CN114310602B - Auxiliary device for cleaning surface of welding wire - Google Patents

Auxiliary device for cleaning surface of welding wire Download PDF

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Publication number
CN114310602B
CN114310602B CN202111457558.9A CN202111457558A CN114310602B CN 114310602 B CN114310602 B CN 114310602B CN 202111457558 A CN202111457558 A CN 202111457558A CN 114310602 B CN114310602 B CN 114310602B
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sliding
door
welding wire
shaped
frame
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CN202111457558.9A
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CN114310602A (en
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王泽琪
张琳吝
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Dezhou Vocational and Technical College
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Dezhou Vocational and Technical College
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

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Abstract

The invention relates to the field of welding wire surface cleaning, in particular to an auxiliary device for welding wire surface cleaning. The utility model provides a welding wire auxiliary device for surface cleaning, includes clutch blocks, triangle lug and rotates the piece, be provided with on the clutch blocks and rotate the piece, rotate and be provided with a plurality of triangle lugs from a left side to the right side on the piece. Still include arc bullet pole and articulated seat, the upside of clutch blocks is provided with articulated seat, rotates the piece and articulates on articulated seat, and fixedly connected with arc bullet pole on the articulated seat, the lower extreme fixed connection of arc bullet pole rotate on the piece. Still include door-shaped frame, pull head and lift post, the vertical sliding connection of clutch blocks is on the door-shaped frame, and the upside fixedly connected with lift post of clutch blocks, the vertical sliding connection of lift post have cup jointed compression spring on the upper portion of door-shaped frame, and compression spring is located between door-shaped frame and the clutch blocks, the upper end fixedly connected with pull head of lift post. The surface of the welding wire can be cleaned.

