Guide device for welding

The welding guide device facilitates accurate positioning and safe protection of welding equipment at high points on vehicles, ensuring easy and versatile welding operations.

WO2026100784A1PCT designated stage Publication Date: 2026-05-15RYU SUNG TAE +2
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
RYU SUNG TAE
Filing Date
2024-11-11
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Welding at high points on vehicles like trams and trains is difficult due to the challenge of positioning the welding gun accurately and protecting the welding cable from damage, while also accommodating various types of welding machines.

Method used

A welding guide device with a base, support, and guide components that allow easy positioning of the welding machine, protect cables, and accommodate different welding setups, featuring a tubular guide system and induction control units for precise alignment and protection.

Benefits of technology

Enables easy and safe welding operations at high points by securing the welding machine and cables, allowing for versatile use with various welding machines.

✦ Generated by Eureka AI based on patent content.

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Abstract

A guide device for welding according to one embodiment of the present invention comprises: a plate-shaped base unit positioned on a ground; a pillar-shaped support unit positioned on the upper surface of the base unit and positioned to be orthogonal to the base unit; a plate-shaped support base unit rotatably positioned on the upper surface of the support unit; a guide unit formed in a tubular shape and having a first end portion positioned along the direction intersecting the support unit on the upper side of the support base unit; a guide adjustment unit positioned on the upper surface of the support base unit, connected to the support unit and the guide unit, and connected to the first end portion of the guide unit so as to enable the guide unit to rotate and to maintain the guide unit in a rotated state; a first mounting unit connected to a first side of the support base unit to be positioned between the base unit and the support base unit; and a second mounting unit connected to a second side opposite to the first side of the support base unit to be positioned between the base unit and the support base unit.
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Description

Welding guide device

[0001] The present invention relates to a welding guide device, and more specifically, to a welding guide device that enables easy welding of a desired location on a vehicle such as a tram or train.

[0002] Welding refers to a technology that joins metal materials by applying high heat between two identical metal materials or between two different metal materials. This welding technology is applied to the manufacture or repair of vehicles such as trams and trains to ensure the safety and durability of the vehicles.

[0003] Meanwhile, vehicles such as trams and trains have a relatively high height. In these vehicles, welding must frequently be performed at relatively high points. However, while the welding gun must be positioned by an operator at the point requiring welding, there are significant difficulties in positioning it at such high points, and the cable connected to the welding gun is exposed to the working environment, posing a risk of damage or severance.

[0004] The technical problem that the welding guide device according to the technical concept of the present invention aims to solve is to provide a welding guide device that enables the welding machine to be easily positioned to correspond to the point to be welded.

[0005] In addition, the technical problem that the welding guide device according to the technical concept of the present invention aims to solve is to provide a welding guide device capable of safely protecting the cable and welding wire according to the welding machine.

[0006] Furthermore, the technical problem that the welding guide device according to the technical concept of the present invention aims to solve is to provide a welding guide device that enables easy welding operations by mounting various types of welding machines.

[0007] The technical problems that the welding guide device according to the technical concept of the present invention aims to solve are not limited to those mentioned above, and other unmentioned problems will be clearly understood by a person skilled in the art from the description below.

[0008] A welding guide device according to one embodiment of the technical concept of the present invention may be characterized by comprising: a plate-shaped base portion positioned on the ground; a column-shaped support portion positioned on the upper surface of the base portion and positioned to be orthogonal to the base portion; a plate-shaped support base portion positioned to be rotatable on the upper surface of the support portion; a guide portion formed in a tubular shape, wherein a first end portion is positioned along a direction intersecting the support portion on the upper side of the support base portion; a guide control portion positioned on the upper surface of the support base portion and connected to the support portion and the guide portion, and connected to the first end portion of the guide portion to enable the guide portion to rotate and maintain it in a rotated state; a first mounting portion connected to a first side of the support base portion to be positioned between the base portion and the support base portion; and a second mounting portion connected to a second side opposite to the first side of the support base portion to be positioned between the base portion and the support base portion.

[0009] In addition, in the welding machine, the welding body is positioned across the first mounting part and the base part, and the cable connected to the welding body is positioned to pass through the guide part, and the welding gun is connected to the cable and positioned to correspond to the second end surface opposite the first end part of the guide part, and the wire feeder is positioned in the second mounting part, and the welding wire wound in the second mounting part can be guided to pass through the guide part and be adjacent to the welding gun.

[0010] Additionally, the guide section may include a welding guide tube that is formed in a tubular shape, hinge-connected to the guide control section, through which a cable passes; and a wire guide tube that is formed in a tubular shape having an inner diameter smaller than that of the welding guide tube, positioned parallel to the welding guide tube, through which a welding wire passes.

[0011] Additionally, the induction control unit comprises: a pair of movable guide plates, each having a plate shape, spaced apart from each other and positioned at the lower side of the induction unit along the support base, and orthogonal to the induction unit; a connecting plate having a plate shape, inserted between the movable guide plates, and connected to the induction unit; a first rotational guide having a bolt shape, positioned to correspond between the movable guide plates, and capable of moving in the up and down direction while inserted into the upper surface of the support unit through the support base; and a second rotational guide that is bolted to the first rotational guide, positioned at the upper side of the support base, and hinge-connected to the connecting plate near the first end surface of the induction unit, wherein when the induction unit rotates in the up and down direction, the area of ​​the connecting plate inserted between the movable guide plates changes and is maintained in a stationary state by the movable guide plates, and when the induction unit rotates in the left and right direction, the induction unit rotates the second rotational guide plate while moving the connecting plate around the first rotational guide plate, and the movable guide plates can rotate the support base unit with the support unit as an axis while moving around the first rotational guide plate by the connecting plate.

[0012] Additionally, a support space is formed concavely on the upper surface of the support member in a shape corresponding to the support member, and the support member is formed in the form of a compression spring and includes a support elastic body located in the support space along the vertical direction; and a support connector formed in the shape of a plate and located in the support space to connect the first rotation guide and the support elastic body, wherein when the guide member is rotated in the upward direction, the area of ​​the connecting plate inserted between the movement guide plates gradually decreases, and the second rotation guide moves in the downward direction by the guide member, moving the first rotation guide and the support connector in the downward direction to compress the support elastic body, and when the guide member is rotated in the upward direction, the area of ​​the connecting plate inserted between the movement guide plates gradually increases, and the second rotation guide moves in the upward direction by the guide member, moving the first rotation guide and the support connector in the upward direction, and the support elastic body can be extended to be restored to its original state.

[0013] Additionally, each of the movable guide plates has a control opening formed to correspond to one another, and a screw thread is formed on the inner surface of the control opening, and a control body is coupled to the movable guide plate through the control opening, and the control body includes a control head having an outer diameter larger than the inner diameter of the control opening; and a control body formed in a rod shape, having an outer diameter corresponding to the inner diameter of the control opening, and having a screw thread formed on its outer surface to engage with the control opening and connected to the control head, wherein the control head contacts one movable guide plate, and the control body is positioned penetrating one movable guide plate through the control opening and inserted into another movable guide plate, and as the control body is increasingly inserted into the control opening of the other movable guide plate, the gap between the movable guide plates can be reduced.

