CN210524102U - Carbon dioxide arc welding equipment support - Google Patents

Carbon dioxide arc welding equipment support Download PDF

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Publication number
CN210524102U
CN210524102U CN201920497409.7U CN201920497409U CN210524102U CN 210524102 U CN210524102 U CN 210524102U CN 201920497409 U CN201920497409 U CN 201920497409U CN 210524102 U CN210524102 U CN 210524102U
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CN
China
Prior art keywords
carbon dioxide
horizontal cross
winding drum
hose
arc welding
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Expired - Fee Related
Application number
CN201920497409.7U
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Chinese (zh)
Inventor
程海欧
刘爽
周丁丁
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CCCC SHB First Engineering Co Ltd
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CCCC SHB First Engineering Co Ltd
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Priority to CN201920497409.7U priority Critical patent/CN210524102U/en
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Publication of CN210524102U publication Critical patent/CN210524102U/en
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Abstract

The utility model relates to a carbon dioxide arc welding equipment support, include the perpendicular stand of being connected with the fixed perpendicular ground, through hinge means swing joint at perpendicular stand top and can follow perpendicular stand and carry out the horizontal pole of rotation, the one end of horizontal pole pass through the perpendicular swing joint of hinge means with perpendicular stand, the other end has the swing arm that carries out the oscillational motion along the tip of horizontal pole through hinged joint, equipment support mounting is outside the field, carbon dioxide jar is located the field outside can effectually guarantee the security in welding process simultaneously, provides convenience for the carbon dioxide welding, can not occupy the space in place simultaneously.