Description

Auxiliary device for cleaning surface of welding wire
Technical Field
The invention relates to the field of welding wire surface cleaning, in particular to an auxiliary device for welding wire surface cleaning.
Background
The welding wire is used as a filler metal or as a metal wire welding material for electrical conduction at the same time. In gas welding and gas tungsten arc welding, a welding wire is used as a filler metal; in submerged arc welding, electroslag welding and other gas metal arc welding, the wire is both a filler metal and a conductive electrode. If the surface of the welding wire contains too much impurities, blowholes exist after welding or the welding quality is affected. The surface of the conventional welding wire is not easy to clean.
Disclosure of Invention
In order to overcome the defects of the prior art, the invention provides the auxiliary device for cleaning the surface of the welding wire, and the auxiliary device has the beneficial effect that the surface of the welding wire can be cleaned.
The utility model provides a welding wire auxiliary device for surface cleaning, includes clutch blocks, triangle lug and rotates the piece, be provided with on the clutch blocks and rotate the piece, rotate and be provided with a plurality of triangle lugs from a left side to the right side on the piece.
The utility model provides an auxiliary device for welding wire surface cleaning still includes arc elastic rod and articulated seat, and the upside of clutch blocks is provided with articulated seat, rotates the piece and articulates on articulated seat, and fixedly connected with arc elastic rod on the articulated seat, the lower extreme fixed connection of arc elastic rod rotate on the piece.
The utility model provides a welding wire is auxiliary device for surface cleaning still includes door-shaped frame, pull head and lift post, and the vertical sliding connection of clutch blocks is on the door-shaped frame, and the upside fixedly connected with lift post of clutch blocks, the vertical sliding connection of lift post have cup jointed compression spring on the upper portion of door-shaped frame, and compression spring is located between door-shaped frame and the clutch blocks, the upper end fixedly connected with pull head of lift post.
The utility model provides a welding wire is auxiliary device for surface cleaning still includes flat board, semicircle strip groove and a hole, is provided with two semicircle strip grooves on the flat board, and the both sides in every semicircle strip groove all are provided with a hole, and the door-shaped frame is inserted on the strip hole that corresponds semicircle strip groove both sides, and the clutch blocks is located the top in semicircle strip groove.
Drawings
The invention is described in further detail below with reference to the accompanying drawings and specific embodiments.
FIG. 1 is a first schematic structural view of an auxiliary device for cleaning the surface of a welding wire;
FIG. 2 is a second schematic view of the auxiliary device for cleaning the surface of the welding wire;
FIG. 3 is a first schematic structural diagram of a flat panel;
FIG. 4 is a second schematic view of a flat panel;
FIG. 5 is a first structural view of the door-shaped frame and the sliding block;
FIG. 6 is a second schematic structural view of the door frame and the slider;
FIG. 7 is a first view illustrating a first structure of a chassis;
FIG. 8 is a second schematic structural view of the chassis;
FIG. 9 is a first structural view of an L-shaped frame;
fig. 10 is a structural schematic diagram of an L-shaped frame.
In the figure: a plate 101; a semicircular groove 102; a slide rail 103; a bar hole 104; a round bar 105;
a gantry 201; a slider 202; a lifting column 203; a friction block 204; a catch pin 205; a triangular bump 206; a rotating member 207; an arc-shaped elastic rod 208; a hinge mount 209;
a slider 301; a rack I302;
a chassis 401; a nose bar 402; a rack II403; a column 404;
an L-shaped frame 501; a folding frame 502; a pulley gear 503; a rotating shaft 504; an axial rib 505; a retainer ring 506; a hand screw 507; a clamp block 508; a U-shaped member 509.
Detailed Description
Referring to fig. 1-10, the problem to be solved is to grind the surface of the welding wire, clean the surface of the welding wire, and,
because the auxiliary device for cleaning the surface of the welding wire comprises a friction block 204, a triangular lug 206 and a rotating piece 207, the rotating piece 207 is arranged on the friction block 204, the triangular lugs 206 are arranged on the rotating piece 207 from left to right, and the friction block 204 is pressed on the welding wire to enable the friction block 204 to move along the axis of the welding wire in the reverse direction, so that the surface of the welding wire is ground, the surface of the welding wire is cleaned, the triangular lugs 206 on the rotating piece 207 can also be pressed on the welding wire, and after the triangular lugs 206 move relative to the welding wire along with the friction block 204, convex sundries on the surface of the welding wire are scraped.