[0014] Additionally, the manager terminal transmits input information to the welding body, receives confirmation information corresponding to the input information from the welding body, receives the confirmation information and transmits it to the welding body, and when the confirmation information transmitted from the welding body to the manager terminal matches the confirmation information received from the manager terminal, the manager terminal transmits the received operation information to the welding body, and the welding body operates according to the operation information; the manager terminal includes a display unit in the form of a display device located on one side of the manager terminal and displaying confirmation data including confirmation information, and allowing the contacted confirmation data to be input into the manager terminal; and a detection unit in the form of a camera or sensor located on one side of the manager terminal, spaced apart from the display unit, and positioned at a first end portion of the manager terminal; and the welding guide device comprises a device plate formed in a plate shape corresponding to the upper surface of the manager terminal, wherein a plurality of rectangular device openings are formed to correspond to the confirmation data displayed on the display unit, a pair of movement guiding grooves are formed along the longitudinal direction of the device openings so as to face each other in a concave manner on both sides of each device opening, and a detection mark is formed at a first end portion of the lower surface. The device further comprises a first device including a pair of device guides positioned along the longitudinal direction of the device plate on both sides of the lower surface of the device plate; and a device control unit positioned on the device plate to correspond to each device opening and capable of opening and closing the device opening, wherein an administrator terminal is positioned between the device guides and coupled to the device guides, and a device plate is positioned on the upper surface of the administrator terminal, a detection unit is positioned to correspond to a detection mark, and a device control unit maintains the device opening in a closed state, and when the detection unit detects the detection mark and the detected detection mark includes information corresponding to the administrator terminal, a display unit displays confirmation data including confirmation information transmitted to the administrator terminal, and the administrator terminal adjusts the device control unit according to the confirmation information to sequentially open the device openings one by one.The device control unit comprises: a control body formed of an electromagnet and positioned along the first end surface of the device opening; a control winder formed in a rod shape and positioned rotatably inside the device plate so as to be adjacent to the second end surface opposite the first end surface of the device opening; a control movable body formed of a rod-shaped magnet, positioned in the device opening so as to be located between the first end surface and the second end surface of the device opening, with both end portions inserted into a movement guide groove to be movable along the movement guide groove; and a control sheet formed in a sheet shape, connected to the control winder and the control movable body, and receiving a winding force from the control winder to the control winder. and each comprises a pair of control connectors, each formed in the form of a tension spring, positioned between the first end face of the device opening and the control movable, connecting the first end face of the device opening and the control movable, with a control body positioned between them; wherein, when the device control section closes the device opening, the control body has a polarity different from that of the control movable and generates an attractive force between it and the control movable, and the sum of the attractive force between the control body and the control movable and the force of the control connector intended to position the control movable close to the control body is greater than the force of the control winder intended to wind the control sheet, so the control sheet is unfolded and unwound from the control winder and positioned in a closed state of the device opening, and in the device control section of the verification opening corresponding to the code included in the verification information, the control body is adjusted to have the same polarity as the control movable and generates a repulsive force between it and the control movable, and the sum of the repulsive force between the control body and the control movable and the force of the control winder intended to wind the control sheet is greater than the force of the control connector intended to position the control movable close to the control body, so the control sheet is controlled As it winds onto the winder, the control moving body moves close to the control winder to open the device opening, and as the control connector extends, it accumulates restoring force, andWith the code included in the verification information exposed through the open device opening, the code of the display unit is contacted by the manager through the device opening, input into the manager terminal, deleted from the display unit, and after the manager terminal transmits the verification information to the welding body, the manager terminal adjusts the device control unit to close the open device openings, and in the device control unit corresponding to each of the multiple open device openings, the control body is adjusted to have a polarity different from that of the control movable body and generates an attractive force between it and the control movable body, and the sum of the attractive force between the control body and the control movable body and the restoring force of the control connection is greater than the force of the control winder intended to wind the control sheet, so the control movable body is moved to approach the control body by the control body and the control connection, and the control sheet is unwound from the control winder and unfolded to close the open device openings.

[0015] Additionally, the welding guide device further includes a second device that is registered to correspond to a manager terminal and is worn on the manager's hand to generate usage information and transmit it to the welding body, wherein the welding body stores the usage information transmitted from the second device and receives new usage information from the second device, and when the usage information previously stored in the welding body matches the new usage information transmitted to the welding body from the second device, the manager terminal corresponding to the second device that transmitted the usage information transmits the received operation information to the welding body, and the welding body operates according to the operation information, and the second device comprises a first wearable body in the shape of a band that surrounds the manager's wrist and is fixed to the manager's wrist, a plurality of second wearable bodies each formed in the shape of a thimble and into which a part of the manager's finger can be inserted, a plurality of wearable wires each formed in the shape of a wire, with a first end portion connected to the second wearable body and a second end portion opposite to the first end portion inserted and positioned in the first wearable body, and a second end portion connected to the second end portion of each wearable wire and inside the first wearable body A first body comprising a plurality of wear winders positioned to be rotatable and providing force to the wear wire to wind the wear wire;The device comprises a base in the shape of a flat plate, a plurality of inserts each formed in the shape of a square column with an insertion space formed concavely on the upper surface and located on the upper surface of the base, a first guide member formed in the shape of a rack gear and located along the vertical direction on the inner surface of the insertion space, a contact plate formed in a plate shape corresponding to the cross-section of the insertion space and located inside the insertion space parallel to the upper surface of the insertion space at the top of the first guide member, a second guide member formed in the shape of a pinion gear and located inside the insertion space to mesh with the first guide member, and a second body including a handle that penetrates the inserts and is connected to the center of the second guide member to rotate the second guide member, wherein when the second guide member is rotated in one direction by the handle, the first guide member moves to move the contact plate in an upward or downward direction, and an administrator wears the first body of the second device on their hand and inserts their finger into the insertion space to make the second wearable body come into contact with the contact plate, and the bent state of the administrator's finger is maintained at a constant state for a predetermined period of time, and When the rotation angle of the wear winder is maintained constant, the first wear body can combine the rotation angles of the wear winders to generate usage information and transmit it to the welding body.

[0016] A welding guide device according to embodiments based on the technical concept of the present invention has the following effects.

[0017] (1) The welding machine is positioned so that it can be easily positioned to correspond to the point to be welded.

[0018] (2) Ensure that the cables and welding wires associated with the welding machine are safely protected.

[0019] (3) Various types of welding machines are installed to facilitate welding operations.

[0020] However, the effects that can be achieved by the welding guide device according to one embodiment of the present invention are not limited to those mentioned above, and other unmentioned effects will be clearly understood by a person skilled in the art from the description below.

[0021] A brief description of each drawing is provided to help to better understand the drawings cited in this specification.

[0022] FIG. 1 is a perspective view illustrating a welding guide device according to one embodiment of the present invention.

[0023] FIG. 2 is a perspective view illustrating the arrangement of a moving guide plate and a connecting plate of a guide control unit in a welding guide device according to one embodiment of the present invention.

[0024] FIG. 3 is a diagram illustrating the operation of a support member and an induction control member by an induction member in a welding guide device according to one embodiment of the present invention.

[0025] FIG. 4 is a perspective view illustrating a first device applied to a manager terminal connected to a welding machine located in a welding guide device according to one embodiment of the present invention.

[0026] FIG. 5 is a diagram illustrating the operation of a first device applied to a manager terminal connected to a welding machine located in a welding guide device according to one embodiment of the present invention.

[0027] FIG. 6 is a perspective view illustrating a second device connected to a welding machine located in a welding guide device according to one embodiment of the present invention.

[0028] The present invention is capable of various modifications and may have various embodiments, and specific embodiments are illustrated in the drawings and described in detail in the detailed description. However, this is not intended to limit the present invention to specific embodiments, and it should be understood that the present invention includes all modifications, equivalents, and substitutions that fall within the spirit and scope of the invention.

[0029] In describing the present invention, if it is determined that a detailed description of related prior art may unnecessarily obscure the essence of the present invention, such detailed description is omitted. Additionally, numbers used in the description of this specification (e.g., 1st, 2nd, etc.) are merely identification symbols to distinguish one component from another.

[0030] In addition, when a component is described in this specification as being "connected" or "connected" to another component, it should be understood that the component may be directly connected to or directly connected to the other component, but unless otherwise specifically stated, it may also be connected or connected through another component in between.

[0031] In addition, components expressed as '~part' in this specification may consist of two or more components combined into a single component, or a single component may be divided into two or more components according to more detailed functions. Furthermore, each component described below may additionally perform some or all of the functions performed by other components in addition to the primary function it is responsible for, and it goes without saying that some of the primary functions performed by each component may be exclusively performed by other components.

[0032] Hereinafter, embodiments based on the technical concept of the present invention will be described in detail in turn.

