Flat plate butt-joint double-side welding composite mechanism of water treatment equipment
By combining the base, clamping and shifting components, sliding components, and welding components, the problems of low efficiency and poor adaptability of traditional water treatment equipment's flat plate butt welding double-sided composite mechanism are solved, achieving efficient and precise double-sided welding and ensuring the stability and sealing of the flat plate.
Patent Information
- Application Number
- CN202520215627.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-11
AI Technical Summary
Traditional water treatment equipment with flat plate butt welding double-sided composite mechanism is inefficient, prone to weld misalignment and incomplete welding, and lacks flexibility, making it unable to adapt to flat plates of different specifications.
By combining a base, clamping and positioning components, sliding components, lifting and lowering components, and welding components, and using hydraulic cylinders and motors to drive a laser spot welding pen, stable clamping, precise docking, and wide-range welding of flat plates can be achieved.
It improves welding efficiency and precision, reduces weld misalignment and incomplete welding problems, expands the compatibility range, and ensures the stability and sealing of the plate.
Smart Images

Figure CN223670434U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to butt joint double -faced welding composite mechanism technical field, specifically speaking, a kind of water treatment equipment flat plate butt joint double -faced welding composite mechanism. BACKGROUND
[0002] Water treatment equipment flat plate refers to the flat plate used for fixing, supporting and separating filter medium in water treatment equipment, and it is an important component in water treatment process, therefore, in order to improve the working performance of water treatment equipment flat plate, composite mechanism is usually used to carry out butt joint double -faced welding operation on water treatment equipment.
[0003] However, in real life, the traditional water treatment equipment flat plate butt joint double -faced welding composite mechanism is often manually welded on the flat plate of the equipment to be butt jointed, which not only wastes time and effort, but also leads to low efficiency of double -faced welding of equipment flat plate, and also easily causes quality problems such as welding point deviation and virtual welding when double -faced welding of equipment flat plate, and the traditional water treatment equipment flat plate butt joint double -faced welding composite mechanism has low flexibility, cannot carry out omnidirectional double -faced welding operation on different specifications of equipment flat plate to be butt jointed, and leads to small adaptation range of butt joint double -faced welding composite mechanism welding operation. UTILITY MODEL CONTENT
[0004] In view of the problems in the prior art, the utility model provides a water treatment equipment flat plate butt joint double -faced welding composite mechanism.
[0005] The utility model provides a water treatment equipment flat plate butt joint double -faced welding composite mechanism, which comprises a base, a clamping and transposition assembly, a sliding assembly, a lifting and falling assembly and a welding assembly, the clamping and transposition assembly is arranged on the top side of the base, the sliding assembly is arranged on the top side of the clamping and transposition assembly, a sliding plate is arranged on the sliding assembly, the lifting and falling assembly is arranged on one side of the sliding plate, the welding assembly is arranged at the bottom of the lifting and falling assembly, a stopper is arranged on the welding assembly, a fourth hydraulic cylinder is connected to the middle side of the stopper through bolts, a fourth hydraulic rod is connected to one end of the fourth hydraulic cylinder, a laser spot welding pen is connected to one end of the fourth hydraulic rod through bolts, and the laser spot welding pen is arranged above the clamping and transposition assembly.
[0006] Preferably, the bottom of the clamping and transposition assembly is provided with a supporting plate, a first hydraulic cylinder is hinged to the middle end of the top end of the supporting plate away from the sliding assembly, a first hydraulic rod is connected to one end of the first hydraulic cylinder, a push plate is hinged to one end of the first hydraulic rod, and a baffle is arranged on the side of the push plate away from the first hydraulic rod.
[0007] Preferably, the top of the support plate is welded with slide rails arranged in parallel on both sides, the top of the two slide rails is matched with a sliding block, the top of the push plate is welded with the top of the two sliding blocks, and the baffle is welded with the top of the support plate.
[0008] Preferably, the top of the push plate and the baffle is provided with a pressing unit, the two pressing units are symmetrically arranged, the pressing unit is provided with a side plate, the side plate is in L-shaped structure, the middle top of one side of the side plate is connected with a second hydraulic cylinder through a bolt, the top of the second hydraulic cylinder is matched with a second hydraulic rod, and the bottom of the second hydraulic rod is connected with a pressing plate through a bolt.
[0009] Preferably, the side plate on the pressing unit near the push plate is connected with the push plate through a rotating shaft, a first motor is installed on one side of the baffle, and the first motor is movably connected with the side plate near the baffle through a rotating shaft.