Description

Carbon dioxide arc welding equipment support
Technical Field
The invention relates to the field of capital construction, in particular to a carbon dioxide arc welding equipment support.
Background
At present, in the process of capital construction, carbon dioxide arc welding is required to be used for welding the steel bars in the capital construction, and is called carbon dioxide arc welding. The shielding gas is carbon dioxide (sometimes a mixed gas of CO2+ Ar) and is mainly used for manual welding. Due to the special influence of the thermophysical properties of carbon dioxide gas, when a conventional welding power supply is used, the molten metal at the end of a welding wire cannot form balanced axial free transition, and a short circuit and molten drop necking and bursting are generally adopted, so that the splashing is more compared with the free transition of MIG (metal-inert gas) welding. If a high-quality welding machine is adopted, the parameters are selected properly, a stable welding process can be obtained, and splashing is reduced to the minimum degree. Because the used protective gas is low in price, the weld joint is well formed during short-circuit transition, and a welding wire containing a deoxidizer is used, so that a quality welding joint without internal defects can be obtained. Therefore, the welding method becomes one of the most important welding methods for ferrous metal materials; but at present when using carbon dioxide arc welding, move the welding machine to carbon dioxide because of the too big will not stop in place, the steel of placing simultaneously in the place is too much, the weight of carbon dioxide welding machine is overweight to be removed inconveniently, and the carbon dioxide hose hangs on steel along with the carbon dioxide welding machine at the in-process that removes easily, causes very big inconvenience to using the carbon dioxide welding machine, and the carbon dioxide jar that carbon dioxide arc welded simultaneously also is located the place, has caused very big potential safety hazard for the welding.
Disclosure of Invention
In order to overcome the disadvantages of the prior art described above, it is an object of the present invention to provide a carbon dioxide arc welding equipment holder that facilitates the use of carbon dioxide arc welding in the field.
In order to achieve the purpose, the invention adopts the following technical scheme that the welding equipment support for the carbon dioxide arc welding comprises a vertical upright post fixedly and vertically connected with the ground, and a horizontal cross rod movably connected to the top of the vertical upright post through a hinge device and capable of rotating along the vertical upright post, wherein one end of the horizontal cross rod is vertically and movably connected with the vertical upright post through the hinge device, and the other end of the horizontal cross rod is connected with a swing arm capable of swinging up and down along the end part of the horizontal cross rod through a hinge;
the bottom of perpendicular stand be equipped with the jar body install bin that is used for installing the carbon dioxide jar of carbon dioxide arc welding, the carbon dioxide welding machine fixed mounting of carbon dioxide arc welding is in the tip of rocking arm, the carbon dioxide hose that carbon dioxide jar and carbon dioxide welding machine are connected passes the leading wheel of establishing on perpendicular stand, horizontal pole and rocking arm in proper order and twines the hose wind device of establishing fixedly on rocking arm and carbon dioxide welding machine intercommunication.
The middle part of perpendicular stand be equipped with along perpendicular stand and carry out the rotary device that rotates, rotary device and horizontal pole's middle part pass through bearing diagonal pole fixed connection, bearing diagonal pole on the fixed leading wheel that is equipped with the carbon dioxide hose and passes.
The middle part of the inclined supporting rod is connected with the middle part of the swing arm through a hydraulic cylinder, and two ends of the hydraulic cylinder are respectively movably connected with the inclined supporting rod and the hydraulic cylinder through hinges.
The bottom welding of perpendicular stand have with perpendicular stand perpendicular and with pre-buried bolt fixed connection's flange.
Hose wind device and swing arm fixed connection's connection base, the both ends of connection base fixed be equipped with the perpendicular bracing piece of being connected of base, the bracing piece between fixedly connected with fixed axle, the fixed axle on the cover be equipped with a winding drum, and this winding drum is concentric with the fixed axle, the fixed axle pass through connecting bearing with the terminal surface of winding drum and be connected, and this winding drum rotates round the fixed axle, the fixed axle in the winding drum on the cover be equipped with the clockwork spring, the inner circle tip and the fixed axle fixed connection of clockwork spring, the outer lane tip of clockwork spring and the inner wall fixed connection of winding drum, and when the winding drum is putting the hose, the clockwork spring contracts, when the winding drum is when receiving the hose, the clockwork spring need resume, drives the winding drum and carries out opposite direction rotation when putting the hose relatively, makes the winding drum receive.