[0033] FIG. 1 is a perspective view illustrating a welding guide device (100) according to one embodiment of the present invention, FIG. 2 is a perspective view illustrating the arrangement of a moving guide plate (151) and a connecting plate (153) of a guide control unit (105) in a welding guide device (100) according to one embodiment of the present invention, and FIG. 3 is a drawing illustrating the operation of a support unit (102) and a guide control unit (105) by a guide unit (104) in a welding guide device (100) according to one embodiment of the present invention.

[0034] As illustrated in FIGS. 1 to 3, a welding guide device (100) according to one embodiment of the present invention includes a base part (101), a support part (102), a support base part (103), a guide part (104), a guide control part (105), a first mounting part (106), and a second mounting part (107), and can be equipped with a welding machine (10) and a wire feeder (20) to enable welding at a desired location in a relatively high place.

[0035] The welding machine (10) of the present embodiment may include a welding body (11) capable of receiving power and controlling the operation of the welding machine (10), a welding gun (12) on which welding work is performed, and a cable (13) connecting the welding body (11) and the welding gun (12), and a wire feeder (20) capable of moving a welding wire (W). Additionally, the welding body (11) may include at least one of a processor, a memory, and a data transmitter / receiver.

[0036] The base portion (101) is formed in a plate shape and can be positioned on the ground (1). In this embodiment, the base portion (101) is shown as being formed in a rectangular plate shape, but is not limited thereto and can be formed in various plate shapes such as a rectangular plate shape, a pentagonal plate shape, etc.

[0037] The support member (102) is formed in a column shape and may be positioned on the upper surface of the base member (101) so as to be orthogonal to the base member (101). In this embodiment, the support member (102) is shown as being formed in a cylindrical shape, but is not limited thereto and may be formed in various column shapes such as a square column. Additionally, the support member (102) may include a support elastic body (121) and a support connector (123).

[0038] The support elastic body (121) may be formed in the form of a compression spring and may be located in the support space (120) of the support member (102). Here, the support space (120) may be formed concavely on the upper surface of the support member (102) and may have a shape corresponding to the support member (102). Additionally, the support space (120) may be located in the upper part of the support member (102).

[0039] Additionally, the supporting elastic body (121) may be positioned along the vertical direction in the supporting space (120). Here, the first longitudinal section of the supporting elastic body (121) may be positioned and supported on the bottom surface of the supporting space (120).

[0040] The support connector (123) is formed in a plate shape and can be positioned in the support space (120). Here, the support connector (123) can be positioned and fixed on the second end face opposite the first end face of the support elastic body (121). When the support elastic body (121) is positioned in the support space (120), the support connector (123) can be positioned on the upper side of the support elastic body (121). Here, the support elastic body (121) may not be compressed by the support connector (123) or may be compressed slightly. That is, the support connector (123) can be positioned in the support space (120) with almost no compression of the support elastic body (121).

[0041] The support base portion (103) is formed in a plate shape and can be positioned rotatably on the upper surface of the support portion (102). Here, the support portion (102) can be positioned in the central part of the support base portion (103).

[0042] In particular, a support guide (131) having a hollow (131') and a cylindrical shape corresponding to that of the support member (102) may be formed on the lower surface of the support base member (103), and the support guide (131) may be positioned so as to be rotatable on the upper surface of the support member (102). Additionally, a support opening (130) may be formed on the support base member (103) so as to be positioned to correspond to the center of the support guide (131) and having an inner diameter smaller than the diameter of the upper surface of the support member (102). The support opening (130) may be connected to the hollow (131') of the support guide (131) and the support space (120) in correspondence.

[0043] The guide section (104) is formed in a tubular shape and may be positioned along a direction intersecting the support section (102) on the upper side of the support base section (103). Here, the first end portion of the guide section (104) may be positioned to correspond to the upper surface of the support base section (103). Additionally, the guide section (104) may include a welding guide tube (141) and a wire guide tube (143).

[0044] The welding guide tube (141) is formed in a tubular shape and can be positioned along a direction intersecting the support member (102) on the upper side of the support base member (103). Here, the welding guide tube (141) can be connected to the guide control member (105), which will be specifically described later, and the cable (13) of the welding machine (10) can be positioned passing through the welding guide tube (141).

[0045] The wire guide tube (143) is formed in a tubular shape having a cross-section smaller than that of the welding guide tube (141) and can be positioned parallel to the welding guide tube (141). Here, the guide connector (140) can connect the welding guide tube (141) and the wire guide tube (143) and maintain them parallel to each other. Additionally, the welding wire (W) from the wire feeder (20) can be positioned to pass through the wire guide tube (143).

[0046] The induction control unit (105) is located on the upper surface of the support base unit (103) and can be connected to the support unit (102) and the induction unit (104). In particular, the induction control unit (105) is connected to the first end portion of the induction unit (104) so ​​that the induction unit (104) can be rotated in the left direction, right direction, upward direction, and downward direction, and can be maintained in a rotated state.

[0047] Additionally, the induction control unit (105) may include a moving induction plate (151), a connecting plate (153), a first rotation induction (155), and a second rotation induction (157).

[0048] The movement guide plates (151) may be formed as a pair, each having a plate shape. Additionally, the movement guide plates (151) may be positioned perpendicularly to the upper surface of the support base portion (103) so as to be spaced apart from each other, and may be positioned along the guide portion (104) and below the guide portion (104).

[0049] Additionally, the movement guide plate (151) may be positioned along the guide portion (104) near the edge of the support base portion (103) while being orthogonal to the support base portion (103). That is, the movement guide plate (151) may be positioned on the support base portion (103) spaced apart from the upper surface of the support portion (102). At least one movement guide plate (151) may be fixed to the support base portion (103).

[0050] Meanwhile, a regulator (150) may be positioned on the movement guide plate (151). The regulator (150) may be formed in the shape of a bolt and may be bolted to the movement guide plates (151). Here, a control opening (151') may be formed in each of the movement guide plates (151), and a screw thread may be formed on the inner surface of the control opening (151'). The regulator (150) may be inserted into the control opening (151') and bolted to the movement guide plates (151). Additionally, the regulator (150) may include a control head (150a) and a control body (150b).

[0051] The adjustment head (150a) has an outer diameter larger than the inner diameter of the adjustment opening (151') and cannot pass through the adjustment opening (151').

[0052] The adjustment body (150b) is formed in a rod shape, has an outer diameter corresponding to the inner diameter of the adjustment opening (151'), and can be connected to the adjustment head (150a). Screw threads are formed on the outer surface of the adjustment body (150b), and the adjustment body (150b) can be inserted into the adjustment opening (151') and bolted to the movement guide plate (151).

[0053] In the above-described regulator (150), the regulator head (150a) is in contact with one movable guide plate (151), and the regulator body (150b) is positioned by penetrating one movable guide plate (151) through the regulator opening (151') and can be positioned by being inserted into another movable guide plate (151). As the regulator body (150b) of the regulator (150) is increasingly inserted into the regulator opening (151') of the other movable guide plate (151), the gap between the movable guide plates (151) can be reduced finely.

[0054] The connecting plate (153) is formed in the shape of a plate, is inserted between the moving guide plates (151), and can be connected to and fixed to the guide section (104), particularly the welding guide tube (141).

[0055] The first rotational guide (155) is formed in the form of a bolt and can be connected to the support connector (123) of the support member (102) by passing through the support opening (130) of the support base member (103) so as to correspond between the movement guide plates (151). Here, the first rotational guide (155) can be positioned to be orthogonal to the upper surface of the support connector (123) of the support member (102).

[0056] The second rotational guide (157) can be bolted to the first rotational guide (155) and positioned on the upper side of the support base (103), and can be hinged to the connecting plate (153). Here, the first rotational guide (155) is inserted into and coupled to the lower surface of the second rotational guide (157), and the second rotational guide (157) can be positioned near the first end surface of the guide portion (104). Additionally, the connecting plate (153) can rotate in the up and down direction around the second rotational guide (157) together with the guide portion (104).

