WO2023035373A1 - 一种焊接机器人焊接火花防溅安全防护装置 - Google Patents

一种焊接机器人焊接火花防溅安全防护装置 Download PDF

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Publication number
WO2023035373A1
WO2023035373A1 PCT/CN2021/126077 CN2021126077W WO2023035373A1 WO 2023035373 A1 WO2023035373 A1 WO 2023035373A1 CN 2021126077 W CN2021126077 W CN 2021126077W WO 2023035373 A1 WO2023035373 A1 WO 2023035373A1
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WO
WIPO (PCT)
Prior art keywords
splash
welding
plate
adjustment
proof
Prior art date
Application number
PCT/CN2021/126077
Other languages
English (en)
French (fr)
Inventor
王宇益
钟逸
田俊豪
吴磊
Original Assignee
南京蹑波物联网科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
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Application filed by 南京蹑波物联网科技有限公司 filed Critical 南京蹑波物联网科技有限公司
Publication of WO2023035373A1 publication Critical patent/WO2023035373A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K37/00Auxiliary devices or processes, not specially adapted to a procedure covered by only one of the preceding main groups
    • B23K37/02Carriages for supporting the welding or cutting element
    • B23K37/0252Steering means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K37/00Auxiliary devices or processes, not specially adapted to a procedure covered by only one of the preceding main groups
    • B23K37/006Safety devices

Definitions

  • the invention relates to the field of welding robots, in particular to a welding robot welding spark splash prevention safety protection device.
  • An industrial robot is a multi-joint manipulator or multi-degree-of-freedom machine device used in the industrial field. It has a certain degree of automation and can rely on its own power energy and control capabilities to achieve various industrial processing and manufacturing functions. It is widely used In various industrial fields such as electronics, logistics, and chemical industry, in order to adapt to different purposes, the mechanical interface of the last axis of an industrial robot is usually a connecting flange, which can be connected to different tools or end effectors. Welding robots are used in industrial The end shaft flange of the robot is equipped with welding tongs or a welding (cutting) torch, enabling it to perform welding, cutting or thermal spraying.
  • a welding robot welding spark splash prevention safety protection device by arranging a spark splash prevention component outside the welding torch of the welding robot, and cooperating with a splash prevention adjustment component arranged on the spark splash prevention component, thereby solving the above-mentioned problems existing in the prior art .
  • a welding robot welding spark splash prevention safety protection device including a connecting plate, a spark splash prevention component and multiple sets of splash prevention adjustment components;
  • connection plate is used to connect the mechanical arm of the welding robot
  • the spark splash prevention part is connected to the side of the connecting plate away from the mechanical arm of the welding robot, and is used to protect the welding robot welding gun and block the scattering of welding sparks generated when the welding robot welding torch is working;
  • a plurality of sets of anti-splash adjustment parts are respectively arranged on one side of the spark anti-splash parts. Adjustment rotating plates are hinged between the spark anti-splash parts and the plurality of sets of anti-splash adjustment parts. It is used to control the rotation angle of the spark splash prevention part when the spark splash prevention part rotates.
  • the spark splash prevention component includes:
  • a plurality of splash-proof inner plates, a plurality of said splash-proof inner plates are arranged on the outside of the welding torch of the welding robot, and are used to protect the welding gun of the welding robot.
  • Two adjacent splash-proof inner plates can be connected to each other, so that welding The robot welding torch is protected in a plurality of splash-proof inner plates with openings on one side.
  • a plurality of first fixing plates are connected to two adjacent splash-proof inner plates, and are used to connect the splash-proof inner plates and the connecting plate, and the first fixing plates are correspondingly provided on the splash-proof inner plates and the connecting plate.
  • holes two adjacent first fixing plates are connected to a first fixing plate at one end close to the connecting plate, for connecting the splash-proof inner plate and the connecting plate, preferably, there are four first fixing plates, and the above-mentioned Four splash-proof inner panels are connected;
  • a plurality of first fixing nails are correspondingly arranged in a plurality of first fixing holes for fixing the splash-proof inner plate and the connection plate.
  • the first fixing holes and the first fixing nails in the device are each provided with four , the four first fixing nails are correspondingly arranged in the four first fixing holes, and the splash-proof inner panel and the connecting plate can be fixed by the first fixing plate, which is convenient for the user to disassemble and assemble the splash-proof inner plate and the connecting plate;
  • a plurality of anti-splash outer plates are respectively hinged on the outer sides of the plurality of anti-splash inner plates, and are used to cooperate with the inner splash-proof plates to protect the welding gun of the welding robot and block the scattering of welding sparks generated when the welding torch of the welding robot is working
  • a plurality of groups of the splash-proof inner panels and the splash-proof outer panels are connected with a first hinge, and the ends of the plurality of splash-proof outer panels away from the connection plate are all connected with elastic anti-collision panels.
  • the splash-proof outer panels There are four corresponding splash-proof inner plates, and the four splash-proof outer plates are correspondingly hinged on the side of the four splash-proof inner plates away from the welding robot, so that the splash-proof outer plates can rotate relative to the splash-proof inner plates.
  • said first hinge comprises:
  • a pair of second fixing plates are connected to the outside of the splash-proof inner plate, and a plurality of second fixing holes are correspondingly opened on the pair of second fixing plates and the splash-proof inner plate;
  • a plurality of second fixing nails are correspondingly arranged in the plurality of second fixing holes for fixing the second fixing plate and the splash-proof inner plate;
  • the first rotating column is connected between a pair of the second fixing nails, and is used to adjust the rotating plate to rotate.
  • a torsion spring can be installed between the first rotating column and the adjusting rotating plate. Under normal conditions, the torsion spring drives the anti-splash
  • the outer plate maintains an angle of 30 ⁇ 45 degrees with the splash-proof inner plate. When the welding torch is working, the splash-proof outer plate contacts the welding workpiece, and the elastic anti-collision plate can prevent the splash-proof outer plate and the welding workpiece from being damaged.
  • the splash-proof outer plate and the splash-proof inner plate are relatively rotated under the drive of the torsion spring, and at the same time, under the action of the torsion spring, the splash-proof outer plate and the welding workpiece are continuously abutted, so that Multiple splash guards keep welding sparks out of the torch.