In certain embodiments, referring to fig. 1-10, the problem addressed is that after friction block 204 is pressed against the wire, rotating member 207 can also clean the wire by pressing against the wire with a spring force, and,
because welding wire surface cleaning uses auxiliary device still includes arc elastic rod 208 and articulated seat 209, articulated seat 209 sets up the upside at clutch blocks 204, it articulates on articulated seat 209 to rotate piece 207, the upper portion fixedly connected with arc elastic rod 208 of articulated seat 209, the other end of arc elastic rod 208 is fixed on rotating piece 207, arc elastic rod 208 gives the power of rotating piece 207 pivoted downwards, after clutch blocks 204 pressed to the welding wire, it also can clear up the welding wire through elasticity pressure on the welding wire to rotate piece 207.
In certain embodiments, referring to fig. 1-10, the problem addressed in the figures is to enable friction block 204 to be pressed against the wire by a spring force, and,
because welding wire is auxiliary device for surface cleaning still includes door-shaped frame 201, pull head 202 and lift post 203, the clutch blocks 204 sets up on door-shaped frame 201, lift post 203 fixed connection is on the upside of clutch blocks 204, the vertical sliding connection of lift post 203 is on door-shaped frame 201, compression spring cup joints on lift post 203, compression spring sets up between door-shaped frame 201 and clutch blocks 204, the upper end fixed connection of lift post 203 has pull head 202, and then the downward power of clutch blocks 204 is given to the compression spring on the lift post 203, make clutch blocks 204 can press on the welding wire through elasticity, pull head 202 keeps off the upside at door-shaped frame 201, and then prevent that lift post 203 from breaking away from door-shaped frame 201.
In certain embodiments, referring to fig. 1-10, the problem addressed is to move friction block 204 back and forth to provide abrasive cleaning of the wire, and,
the auxiliary device for cleaning the surface of the welding wire further comprises a flat plate 101, semicircular grooves 102 and strip holes 104, the two semicircular grooves 102 are formed in the flat plate 101, the strip holes 104 are formed in the two sides of each semicircular groove 102, the door-shaped frame 201 is inserted into the strip holes 104 in the two sides of the corresponding semicircular groove 102, the friction block 204 is located above the corresponding semicircular groove 102, the semicircular grooves 102 are used for placing the welding wire to prevent the welding wire from rolling randomly, then the friction block 204 is controlled to contact with or leave the welding wire in a mode that the door-shaped frame 201 moves up and down in the two strip holes 104, and the friction block 204 is driven to move back and forth to polish and clean the welding wire in a mode that the door-shaped frame 201 moves back and forth on the two strip holes 104.
In certain embodiments, referring to fig. 1-10, the problem addressed is that of driving friction block 204 back and forth to provide abrasive cleaning of the wire, and,
the auxiliary device for cleaning the surface of the welding wire further comprises slide rails 103, stop pins 205 and slide blocks 301, the two slide rails 103 are arranged on the lower side of the flat plate 101, the two slide rails 103 correspond to the two semicircular grooves 102 respectively, the lower side of each door-shaped frame 201 is vertically and slidably connected with one slide block 301, the slide blocks 301 are slidably connected to the corresponding slide rails 103, the stop pins 205 are arranged at the lower ends of the door-shaped frames 201, the stop pins 205 are stopped at the lower sides of the slide blocks 301 to prevent the door-shaped frames 201 and the slide blocks 301 from being separated, the slide blocks 301 can drive the door-shaped frames 201 to move back and forth along the slide rails 103, the friction blocks 204 are driven to move back and forth to polish and clean the welding wire, the door-shaped frames 201 can only vertically slide on the slide blocks 301, and the door-shaped frames 201 are prevented from being inclined.
In certain embodiments, referring to fig. 1-10, the problem addressed in the figures is that of in turn driving the gantry 201 back and forth, and,