Hinge means include and carry out welded last mounting panel and lower mounting panel with perpendicular stand, the cross-section of horizontal pole be square, and the tip of this horizontal pole inserts between last mounting panel and the lower mounting panel, and through the swivelling axis connection that passes last mounting panel, horizontal pole and lower mounting panel in proper order, horizontal pole rotate at the horizontal direction along the rotation axis.
The middle part of perpendicular stand be equipped with the annular groove, rotary device include with annular groove fixed connection's swivel bearing, swivel bearing's inner ring cover establish on the annular groove, and with the annular groove between be equipped with the rubber pad, swivel bearing's the fixed cover of outer ring be equipped with connecting sleeve, bearing diagonal bar and connecting sleeve fixed connection.
The included angle between the inclined supporting rod and the vertical upright post is 30-60 degrees.
The connecting base is provided with a connecting hole fixedly connected with the swing arm.
The invention has the beneficial effects that: the equipment support mounting is outside the field, carbon dioxide jar is located outside the field simultaneously can effectually guarantee the security in welding process, horizontal pole in the equipment support can rotate along the top of perpendicular stand, swing arm can wave along with the tip of horizontal pole, carbon dioxide welding machine fixed connection is on swing arm, can guarantee that the carbon dioxide welding machine can enter into the place when using, thereby can rotate the rotation along perpendicular stand simultaneously and guarantee that the carbon dioxide welding machine can reach the welding top, can guarantee through swing arm simultaneously that the carbon dioxide welding machine can reach the welded position, for carrying out the carbon dioxide welding and providing convenience, can not occupy the space in place simultaneously.
Drawings
FIG. 1 is a schematic diagram of a practical structure of the present invention;
FIG. 2 is an enlarged view of the structure of the portion A in FIG. 1;
FIG. 3 is an enlarged view of the structure of the portion B in FIG. 1;
fig. 4 is a schematic view showing the construction of the hose winding device according to the present invention.
Detailed Description
The invention is described in detail below with reference to the figures and examples.
In the description of the present invention, it is to be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the referenced devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and thus, are not to be construed as limiting the present invention.
The terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature; in the description of the present invention, "a plurality" means two or more unless otherwise specified.
Example 1
As shown in figure 1, a carbon dioxide arc welding equipment support comprises a vertical upright post 1 fixedly and vertically connected with the ground, wherein the vertical upright post 1 is used as a stress body of the whole support, engineering cylindrical steel is selected when the vertical upright post 1 is selected, the whole support can be stably supported, a horizontal cross rod 2 which is movably connected to the top of the vertical upright post 1 through a hinge device 9 and can rotate along the vertical upright post 1 is arranged, the horizontal cross rod 2 extends outwards relative to the vertical upright post, the vertical upright post can be fixedly arranged outside the field, the horizontal cross rod can extend into the field and can rotate along the vertical upright post, the horizontal cross rod can reach an arc above the field and takes the vertical upright post as the center of a circle and the horizontal cross rod as the radius, one end of the horizontal cross rod 2 is vertically and movably connected with the vertical upright post 1 through the hinge device 9, the other end is connected with a swing arm 3 which swings up and down along the end part of the horizontal cross bar 2 through a hinge; the swing arm 3 is hinged with the horizontal cross bar 2, so that the swing arm can perform folding motion along the horizontal cross bar, the radius of the horizontal cross bar 2 during rotation can be adjusted, and meanwhile, the end part of the swing arm can be folded downwards to reach any position of a field;
during specific installation, the bottom of the vertical upright post 1 is provided with a tank body installation box 6 for installing a carbon dioxide tank 13 for carbon dioxide arc welding, the tank body installation box 6 can be an open type installation frame or a sealed type cabinet body, the installation and the disassembly of the carbon dioxide tank are facilitated by adopting the installation frame, and the carbon dioxide tank can be protected by adopting the sealed type cabinet body so as to avoid damage;