  • the splash-proof adjustment component includes:
  • An adjustment plate is symmetrically connected with a plurality of third fixing plates, the plurality of third fixing plates and the connecting plate are respectively provided with third fixing holes, and the plurality of third fixing holes are all provided with There is a third fixing nail, which is used to fix the adjusting plate and the connecting plate, which is convenient for the user to disassemble and assemble the adjusting plate and the connecting plate;
  • the adjustment groove runs through the side of the adjustment plate away from the connection plate;
  • the adjustment slider is slidingly arranged in the adjustment groove, and the adjustment rotating plate is hinged between the adjustment slider and the splash-proof outer plate, and when the splash-proof outer plate and the splash-proof inner plate rotate relatively, the adjustment rotating plate can be driven The plate rotates, and at the same time drives the adjustment slider to move in the adjustment groove.
  • the splash-proof adjustment part also includes:
  • the first magnetic block is connected to an end of the adjusting slider close to the splash-proof inner plate;
  • the second magnetic plate is fixed on the end of the adjustment plate close to the splash-proof inner plate.
  • the opposite magnetic poles of the second magnetic plate and the first magnetic block have different names, and are used to attract and fix the adjustment slider and the adjustment plate.
  • the second magnetic plate and the first magnetic block attract each other, so that the first magnetic block and the second magnetic plate are attached.
  • the splash-proof inner plate and the splash-proof outer plate are parallel to each other, and the bottom of the splash-proof outer plate Consistent with the direction of the welding torch, the welding torch can be surrounded by the cooperation of the splash-proof inner plate and the splash-proof outer plate for protection against collision, water and dust.
  • the splash-proof adjustment part also includes:
  • the guide strut is arranged in the adjustment groove along the extension direction of the adjustment plate, and both ends of the guide strut are fixedly connected with the inner wall of the adjustment groove;
  • Sliding holes are correspondingly opened on the first magnetic block and the adjusting slider and are adapted to the guide sliding column, and the first magnetic block and the adjusting slider are both slidably connected to the guiding sliding column through the sliding hole;
  • the return spring is connected between the adjustment slider and the inner wall of the adjustment groove and is arranged on the outside of the guide column, and is used to drive the adjustment slider to make a return movement.
  • the second magnetic plate and the first magnetic block attract each other , and at the same time under the compression of the return spring, the first magnetic block and the second magnetic plate are attached.
  • the splash-proof inner plate and the splash-proof outer plate are parallel to each other, and the bottom of the splash-proof outer plate is in the same direction as the welding torch.
  • the cooperation of the splash inner plate and the splash proof outer plate can surround the welding torch for protection, such as anti-collision, waterproof and dustproof.
  • the splash-proof adjustment part also includes:
  • a pair of moving slots are symmetrically opened on the adjustment slider
  • Two sets of guide pulleys are correspondingly arranged in a pair of moving grooves and are rollingly connected with the inner wall of the adjustment groove, and are used to cooperate with the adjustment slider to move in the adjustment groove, and can cooperate with the adjustment slider to convert sliding friction into rolling friction, so that The adjustment slider can better move in the adjustment groove, improve the sensitivity of the adjustment slider movement, and keep the splash-proof outer plate to rotate relative to the welding torch and the welding workpiece at the first time, so that the splash-proof The outer plate can continuously block the welding sparks on the outside of the welding torch and continuously form protection for the welding torch.
  • the splash-proof adjustment part also includes:
  • a plurality of adjustment limit holes are correspondingly opened on the adjustment plate and the guide sliding column, and a first limit hole is correspondingly opened on the adjustment slider;
  • the adjustment limit bolt is inserted in the first limit hole and the corresponding adjustment limit hole, and is used to fix the adjustment slider and the adjustment plate.
  • the adjustment limit bolt can be inserted into the first limit hole and the corresponding adjustment limit hole on the adjustment plate and the guide sliding column , fix the adjusting slider and the adjusting slider, so as to fix the relative angle between the splash-proof outer plate and the splash-proof inner plate, so that the splash-proof inner plate and the splash-proof outer plate will not rotate relative to each other, and keep the splash-proof outer plate continuously in the welding torch
  • the outer side blocks welding sparks and continuously protects the welding torch.
  • the invention relates to a welding robot welding spark splash prevention safety protection device.
  • a spark splash prevention component on the outside of the welding torch of the welding robot, the welding sparks generated by welding can be blocked, so as to avoid scalding of related equipment caused by welding sparks splashing everywhere, and reduce the Difficulty of follow-up cleaning; at the same time, an anti-splash adjustment part is set on the anti-spark part, which is convenient for adjusting the relative angle between the anti-spark part, the welding workpiece and the welding torch when the welding torch is idle and working, so that the anti-spark part can be kept on The outer side of the welding torch blocks welding sparks and continuously protects the welding torch.
  • Fig. 1 is a side view of the overall structure of the present invention.
  • Fig. 2 is an exploded view of a part of the structure of the present invention.
  • Fig. 3 is a perspective view of the spark splash prevention component of the present invention.
  • FIG. 4 is a partial enlarged view of A in FIG. 3 .
  • Fig. 5 is an exploded view of the anti-splash adjustment part of the present invention.
  • Fig. 6 is an exploded view of another angle of view of the splash-proof adjustment component of the present invention.
  • the reference signs in the figure are: 1. Connecting plate, 2. Spark splash-proof parts, 201. Splash-proof inner plate, 202. First fixing plate, 203. First fixing nail, 204. Splash-proof outer plate, 3. The first hinge, 301. The second fixing plate, 302. The second fixing nail, 303. The first rotating column, 4. The splash-proof adjustment part, 401. The adjustment plate, 402. The adjustment groove, 403. The adjustment slider, 404 .First magnetic block, 405. Return spring, 406. Guide slid, 407. Sliding hole, 408. Guide pulley, 409. Adjustment limit hole, 410. Adjustment limit bolt, 411. Third fixed plate, 412. The third fixing nail, 413. the second magnetic plate, 5. adjusting the rotating plate.
  • a welding robot welding spark splash safety protection device includes a connecting plate 1 , a spark splash prevention component 2 and multiple sets of splash prevention adjustment components 4 .
  • the connecting pad 1 is used to connect the mechanical arm of the welding robot.
  • the spark splash prevention part 2 is connected to the side of the connecting plate 1 away from the mechanical arm of the welding robot, and is used to protect the welding robot's welding gun and prevent the welding sparks from flying when the welding torch of the welding robot is working. block.
  • the spark splash prevention part 2 includes:
  • a plurality of splash-proof inner plates 201, a plurality of splash-proof inner plates 201 are arranged on the outside of the welding torch of the welding robot, and are used to protect the welding gun of the welding robot.
