Electric welding machine carrier
By designing the welding machine vehicle and using the switching mechanism of fixtures and locking pins, the problem of scattered and omissions in the movement of the welding machine parts is solved, achieving more efficient and stable welding operations.
Patent Information
- Application Number
- CN202421697503.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-07-17
AI Technical Summary
Existing welding machines are prone to scattering and missing parts during movement, resulting in low welding work efficiency.
A welding machine carrier is designed, including multiple fixing parts, stages and support parts. The welding machine components are fixed to the stage through removable connected fixing parts, and the locking pin is used to switch between the moving and locking states to ensure the stability and position accuracy of the components during movement.
It improves the integration and freedom of movement of welding parts, reduces scattering and omissions, improves the efficiency and stability of welding work, and adapts to the needs of different welding positions.
Smart Images

Figure CN223129779U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of carriers, in particular to a carrier for an electric welding machine. Background Art
[0002] Electric welding machines connect workpieces together by heating, melting and cooling to form strong welded joints. They are widely used in various fields, especially in the machinery manufacturing industry. During the use of electric welding machines, the electric welding machines usually need to be moved due to the different welding positions. However, electric welding machines currently usually include multiple parts, such as an electrical control box, a welding wire reel, a gas cylinder, a welding gun, etc. When moving more parts to the next welding position, they are prone to scattering or missing, resulting in low welding efficiency. Utility Model Content
[0003] The embodiment of the utility model provides an electric welding machine carrier to solve the problem of low welding efficiency in the prior art.
[0004] The utility model provides an electric welding machine carrier for carrying an electric welding machine, the electric welding machine carrier comprising: a plurality of fixing members, a carrier and a first support member, the plurality of fixing members are detachably connected to the carrier, one end of the first support member is fixed to the carrier, the other end of the first support member is provided with a moving member, the moving member is provided with a locking pin, and the components of the electric welding machine are fixed to the carrier through the plurality of fixing members;
[0005] Wherein, when the electric welder is moved by the electric welder carrier, the locking pin is in a state of unlocking the moving part, and when the electric welder is moved to a preset position by the electric welder carrier, the locking pin is in a state of locking the moving part.
[0006] Optionally, the carrier is provided with a plurality of connection holes, and each connection hole has the same size, and the spacing between adjacent connection holes in the plurality of connection holes is the same, and the plurality of fixing members are detachably connected to the carrier through the plurality of connection holes.
[0007] Optionally, the plurality of fixing members include a first fixing member and a second fixing member;
[0008] The first component of the electric welding machine is fixed to the carrier through the first fixing member;
[0009] The second fixing member includes a first fixing unit and a second fixing unit. The first fixing unit is connected to a first connection hole among the plurality of connection holes, and the second fixing unit is connected to a second connection hole among the plurality of connection holes. The second component of the electric welding machine is fixed to the carrier table through the first fixing unit and the second fixing unit, and the distance between the connection holes is adapted to the size of the second component of the electric welding machine. The distance between the connection holes is the distance between the first connection hole and the second connection hole.
[0010] Optionally, the plurality of fixing members correspond to N loading areas on the carrier table for accommodating N components of the electric welding machine. One loading area of the carrier table corresponds to one component of the electric welding machine, and N is a positive integer.
[0011] The electric welding machine carrier further includes a control module and N sensors. The control module is respectively connected to the N sensors and the locking pin. The N sensors are used to obtain the fixing states of the components in the N loading areas, and the control module controls the state of the locking pin according to the fixing states of the components obtained by the N sensors.
[0012] Wherein, when the fixing state indicates that all components of the electric welding machine in the N loading areas are fixed to the corresponding fixing members, the control module controls the locking pin to be in a state of unlocking the moving member.
[0013] Optionally, a first indicator light is arranged in each of the N loading areas. The first indicator light is used to indicate the fixing state of the component in the loading area.
[0014] Optionally, a second indicator light is arranged on the carrier table. The second indicator light is used to indicate the state of whether all components of the electric welding machine in the N loading areas are fixed to the corresponding fixing members.
[0015] Optionally, the electric welding machine carrier further includes a second support member. The second support member and the first support member are alternately arranged on the side of the carrier table away from the plurality of fixing members, and one end of the second support member is fixed to the carrier table, and an anti-slip pad is arranged at the other end of the second support member.
[0016] Optionally, the second support member includes a first support rod and a second support rod. The first support rod and the second support rod are nested. When the first support rod and the second support rod cooperate to make the second support member in an extended state, the length of the second support member is greater than or equal to the length of the first support member. When the second support member is in a shortened state, the length of the second support member is less than the length of the first support member.