the carbon dioxide welding machine 15 for carbon dioxide arc welding is fixedly arranged at the end part of the swing arm 3, the carbon dioxide welding machine is arranged at the end part of the swing arm 3 to ensure that the carbon dioxide welding machine can work at a welding position by rotating the horizontal cross rod and the swing arm 3, a carbon dioxide hose 14 connected with the carbon dioxide welding machine 15 and a carbon dioxide tank 13 sequentially pass through guide wheels 11 arranged on the vertical upright post 1, the horizontal cross rod 2 and the swing arm 3 and are wound on a hose winding device 4 fixedly arranged on the swing arm 3 to be communicated with the carbon dioxide welding machine 15, the carbon dioxide hose sequentially passes through the guide wheels to ensure that the carbon dioxide hose can be conveniently stretched and retracted when in use, friction cannot occur, and the hose winding device 4 can wind and pay off the carbon dioxide hose, the carbon dioxide hose can meet the length of the requirement along with the folding of the swing arm when in use; specifically, the carbon dioxide welding machine 15 is installed in an installation frame arranged on the swing arm 3, so that the carbon dioxide welding machine 15 can be conveniently installed and detached.
Specifically, during fixed installation, a connecting flange 5 which is perpendicular to the vertical upright 1 and is fixedly connected with an embedded bolt is welded at the bottom of the vertical upright 1, the fixed bolt is embedded outside the field, the connecting flange arranged below the vertical upright is fixedly connected with the fixed bolt, so that the vertical upright is fixedly installed on the ground, the swing arm 3 extends into the field through a horizontal cross rod, when welding is needed, the swing arm 3 rotates along the horizontal cross rod to enable the swing arm to fall or rise to reach an appointed position, and when the swing arm cannot reach the appointed position, a welding gun 16 on a carbon dioxide welding machine is taken down and stretched to the appointed position for welding;
in order to ensure that the horizontal cross bar can be stably supported, the middle part of the vertical upright post 1 is provided with a rotating device 8 which rotates along the vertical upright post 1, the middle parts of the rotating device 8 and the horizontal cross bar 2 are fixedly connected through an inclined supporting rod 7, and the inclined supporting rod 7 is fixedly provided with a guide wheel 11 through which a carbon dioxide hose 14 passes. The included angle between the inclined supporting rod 7 and the vertical upright post 1 is 30-60 degrees, the optimal included angle is 45 degrees, and the length of the inclined supporting rod 7 is proper while the inclined supporting rod can be supported better.
The inclined supporting rod, the horizontal cross rod and the vertical upright post form a triangle to ensure the stability of the support, the rotating device 8 and the hinge device 9 can be the same device, the horizontal cross rod is ensured to rotate, the inclined supporting rod can also rotate synchronously, and the rotation of the horizontal cross rod cannot be influenced.
Specifically, the rotating device 8 includes a rotating bearing 801, an outer ring of the rotating bearing 801 is fixedly sleeved with a connecting sleeve 802, as shown in fig. 2, the rotating device 8 is used for connecting the inclined supporting rod with the vertical column, an annular groove is arranged in the middle of the vertical column, an inner ring of the rotating bearing 801 is fixedly sleeved in the annular groove 101, in order to avoid friction between the inner ring of the rotating bearing 801 and the annular groove, a layer of rubber pad is arranged between the rotating bearing and the annular groove, and then the inclined supporting rod is fixedly connected to the connecting sleeve and the horizontal cross rod, so that the inclined supporting rod can reversely rotate when being supported; if a rotating device (a hinge device) is applied to the horizontal connecting rod and the vertical upright post, the inner ring of the rotating bearing is fixedly sleeved at the top of the horizontal upright post, and the horizontal cross rod is horizontally welded on the connecting sleeve to complete the connection of the horizontal cross rod and the vertical upright post.
Meanwhile, in order to ensure that the swing arm can support the carbon dioxide welding machine on the swing arm when swinging and rotating along the horizontal cross rod, the middle part of the inclined support rod 7 is connected with the middle part of the swing arm 3 through a hydraulic cylinder 10, and two ends of the hydraulic cylinder 10 are respectively movably connected with the inclined support rod 7 and the hydraulic cylinder 10 through hinges. The hydraulic cylinder is movably connected between the inclined supporting rod and the swing arm by a hinge, so that the angle of the hydraulic cylinder can be changed when the swing arm is pushed to rotate, and the end part of the hydraulic cylinder is not damaged due to hard connection between the hydraulic cylinder 10 and the inclined supporting rod or the swing arm; the hydraulic cylinder 10 can support the swing arm when the swing arm is static, and when the swing arm needs to swing and rotate, the hydraulic cylinder is used as a driving device to drive the swing arm to swing and rotate, so that manpower is saved.