  • Two adjacent splash-proof inner plates 201 can be connected to each other, so that The welding torch of the welding robot is protected in a plurality of splash-proof inner plates 201 with openings on one side.
  • a plurality of first fixing plates 202 are connected with two adjacent splash-proof inner plates 201, and are used to connect the splash-proof inner plates 201 and the connection plate 1, and the splash-proof inner plates 201 and the connection plate 1 are respectively provided with the first One fixing hole, two adjacent first fixing plates 202 are connected to one end near the connecting plate 1 with a first fixing plate 202 for connecting the splash-proof inner plate 201 and the connecting plate 1, preferably, the first fixing plate 202 There are four, and the above four splash-proof inner panels 201 can be connected.
  • a plurality of first fixing nails 203 are correspondingly arranged in a plurality of first fixing holes for fixing the splash-proof inner plate 201 and the connection plate 1.
  • the first fixing holes and the first fixing nails 203 in this device are both There are four, and the four first fixing nails 203 are correspondingly arranged in the four first fixing holes, and the splash-proof inner panel 201 and the connection plate 1 can be fixed by the first fixing plate 202, so that the user can fix the splash-proof inner panel 201 and connection plate 1 are disassembled.
  • a plurality of splash-proof outer plates 204 are respectively hinged on the outer sides of a plurality of splash-proof inner plates 201, and are used to cooperate with the splash-proof inner plates 201 to protect the welding gun of the welding robot and to prevent the scattering of welding sparks generated when the welding torch of the welding robot is working. Blocking, multiple groups of splash-proof inner panels 201 and splash-proof outer panels 204 are connected with first hinges 3, and the ends of multiple splash-proof outer panels 204 away from the connection plate 1 are connected with elastic anti-collision plates.
  • the splash-proof outer plate 204 is provided with four corresponding splash-proof inner plates 201, and the four splash-proof outer plates 204 are correspondingly hinged on the side of the four splash-proof inner plates 201 away from welding robot welding, so that the splash-proof outer plate 204 can be connected with the splash-proof The inner plate 201 is relatively rotated.
  • the splash-proof inner plate 201 is installed on the connection plate 1, so that the welding torch of the welding robot is in the splash-proof inner plate 201, and when the welding torch is idle, adjust the relative angle between the splash-proof inner plate 201 and the splash-proof outer plate 204, so that The splash-proof inner plate 201 and the splash-proof outer plate 204 are parallel to each other, and the bottom of the splash-proof outer plate 204 is in the same direction as the welding torch.
  • the welding gun is surrounded by the splash-proof inner plate 201 and the splash-proof outer plate 204 for protection, anti-collision and waterproof And dustproof, etc., when the welding torch is working, adjust the relative angle of the splash-proof inner plate 201 and the splash-proof outer plate 204 again, so that a plurality of splash-proof outer plates 204 will not collide with the welding workpiece during the working of the welding torch
  • a plurality of anti-splash outer plates 204 surround the outside of the welding torch, so that the sparks generated by the welding torch can only splash in the outer splash-proof plate 204 or fall after touching the outer splash-proof plate 204, so as to avoid sparks from splashing to the workshop.
  • it can also prevent sparks from splashing on welding robots and other equipment, protect the equipment from damage and reduce the difficulty of cleaning in the later stage.
  • the first hinge 3 includes:
  • a pair of second fixing plates 301 are connected to the outside of the splash-proof inner plate 201 , and a plurality of second fixing holes are correspondingly opened on the pair of second fixing plates 301 and the splash-proof inner plate 201 .
  • a plurality of second fixing nails 302 are correspondingly disposed in the plurality of second fixing holes for fixing the second fixing plate 301 and the splash-proof inner plate 201 .
  • the first rotating column 303 is connected between a pair of second fixing nails 302, and is used to adjust the rotating plate 5 to rotate.
  • a torsion spring can be installed between the first rotating column 303 and the adjusting rotating plate 5. Under normal conditions, the torsion spring Drive the splash-proof outer plate 204 to maintain an angle of 30-45 degrees with the splash-proof inner plate 201. When the welding torch is working, the splash-proof outer plate 204 contacts the welding workpiece, and the elastic anti-collision plate can avoid the splash-proof outer plate 204 and the welding workpiece are damaged.
  • the splash-proof outer plate 204 and the splash-proof inner plate 201 are relatively rotated under the drive of the torsion spring, and at the same time, the splash-proof outer plate 204 is rotated under the action of the torsion spring. 204 is in constant contact with the welding workpiece, so that the plurality of anti-splash outer plates 204 continue to block welding sparks outside the welding torch.
  • multiple sets of anti-splash adjustment parts 4 are respectively arranged on one side of the spark anti-splash part 2, and an adjustment rotating plate 5 is hinged between the spark anti-splash part 2 and the multiple sets of anti-splash adjustment parts 4
  • the adjusting rotating plate 5 cooperates with the anti-splash adjustment part 4 to control the rotation angle of the anti-spark part 2 when the anti-spark part 2 rotates.
  • the anti-splash adjustment part 4 comprises:
  • Adjusting plate 401 a plurality of third fixing plates 411 are symmetrically connected to the adjusting plate 401, third fixing holes are correspondingly opened on the plurality of third fixing plates 411 and the connection plate 1, and a plurality of third fixing holes are provided with
  • the third fixing nail 412 is used for fixing the adjusting plate 401 and the connecting plate 1 , so that the user can disassemble the adjusting plate 401 and the connecting plate 1 .
  • the adjusting groove 402 is opened through the side of the adjusting plate 401 away from the connecting plate 1 .
  • the adjustment slider 403 is slidably arranged in the adjustment groove 402, and the adjustment rotating plate 5 is hinged between the adjustment slider 403 and the splash-proof outer plate 204.
  • the splash-proof outer plate 204 and the splash-proof inner plate 201 rotate relatively, the Drive the adjustment rotating plate 5 to rotate, and drive the adjustment slider 403 to move in the adjustment groove 402 at the same time.
  • the anti-splash adjustment part 4 also includes:
  • the first magnetic block 404 is connected to an end of the adjusting slider 403 close to the splash-proof inner plate 201 .
  • the second magnetic plate 413 is fixed on the end of the adjustment plate 401 close to the splash-proof inner plate 201.
  • the opposite magnetic poles of the second magnetic plate 413 and the first magnetic block 404 have different names, and are used to attract and fix the adjustment slider 403 and the adjustment plate.