[0057] When the guide portion (104) is rotated in the up and down direction and the angle between the guide portion (104) and the support base portion (103) changes, the insertion area of ​​the connecting plate (153) between the movable guide plates (151) can be changed. As the angle between the guide portion (104) and the support base portion (103) increases, the connecting plate (153) can be positioned to protrude further between the movable guide plates (151), and as the angle between the guide portion (104) and the support base portion (103) decreases, the connecting plate (153) can be positioned to be inserted further from between the movable guide plates (151).

[0058] Meanwhile, the connecting plate (153) may come into contact with the movable guide plates (151) while inserted between the movable guide plates (151). Friction may be applied between the connecting plate (153) and the movable guide plates (151). As a result, the connecting plate (153) may be moved between the movable guide plates (151) by the guide member (104), and may be maintained in a stationary state between the movable guide plates (151) when the guide member (104) is not rotated. Additionally, the regulator (150) may be used to adjust the friction between the connecting plate (153) and the movable guide plates (151).

[0059] The above-described induction control unit (105) can be operated in combination with the support unit (102) according to the rotation of the induction unit (104).

[0060] When the induction section (104) is positioned orthogonally to the support section (102), the connecting plate (153) in the induction adjustment section (105) can be positioned inserted between the moving induction plates (151). Here, the support elastic body (121) can be maintained in its original state, and the support connecting body (123) can support the first rotation induction (155) (see FIG. 3(a)).

[0061] In the above state, the guiding part (104) can be rotated in an upward direction. Here, the guiding part (104) can increase the angle with the supporting base part (103) while being spaced apart from the upper surface of the supporting base part (103). That is, the second end part, which is opposite to the first end part of the guiding part (104), can be located higher than the first end part of the guiding part (104).

[0062] Additionally, the connecting plate (153) of the induction control unit (105) can be moved to gradually move away from the moving induction plates (151), so that the area of ​​the connecting plate (153) inserted between the moving induction plates (151) can be gradually reduced. Here, the connecting plate (153) can be maintained in a stationary state due to friction with the moving induction plates (151) (see FIG. 3(b)).

[0063] Additionally, the second rotational inducer (157) can be moved downward by the inducer (104), thereby moving the first rotational inducer (155) and the support connector (123) downward to compress the support elastic body (121). The impact resulting from the rotation of the inducer (104) in the upward direction can be absorbed by the support elastic body (121) (see FIG. 3(b)).

[0064] Additionally, the guide portion (104) can be rotated downward while in a state where it has been rotated upward. Here, the guide portion (104) can reduce the angle with the support base portion (103) as it approaches the upper surface of the support base portion (103). That is, the second end portion of the guide portion (104) can be moved so that it is positioned at the same height as the first end portion of the guide portion (104).

[0065] Additionally, the connecting plate (153) of the induction control unit (105) can be moved to be gradually inserted between the moving induction plates (151), so that the area of ​​the connecting plate (153) inserted between the moving induction plates (151) can be gradually increased. Here, the connecting plate (153) can be maintained in a stationary state due to friction with the moving induction plates (151).

[0066] Additionally, the second rotational inducer (157) can be moved upward by the inducer (104) to move the first rotational inducer (155) and the support connector (123) upward. The support elastic body (121) can be stretched to be restored from a compressed state to its original state.

[0067] Meanwhile, the induction member (104) can be rotated in the left or right direction. Here, the induction member (104) can be rotated around the support member (102) and the first rotational induction member (155) as an axis. Additionally, the induction member (104) can move the connecting plate (153) along the first rotational induction member (155) while rotating the second rotational induction member (157). Also, the moving induction plates (151) can be moved along the first rotational induction member (155) by the connecting plate (153) to rotate the support base member (103) around the support member (102) as an axis. Here, the first rotational induction member (155) and the second rotational induction member (157) are bolted together so that the second rotational induction member (157) moves slightly along the first rotational induction member (155), thereby maintaining the induction member (104) in a state rotated in the left or right direction.

[0068] The first mounting portion (106) is connected to the first side of the support base portion (103) and can be positioned between the base portion (101) and the support base portion (103). Here, the welding body (11) of the welding machine (10) can be positioned across the first mounting portion (106) and the base portion (101), and the cable (13) connected to the welding body (11) can be inserted into the first end portion of the guide portion (104), particularly the welding guide tube (141), and positioned through the welding guide tube (141), and the welding gun (12) of the welding machine (10) can be connected to the end of the cable (13) and positioned to correspond to the second end portion of the guide portion (104).

[0069] The second mounting portion (107) is connected to the second side opposite the first side of the support base portion (103) and can be positioned between the base portion (101) and the support base portion (103). Here, a wire feeder (20) is positioned in the second mounting portion (107), and a welding wire (W) is wound onto the second mounting portion (107) and can be guided by the wire feeder (20) to the wire guide tube (143) of the guide portion (104). The wire feeder (20) can insert the welding wire (W) into the first end surface of the wire guide tube (143) and guide it through the wire guide tube (143) to be adjacent to the welding gun (12) of the welding machine (10).

[0070] In the welding guide device (100) according to the present embodiment, the support member (102) is positioned on the base member (101), and the support base member (103) can be positioned rotatably on the upper surface of the support member (102). Additionally, the guide member (104) can be positioned rotatably on the support base member (103) through the guide adjustment member (105). In particular, the first end portion of the guide member (104) can be hinge-connected to the guide adjustment member (105), and the second end portion, which is opposite to the first end portion of the guide member (104), can be moved to correspond to the position to be welded by the rotation of the guide member (104). Additionally, the welding machine (10) is positioned across the first mounting section (106) and the base section (101), and the wire feeder (20) is positioned in the second mounting section (107). The cable (13) of the welding machine (10) is positioned to pass through the welding guide tube (141) of the guide section (104), and the welding gun (12) can be positioned near the second end section of the guide section (104). The welding wire (W) can be wound on the second mounting section (107) and guided by the wire feeder (20) through the wire guide tube (143) of the guide section (104) to near the welding gun (12) to be used for welding. Accordingly, the welding guide device (100) according to the present embodiment can position the welding machine (10) and the wire feeder (20) in one place to enable stable welding of the welding wire (W) by the welding machine (10), and various welding machines (10) can be applied.

[0071] In addition, the welding guide device (100) according to the present embodiment can maintain the cable (13) and welding wire (W) of the welding machine (10) in a state surrounding it through the guide part (104), and can position the welding gun (12) and welding wire (W) of the welding machine (10) to correspond to the position to be welded through the rotation of the guide part (104). Accordingly, the welding guide device (100) according to the present embodiment can easily position the welding machine to correspond to the position to be welded and can safely protect the cable and welding wire associated with the welding machine.

[0072] FIG. 4 is a perspective view illustrating a first device (1000) applied to a manager terminal (200) connected to a welder (10) located in a welding guide device (100) according to one embodiment of the present invention, and FIG. 5 is a drawing illustrating the operation of the first device (1000) applied to a manager terminal (200) connected to a welder (10) located in a welding guide device (100) according to one embodiment of the present invention.

[0073] As illustrated in FIGS. 4 and 5, the administrator terminal (200) can be detachably coupled to the first device (1000) and can transmit input information to the welding body (11) of the welding machine (10), receive confirmation information according to the input information from the welding body (11), and operate the first device (1000) according to the confirmation information to receive the confirmation information and transmit the received confirmation information to the welding body (11). Here, the confirmation information is composed of a combination of multiple codes, and the codes may be numbers, letters, symbols, etc. When the confirmation information transmitted from the welding body (11) to the administrator terminal (200) matches the confirmation information received from the administrator terminal (200), the welding body (11) can transmit an authorization signal to the administrator terminal (200) that transmitted the confirmation information, receive operation information from the administrator terminal (200), and operate according to the operation information.

[0074] The administrator terminal (200) may be formed in the form of a smartphone, and may include a display unit (201) in the form of a display device located on one side of the administrator terminal (200) and capable of displaying verification data including verification information and inputting verification data contacted by an administrator into the administrator terminal (200), and a detection unit (202) in the form of a camera or sensor located on one side of the administrator terminal (200) spaced apart from the display unit (201) and located at the first end portion of the administrator terminal (200) (refer to the upper portion of the administrator terminal (200) in FIG. 4). Here, the verification data may include a code that is not included in the verification information.