The hinge device shown in fig. 3 is not the same as the rotating device, specifically, the horizontal cross bar does not need to rotate 360 degrees when rotating, and at this time, the hinge device 9 includes an upper mounting plate 901 and a lower mounting plate 902 welded to the vertical column 1, the cross section of the horizontal cross bar 2 is square, and the end of the horizontal cross bar 2 is inserted between the upper mounting plate 901 and the lower mounting plate 902 and connected by a rotating shaft 903 passing through the upper mounting plate 901, the horizontal cross bar 2 and the lower mounting plate 902 in sequence, and the horizontal cross bar 2 rotates in the horizontal direction along the rotating shaft 903; adopt this kind of hinge means can guarantee that horizontal pole satisfies need not 360 degrees rotatory requirements when stabilizing the pivoted, and this kind of rotatory mode is great at pivoted in-process frictional force, when need not to rotate, and stability can be better, rotation axis 903 upper and lower both ends fixedly connected with coupling nut with its fixed connection between the upper and lower mounting panel.
Example 2
In addition to embodiment 1, as shown in fig. 4, the hose winding device 4 is a connection base 407 fixedly connected with the swing arm 3, two ends of the connection base 407 are fixedly provided with support rods 408 perpendicularly connected with the connection base 407, a fixed shaft 403 is fixedly connected between the support rods 408, a winding drum 401 is sleeved on the fixed shaft 403, the winding drum 401 is concentric with the fixed shaft 403, the fixed shaft 403 is connected with an end surface of the winding drum 401 through a connection bearing 406, the winding drum 401 rotates around the fixed shaft 403, a clockwork spring 402 is sleeved on the fixed shaft 403 in the winding drum 401, an inner ring end of the clockwork spring 402 is fixedly connected with the fixed shaft 403, an outer ring end of the clockwork spring 402 is fixedly connected with an inner wall of the winding drum 401, when the winding drum 401 is used for unwinding the hose, the clockwork spring 402 needs to be recovered when the winding drum 401 is used for winding the hose, the winding drum 401 is driven to rotate in the opposite direction when the hose is put relatively, so that the winding drum 401 can take up the hose.
The connecting base 407 is provided with a connecting hole 409 fixedly connected with the swing arm 3.
The connecting hole 409 is used for fixedly connecting the hose winding device to the swing arm through a bolt, the spiral spring 402 is spiral, two ends of the fixing shaft 403 are fixedly connected to the supporting rods, the winding drum 401 relatively rotates with the fixing shaft 403, the fixing shaft 403 is connected with the winding drum 401 through the spiral spring, it is ensured that a pipeline between the carbon dioxide tank and the carbon dioxide welding machine can be changed when the swing arm rotates, the pipeline cannot be pulled, when the swing arm swings away from the vertical column, the pipeline on the winding drum 401 is paid off, the winding drum 401 is driven to rotate at the same time, the spiral spring 402 is in a tightening state, when the swing arm swings towards the end close to the vertical column, the spiral spring in the tightening state needs to be recovered and rotates in the opposite direction because no force is used for pulling the rotation of the winding drum 401, the extra hose is wound into the winding drum 401 again, and the winding function can be automatically realized by adopting the winding function of the spiral spring, so that convenience is provided for winding and unwinding the whole hose;
further, in order to prevent the hose from being wound on the winding drum in sequence in the winding process and prevent the hose wound in the winding process from being separated from the winding drum, thread lines for sequentially winding the hose are arranged on the outer side surface of the winding drum 401, and annular baffles 405 are fixedly connected to two sides of the winding drum 401.
To sum up, can see, at the in-process of in-service use, the equipment support installation outside the field, carbon dioxide jar is located the security that can effectually guarantee in welding process outside the field simultaneously, the horizontal pole in the equipment support can be followed the top of vertical column and rotated, swing arm can wave along with the tip of horizontal pole, carbon dioxide welding machine fixed connection is on swing arm, can guarantee that carbon dioxide welding machine can enter into the place when using, thereby can rotate the rotation along vertical column simultaneously and guarantee that carbon dioxide welding machine can reach the welding top, can guarantee through swing arm simultaneously that carbon dioxide welding machine can reach welded position, for providing convenience for carrying out carbon dioxide welding, can not occupy the space in place simultaneously.
The above embodiments are merely illustrative of the present invention, and should not be construed as limiting the scope of the present invention, and all designs identical or similar to the present invention are within the scope of the present invention.