  • the second magnetic plate 413 and the first magnetic block 404 attract each other, so that the first magnetic block 404 and the second magnetic plate 413 are attached, and at this time, the splash-proof inner plate 201 and the splash-proof outer plate 204 are mutually Parallel, and the bottom of the anti-splash outer plate 204 is in the same direction as the welding torch, and the cooperation between the inner splash-proof plate 201 and the outer splash-proof plate 204 can surround the welding torch for protection, such as anti-collision, waterproof and dust-proof protection.
  • the anti-splash adjustment part 4 also includes:
  • the guide column 406 is arranged in the adjustment groove 402 along the extending direction of the adjustment plate 401 , and both ends of the guide column 406 are fixedly connected with the inner wall of the adjustment groove 402 .
  • the sliding hole 407 is correspondingly opened on the first magnetic block 404 and the adjusting slider 403 and is adapted to the guide sliding column 406.
  • the first magnetic block 404 and the adjusting slider 403 are both slidably connected to the guiding sliding column 406 through the sliding hole 407 .
  • the return spring 405 is connected between the adjustment slider 403 and the inner wall of the adjustment groove 402 and is arranged outside the guide column 406 for driving the adjustment slider 403 to perform a return movement.
  • the second magnetic plate 413 and the first magnetic block 404 attract each other, and at the same time, under the pressure of the return spring 405, the first magnetic block 404 and the second magnetic plate 413 are attached.
  • the splash-proof inner plate 201 It is parallel to the splash-proof outer plate 204, and the bottom of the splash-proof outer plate 204 is in the same direction as the welding torch.
  • the anti-splash outer plate 204 When the welding torch is working, the anti-splash outer plate 204 is in contact with the welding workpiece. At this time, under the action of the contact external force, the outer anti-splash plate 204 and the inner anti-splash plate 201 are relatively rotated, and the outer anti-splash plate 204 drives the adjustment The rotating plate 5 rotates, and the adjusting rotating plate 5 drives the adjusting slider 403 to move in the adjusting groove 402, so that the guide sliding column 406 is deformed, and under the cooperation of the guiding sliding column 406 and the torsion spring, the external force of the contact collision can be buffered and divided , to protect the welding workpiece and related components such as the splash-proof outer plate 204, and under the action of the guide strut 406 and the torsion spring, the splash-proof outer plate 204 is continuously surrounded on the outside of the welding torch, so as to keep a plurality of splash-proof outer plates 204 against welding sparks and after the welding is completed, under the
  • the anti-splash adjustment part 4 also includes:
  • a pair of moving grooves are opened symmetrically on the adjusting slider 403 .
  • Two sets of guide pulleys 408 are correspondingly arranged in a pair of moving grooves and are rollingly connected with the inner wall of the adjustment groove 402, and are used to cooperate with the adjustment slider 403 to move in the adjustment groove 402, and can cooperate with the adjustment slider 403 to convert sliding friction into rolling Friction, so that the adjustment slider 403 can move better in the adjustment groove 402, improve the sensitivity of the movement of the adjustment slider 403, and keep the anti-splash outer plate 204 to contact the welding workpiece with the movement of the welding gun at the first time Relative rotation occurs, so that the anti-splash outer plate 204 can continuously block welding sparks outside the welding torch and continuously form protection for the welding torch.
  • the anti-splash adjustment part 4 also includes:
  • a plurality of adjustment limit holes 409 are correspondingly opened on the adjustment plate 401 and the guide column 406 , and a first limit hole is correspondingly opened on the adjustment slider 403 .
  • the adjustment limit bolt 410 is inserted in the first limit hole and the corresponding adjustment limit hole 409, and is used to fix the adjustment slider 403 and the adjustment plate 401, when the welding torch is idle, or when welding the workpiece and the splash-proof outer plate 204 will not abut and collide.
  • the adjustment limit bolt 410 can be inserted into the first limit hole and the adjustment plate 401 and the guide column 406 In the corresponding adjustment limit hole 409 on the top, fix the adjustment slider 403 and the adjustment slider 403, thereby fixing the relative angle between the splash-proof outer plate 204 and the splash-proof inner plate 201, so that the splash-proof inner plate 201 and the splash-proof outer plate 204 will not rotate relative to each other, so that the anti-splash outer plate 204 can continue to block welding sparks outside the welding torch and continuously protect the welding torch.
  • the specific working process of the present invention is as follows: the device is connected to the end flange of the welding robot through the connection plate 1, when the welding torch is idle, the second magnetic plate 413 and the first magnetic block 404 attract each other, and at the same time Under the compression of the return spring 405, the first magnetic block 404 is attached to the second magnetic plate 413.
  • the splash-proof inner plate 201 and the splash-proof outer plate 204 are parallel to each other, and the bottom of the splash-proof outer plate 204 is in the same direction as the welding torch , through the cooperation of the splash-proof inner plate 201 and the splash-proof outer plate 204, the welding torch can be surrounded for protection, such as anti-collision, waterproof and dust-proof protection.