[0010] Preferably, the side plate on the pressing unit near the push plate is connected with the push plate through a rotating shaft, a first motor is installed on one side of the baffle, and the first motor is movably connected with the side plate near the baffle through a rotating shaft.
[0011] Preferably, the lifting assembly is provided with a support block, the support block is welded with the sliding plate, the middle top of the support block is connected with a third hydraulic cylinder through a bolt, the top of the third hydraulic cylinder is matched with a third hydraulic rod, and the bottom of the third hydraulic rod is connected with a stop block through a bolt.
[0012] The utility model discloses the beneficial effect that:
[0013] 1、The device flat plate to be welded is placed on the bottom of the pressing plate of the two lower pressing units respectively, the pressing plate at the bottom of the second hydraulic rod is driven by the second hydraulic cylinder to move up and down, the device flat plate is fixed on one side of the side plate, the two device flat plates of different thicknesses to be butt welded do not shake or move during welding, so that the device flat plate is more stable and accurate during welding operation, the working efficiency of the device flat plate butt double-sided welding is further improved, and the first hydraulic rod is driven by the first hydraulic cylinder on the clamping and transposition assembly to move, the first hydraulic rod drives the push plate to move, so that the two device flat plates to be double-sided welded are in closer contact, which not only helps to reduce the error of the operator, ensures the accuracy of the welding position and angle, avoids the quality problems such as welding point deviation and virtual welding caused by improper operation, and also helps to reduce the friction and collision of the device flat plate, reduces the damage risk of the device flat plate during welding operation, and secondly, the two butt-jointed device flat plates are welded by the laser spot welding pen on the welding assembly, and one of the lower pressing units is rotated by starting the first motor, so that the other side of the two device flat plates on the two lower pressing units is turned over, so that the double-sided welding of the two device flat plates is completed, the sealing of the water treatment device flat plate after butt double-sided welding is further ensured, and the working performance of the double-sided welded flat plate after welding is improved.
[0014] 2、The second motor on the sliding assembly is started, the screw rod is rotated by the second motor, the sliding plate one side lifting assembly moves left and right, the left and right positions of the welding assembly at the bottom of the lifting assembly are adjusted, the left and right positions of the two butt-jointed device flat plates of different widths are welded by the laser spot welding pen on the welding assembly, secondly, the third hydraulic rod moves up and down by the third hydraulic cylinder on the lifting assembly, the height of the laser spot welding pen on the welding assembly is adjusted, the laser spot welding pen contacts the butt joint of the two device flat plates to be welded, so that the welding assembly can butt double-sided weld the flat plates of different thicknesses, at the same time, the fourth hydraulic rod moves forward and backward by the fourth hydraulic cylinder on the welding assembly, the front and rear positions of the laser spot welding pen are adjusted, the front and rear positions of the two butt-jointed flat device plates are double-sided welded, the left and right positions, the height and the front and rear positions of the laser spot welding pen are adjusted by the cooperation of the sliding assembly, the lifting assembly and the welding assembly, the movement range of the laser spot welding pen is wider, so that the welding assembly can double-sided weld the device flat plates of different specifications butt-jointed, and the adaptation range of the mechanism to the butt-jointed device flat plate double-sided welding is wider. BRIEF DESCRIPTION OF DRAWINGS
[0015] The utility model is further described below in combination with the drawings and embodiments.
[0016] Figure 1A kind of preferred embodiment overall structure schematic diagram of the water treatment equipment flat plate butt joint double-sided welding composite mechanism provided by the utility model.
[0017] Figure 2 The structure diagram of the clamping transposition subassembly of the utility model.
[0018] Figure 3 The structure diagram of the down-pressing unit of the utility model.
[0019] Figure 4 The structure diagram of the moving and sliding subassembly of the utility model.
[0020] Figure 5 The structure diagram of the lifting subassembly of the utility model.
[0021] Figure 6 The structure diagram of the welding subassembly of the utility model.
[0022] In the drawing: 1, base; 2, clamping transposition subassembly; 201, support plate; 202, first hydraulic cylinder; 203, first hydraulic rod; 204, push plate; 205, sliding rail; 206, sliding block; 207, baffle; 208, first motor; 209, down-pressing unit; 2091, side plate; 2092, second hydraulic cylinder; 2093, second hydraulic rod; 2094, pressing plate; 3, moving and sliding subassembly; 301, support frame; 302, second motor; 303, screw rod; 304, sliding plate; 305, sliding rod; 4, lifting subassembly; 401, support block; 402, third hydraulic cylinder; 403, third hydraulic rod; 5, welding subassembly; 501, stop block; 502, fourth hydraulic cylinder; 503, fourth hydraulic rod; 504, laser spot welding pen. DETAILED DESCRIPTION
[0023] In order to make the technical means, creation features, purposes and effects realized by the utility model easy to understand, the utility model is further described below in combination with specific embodiments.