Claims (9)

1. The carbon dioxide arc welding equipment support is characterized by comprising a vertical upright post (1) fixedly and vertically connected with the ground, and a horizontal cross rod (2) which is movably connected to the top of the vertical upright post (1) through a hinge device (9) and can rotate along the vertical upright post (1), wherein one end of the horizontal cross rod (2) is vertically and movably connected with the vertical upright post (1) through the hinge device (9), and the other end of the horizontal cross rod is connected with a swing arm (3) which swings up and down along the end part of the horizontal cross rod (2) through a hinge;
the bottom of perpendicular stand (1) be equipped with jar body install bin (6) that is used for installing carbon dioxide jar (13) that the carbon dioxide protection welded, carbon dioxide welding machine (15) fixed mounting that the carbon dioxide protection welded are in the tip of rocking arm (3), carbon dioxide hose (14) that carbon dioxide jar (13) and carbon dioxide welding machine (15) are connected pass in proper order and establish leading wheel (11) on perpendicular stand (1), horizontal cross bar (2) and rocking arm (3) and twine hose wind device (4) and carbon dioxide welding machine (15) intercommunication of establishing fixedly on rocking arm (3).
2. The carbon dioxide arc welding equipment support according to claim 1, characterized in that a rotating device (8) rotating along the vertical column (1) is arranged in the middle of the vertical column (1), the rotating device (8) is fixedly connected with the middle of the horizontal cross bar (2) through an inclined support rod (7), and a guide wheel (11) through which a carbon dioxide hose (14) passes is fixedly arranged on the inclined support rod (7).
3. The carbon dioxide arc welding equipment support according to claim 2, characterized in that the middle of the inclined support rod (7) is connected with the middle of the swing arm (3) through a hydraulic cylinder (10), and two ends of the hydraulic cylinder (10) are movably connected with the inclined support rod (7) and the hydraulic cylinder (10) through hinges respectively.
4. The carbon dioxide arc welding equipment support according to claim 1, characterized in that a connecting flange (5) which is perpendicular to the vertical column (1) and fixedly connected with embedded bolts is welded at the bottom of the vertical column (1).
5. The carbon dioxide arc welding equipment support according to claim 1, characterized in that the hose winding device (4) is fixedly connected with the swing arm (3) through a connecting base (407), two ends of the connecting base (407) are fixedly provided with support rods (408) vertically connected with the connecting base (407), a fixed shaft (403) is fixedly connected between the support rods (408), the fixed shaft (403) is sleeved with a winding drum (401), the winding drum (401) is concentric with the fixed shaft (403), the fixed shaft (403) is connected with the end surface of the winding drum (401) through a connecting bearing (406), the winding drum (401) rotates around the fixed shaft (403), the fixed shaft (403) in the winding drum (401) is sleeved with a spring (402), and the end part of the inner ring of the spring (402) is fixedly connected with the fixed shaft (403), the end part of the outer ring of the clockwork spring (402) is fixedly connected with the inner wall of the winding drum (401), the clockwork spring (402) contracts when the winding drum (401) unreels the hose, and the clockwork spring (402) needs to be restored when the winding drum (401) unreels the hose, so that the winding drum (401) is driven to rotate in the opposite direction when the hose is unreeled relatively, and the hose is reeled.
6. The stand for the welding equipment for the carbon dioxide arc welding according to claim 1, characterized in that the hinge means (9) comprises an upper mounting plate (901) and a lower mounting plate (902) which are welded to the vertical column (1), the cross section of the horizontal cross bar (2) is square, and the end of the horizontal cross bar (2) is inserted between the upper mounting plate (901) and the lower mounting plate (902) and connected by a rotating shaft (903) which passes through the upper mounting plate (901), the horizontal cross bar (2) and the lower mounting plate (902) in this order, and the horizontal cross bar (2) rotates in the horizontal direction along the rotating shaft (903).
7. The carbon dioxide arc welding equipment support as claimed in claim 2, wherein the vertical column (1) is provided with an annular groove (101) in the middle, the rotating device (8) comprises a rotating bearing (801) fixedly connected with the annular groove (101), an inner ring of the rotating bearing (801) is sleeved on the annular groove (101) and a rubber pad (803) is arranged between the inner ring and the annular groove (101), an outer ring of the rotating bearing (801) is fixedly sleeved with a connecting sleeve (802), and the inclined supporting rod (7) is fixedly connected with the connecting sleeve (802).
8. The carbon dioxide arc welding equipment support according to claim 2, characterized in that the angle between the diagonal support bar (7) and the vertical column (1) is 30-60 °.
9. The carbon dioxide arc welding equipment support according to claim 5, characterized in that the connecting base (407) is provided with a connecting hole (409) fixedly connected with the swing arm (3).
CN201920497409.7U 2019-04-13 2019-04-13 Carbon dioxide arc welding equipment support Expired - Fee Related CN210524102U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920497409.7U CN210524102U (en) 2019-04-13 2019-04-13 Carbon dioxide arc welding equipment support

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920497409.7U CN210524102U (en) 2019-04-13 2019-04-13 Carbon dioxide arc welding equipment support

Publications (1)

Publication Number Publication Date
CN210524102U true CN210524102U (en) 2020-05-15

Family

ID=70593753

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920497409.7U Expired - Fee Related CN210524102U (en) 2019-04-13 2019-04-13 Carbon dioxide arc welding equipment support

Country Status (1)

Country Link
CN (1) CN210524102U (en)

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Granted publication date: 20200515

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