  • the anti-splash outer plate 204 When the welding torch is working, the anti-splash outer plate 204 is in contact with the welding workpiece. At this time, under the action of the contact external force, the outer anti-splash plate 204 and the inner anti-splash plate 201 are relatively rotated, and the outer anti-splash plate 204 drives the adjustment The rotating plate 5 rotates, and the adjusting rotating plate 5 drives the adjusting slider 403 to move in the adjusting groove 402, so that the guide sliding column 406 is deformed, and under the cooperation of the guiding sliding column 406 and the torsion spring, the external force of the contact collision can be buffered and divided , to protect the welding workpiece and related components such as the splash-proof outer plate 204, and under the action of the guide strut 406 and the torsion spring, the splash-proof outer plate 204 is continuously surrounded on the outside of the welding torch, so as to keep a plurality of splash-proof outer plates 204 against welding sparks and after the welding is completed, under the

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  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
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  • Resistance Welding (AREA)

Abstract

本发明涉及一种焊接机器人焊接火花防溅安全防护装置,涉及焊接机器人领域,包括连接盘、火花防溅部件和多组防溅调节部件;火花防溅部件,连接于连接盘远离焊接机器人机械臂的一面,用于对焊接机器人焊抢进行防护同时对焊接机器人焊枪工作时产生的焊接火花的飞散进行阻挡。通过在焊接机器人焊枪外侧设置火花防溅部件,可以对焊接产生的焊接火花进行阻挡,避免焊接火花四处飞溅造成相关设备的烫损,降低后续清洁的难度;同时在火花防溅部件上设置防溅调节部件,便于在焊枪闲置和工作过程中对火花防溅部件与焊接工件和焊枪的相对角度进行调节,使得火花防溅部件能持续在焊枪外侧对焊接火花进行阻挡以及持续对焊枪形成防护。

Description

一种焊接机器人焊接火花防溅安全防护装置 技术领域
本发明涉及焊接机器人领域,具体涉及一种焊接机器人焊接火花防溅安全防护装置。
背景技术
工业机器人是一种用于工业领域的多关节机械手或多自由度的机器装置,其具有一定的自动性,可依靠自身的动力能源和控制能力实现各种工业加工和制造的功能,被广泛应用于电子、物流、化工等各个工业领域之中,为了适应不同的用途,工业机器人最后一个轴的机械接口通常是一个连接法兰,可接装不同工具或称末端执行器,焊接机器人就是在工业机器人的末轴法兰装接焊钳或焊(割)枪的,使之能进行焊接,切割或热喷涂。
现有的焊接机器人在进行焊接作业时常会产生焊接火花,这些焊接火花形成之后会以飞溅的方式散布出去,这样飞溅的火花可能会落至作业车间的不同地方,不仅可能会落到焊接机器人等设备和用具的表面,对焊接机器人等设备和用具表面造成损伤,甚至可能会散落到工作人员的身上对工作人员造成损害,存在一定的安全隐患;同时四处飞溅散布的火花也不便于后续的清洁,增加后续清洁强度。
技术问题
提供一种焊接机器人焊接火花防溅安全防护装置,通过在焊接机器人焊枪外侧设置火花防溅部件,同时配合在火花防溅部件上设置的防溅调节部件,从而解决了现有技术存在的上述问题。
技术解决方案
一种焊接机器人焊接火花防溅安全防护装置,包括连接盘、火花防溅部件和多组防溅调节部件;
连接盘,用于连接焊接机器人机械臂;
火花防溅部件,连接于所述连接盘远离焊接机器人机械臂的一面,用于对焊接机器人焊抢进行防护同时对焊接机器人焊枪工作时产生的焊接火花的飞散进行阻挡;
多组防溅调节部件,分别对应设于火花防溅部件一侧,所述火花防溅部件与多组防溅调节部件之间均铰接有调节转板,所述调节转板与防溅调节部件配合用于在火花防溅部件转动时控制火花防溅部件的转动角度。
在进一步的实施例中,所述火花防溅部件包括:
多个防溅内板,多个所述防溅内板均设于焊接机器人焊枪外侧,用于对焊接机器人焊抢进行防护,两个相邻的防溅内板之间可以互相连接,使得焊接机器人焊枪处于一面开口的多个防溅内板内被防护,优选的,本装置内防溅内板设有四个,使得焊接机器人焊枪处于四个防溅内板之间被防护;
多个第一固定板,与两个相邻的所述防溅内板相连接,用于连接防溅内板与连接盘,所述防溅内板与连接盘上均对应开设有第一固定孔,两个相邻的第一固定板靠近连接盘的一端连接有一个第一固定板,用于连接防溅内板与连接盘,优选的,第一固定板设有四个,可以将上述四个防溅内板相连接;
多个第一固定钉,分别对应设于多个第一固定孔内,用于固定防溅内板与连接盘,优选的,本装置中第一固定孔和第一固定钉均设有四个,四个第一固定钉对应设于四个第一固定孔内,可以通过第一固定板将防溅内板与连接盘固定,便于使用者对防溅内板和连接盘进行拆装;