[0024] As Figures 1-6As shown, the utility model discloses a kind of water treatment equipment flat plate butt joint double-sided welding composite mechanism, including base 1, clamping transposition component 2, shift and slide component 3, lift and fall component 4 and welding component 5, clamping transposition component 2 is arranged at the top side of base 1, shift and slide component 3 is arranged at the top side of clamping transposition component 2, shift and slide component 3 is provided with sliding plate 304, lift and fall component 4 is arranged at the side of sliding plate 304, welding component 5 is arranged at the bottom of lift and fall component 4, welding component 5 is provided with stopper 501, fourth hydraulic cylinder 502 is connected by bolt in the middle side of stopper 501, fourth hydraulic cylinder 502 one end is connected with fourth hydraulic rod 503, fourth hydraulic rod 503 one end is connected with laser spot welding pen 504 by bolt, laser spot welding pen 504 is arranged above clamping transposition component 2, fourth hydraulic cylinder 502 on welding component 5 drives fourth hydraulic rod 503 to move back and forth, adjust the front and back positions of laser spot welding pen 504, it is convenient to carry out double-sided welding operation to the front and back positions of two flat equipment plates butted together, by the cooperation of shift and slide component 3, lift and fall component 4 and welding component 5, adjust the left and right positions, height and front and back positions of laser spot welding pen 504, so that the movement range of laser spot welding pen 504 is wider, so that welding component 5 carries out double-sided welding operation to the equipment flat plate of different specifications butted together, to make the adaptation range of the mechanism to the double-sided welding operation of the equipment flat plate butted together be wider.
[0025] The bottom of clamping transposition component 2 is provided with support plate 201, the middle end of the top end of support plate 201 away from shift and slide component 3 is hinged with first hydraulic cylinder 202, first hydraulic cylinder 202 one end is connected with first hydraulic rod 203, first hydraulic rod 203 one end is hinged with push plate 204, the side of push plate 204 away from first hydraulic rod 203 is provided with baffle 207, first hydraulic cylinder 202 drives first hydraulic rod 203 to move, first hydraulic rod 203 drives push plate 204 to move, ensure that the contact of two equipment flat plates needing double-sided welding is more closely, not only conducive to reducing the error of operator, ensure the accuracy of welding position and angle, to avoid the quality problems such as welding spot deviation, virtual welding caused by improper operation, also conducive to reducing the friction and collision of equipment flat plate, reduce the damage risk of equipment flat plate in welding operation.
[0026] The top of support plate 201 is welded with parallelly arranged slide rail 205 on both sides, the top of two slide rails 205 is connected with sliding block 206, the top of push plate 204 and two sliding blocks 206 is welded, baffle 207 and the top of support plate 201 are welded, so that push plate 204 moves more stably, ensure that two equipment flat plates are butted together more stably, avoid the misplacement of two flat plates when butting.
[0027] The lower pressing units 209 are symmetrically arranged, and the side plates 2091 are arranged on the lower pressing units 209. The side plates 2091 are in an L-shaped structure, and the second hydraulic cylinders 2092 are arranged on one side of the top of the middle part of the side plates 2091 through bolts. The second hydraulic rods 2093 are connected to the top of the second hydraulic cylinders 2092 in a matched mode, and the pressing plates 2094 are connected to the bottom of the second hydraulic rods 2093 through bolts. The equipment plates to be welded are placed on the bottom of the pressing plates 2094 of the two lower pressing units 209 respectively. The pressing plates 2094 at the bottom of the second hydraulic rods 2093 are driven by the second hydraulic cylinders 2092 to move up and down, so that the equipment plates are fixed on one side of the side plates 2091. The two equipment plates of different thicknesses to be butt-welded do not shake or move during the welding process, so that the equipment plates are more stable and accurate during the welding operation, and the working efficiency of the butt-welded double-sided welding of the equipment plates is further improved.