[0017] Optionally, a lifting ring is further arranged on the carrier table, and the lifting rings are symmetrically arranged on the carrier table.
[0018] Optionally, the moving member is a wheel hub.
[0019] In an embodiment of the present utility model, a carrier for a welding machine is provided. Each component of the welding machine can be fixed to the carrier table through a plurality of fixing members, which improves the integration of the carrier for the welding machine, thereby reducing the situation of scattering and omission of each component of the welding machine and improving the welding efficiency. Moreover, the plurality of fixing members are detachably connected to the carrier table, and the setting positions of the fixing members on the carrier table can be adjusted according to the sizes of the components of the welding machine, which improves the degree of freedom of the carrier for the welding machine to better adapt to the welding machine without the need to modify the original welding machine. In addition, the carrier for the welding machine can be moved to the next welding position through the moving member. When the welding machine is moved to the welding position through the carrier for the welding machine, the locking pin can be in a state of locking the moving member, so that during the welding process, the situation of the carrier for the welding machine sliding is reduced and the welding stability is improved. The preferable movable advantage further improves the efficiency of the welding work. Description of the Drawings
[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0021] Figure 1 is one of the structural schematic diagrams of the carrier for the welding machine provided by the embodiment of the present utility model;
[0022] Figure 2 is the other structural schematic diagram of the carrier for the welding machine provided by the embodiment of the present utility model. Detailed Embodiments
[0023] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the drawings in the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0024] In the description and claims of the present utility model, terms such as "first", "second", etc. are used to distinguish similar objects, rather than to describe a specific order or sequence. It should be understood that the structures used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present utility model can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are generally of the same type, and the number of objects is not limited. For example, the first object can be one or more. In addition, "and / or" in the description and claims means at least one of the connected objects, and the character " / ", generally represents an "or" relationship between the associated objects before and after.
[0025] As Figures 1 to 2 shown, an embodiment of the present utility model provides a welding machine carrier for carrying a welding machine. The welding machine carrier includes: a plurality of fixing members 101, a carrier 102, and a first support member 103. The plurality of fixing members 101 are detachably connected to the carrier 102. One end of the first support member 103 is fixed to the carrier 102, and a moving member 104 is provided at the other end of the first support member 103. A locking pin is provided on the moving member 104. Each component of the welding machine is fixed to the carrier 102 by the plurality of fixing members 101;
[0026] Wherein, when moving the welding machine through the welding machine carrier, the locking pin is in a state of unlocking the moving member 104. When moving the welding machine to a preset position through the welding machine carrier, the locking pin is in a state of locking the moving member 104.
[0027] Exemplarily, each component of the welding machine is fixed to the carrier 102 by a plurality of fixing members 101. For a component with a smaller size (such as a welding torch of the welding machine), it can be clamped by one fixing member, that is, the fixing of the component with a smaller size is achieved by one fixing member, improving the space utilization rate; for a component with a larger size (such as a gas cylinder of the welding machine), it can be clamped by two or more fixing members, that is, the fixing of the component with a larger size is achieved by at least two fixing members, improving the fixing effect. In this way, by fixing each component of the welding machine with a plurality of fixing members 101, when moving the welding machine to the next welding position to be welded, the situation of each component of the welding machine being scattered and omitted is reduced, and the efficiency of the welding work is improved.
[0028] Among them, multiple fixing members 101 are detachably connected to the carrier 102, and the setting position of the fixing members 101 on the carrier 102 can be adjusted according to the sizes of various components of the welding machine (such as the electric control box, wire spool, gas cylinder, welding torch, etc.). All relevant components such as the welding machine body, control panel, wire spool, gas cylinder, welding torch, etc. are assembled on the carrier 102, improving the integration and freedom degree of the welding machine carrier; and there is no need to modify the original welding machine. In particular, it has better mobility advantages in construction scenarios such as shipbuilding and large engineering vehicles, increasing the welding efficiency.
[0029] Exemplarily, one end of the first support member 103 is fixed to the carrier 102, and a moving member 104 is provided at the other end of the first support member 103. The welding machine carrier can be moved through the moving member 104. Among them, the moving member 104 can be a free wheel hub (analogous to an automobile wheel), and the welding machine carrier can move freely through the free wheel hub in production sites such as factories and workshops, improving the convenience of transporting the welding machine. In some other examples, the moving member 104 can be a fixed wheel hub (analogous to a train wheel), and the welding machine carrier can move on a preset track in production sites such as factories and workshops. By designing the preset track route, all positions to be welded can be covered, improving the efficiency of the welding machine carrier moving from the current welding position to the next position to be welded, thereby improving the efficiency of the welding work.