多个防溅外板,分别对应铰接于多个所述防溅内板外侧,用于配合防溅内板对焊接机器人焊抢进行防护同时对焊接机器人焊枪工作时产生的焊接火花的飞散进行阻挡,多组所述防溅内板与防溅外板之间均连接有第一铰接件,多个防溅外板远离连接盘的一端均连接有弹性防碰撞板,优选的,防溅外板对应防溅内板设有四个,四个防溅外板对应铰接在四个防溅内板远离焊接机器人焊接的一面,使得防溅外板可以与防溅内板发生相对转动。
在进一步的实施例中,所述第一铰接件包括:
一对第二固定板,连接于所述防溅内板外侧,一对所述第二固定板与防溅内板上均对应开设有多个第二固定孔;
多个第二固定钉,分别对应设于多个第二固定孔内,用于固定第二固定板与防溅内板;
第一转柱,连接于一对所述第二固定钉之间,用于调节转板进行转动,第一转柱与调节转板之间可安装有扭簧,正常状态下扭簧带动防溅外板保持与防溅内板之间呈30~45度夹角,当焊枪工作时,防溅外板与焊接工件发生抵接,弹性防碰撞板可以避免防溅外板和焊接工件发生损坏,此时在抵接外力的作用下使得防溅外板在扭簧的带动下与防溅内板发生相对转动,同时在扭簧的作用下使得防溅外板与焊接工件持续抵接,从而使得多个防溅外板持续在焊枪外侧对焊接火花进行阻挡。
在进一步的实施例中,所述防溅调节部件包括:
调节板,所述调节板上对称连接有多个第三固定板,多个所述第三固定板与连接盘上均对应开设有第三固定孔,多个所述第三固定孔内均设有第三固定钉,用于固定调节板与连接盘,便于使用者对调节板与连接盘进行拆装;
调节槽,贯穿开设于所述调节板远离连接盘的一面;
调节滑块,滑动设于所述调节槽内,所述调节转板铰接于调节滑块与防溅外板之间,当防溅外板与防溅内板发生相对转动时,可以带动调节转板发生转动,同时带动调节滑块在调节槽移动。
在进一步的实施例中,所述防溅调节部件还包括:
第一磁块,连接于所述调节滑块靠近防溅内板的一端;
第二磁板,固定于所述调节板靠近防溅内板的一端,所述第二磁板与第一磁块相向磁极为异名磁极,用于相互吸引固定调节滑块与调节板,当焊枪闲置时,第二磁板与第一磁块相互吸引,使得第一磁块与第二磁板贴合,此时防溅内板与防溅外板相互平行,且防溅外板底端与焊枪方向一致,通过防溅内板与防溅外板配合可以将焊枪包围其中进行保护,进行防撞、防水以及防尘等保护。
在进一步的实施例中,所述防溅调节部件还包括:
导向滑柱,沿所述调节板延伸方向设于调节槽内,导向滑柱两端均与调节槽内壁固定连接;
滑孔,对应开设于所述第一磁块与调节滑块上且与导向滑柱相适配,所述第一磁块与调节滑块均通过滑孔与导向滑柱滑动连接;
回复弹簧,连接于所述调节滑块与调节槽内壁之间且设于导向滑柱外侧,用于带动调节滑块做回复运动,当焊枪闲置时,第二磁板与第一磁块相互吸引,同时在回复弹簧的压紧下使得第一磁块与第二磁板贴合,此时防溅内板与防溅外板相互平行,且防溅外板底端与焊枪方向一致,通过防溅内板与防溅外板配合可以将焊枪包围其中进行保护,进行防撞、防水以及防尘等保护。
在进一步的实施例中,所述防溅调节部件还包括:
一对移动槽,对称开设于所述调节滑块上;
两组导向滑轮,对应设置于一对所述移动槽内且与调节槽内壁滚动连接,用于配合调节滑块在调节槽内进行移动,可以配合调节滑块将滑动摩擦转为滚动摩擦,使得调节滑块可以更好的在调节槽内移动,提高调节滑块移动的灵敏性,保持防溅外板能第一时间随着焊枪的移动与焊接工件发生抵接时发生相对转动,使得防溅外板能持续在焊枪外侧对焊接火花进行阻挡以及持续对焊枪形成防护。
在进一步的实施例中,所述防溅调节部件还包括:
多个调节限位孔,对应开设于所述调节板与导向滑柱上,所述调节滑块上对应开设有第一限位孔;
调节限位栓,插设于所述第一限位孔与对应的调节限位孔内,用于固定调节滑块与调节板,当焊枪闲置时,或在焊接工件与防溅外板不会发生抵接碰撞,此时无需调节防溅外板与防溅内板的相对角度时,可以将调节限位栓插入第一限位孔与调节板和导向滑柱上对应的调节限位孔内,把调节滑块与调节滑块固定,从而固定防溅外板与防溅内板的相对角度,使得防溅内板与防溅外板不会相对转动,保持防溅外板能持续在焊枪外侧对焊接火花进行阻挡以及持续对焊枪形成防护。
有益效果
本发明涉及一种焊接机器人焊接火花防溅安全防护装置,通过在焊接机器人焊枪外侧设置火花防溅部件,可以对焊接产生的焊接火花进行阻挡,避免焊接火花四处飞溅造成相关设备的烫损,降低后续清洁的难度;同时在火花防溅部件上设置防溅调节部件,便于在焊枪闲置和工作过程中对火花防溅部件与焊接工件和焊枪的相对角度进行调节,使得火花防溅部件能持续在焊枪外侧对焊接火花进行阻挡以及持续对焊枪形成防护。
附图说明
图1为本发明整体结构的侧视图。
图2为本发明部分结构的爆炸图。
图3为本发明火花防溅部件的立体图。
图4为图3中A处的局部放大图。
图5为本发明防溅调节部件的爆炸图。
图6为本发明防溅调节部件另一视角的爆炸图。
图中各附图标记为:1.连接盘、2.火花防溅部件、201.防溅内板、202.第一固定板、203.第一固定钉、204.防溅外板、3.第一铰接件、301.第二固定板、302.第二固定钉、303.第一转柱、4.防溅调节部件、401.调节板、402.调节槽、403.调节滑块、404.第一磁块、405.回复弹簧、406.导向滑柱、407.滑孔、408.导向滑轮、409.调节限位孔、410.调节限位栓、411.第三固定板、412.第三固定钉、413.第二磁板、5.调节转板。
本发明的实施方式
在下文的描述中,给出了大量具体的细节以便提供对本发明更为彻底的理解。然而,对于本领域技术人员而言显而易见的是,本发明可以无需一个或多个这些细节而得以实施。在其他的例子中,为了避免与本发明发生混淆,对于本领域公知的一些技术特征未进行描述。
如图1-图6所示,本发明公开了一种焊接机器人焊接火花防溅安全防护装置。其中,一种焊接机器人焊接火花防溅安全防护装置包括连接盘1、火花防溅部件2和多组防溅调节部件4。
连接盘1用于连接焊接机器人机械臂。
如图1-图4所示,火花防溅部件2连接于连接盘1远离焊接机器人机械臂的一面,用于对焊接机器人焊抢进行防护同时对焊接机器人焊枪工作时产生的焊接火花的飞散进行阻挡。
其中,火花防溅部件2包括:
多个防溅内板201,多个防溅内板201均设于焊接机器人焊枪外侧,用于对焊接机器人焊抢进行防护,两个相邻的防溅内板201之间可以互相连接,使得焊接机器人焊枪处于一面开口的多个防溅内板201内被防护,优选的,本装置内防溅内板201设有四个,使得焊接机器人焊枪处于四个防溅内板201之间被防护。
多个第一固定板202,与两个相邻的防溅内板201相连接,用于连接防溅内板201与连接盘1,防溅内板201与连接盘1上均对应开设有第一固定孔,两个相邻的第一固定板202靠近连接盘1的一端连接有一个第一固定板202,用于连接防溅内板201与连接盘1,优选的,第一固定板202设有四个,可以将上述四个防溅内板201相连接。