[0028] The side plates 2091 on the lower pressing units 209 near the push plate 204 are connected to the push plate 204 through a rotating shaft, and the first motor 208 is installed on one side of the baffle 207. The first motor 208 is movably connected to the side plate 2091 near the baffle 207 through a rotating shaft. When the first motor 208 is turned on, the first motor 208 drives one of the lower pressing units 209 to rotate, so that the other side of the two equipment plates on the two lower pressing units 209 is turned over, thereby facilitating the double-sided welding of the two equipment plates, further ensuring that the sealing of the water treatment equipment plate after the butt-welded double-sided welding is better, and improving the working performance of the double-sided welded plate after welding.
[0029] The support frame 301 is arranged on one side of the sliding assembly 3, and the second motor 302 is installed at one end of the support frame 301. The screw rod 303 is movably connected to one end of the second motor 302 through a rotating shaft. When the second motor 302 on the sliding assembly 3 is turned on, the second motor 302 drives the screw rod 303 to rotate, so that the lifting assembly 4 on one side of the sliding plate 304 moves left and right, and the left and right positions of the welding assembly 5 at the bottom of the lifting assembly 4 are adjusted. The laser spot welding pen 504 on the welding assembly 5 can perform left and right position double-sided welding on two equipment plates of different widths that are butt-jointed together. The screw holes matched with the screw rod 303 are arranged on the sliding plate 304, the sliding rod 305 is arranged at the bottom of the screw rod 303, the sliding holes matched with the sliding rod 305 are arranged on the sliding plate 304, and the screw rod 303 and the sliding rod 305 are parallel to the same plane. The left and right movements of the welding assembly 5 are more stable, and the butt-jointed double-sided welding of the two equipment plates is more stably completed.
[0030] The lifting assembly 4 is provided with a supporting block 401 welded with the sliding plate 304, the middle top of the supporting block 401 is connected with a third hydraulic cylinder 402 through a bolt, the top of the third hydraulic cylinder 402 is connected with a third hydraulic rod 403 in a matched mode, the bottom of the third hydraulic rod 403 is connected with a stop block 501 through a bolt, the third hydraulic rod 403 is driven by the third hydraulic cylinder 402 on the lifting assembly 4 to move up and down, the height of the laser spot welding pen 504 on the welding assembly 5 is adjusted, the laser spot welding pen 504 is facilitated to contact the butt joint of the two equipment planes needing to be welded, so that the welding assembly 5 is facilitated to perform butt joint double-sided welding operation on the flat plates with different thicknesses.
[0031] In use, first, the equipment flat plates needing to be welded are respectively placed on the bottom of the pressing plate 2094 on the two pressing units 209, the pressing plate 2094 on the bottom of the second hydraulic rod 2093 is driven by the second hydraulic cylinder 2092 to move up and down, the equipment flat plates are fixed on one side of the side plate 2091, the two equipment flat plates with different thicknesses needing to be butt joint double-sided welded are prevented from shaking or moving in the welding process, so that the equipment flat plates are more stable and accurate in the welding operation process, the working efficiency of the equipment flat plates in butt joint double-sided welding is further improved, and the first hydraulic rod 203 is driven by the first hydraulic cylinder 202 on the clamping and transposition assembly 2 to move, the push plate 204 is driven by the first hydraulic rod 203 to move, the two equipment flat plates needing to be double-sided welded are ensured to be more closely contacted, the accuracy of the welding position and angle is ensured, and then the quality problems such as welding spot deviation and virtual welding caused by improper operation are avoided;
[0032] Then, the third hydraulic rod 403 is driven by the third hydraulic cylinder 402 on the lifting assembly 4 to move up and down, the height of the laser spot welding pen 504 on the welding assembly 5 is adjusted, the laser spot welding pen 504 is facilitated to contact the butt joint of the two equipment flat plates needing to be welded, so that the welding assembly 5 is facilitated to perform welding operation on the flat plates with different thicknesses, and the second motor 302 on the sliding assembly 3 is started, the lead screw 303 is driven by the second motor 302 to rotate, the sliding plate 304 on one side of the lead screw 303 is driven by the lifting assembly 4 to move left and right, the left and right positions of the welding assembly 5 at the bottom of the lifting assembly 4 are adjusted, the laser spot welding pen 504 on the welding assembly 5 is facilitated to perform left and right position double-sided welding operation on the two equipment flat plates with different widths butted together, at the same time, the fourth hydraulic rod 503 is driven by the fourth hydraulic cylinder 502 on the welding assembly 5 to move forward and backward, the forward and backward positions of the laser spot welding pen 504 are adjusted, the forward and backward positions of the two flat equipment plates butted together are facilitated to perform welding operation;
[0033] Finally, secondly, the laser spot welding pen 504 on the welding assembly 5 is used to weld the two abutting device plates, and the first motor 208 is turned on to drive one of the two lower units 209 to rotate, so that the other side of the two device plates is turned over, and the welding work on the other side of the two device plates is completed by the sliding assembly 3, the lifting and falling assembly 4 and the welding assembly 5.