[0075] The first device (1000) is coupled to the administrator terminal (200), and when it corresponds to the administrator terminal (200), it can be operated according to the verification information transmitted to the administrator terminal (200). When the first device (1000) is operated, the administrator terminal (200) can receive only the verification information from the verification data displayed on the display unit (201) through the first device (1000).

[0076] Additionally, the first device (1000) may include a device plate (1100), a device guide (1200), and a device control unit (1300).

[0077] The device plate (1100) may be formed in a plate shape corresponding to the upper surface of the administrator terminal (200). Additionally, a device opening (1001) and a movement guiding groove (1002) may be formed in the device plate (1100).

[0078] The device openings (1001) may be made up of multiple openings, each formed on the device plate (1100) with a size corresponding to a single verification data displayed on the display unit (201) of the administrator terminal (200). Here, the device openings (1001) may be formed in a rectangular shape. When the device plate (1100) is positioned on the upper surface of the administrator terminal (200), the device openings (1001) may be positioned to correspond to the verification data.

[0079] The movement guide grooves (1002) are formed as a pair and can be positioned so as to face each other by being formed concavely on each side of the device opening (1001). Here, the movement guide grooves (1002) can be formed along the longitudinal direction of the device plate (1100).

[0080] Additionally, a detection mark (M) may be formed on the first end portion of the lower surface of the device plate (1100) (refer to the upper portion of the device plate (1100) in FIG. 4). Here, the detection mark (M) may be in the form of a QR code, a bar code, etc.

[0081] With the device plate (1100) positioned on the upper surface of the administrator terminal (200), the detection mark (1110) may be positioned to correspond to the detection unit (202) of the administrator terminal (200). The detection unit (202) may detect the detection mark (M). Here, when the detected detection mark (M) contains information corresponding to the administrator terminal (200), the display unit (201) of the administrator terminal (200) may display verification data including verification information, and the administrator terminal (200) may be connected to the first device (1000) and, in particular, the device control unit (1300) to be specifically described later, may be controlled according to the verification information.

[0082] The device guides (1200) are formed as a pair and may be positioned along the longitudinal direction of the device plate (1100) on both sides of the lower surface of the device plate (1100). When the administrator terminal (200) is positioned between the device guides (1200), the administrator terminal (200) is coupled to the device guides (1200), and the device plate (1100) may be positioned on the upper surface of the administrator terminal (200). Here, the verification data displayed on the display portion (201) of the administrator terminal (200) may be positioned to correspond to the device opening (1001) of the device plate (1100), and the detection portion (202) of the administrator terminal (200) may be positioned to correspond to the detection mark (M) of the device plate (1100).

[0083] The device control unit (1300) is composed of multiple units, each positioned on the device plate (1100) to correspond to the device opening (1001) and can open and close the device opening (1001). In particular, the device control unit (1300) can maintain the device opening (1001) in a closed state and sequentially open the device openings (1001) one by one according to confirmation information transmitted to the administrator terminal (200) coupled to the first device (1000).

[0084] Additionally, the device control unit (1300) may include a control body (1301), a control winder (1302), a control moving body (1303), a control seat (1304), and a control connector (1305).

[0085] The control body (1301) is made of an electromagnet and may be positioned on the first end surface of the device opening (1001). In particular, the control body (1301) may be positioned along the first end surface of the device opening (1001) and inserted into the first end surface of the device opening (1001) so as to be positioned on the same plane as the first end surface of the device opening (1001).

[0086] Additionally, the device body (1301) is connected to the administrator terminal (200) and controlled by the administrator terminal (200), so that its polarity can be changed. That is, the control body (1301) may have an N pole or an S pole.

[0087] The adjustment winder (1302) is formed in the shape of a rod and can be rotatably positioned inside the device plate (1100) so as to be adjacent to the second end face opposite the first end face of the device opening (1001). Here, the adjustment winder (1302) is positioned along the second end face of the device opening (1001) and can transmit a force to wind the adjustment sheet (1304), which will be described later, to the adjustment sheet (1304).

[0088] The regulating movable body (1303) is formed in the shape of a rod and can be positioned in the device opening (1001) such that it is located between the first end surface and the second end surface of the device opening (1001). Here, the two end portions of the regulating movable body (1303) can each be inserted into the movement guide groove (1002). As a result, the regulating movable body (1303) can move along the movement guide groove (1002).

[0089] Additionally, the control moving body (1303) may be made of a magnet having a constant polarity. Here, the control moving body (1303) may have the same polarity as the control body (1301) which may have a changing polarity, or may have a different polarity.

[0090] The adjustment sheet (1304) is formed in the shape of a sheet and can be connected to the adjustment winder (1302) and the adjustment movable body (1303). Here, the adjustment sheet (1304) may have a width corresponding to the length of the adjustment movable body (1303), the first end may be connected to the adjustment movable body (1303), and the second end, opposite the first end, may be connected to the adjustment winder (1302).

[0091] Additionally, the adjustment winder (1302) can move the adjustment movable body (1303) toward the adjustment winder (1302) while winding the adjustment sheet (1304). Here, the adjustment sheet (1304) can be positioned to gradually open the device opening (1001).

[0092] The adjustment connectors (1305) are formed as a pair, each of which may be in the form of a tension spring. Each adjustment connector (1305) may be positioned between the first end surface of the device opening (1001) and the adjustment movable body (1303) to connect the first end surface of the device opening (1001) and the adjustment movable body (1303). Here, the adjustment body (1301) is positioned between the adjustment connectors (1305), and the adjustment connectors (1305) may be positioned so that the adjustment movable body (1303) is close to the adjustment body (1301). Additionally, as the adjustment movable body (1303) is separated from the adjustment body (1301), the adjustment connectors (1305) may be extended and accumulate a restoring force to restore to their original shape.

[0093] The first device (1000) as described above can be applied to an administrator terminal (200) and operated as follows.

[0094] First, the first device (1000) can be coupled to the administrator terminal (200). Here, the administrator terminal (200) can be positioned between the device guides (1200) and coupled to the first device (1000). Additionally, the device plate (1100) can be positioned on the upper surface of the administrator terminal (200), and the device control unit (1300) can be positioned to close the device opening (1001) of the device plate (1100).

[0095] When the device control unit (1300) closes the device opening (1001), the control body (1301) has a different polarity from the control movable body (1303) and can generate an attractive force between itself and the control movable body (1303). In this embodiment, the control movable body (1303) may have an S pole and the control body (1301) may have an N pole. Here, the sum of the attractive force between the control body (1301) and the control movable body (1303) and the force of the control connector (1305) intended to position the control movable body (1303) close to the control body (1301) may be greater than the force of the control winder (1302) intended to wind the control sheet (1304). As a result, the adjustment sheet (1304) can be unfolded and released from the adjustment winder (1302) and positioned to close the device opening (1001) (see FIG. 5(a)).

[0096] Additionally, when the device plate (1100) is positioned on the upper surface of the administrator terminal (200), the detection mark (M) of the device plate (1100) may be positioned to correspond to the detection unit (202) of the administrator terminal (200). Here, the detection unit (202) can detect the detection mark (1110). When the detected detection mark (M) contains information corresponding to the administrator terminal (200), the display unit (201) of the administrator terminal (200) can display verification data including verification information transmitted to the administrator terminal (200), and the administrator terminal (200) is connected to the first device (1000) and can control the device control unit (1300) according to the verification information.

