and top column 407, a groove is provided below slot rod 401, the upper end of fixed clamp body 302 can be inserted into the groove, top column 407 is welded and connected to the inner side of top frame 202, the upper end of slot rod 401 is longitudinally slidingly connected to top column 407, and clamping screw I 405 is screw-connected to top column 407, and then when slot rod 401 slides downward, the upper end of fixed clamp body 302 is inserted into the groove, and then clamping screw I 405 is rotated to fix the position of slot rod 401, thereby achieving the effect of fixing the position of slot rod 401 and operation table 301.
[0040] As shown in Figures 4-9 , this example can achieve the effect of cleaning operation table 301 with cleaning scraper 403.
[0041] Since the welding system further comprises knife holder 402, cleaning scraper 403, screw rod II 404 and motor 406, knife holder 402 is transversely slidingly connected to slot rod 401, cleaning scraper 403 is screw-connected to knife holder 402, screw rod II 404 is screw-connected to knife holder 402, one end of screw rod II 404 is rotationally connected to slot rod 401, the other end of screw rod II 404 is key-connected to the output shaft of motor 406, and motor 406 is screw-connected to slot rod 401, and then when the position of slot rod 401 is fixed, cleaning scraper 403 can tightly adhere to the upper side of operation table 301, and then motor 406 drives screw rod II 404 to rotate, and then when screw rod II 404 rotates, it can drive knife holder 402 and cleaning scraper 403 to move forward and backward along slot rod 401, thereby achieving the effect of cleaning operation table 301 with cleaning scraper 403.
[0042] As shown in Figures 6-12 , this example can achieve the effect of supporting bottom frame 206.
[0043] Since the welding system further comprises the support 501, the crossbar I 502 and the crossbar II 503, the four top corners on the lower side of the chassis 206 are welded and connected with the support 501, and the crossbar I 502 and the crossbar II 503 are welded and connected inside the chassis 206, and then the chassis 206 can be supported through the support 501.
[0044] As shown in Figures 10-12 this example can achieve the effect of changing the left and right positions of the operating platform 301.
[0045] Since the welding system further comprises the V-shaped support 504, the handle II 507 and the screw rod III 508, the lower ends of the V-shaped support 504 are transversely and slidably connected with the crossbar I 502 and the crossbar II 503, the round support 505 is welded and connected on the upper end of the V-shaped support 504, the screw rod III 508 is rotatably connected on both ends of the crossbar I 502, the screw rod III 508 is threadedly connected on the lower end of the V-shaped support 504, the handle II 507 is keyed connected on one end of the screw rod III 508, and then rotating the handle II 507 drives the screw rod III 508 to rotate, and then when the screw rod III 508 rotates, it can drive the V-shaped support 504 to move left and right along the crossbar I 502 and the crossbar II 503, and then drive the round support 505 and the operating platform 301 to move left and right, and then achieve the effect of changing the left and right positions of the operating platform 301.
Claims
1. A welding system comprising a protective goggle plate (101) and an arc-shaped top plate (102), wherein the upper side of the protective goggle plate (101) is rotatably connected to the arc-shaped top plate (102), the protective goggle plate (101) is placed at an angle along the inclined side of the arc-shaped top plate (102), the inner side of the arc-shaped top plate (102) is a smooth arc surface, and the material of the protective goggle plate (101) is a filter glass.
2. The welding system according to claim 1, characterized in that: It also includes handle I (103), top frame (202), support column (205) and base frame (206). Handle I (103) is fixedly connected to the center of the goggle panel (101). The arc-shaped top plate (102) is fixedly connected to the top frame (202). Four support columns (205) are fixedly connected to the bottom of the top frame (202). The bottom of the four support columns (205) is fixedly connected to the top of the base frame (206). The base frame (206) and the top frame (202) are aligned vertically.