[0034] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principle of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A water treatment equipment flat plate butt joint double-sided welding composite mechanism, characterized in that: The utility model relates to a welding device, including base (1), clamping transposition subassembly (2), shift and slide subassembly (3), lift and fall subassembly (4) and welding subassembly (5), clamping transposition subassembly (2) sets up at the top one side of base (1), shift and slide subassembly (3) sets up at the top one side of clamping transposition subassembly (2), be provided with slide plate (304) on shift and slide subassembly (3), lift and fall subassembly (4) sets up at one side of slide plate (304), welding subassembly (5) sets up at the bottom of lift and fall subassembly (4), be provided with stopper (501) on welding subassembly (5), the middle one side of stopper (501) is connected with fourth hydraulic cylinder (502) through bolt, fourth hydraulic cylinder (502) one end cooperation and connection has fourth hydraulic rod (503), fourth hydraulic rod (503) one end is connected with laser spot welding pen (504) through bolt, laser spot welding pen (504) sets up at the top of clamping transposition subassembly (2).
2. The flat plate butt-welding composite mechanism of a water treatment device according to claim 1, characterized in that: The bottom of clamping transposition subassembly (2) is provided with a support plate (201), and the middle of the top end of the support plate (201) away from the shift and slide subassembly (3) is hingedly connected with a first hydraulic cylinder (202). The first hydraulic cylinder (202) is connected at one end with a first hydraulic rod (203). The first hydraulic rod (203) is hingedly connected at one end with a push plate (204). The side of the push plate (204) away from the first hydraulic rod (203) is provided with a baffle (207).
3. The flat plate butt welding composite mechanism of a water treatment equipment according to claim 2, characterized in that: The top of the support plate (201) is welded on both sides with parallelly arranged slide rails (205). The top of each of the two slide rails (205) is connected with a sliding block (206). The top of the push plate (204) is welded with the top of each of the two sliding blocks (206). The baffle (207) is welded with the top of the support plate (201).
4. The flat plate butt welding composite mechanism of a water treatment device according to claim 3, characterized in that: The top of one side of each of the push plate (204) and the baffle (207) is provided with a pressing unit (209). The two pressing units (209) are symmetrically arranged. The pressing unit (209) is provided with a side plate (2091). The side plate (2091) is in an "L" shape structure. The middle top end of one side of the side plate (2091) is connected with a second hydraulic cylinder (2092) through a bolt. The top of the second hydraulic cylinder (2092) is connected with a second hydraulic rod (2093). The bottom of the second hydraulic rod (2093) is connected with a pressing plate (2094) through a bolt.
5. The flat plate butt welding composite mechanism of a water treatment device according to claim 4, characterized in that: The side plate (2091) of the pressing unit (209) close to the push plate (204) is connected with the push plate (204) through a rotating shaft. The side of the baffle (207) is provided with a first motor (208). The first motor (208) is movably connected with the side plate (2091) close to the baffle (207) through a rotating shaft.
6. The flat plate butt welding composite mechanism of a water treatment device according to claim 1, characterized in that: The shift and slide assembly (3) is provided with a support frame (301) on one side, one end of the support frame (301) is provided with a second motor (302), one end of the second motor (302) is movably connected with a lead screw (303) through a rotating shaft, a sliding plate (304) is provided with a screw hole matched with the lead screw (303), the bottom of the lead screw (303) is provided with a sliding rod (305), the sliding plate (304) is provided with a sliding hole matched with the sliding rod (305), and the plane where the lead screw (303) and the sliding rod (305) are located is parallel.
7. The flat plate butt welding composite mechanism of a water treatment device according to claim 1, characterized in that: The lifting and falling assembly (4) is provided with a support block (401), the support block (401) is welded with the sliding plate (304), the middle top of the support block (401) is connected with a third hydraulic cylinder (402) through bolts, the top of the third hydraulic cylinder (402) is connected with a third hydraulic rod (403) in a matched mode, and the bottom of the third hydraulic rod (403) is connected with a stop block (501) through bolts.