[0097] The administrator terminal (200) can control the device control unit (1300) to open the device opening (1001) corresponding to the first code included in the verification information in the verification data displayed on the display unit (201). Here, in the device control unit (1300) of the device opening (1001) corresponding to the first code included in the verification information, the control body (1301) is controlled to have the same polarity as the control movable body (1303) and can generate a repulsive force between it and the control movable body (1303). In this embodiment, the control movable body (1303) may have an S-polarity and the control body (1301) may have an S-polarity. Here, the sum of the repulsive force between the control body (1301) and the control movable body (1303) and the force of the control winder (1302) that intends to wind the control sheet (1304) may be greater than the force of the control connector (1305) that intends to position the control movable body (1303) close to the control body (1301). As a result, in the device control section (1300) of the device opening (1001) corresponding to the first code included in the verification information, the control sheet (1304) is wound onto the control winder (1302) and the control movable body (1303) is moved close to the control winder (1302), so that the device opening (1001) corresponding to the first code included in the verification information can be gradually opened (see FIG. 5(b)). The control connector (1305) can accumulate a restoring force that is extended and intended to be restored to its original shape. Here, the first code included in the verification information displayed on the display unit (201) can be exposed through the verification opening (1001). The administrator can input the first code included in the verification information of the display unit (201) into the administrator terminal (200) by contacting it through the device opening (1001), and the first code included in the contacted verification information can be deleted from the display unit (201).

[0098] After the first code of the display unit (201) included in the verification information is entered into the administrator terminal (200), the control body (1301) in the device control unit (1300) of the device opening (1001) corresponding to the second code included in the verification information is controlled to have the same polarity as the control movable body (1303) and can generate a repulsive force between it and the control movable body (1303). Here, the sum of the repulsive force between the control body (1301) and the control movable body (1303) and the force of the control winder (1302) intended to wind the control sheet (1304) may be greater than the force of the control connector (1305) intended to position the control movable body (1303) close to the control body (1301). As a result, the adjustment sheet (1304) in the device adjustment section (1300) of the device opening (1001) corresponding to the second code included in the verification information is wound onto the adjustment winder (1302), and the adjustment movable body (1303) is moved to approach the adjustment winder (1302), so that the device opening (1001) corresponding to the second code included in the verification information can be gradually opened. The adjustment connector (1305) can be extended while accumulating restoring force. Here, the second code included in the verification information displayed on the display section (201) can be exposed through the device opening (1001). An administrator can input the second code included in the verification information of the display section (201) through the device opening (1001) into the administrator terminal (200), and the second code included in the contacted verification information can be deleted from the display section (201).

[0099] As described above, the operation of the device control unit (1300) for opening the device opening (1001) according to the verification information and the contact of the display unit (201) according to the verification information through the opened device opening (1001) can be performed according to the order of the codes included in the verification information. As a result, the manager can input the last code included in the verification information of the display unit (201) into the manager terminal (200) by contacting it through the verification opening (1001), and the last code included in the verification information of the display unit (201) can be deleted from the display unit (201). Here, the manager terminal (200) can transmit the verification information to the welding body (11).

[0100] Meanwhile, after the administrator terminal (200) transmits confirmation information to the welding body (11), the administrator terminal (200) can adjust the device control unit (1300) to close the open device openings (1001). Here, in the device control unit (1300) corresponding to each of the open multiple device openings (1001), the control body (1301) is adjusted to have a polarity different from that of the control movable body (1303), and can generate an attractive force between it and the control movable body (1303). In this embodiment, the control movable body (1303) may have an S pole, and the control body (1301) may again have an N pole. Here, the sum of the attractive force between the control body (1301) and the control movable body (1303) and the restoring force of the control connector (1305) may be greater than the force of the control winder (1302) intended to wind the control sheet (1304). As a result, the control moving body (1303) is moved to be close to the control body (1301) by the control body (1301) and the control connector (1305), thereby releasing and unfolding the control sheet (1304) from the control winder (1302), and the open device opening (1001) can be gradually closed (see FIG. 5(c)). That is, the first device (1000) can maintain the device opening (1001) in a closed state after being used to input confirmation information into the administrator terminal (200).

[0101] In the welding guide device (100) of the present embodiment, when the first device (1000) is applied to the manager terminal (200), the verification information transmitted to the manager terminal (200) can be input into the manager terminal (200). Verification data including verification information output from the display unit (201) of the manager terminal (200) can be sequentially verified and contacted according to the verification information using the first device (1000). Here, the manager can input the verification information while checking the codes included in the verification information one by one and contacting the display unit (201) of the manager terminal (200). As a result, the manager can input the verification information into the manager terminal (200) more easily and accurately and transmit it to the welding body (11).

[0102] FIG. 6 is a perspective view illustrating a second device (2000) connected to a welder (10) located in a welding guide device (100) according to one embodiment of the present invention.

[0103] As illustrated in FIG. 6, the second device (2000) can be worn on the hand of a manager to generate usage information and transmit it to the welding body (11) of the welding machine (10). Here, the second device (2000) can be registered to correspond to a manager terminal (200), and the welding body (11) can store the usage information transmitted from the second device (2000). Additionally, the usage information is composed of a combination of multiple codes according to the position of the finger, and the codes may be numbers, letters, symbols, etc.

[0104] When the welding body (11) stores usage information transmitted from the second device (2000), the welding body (11) can receive new usage information from the second device (2000). When the usage information already stored in the welding body (11) matches the new usage information transmitted to the welding body (11) from the second device (2000), the administrator terminal (200) corresponding to the second device (2000) that transmitted the usage information can transmit operation information to the welding body (11) to operate the welding body (11) according to the operation information.

[0105] Additionally, the second device (2000) may include a first body (2100) and a second body (2200).

[0106] The first body (2100) is worn on the hand portion of a manager corresponding to the manager terminal (200) and can generate usage information and transmit it to the welding body (11). Additionally, the first body (2100) may include a first wearable body (2110), a second wearable body (2120), a wearable wire (2130), and a wearable winder (2140).

[0107] The first wearable body (2110) is formed in the shape of a band and can be secured to the manager's wrist area while surrounding the manager's wrist area.

[0108] The second wearable (2120) may be made up of multiple pieces, each of which may be shaped like a thimble. A part of the manager's finger, particularly the distal phalangeal portion, may be inserted and positioned in these second wearables (2120).

[0109] Additionally, the second wearable body (2120) of the present embodiment may preferably consist of four pieces and may be positioned to correspond to four fingers excluding the thumb.

[0110] The wearing wire (2130) is composed of multiple wires, each having a wire shape, and each second wearing body (2120) can be connected to the first wearing body (2110). Here, the first end portion of the wearing wire (2130) is connected to the second wearing body (2120), and the second end portion, which is opposite to the first end portion of the wearing wire (2130), can be inserted and positioned in the wearing body (2110). Additionally, when the first wearing body (2110) is fixed while surrounding the manager's wrist area and the distal phalangeal portion of the manager's finger is inserted and positioned in the second wearing body (2120), each of the wearing wires (2130) can be positioned across the manager's finger and the back of the hand. Meanwhile, the rotation angle of the wear winder (2140) can be formed at various angles, and the usage information can be generated in multiple ways due to the combination of rotation angles, but specifically, it can be one of the multiple ways that can be generated due to the second body (2200) to be described later.

[0111] Additionally, the wearing wire (2130) of the present embodiment is preferably made up of four and can be positioned to correspond to four fingers excluding the thumb.

[0112] The wear winder (2140) may be composed of multiple units, each connected to a second end portion of the wear wire (2130) and positioned to be rotatable inside the wearer (2110). Additionally, the wear winder (2140) may provide force to the wear wire (2130) to wind the wear wire (2130). As the manager's finger gradually spreads out, the wear wire (2130) gradually winds into the wear winder (2140), whereas as the manager's finger gradually bends, the wear wire (2130) gradually unwinds from the wear winder (2140). Here, depending on the state in which the manager's finger is bent, the wear winder (2140) may have different rotation angles. The rotation angle refers to the angle resulting from the rotation of the wear winder (2140) as the finger bends based on the state where the finger is spread out, and the degree to which the wear winder (2140) winds the wear wire (2130) may vary depending on the rotation angle. Additionally, the first wearer (2110) can generate usage information by combining the rotation angles of multiple wear winders (2140).