because welding wire is auxiliary device for surface cleaning still includes rack I302, chassis 401 and stand 404, two equal fixed connection of stand 404 are on chassis 401, dull and stereotyped 101 sets up between the upper portion of two stand 404, two rack I302 set up respectively on two slider 301, be provided with two gears through servo motor drive on the chassis 401, two rack I302 respectively with two gear engagement transmission, two stand 404 support dull and stereotyped 101, can drive slider 301 and slide along slide rail 103 back and forth when rack I302 that corresponds through servo motor drive's gear drive slides back and forth, and then drive portal frame 201 back-and-forth movement.
In certain embodiments, referring to fig. 1-10, the problem addressed in the figures is driving friction block 204 toward or away from the wire, and,
because welding wire is auxiliary device for surface cleaning still includes round bar 105, all there is round bar 105 sliding connection in the front and back direction on two door shape framves 201, two round bar 105 all go up and down through cylinder I drive, and then can drive corresponding door shape frame 201 and reciprocate when cylinder I drive round bar 105 goes up and down, and then drive friction block 204 and press to the welding wire or leave the welding wire, door shape frame 201 is more downstream, the degree that compression spring compressed on the lift post 203 is bigger, and then the power that friction block 204 pressed on the welding wire is bigger, and then the clean dynamics of polishing of friction block 204 at this moment is bigger.
In certain embodiments, referring to fig. 1-10, the problem addressed in the figures is abrasive cleaning of different locations of the wire periphery, and,
because welding wire surface cleaning uses auxiliary device still includes L shape frame 501, roll over frame 502, pivot 504, hand screw 507, clamp piece 508 and U-shaped spare 509, two L shape frames 501 are respectively in front and back direction sliding connection on two stands 404, threaded connection has the screw on the stand 404, the screw is fixed L shape frame 501 on stand 404, pivot 504 rotates the rear portion of connecting at L shape frame 501, roll over frame 502 sets up the front side at pivot 504, the front portion of roll over frame 502 is provided with U-shaped spare 509, a plurality of U-shaped spares 509 are located the rear of a plurality of semicircle strip grooves 102 respectively, clamp piece 508 sliding connection is on U-shaped spare 509, threaded connection has hand screw 507 on U-shaped spare 509, the tip of hand screw 507 is pressed on clamp piece 508. After the welding wire is placed on the semicircular groove 102, the rear part of the welding wire is placed between the clamping block 508 and the U-shaped part 509, then the hand screw 507 is rotated to clamp the welding wire between the clamping block 508 and the U-shaped part 509, at this time, the welding wire can be driven to rotate by taking the axis of the welding wire as the axis through the rotating shaft 504, and further different positions of the periphery of the welding wire are polished and cleaned, the L-shaped frame 501 can move back and forth on the upright column 404 to further drive the U-shaped part 509 and the welding wire to move back and forth, the front and rear positions of the welding wire are adjusted, and different front and rear positions of the welding wire are polished and cleaned.
The auxiliary device for cleaning the surface of the welding wire further comprises a convex rod 402, a rack II403, a sliding gear 503, an axial rib 505 and stop rings 506, wherein the axial rib 505 is arranged at the rear part of the rotating shaft 504, the rotating shaft 504 and the axial rib 505 are connected with the sliding gear 503 in a sliding manner, two stop rings 506 are arranged on the periphery of the sliding gear 503, the convex rod 402 is arranged at the rear part of the bottom frame 401, the rack II403 is connected to the convex rod 402 in a sliding manner, the rack II403 is driven to slide by an air cylinder II, a plurality of sliding gears 503 are in meshing transmission with the rack II403, as the two stop rings 506 on each sliding gear 503 are respectively arranged at two sides of the rack II403, the plurality of sliding gears 503 cannot be disengaged from the rack II, when the rack II403 is driven by the air cylinder II to slide left and right, the rack II403 drives the plurality of sliding gears 503 and the rotating shaft 504 to rotate, and further simultaneously drives the plurality of welding wires to rotate around the axes thereof, and further polish and clean different positions of the periphery of the welding wire; when the L-shaped frame 501 moves back and forth, the plurality of shafts 504 and the axial ribs 505 slide back and forth relative to the corresponding sliding gears 503, and the plurality of sliding gears 503 are still maintained at the position of meshing with the rack II 403.