3. The welding system according to claim 2, characterized in that: It also includes a protective plate (203), a handle (204), and a spring stop (207). The lower end of the protective plate (203) is close to the top of the base frame (206). The handle (204) is fixedly connected to the protective plate (203). The handle (204) is provided with multiple rubber rings. The spring stop (207) is fixedly connected to the top of the base frame (206). The spring stop (207) is provided with a round shaft. The protective plate (203) and the spring stop (207) are rotatably connected. A baffle is fixedly connected to the front end of the round shaft. A spring is sleeved on the round shaft. The round shaft of the spring stop (207) is rotatably connected to the protective plate (203). One end of the spring presses on the protective plate (203), and the other end of the spring presses on the baffle.
4. A welding system according to claim 3, characterized in that: It also includes a circular plate (201), a handle I (208), a driven wheel (209), a driving wheel (210), and a transmission wheel (211). The protective plate (203) has a circular hole in the center. The circular plate (201) is rotatably connected to the center of the protective plate (203). The circular plate (201) has an operating hole. The driven wheel (209) is fixedly connected to the circular plate (201). The base frame (206) has a boss on top. The handle I (208) is rotatably connected to the front of the boss of the base frame (206). The drive wheel (210) is fixedly connected to the handle I (208) and close to the back of the boss of the base frame (206). The three transmission wheels (211) are transmission wheel I, transmission wheel II and transmission wheel III respectively. The three transmission wheels are rotatably connected to the back of the boss of the base frame (206). Transmission wheel I meshes with the drive wheel (210) and the right driven wheel (211). Transmission wheel II meshes with the drive wheel (210) and transmission wheel III. Transmission wheel III meshes with transmission wheel II and the left driven wheel (211).
5. A welding system according to claim 4, characterized in that: It also includes an operating table (301), a fixed clamp (302), a sliding clamp (303), a screw I (304), and a T-handle (305). The fixed clamp (302) is fixedly connected to the operating table (301). The operating table (301) is provided with a groove. The lower end of the sliding clamp (303) is inserted into the groove and can slide laterally along the groove. One end of the screw I (304) is rotatably connected to the operating table (301). The other end of the screw I (304) is fixedly connected to the T-handle (305). The sliding clamp (303) is threadedly connected to the screw I (304).
6. A welding system according to claim 5, characterized in that: It also includes handle II (306), cylinder (307), round frame (505) and clamping screw II (506). Handles II (306) are fixedly connected to the left and right sides of the operating table (301). A cylinder (307) is fixedly connected to the bottom of the operating table (301). The cylinder (307) is rotatably connected to the round frame (505). The clamping screw II (506) is threadedly connected to the round frame (505).
7. A welding system according to claim 6, characterized in that: It also includes a groove rod (401), a clamping screw I (405) and a top column (407). The groove rod (401) has a groove at the bottom, and the upper end of the fixing clamp (302) can be inserted into the groove. The top column (407) is fixedly connected to the inside of the top frame (202). The upper end of the groove rod (401) is longitudinally slidably connected to the top column (407). The clamping screw I (405) is threadedly connected to the top column (407).
8. A welding system according to claim 7, characterized in that: It also includes a blade holder (402), a cleaning scraper (403), a screw II (404), and a motor (406). The blade holder (402) is laterally slidably connected to the grooved rod (401). The cleaning scraper (403) is fixedly connected to the blade holder (402). The screw II is threadedly connected to the blade holder (402) (404). One end of the screw II (404) is rotatably connected to the grooved rod (401), and the other end of the screw II (404) is fixedly connected to the output shaft of the motor (406). The motor (406) is fixedly connected to the grooved rod (401).
9. A welding system according to claim 8, characterized in that: It also includes a support bracket (501), a crossbar I (502) and a crossbar II (503). The four corners of the bottom frame (206) are fixedly connected to the support bracket (501), and the crossbar I (502) and the crossbar II (503) are fixedly connected inside the bottom frame (206).
10. A welding system according to claim 9, characterized in that: It also includes a V-frame (504), a handle II (507) and a screw III (508). The lower end of the V-frame (504) is slidably connected to the crossbar I (502) and the crossbar II (503) respectively. The round frame (505) is fixedly connected to the upper end of the V-frame (504). The two ends of the screw III (508) are rotatably connected to the crossbar I (502). The screw III (508) is threadedly connected to the lower end of the V-frame (504). The handle II (507) is fixedly connected to one end of the screw III (508).