[0113] In addition, the wearing winder (2140) of the present embodiment preferably has four wearing wires (2130) and can be positioned to correspond to four fingers excluding the thumb.

[0114] The second body (2200) can be used to set the bent state of the fingers of a manager wearing the first body (2100). Additionally, the second body (2200) may include a base (2210), an insert (2220), a first guide (2230), a contact plate (2240), a second guide (2250), and a handle (2260).

[0115] The base (2210) can be made in the shape of a flat plate.

[0116] The inserts (2220) may be made up of multiple pieces, each having a rectangular column shape and positioned on the upper surface of the base (2210). An insertion space (2200') may be formed concavely on the upper surface of each insert (2220), and the insertion space (2200') may have a shape corresponding to the insert (2220). A finger of a manager wearing the first body (2100) on their hand may be inserted into this insertion space (2200'). Additionally, the inserts (2220) of this embodiment may preferably be made up of four pieces corresponding to the second wearable body (2120).

[0117] The first guide body (2230) is formed in the shape of a rack gear and can be positioned along the vertical direction on the inner side of the insertion space (2200').

[0118] The contact plate (2240) is formed in a plate shape corresponding to the cross-section of the insertion space (2200') and can be positioned inside the insertion space (2200') so as to be parallel to the upper surface of the insertion space (2200') at the top of the first guide body (2230).

[0119] The second guide body (2250) is formed in the shape of a pinion gear and can be positioned to engage with the first guide body (2230) inside the insertion space (2200').

[0120] The handle (2260) can pass through the insert (2220) and be connected to the center of the second guide (2250). Here, the first end portion of the handle (2260) is positioned to protrude from the insert (2220), and the second end portion of the first end portion of the handle (2260) can be connected to the center of the second guide (2250). Here, the handle (2260) can be rotated to rotate the second guide (2250) around the center of the second guide (2250) as an axis.

[0121] In the above state, when the second guide body (2250) is rotated in one direction by the handle (2260), the first guide body (2230) can be moved to move the contact plate (2240) upward. On the other hand, when the second guide body (2250) is rotated in the opposite direction by the handle (2260), the first guide body (2230) can be moved to move the contact plate (2240) downward. That is, due to the rotation of the handle (2260), the position of the contact plate (2240) inside the insertion space (2200') can be determined. In addition, the position of the contact plate (2240) inside the insertion space (2200') can determine the depth of the insertion space (2200') into which a finger can be inserted.

[0122] When usage information for the mutually corresponding manager terminal (200) and the second device (2000) is not stored in the welding body (11), the manager can adjust the position of the contact plate (2240) located inside the insertion space (2200') by using the handle (2260) on the second body (2200) of the second device (2000).

[0123] In the above state, the manager can wear the first body (2100) of the second device (2000) on the hand and insert the manager's finger into the insertion space (2200') so that the second wearable body (2120) comes into contact with the contact plate (2240). Here, the first wearable body (2110) of the first body (2100) can be fixed to the manager's wrist area while surrounding the manager's wrist area, the distal phalangeal portion of the manager's finger can be inserted and positioned in the second wearable body (2120), and the wearable wire (2130) can be positioned on the manager's finger and the back of the hand. Additionally, the bent state of the manager's finger can be maintained at a constant level for a predetermined period of time, and the rotation angle of the wearable winder (2140) can also be maintained at a constant level. As a result, the first wearable body (2110) can generate usage information by combining the rotation angles of the wearable winders (2140) and transmit it to the welding body (11). The welding body (11) can store the transmitted usage information.

[0124] With usage information for the mutually corresponding administrator terminal (200) and the second device (2000) stored in the welding body (11), the administrator may wear the first body (2100) of the second device (2000) on the hand and insert the administrator's finger into the insertion space (2200') so that the second wearable body (2120) comes into contact with the contact plate (2240). Here, due to the second body (2200), the bent state of the administrator's finger and the rotation angle of the wear winder (2140) may be the same as when the usage information is generated. Additionally, the first wearable body (2110) may generate usage information identical to the usage information stored in the welding body (11) and transmit it to the welding body (11). Meanwhile, if the position of the contact plate (2240) in the second body (2200) is changed, the bent state of the manager's finger and the rotation angle of the wear winder (2140) may differ from when the use information is generated. Here, the first wear body (2110) may generate use information different from the use information stored in the welding body (11).

[0125] In the above state, when the usage information stored in the welding body (11) matches the new usage information transmitted to the welding body (11) from the second device (2000), the administrator terminal (200) corresponding to the second device (2000) that transmitted the usage information can transmit operation information received by the administrator to the welding body (11) within a set period. That is, the administrator terminal (200) can be connected to the welding body (11) through the operation of the second device (2000) corresponding to the administrator terminal (200).

[0126] As described above, the second device (2000) combines the first body (2100) and the second body (2200) to induce a constant rotation angle of the wearer winder (2140) of the first body (2100) and the bent state of the manager's finger worn on the hand portion of the first body (2100) capable of generating usage information, thereby enabling the constant generation of usage information according to the bent state of the finger by the second body (2200). As a result, the manager terminal (200) can be safely connected to the welding body (11) by the manager maintaining the bent state of the finger set through the second device (2000), and can transmit the received operation information to the welding body (11) to operate the welding machine (10) according to the operation information.

[0127] Although the technical concept of the present invention has been described in detail with reference to preferred embodiments, the technical concept of the present invention is not limited to the above embodiments, and various modifications and changes are possible by those skilled in the art within the scope of the technical concept of the present invention.

[0128] [Explanation of the symbol]

[0129] 100: Welding guide device

[0130] 101: Bass section

[0131] 102: Support

[0132] 103: Support base

[0133] 104: Judo Club

[0134] 105: Induction control unit

[0135] 106: First mounting part

[0136] 107: Second mounting part

Claims

1. A plate-shaped base portion positioned on the ground; A column-shaped support member positioned on the upper surface of the base member and positioned to be orthogonal to the base member; A plate-shaped support base portion positioned to be rotatable on the upper surface of a support portion; A guide portion formed in a tubular shape, wherein the first end portion is positioned along the direction intersecting the support portion on the upper side of the support base portion; An induction control unit positioned on the upper surface of a support base portion and connected to a support portion and an induction portion, and connected to a first end portion of the induction portion to enable the induction portion to rotate and maintain it in a rotated state; A first mounting part connected to a first side of a support base part so as to be positioned between a base part and a support base part; and A welding guide device characterized by including a second mounting part connected to a second side opposite to the first side of the support base part so as to be positioned between the base part and the support base part.

2. In Paragraph 1, In the welding machine, the welding body is positioned across the first mounting part and the base part, and the cable connected to the welding body is positioned to pass through the guide part, and the welding gun is connected to the cable and positioned to correspond to the second end surface opposite the first end part of the guide part. A welding guide device characterized by a wire feeder positioned in a second mounting section and guiding a welding wire wound in the second mounting section to pass through a guide section to be adjacent to a welding gun.

3. In Paragraph 2, the induction part, A welded guide tube formed in a tubular shape, hinge-connected to an induction control unit, through which a cable passes; and A welding guide device characterized by having a tube shape having an inner diameter smaller than that of a welding guide tube, and including a wire guide tube positioned parallel to the welding guide tube and through which a welding wire passes.

4. In paragraph 1, the induction control unit, A pair of movable guide plates, each having a plate shape, spaced apart from each other and positioned below the guide section along the guide section while perpendicular to the support base section; A connecting plate formed in the shape of a plate, inserted between the moving guide plates and connected to the guide section; A first rotational guide formed in the shape of a bolt, positioned to correspond between movement guide plates, and capable of moving in the vertical direction while inserted into the upper surface of the support portion by penetrating the support base portion; and It includes a second rotational induction member that is bolted to a first rotational induction member and positioned on the upper side of a support base member, and hinged to a connecting plate near a first longitudinal section of the induction member, When the guide plate rotates in the up and down direction, the area of ​​the connecting plate inserted between the moving guide plates changes and is maintained in a stationary state by the moving guide plates, and A welding guide device characterized by, when the guide portion rotates in the left and right directions, the guide portion rotates the second rotation guide while moving the connecting plate around the first rotation guide, and the moving guide plates move around the first rotation guide by the connecting plate while rotating the supporting base portion with the supporting portion as an axis.