Claims (3)

1. An auxiliary device for cleaning the surface of welding wire, comprising a friction block (204), a triangular lug (206) and a rotating piece (207), characterized in that: a rotating piece (207) is arranged on the friction block (204), and a plurality of triangular convex blocks (206) are arranged on the rotating piece (207) from left to right;
the friction block is characterized by further comprising an arc-shaped elastic rod (208) and a hinged seat (209), the hinged seat (209) is arranged on the upper side of the friction block (204), the rotating piece (207) is hinged to the hinged seat (209), the arc-shaped elastic rod (208) is fixedly connected to the hinged seat (209), and the lower end of the arc-shaped elastic rod (208) is fixedly connected to the rotating piece (207);
the sliding device is characterized by further comprising a door-shaped frame (201), a pull head (202) and a lifting column (203), wherein a friction block (204) is vertically and slidably connected to the door-shaped frame (201), the lifting column (203) is fixedly connected to the upper side of the friction block (204), the lifting column (203) is vertically and slidably connected to the upper portion of the door-shaped frame (201), a compression spring is sleeved on the lifting column (203), the compression spring is located between the door-shaped frame (201) and the friction block (204), and the upper end of the lifting column (203) is fixedly connected with the pull head (202);
the novel door-shaped frame is characterized by further comprising a flat plate (101), semicircular strip grooves (102) and strip holes (104), wherein the flat plate (101) is provided with the two semicircular strip grooves (102), the two sides of each semicircular strip groove (102) are respectively provided with the strip hole (104), the door-shaped frame (201) is inserted into the strip holes (104) on the two sides of the corresponding semicircular strip groove (102), and the friction block (204) is positioned above the semicircular strip grooves (102);
the sliding plate is characterized by further comprising sliding rails (103), stop pins (205) and sliding blocks (301), wherein the two sliding rails (103) are arranged on the lower side of the flat plate (101), the two sliding rails (103) correspond to the two semicircular grooves (102) respectively, the lower side of each door-shaped frame (201) is vertically and slidably connected to one sliding block (301), the sliding blocks (301) are slidably connected to the corresponding sliding rails (103) in the front-back direction, the stop pins (205) are fixedly connected to the lower parts of the door-shaped frames (201), and the stop pins (205) stop at the lower sides of the sliding blocks (301);
the plate type vibration isolation device is characterized by further comprising a rack I (302), a bottom frame (401) and upright posts (404), wherein the two upright posts (404) are fixedly connected to the bottom frame (401), the rear part of the flat plate (101) is fixedly connected to the upper parts of the two upright posts (404), a rack I (302) is arranged on each sliding block (301), two gears driven by a servo motor are arranged on the bottom frame (401), and the two gears are respectively in meshing transmission with the two racks I (302);
the lifting device is characterized by further comprising round rods (105), the round rods (105) are connected to the two door-shaped frames (201) in a sliding mode in the front-back direction, and the two round rods (105) are driven to lift through a cylinder I;
still include L shape frame (501), roll over frame (502), pivot (504), hand screw (507), clamp splice (508) and U-shaped piece (509), all there is L shape frame (501) on front and back direction sliding connection on every stand (404), threaded connection has the screw on stand (404), the screw is pressed on L shape frame (501) and then fixes L shape frame (501) on stand (404), the rear portion of L shape frame (501) is rotated and is connected with pivot (504), the front side fixedly connected with of pivot (504) rolls over frame (502), the anterior fixedly connected with U-shaped piece (509) of rolling over frame (502), a plurality of U-shaped pieces (509) are located the rear portion of a plurality of semicircle strip grooves (102) respectively, sliding connection has clamp splice (508) on U-shaped piece (509), threaded connection has hand screw (507) on U-shaped piece (509), the tip of hand screw (507) is pressed on clamp splice (508).
2. The auxiliary device for cleaning the surface of the welding wire according to claim 1, wherein: the novel gear box is characterized by further comprising a sliding gear (503), an axial rib (505) and a retaining ring (506), wherein the axial rib (505) is arranged at the rear part of the rotating shaft (504), the sliding gear (503) is connected to the rotating shaft (504) and the axial rib (505) in a sliding mode, and the two retaining rings (506) are arranged on the periphery of the sliding gear (503).
3. The auxiliary device for cleaning the surface of the welding wire according to claim 2, wherein: the novel chassis is characterized by further comprising a convex rod (402) and a rack II (403), the convex rod (402) is fixedly connected to the rear portion of the chassis (401), the convex rod (402) is connected with the rack II (403) in a sliding mode, the rack II (403) is driven to slide through a cylinder II, the rack II (403) is in meshed transmission with a plurality of sliding gears (503), and two retaining rings (506) on each sliding gear (503) are located on two sides of the rack II (403) respectively.
CN202111457558.9A 2021-12-02 2021-12-02 Auxiliary device for cleaning surface of welding wire Active CN114310602B (en)

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CN202111457558.9A CN114310602B (en) 2021-12-02 2021-12-02 Auxiliary device for cleaning surface of welding wire

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CN114310602B true CN114310602B (en) 2023-04-07

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Publication number Priority date Publication date Assignee Title
CN105171570A (en) * 2015-10-08 2015-12-23 张国民 Portable flat-grinding machine with magnetic base
CN213858139U (en) * 2020-10-29 2021-08-03 大连富华运腾重工有限公司 Mechanical fixture convenient to both sides remove

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