多个第一固定钉203,分别对应设于多个第一固定孔内,用于固定防溅内板201与连接盘1,优选的,本装置中第一固定孔和第一固定钉203均设有四个,四个第一固定钉203对应设于四个第一固定孔内,可以通过第一固定板202将防溅内板201与连接盘1固定,便于使用者对防溅内板201和连接盘1进行拆装。
多个防溅外板204,分别对应铰接于多个防溅内板201外侧,用于配合防溅内板201对焊接机器人焊抢进行防护同时对焊接机器人焊枪工作时产生的焊接火花的飞散进行阻挡,多组防溅内板201与防溅外板204之间均连接有第一铰接件3,多个防溅外板204远离连接盘1的一端均连接有弹性防碰撞板,优选的,防溅外板204对应防溅内板201设有四个,四个防溅外板204对应铰接在四个防溅内板201远离焊接机器人焊接的一面,使得防溅外板204可以与防溅内板201发生相对转动。
使用时,将防溅内板201安装在连接盘1上,使得焊接机器人焊枪处于防溅内板201内,当焊枪闲置时,调整防溅内板201与防溅外板204的相对角度,使得防溅内板201与防溅外板204相互平行,且防溅外板204底端与焊枪方向一致,通过防溅内板201与防溅外板204将焊枪包围其中进行保护,防撞、防水以及防尘等,当焊枪工作时,再次调整防溅内板201与防溅外板204的相对角度,使得多个防溅外板204展开且在焊枪工作期间不会与焊接工件发生碰撞即可,此时多个防溅外板204包围在焊枪外侧,使得焊枪焊接时产生的火花只能在防溅外板204内飞溅或碰到防溅外板204之后落下,避免火花飞溅到车间到处的同时也可以避免火花飞溅到焊接机器人等设备上,保护设备不受损坏的同时减轻后期的清洁难度。
如图3-图4所示,第一铰接件3包括:
其中,一对第二固定板301连接于防溅内板201外侧,一对第二固定板301与防溅内板201上均对应开设有多个第二固定孔。
多个第二固定钉302分别对应设于多个第二固定孔内,用于固定第二固定板301与防溅内板201。
第一转柱303,连接于一对第二固定钉302之间,用于调节转板5进行转动,第一转柱303与调节转板5之间可安装有扭簧,正常状态下扭簧带动防溅外板204保持与防溅内板201之间呈30~45度夹角,当焊枪工作时,防溅外板204与焊接工件发生抵接,弹性防碰撞板可以避免防溅外板204和焊接工件发生损坏,此时在抵接外力的作用下使得防溅外板204在扭簧的带动下与防溅内板201发生相对转动,同时在扭簧的作用下使得防溅外板204与焊接工件持续抵接,从而使得多个防溅外板204持续在焊枪外侧对焊接火花进行阻挡。
如图1-图6所示,多组防溅调节部件4分别对应设于火花防溅部件2一侧,火花防溅部件2与多组防溅调节部件4之间均铰接有调节转板5,调节转板5与防溅调节部件4配合用于在火花防溅部件2转动时控制火花防溅部件2的转动角度。
其中,防溅调节部件4包括:
调节板401,调节板401上对称连接有多个第三固定板411,多个第三固定板411与连接盘1上均对应开设有第三固定孔,多个第三固定孔内均设有第三固定钉412,用于固定调节板401与连接盘1,便于使用者对调节板401与连接盘1进行拆装。
调节槽402,贯穿开设于调节板401远离连接盘1的一面。
调节滑块403,滑动设于调节槽402内,调节转板5铰接于调节滑块403与防溅外板204之间,当防溅外板204与防溅内板201发生相对转动时,可以带动调节转板5发生转动,同时带动调节滑块403在调节槽402移动。
如图5-图6所示,防溅调节部件4还包括:
第一磁块404,连接于调节滑块403靠近防溅内板201的一端。
第二磁板413,固定于调节板401靠近防溅内板201的一端,第二磁板413与第一磁块404相向磁极为异名磁极,用于相互吸引固定调节滑块403与调节板401,当焊枪闲置时,第二磁板413与第一磁块404相互吸引,使得第一磁块404与第二磁板413贴合,此时防溅内板201与防溅外板204相互平行,且防溅外板204底端与焊枪方向一致,通过防溅内板201与防溅外板204配合可以将焊枪包围其中进行保护,进行防撞、防水以及防尘等保护。
此外,防溅调节部件4还包括:
导向滑柱406,沿调节板401延伸方向设于调节槽402内,导向滑柱406两端均与调节槽402内壁固定连接。
滑孔407,对应开设于第一磁块404与调节滑块403上且与导向滑柱406相适配,第一磁块404与调节滑块403均通过滑孔407与导向滑柱406滑动连接。
回复弹簧405,连接于调节滑块403与调节槽402内壁之间且设于导向滑柱406外侧,用于带动调节滑块403做回复运动。
当焊枪闲置时,第二磁板413与第一磁块404相互吸引,同时在回复弹簧405的压紧下使得第一磁块404与第二磁板413贴合,此时防溅内板201与防溅外板204相互平行,且防溅外板204底端与焊枪方向一致,通过防溅内板201与防溅外板204配合可以将焊枪包围其中进行保护,进行防撞、防水以及防尘等保护。
当焊枪工作时,防溅外板204与焊接工件发生抵接,此时在抵接外力的作用下使得防溅外板204与防溅内板201发生相对转动,同时防溅外板204带动调节转板5转动,调节转板5带动调节滑块403在调节槽402进行移动,使得导向滑柱406发生形变,在导向滑柱406与扭簧的配合下可以对抵接碰撞外力进行缓冲分压,保护焊接工件和防溅外板204等相关部件,并且在导向滑柱406与扭簧的作用下,使得防溅外板204持续包围在焊枪外侧,保持多个防溅外板204对焊接火花的阻挡,以及在焊接完成之后,在导向滑柱406与扭簧的作用下可以带动防溅外板204与防溅内板201再次发生相对转动,使得防溅外板204能第一时间随着焊枪的移动调整与焊枪的相对角度和包围情况,从而使得多个防溅外板204持续在焊枪外侧对焊接火花进行阻挡,避免火花飞溅到车间到处的同时也可以避免火花飞溅到焊接机器人等设备上,保护设备不受损坏的同时减轻后期的清洁难度,同时也可以持续对焊枪形成防护。
如图5-图6所示,防溅调节部件4还包括:
一对移动槽,对称开设于调节滑块403上。
两组导向滑轮408,对应设置于一对移动槽内且与调节槽402内壁滚动连接,用于配合调节滑块403在调节槽402内进行移动,可以配合调节滑块403将滑动摩擦转为滚动摩擦,使得调节滑块403可以更好的在调节槽402内移动,提高调节滑块403移动的灵敏性,保持防溅外板204能第一时间随着焊枪的移动与焊接工件发生抵接时发生相对转动,使得防溅外板204能持续在焊枪外侧对焊接火花进行阻挡以及持续对焊枪形成防护。