5. In Paragraph 4, On the upper surface of the support member, a support space is formed concavely in a shape corresponding to the support member, and The support unit, A supporting elastic body formed in the shape of a compression spring and positioned in a supporting space along the vertical direction; and It is formed in a plate shape and includes a support connector located in a support space that connects a first rotational inducer and a support elastic body, When the induction part rotates upward, the area of ​​the connecting plate inserted between the moving induction plates gradually decreases, and the second rotational induction part moves downward by the induction part, moving the first rotational induction part and the supporting connecting part downward, thereby compressing the supporting elastic body. A welding guide device characterized by the fact that when the guide member is rotated in an upward direction, the area of ​​the connecting plate inserted between the moving guide plates gradually increases, the second rotation guide is moved upward by the guide member, moving the first rotation guide and the supporting connecting body upward, and the supporting elastic body is extended to be restored to its original state.

6. In Paragraph 4, Each of the movement guide plates has a control opening formed to correspond to one another, and a screw thread is formed on the inner surface of the control opening, and a control body is coupled to the movement guide plate through the control opening. The regulator is, A regulating head having an outer diameter larger than the inner diameter of the regulating opening; and It includes a control body that is formed in a rod shape, has an outer diameter corresponding to the inner diameter of the control opening, has screw threads formed on its outer surface that can engage with the control opening, and is connected to a control head. The adjustment head is in contact with one movable guide plate, and the adjustment body is positioned penetrating one movable guide plate through the adjustment opening and inserted into another movable guide plate. A welding guide device characterized by the fact that as the adjusting body is increasingly inserted into the adjusting opening of another moving guide plate, the gap between the moving guide plates decreases.

7. In Paragraph 2, The administrator terminal transmits input information to the weld body, receives confirmation information based on the input information from the weld body, receives the confirmation information, and transmits it to the weld body. When the confirmation information transmitted from the welding body to the manager terminal matches the confirmation information received from the manager terminal, the manager terminal transmits the received operation information to the welding body, and the welding body operates according to the operation information. The administrator terminal is, A display unit in the form of a display device located on one side of an administrator terminal and displaying verification data including verification information, and allowing the contacted verification data to be input into the administrator terminal; and It includes a detection unit in the form of a camera or sensor that is spaced apart from a display unit on one side of the administrator terminal and located at a first end portion of the administrator terminal, A welding guide device is A device plate formed in a plate shape corresponding to the upper surface of an administrator terminal, wherein a plurality of rectangular device openings are formed to correspond to verification data displayed on a display unit, a pair of movement guiding grooves are formed along the longitudinal direction of each device opening so as to face each other in a concave manner on both sides of each device opening, and a detection mark is formed on a first end portion of the lower surface; A pair of device guides positioned along the longitudinal direction of the device plate on both sides of the lower surface of the device plate; and The first device further includes a device control unit positioned on a device plate to correspond to each device opening and capable of opening and closing the device opening, and A manager terminal is positioned between device guides and coupled to the device guides, a device plate is positioned on the upper surface of the manager terminal, a detection unit is positioned to correspond to a detection mark, and a device control unit maintains the device opening in a closed state. When the detection unit detects a detection mark and the detected detection mark contains information corresponding to the administrator terminal, the display unit displays verification data including verification information transmitted to the administrator terminal, and the administrator terminal adjusts the device control unit according to the verification information to sequentially open the device openings one by one. The device control unit is, A control body comprising an electromagnet and positioned along the first end surface of the device opening; A control winder formed in a rod shape and positioned rotatably inside a device plate so as to be adjacent to a second end surface opposite to a first end surface of the device opening; A controllable movable body comprising a rod-shaped magnet, positioned in the device opening between the first and second end surfaces of the device opening, with both end portions each inserted into a movement guide groove and capable of moving along the movement guide groove; A control sheet formed in the shape of a sheet, connected to a control winder and a control moving body, and receiving a winding force from the control winder to the control winder; and It includes a pair of adjustment connectors, each formed in the form of a tension spring, positioned between a first end surface of the device opening and an adjustment movable body to connect the first end surface of the device opening and the adjustment movable body, with an adjustment body positioned between them. When the device control unit closes the device opening, the control body has a polarity different from that of the control movable and generates an attractive force between it and the control movable; the sum of the attractive force between the control body and the control movable and the force of the control connector attempting to position the control movable close to the control body is greater than the force of the control winder attempting to wind the control sheet, so the control sheet is unwound from the control winder and unfolded, positioned in a closed state of the device opening. In the device control section of the confirmation opening corresponding to the code included in the confirmation information, the control body is adjusted to have the same polarity as the control movable body and generates a repulsive force between it and the control movable body, and the sum of the repulsive force between the control body and the control movable body and the force of the control winder intending to wind the control sheet is greater than the force of the control connector intending to position the control movable body close to the control body, so that the control sheet is wound onto the control winder and moves the control movable body close to the control winder to open the device opening, and the control connector accumulates a restoring force as it extends. With the code included in the verification information exposed through the open device opening, the code of the display unit is contacted by the administrator through the device opening, input into the administrator terminal, and deleted from the display unit, and After the manager terminal transmits confirmation information to the welding body, the manager terminal adjusts the device control unit to close the open device openings, and A welding guide device characterized in that, in a device control section corresponding to each of a plurality of open device openings, the control body is controlled to have a polarity different from that of the control movable body and generates an attractive force between the control body and the control movable body, and the sum of the attractive force between the control body and the control movable body and the restoring force of the control connection is greater than the force of the control winder intended to wind the control sheet, so that the control movable body is moved to approach the control body by the control body and the control connection, and the control sheet is unwound from the control winder and unfolded to close the open device opening.

8. In paragraph 2, the welding guide device is, It further includes a second device that is registered to correspond to a manager terminal, is worn on the manager's hand to generate usage information, and transmits it to a welding body. A welding body stores usage information transmitted from a second device and receives new usage information from the second device; when the usage information previously stored in the welding body matches the new usage information transmitted from the second device to the welding body, the administrator terminal corresponding to the second device that transmitted the usage information transmits the received operation information to the welding body, and the welding body operates according to the operation information. The second device is, A first body comprising: a first wearable element in the shape of a band that surrounds and is fixed to the wrist of a manager; a plurality of second wearable elements, each formed in the shape of a thimble and into which a part of the manager's finger can be inserted; a plurality of wearable wires, each formed in the shape of a wire, having a first end portion connected to the second wearable element and a second end portion opposite to the first end portion inserted and positioned in the first wearable element; and a plurality of wearable winders, each connected to the second end portion of the wearable wire, positioned to be rotatably inside the first wearable element, and providing force to the wearable wire to wind the wearable wire; and It comprises a flat plate-shaped base; a plurality of inserts each formed in the shape of a square column, with an insertion space formed concavely on the upper surface and located on the upper surface of the base; a first guide body formed in the shape of a rack gear and located along the vertical direction on the inner surface of the insertion space; a contact plate formed in the shape of a plate corresponding to the cross-section of the insertion space and located inside the insertion space parallel to the upper surface of the insertion space at the top of the first guide body; a second guide body formed in the shape of a pinion gear and located inside the insertion space to mesh with the first guide body; and a second body including a handle that penetrates the inserts and is connected to the center of the second guide body to rotate the second guide body. When the second guide body is rotated in one direction by the handle, the first guide body is moved to move the contact plate in an upward or downward direction, and The manager wears the first body of the second device on the hand and inserts the manager's finger into the insertion space to bring the second wearable body into contact with the contact plate, and A welding guide device characterized by the first wearing body generating usage information by combining the rotation angles of the wearing winders and transmitting it to the welding body when the bent state of the manager's finger is maintained constant and the rotation angle of the wearing winder is maintained constant for a predetermined period of time.