同时,防溅调节部件4还包括:
多个调节限位孔409,对应开设于调节板401与导向滑柱406上,调节滑块403上对应开设有第一限位孔。
调节限位栓410,插设于第一限位孔与对应的调节限位孔409内,用于固定调节滑块403与调节板401,当焊枪闲置时,或在焊接工件与防溅外板204不会发生抵接碰撞,此时无需调节防溅外板204与防溅内板201的相对角度时,可以将调节限位栓410插入第一限位孔与调节板401和导向滑柱406上对应的调节限位孔409内,把调节滑块403与调节滑块403固定,从而固定防溅外板204与防溅内板201的相对角度,使得防溅内板201与防溅外板204不会相对转动,保持防溅外板204能持续在焊枪外侧对焊接火花进行阻挡以及持续对焊枪形成防护。
基于上述技术方案,本发明具体的工作过程如下:将本装置通过连接盘1与焊接机器人末端法兰相连接,当焊枪闲置时,第二磁板413与第一磁块404相互吸引,同时在回复弹簧405的压紧下使得第一磁块404与第二磁板413贴合,此时防溅内板201与防溅外板204相互平行,且防溅外板204底端与焊枪方向一致,通过防溅内板201与防溅外板204配合可以将焊枪包围其中进行保护,进行防撞、防水以及防尘等保护。
当焊枪工作时,防溅外板204与焊接工件发生抵接,此时在抵接外力的作用下使得防溅外板204与防溅内板201发生相对转动,同时防溅外板204带动调节转板5转动,调节转板5带动调节滑块403在调节槽402进行移动,使得导向滑柱406发生形变,在导向滑柱406与扭簧的配合下可以对抵接碰撞外力进行缓冲分压,保护焊接工件和防溅外板204等相关部件,并且在导向滑柱406与扭簧的作用下,使得防溅外板204持续包围在焊枪外侧,保持多个防溅外板204对焊接火花的阻挡,以及在焊接完成之后,在导向滑柱406与扭簧的作用下可以带动防溅外板204与防溅内板201再次发生相对转动,使得防溅外板204能第一时间随着焊枪的移动调整与焊枪的相对角度和包围情况,从而使得多个防溅外板204持续在焊枪外侧对焊接火花进行阻挡,避免火花飞溅到车间到处的同时也可以避免火花飞溅到焊接机器人等设备上,保护设备不受损坏的同时减轻后期的清洁难度,同时也可以持续对焊枪形成防护。
如上,尽管参照特定的优选实施例已经表示和表述了本发明,但其不得解释为对本发明自身的限制。在不脱离所附权利要求定义的本发明的精神和范围前提下,可对其在形式上和细节上做出各种变化。

Claims (9)

  1. 一种焊接机器人焊接火花防溅安全防护装置,其特征在于,包括:
    连接盘,用于连接焊接机器人机械臂;
    火花防溅部件,连接于所述连接盘远离焊接机器人机械臂的一面,用于对焊接机器人焊抢进行防护同时对焊接机器人焊枪工作时产生的焊接火花的飞散进行阻挡;
    多组防溅调节部件,分别对应设于火花防溅部件一侧,所述火花防溅部件与多组防溅调节部件之间均铰接有调节转板,所述调节转板与防溅调节部件配合用于在火花防溅部件转动时控制火花防溅部件的转动角度。
  2. 根据权利要求1所述的一种焊接机器人焊接火花防溅安全防护装置,其特征在于:所述火花防溅部件包括:
    多个防溅内板,多个所述防溅内板均设于焊接机器人焊枪外侧,用于对焊接机器人焊抢进行防护;
    多个防溅外板,分别对应铰接于多个所述防溅内板外侧,用于配合防溅内板对焊接机器人焊抢进行防护同时对焊接机器人焊枪工作时产生的焊接火花的飞散进行阻挡,多组所述防溅内板与防溅外板之间均连接有第一铰接件。
  3. 根据权利要求2所述的一种焊接机器人焊接火花防溅安全防护装置,其特征在于:所述火花防溅部件还包括:
    多个第一固定板,与两个相邻的所述防溅内板相连接,用于连接防溅内板与连接盘,所述防溅内板与连接盘上均对应开设有第一固定孔;
    多个第一固定钉,分别对应设于多个第一固定孔内,用于固定防溅内板与连接盘。
  4. 根据权利要求3所述的一种焊接机器人焊接火花防溅安全防护装置,其特征在于:所述第一铰接件包括:
    一对第二固定板,连接于所述防溅内板外侧,一对所述第二固定板与防溅内板上均对应开设有多个第二固定孔;
    多个第二固定钉,分别对应设于多个第二固定孔内,用于固定第二固定板与防溅内板;
    第一转柱,连接于一对所述第二固定钉之间,用于调节转板进行转动。
  5. 根据权利要求1所述的一种焊接机器人焊接火花防溅安全防护装置,其特征在于:所述防溅调节部件包括:
    调节板,所述调节板上对称连接有多个第三固定板,多个所述第三固定板与连接盘上均对应开设有第三固定孔,多个所述第三固定孔内均设有第三固定钉,用于固定调节板与连接盘;
    调节槽,贯穿开设于所述调节板远离连接盘的一面;
    调节滑块,滑动设于所述调节槽内,所述调节转板铰接于调节滑块与防溅外板之间。
  6. 根据权利要求5所述的一种焊接机器人焊接火花防溅安全防护装置,其特征在于:所述防溅调节部件还包括:
    第一磁块,连接于所述调节滑块靠近防溅内板的一端;
    第二磁板,固定于所述调节板靠近防溅内板的一端,所述第二磁板与第一磁块相向磁极为异名磁极,用于相互吸引固定调节滑块与调节板。
  7. 根据权利要求5所述的一种焊接机器人焊接火花防溅安全防护装置,其特征在于:所述防溅调节部件还包括:
    导向滑柱,沿所述调节板延伸方向设于调节槽内;
    滑孔,对应开设于第一磁块与调节滑块上且与导向滑柱相适配,所述第一磁块与调节滑块均通过滑孔与导向滑柱滑动连接;
    回复弹簧,连接于所述调节滑块与调节槽内壁之间且设于导向滑柱外侧,用于带动调节滑块做回复运动。
  8. 根据权利要求5所述的一种焊接机器人焊接火花防溅安全防护装置,其特征在于:所述防溅调节部件还包括:
    一对移动槽,对称开设于所述调节滑块上;
    两组导向滑轮,对应设置于一对所述移动槽内且与调节槽内壁滚动连接,用于配合调节滑块在调节槽内进行移动。
  9. 根据权利要求5所述的一种焊接机器人焊接火花防溅安全防护装置,其特征在于:所述防溅调节部件还包括:
    多个调节限位孔,对应开设于所述调节板与导向滑柱上,所述调节滑块上对应开设有第一限位孔;
    调节限位栓,插设于所述第一限位孔与对应的调节限位孔内,用于固定调节滑块与调节板。
PCT/CN2021/126077 2021-09-08 2021-10-25 一种焊接机器人焊接火花防溅安全防护装置 WO2023035373A1 (zh)

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