[0030] Exemplarily, when the locking pin is in a state of locking the moving member 104, it can be inserting the locking pin into a slot or hole of the moving member 104; when the locking pin is in a state of unlocking the moving member 104, it can be withdrawing the locking pin from the slot or hole of the moving member 104. By providing a locking pin on the moving member 104, when moving the welding machine to a preset position through the welding machine carrier, the locking pin can be inserted into a slot or hole of the moving member 104 so that the locking pin is in a state of locking the moving member 104. In this way, during the welding process, the situation of the welding machine carrier sliding is reduced, improving the stability of the welding work; after the welding work is completed at the current position, the locking pin can be withdrawn from the slot or hole of the moving member 104 so that the locking pin is in a state of unlocking the moving member 104. In this way, the welding machine can be moved to the next position to be welded through the welding machine carrier, thereby improving the efficiency of the welding work.
[0031] In an embodiment of the present utility model, a carrier for a welding machine is provided. Each component of the welding machine can be fixed to a carrier table 102 through a plurality of fixing members 101, which improves the integration of the carrier for the welding machine, thereby reducing the situation of components of the welding machine being scattered or missing, and improving the welding efficiency. Moreover, the plurality of fixing members 101 are detachably connected to the carrier table 102, and the setting positions of the fixing members 101 on the carrier table 102 can be adjusted according to the sizes of the components of the welding machine, which improves the degree of freedom of the carrier for the welding machine to better adapt to the welding machine without the need to modify the original welding machine. In addition, the carrier for the welding machine can be moved to the next welding position through a moving member 104. When the welding machine is moved to the welding position through the carrier for the welding machine, the locking pin can be in a state of locking the moving member 104, so that during the welding process, the situation of the carrier for the welding machine sliding is reduced, and the welding stability is improved. The preferable movable advantage further improves the efficiency of the welding work.
[0032] Optionally, the carrier table 102 is provided with a plurality of connection holes 1021, and the sizes of each of the plurality of connection holes 1021 are the same. The distances between adjacent connection holes among the plurality of connection holes 1021 are the same. The plurality of fixing members 101 are detachably connected to the carrier table 102 through the plurality of connection holes 1021.
[0033] In this embodiment, a plurality of connection holes are formed in the carrier table 102, and the sizes of each of the connection holes 1021 are the same. The distances between adjacent connection holes among the plurality of connection holes 1021 are the same. The standardized sizes and distances of the connection holes 1021 enable the fixing members 101 to be flexibly arranged in different connection holes 1021, reducing the limitation that specific fixing members need to be arranged at specific positions on the carrier table. In this way, the fixing members 101 can be flexibly adjusted in position on the carrier table 102 according to actual usage requirements, enhancing the adaptability between the carrier for the welding machine and the welding machine, and thus improving the fixing effect on the welding machine.
[0034] Optionally, the plurality of fixing members 101 include a first fixing member and a second fixing member;
[0035] The first component of the welding machine is fixed to the carrier table through the first fixing member;
[0036] The second fixing member includes a first fixing unit and a second fixing unit. The first fixing unit is connected to a first connection hole among the plurality of connection holes 1021, and the second fixing unit is connected to a second connection hole among the plurality of connection holes 1021. The second component of the welding machine is fixed to the carrier table 102 through the first fixing unit and the second fixing unit, and the distance between the connection holes is adapted to the size of the second component of the welding machine. The distance between the connection holes is the distance between the first connection hole and the second connection hole.
[0037] In some alternative embodiments, the first component may be a relatively small component on the welding machine (such as the welding torch of the welding machine), and one first component can be fixed by one first fixing member. Specifically, a first clamping groove is provided at the first end of the first fixing member, and a clamping structure is provided at the second end of the first fixing member. The first clamping groove of the first fixing member is clamped with the first component of the welding machine, and the clamping structure of the first fixing member can be fixed in the corresponding connection hole 1021 on the carrier 102 by bolts. By fixing the first component with the first fixing member, when moving the welding machine to the next welding position to be welded, the situation of the first component being scattered or omitted is reduced, and the efficiency of the welding work is improved. Moreover, the clamping structure of the first fixing member can be detachably connected to the connection hole 1021 on the carrier 102, and the first fixing member can be flexibly adjusted in position on the carrier 102 according to actual use requirements, improving the space utilization rate and reducing the interference between components, thereby improving the fixing effect on the welding machine.
[0038] In some other alternative embodiments, the second component may be a relatively large component on the welding machine (such as the gas cylinder of the welding machine), and the second component can be fixed by a second fixing member. The second fixing member includes a first fixing unit and a second fixing unit. In other words, the second component can be fixed by two or more fixing units. The number of fixing units can be specifically determined according to the actual size of the second component and the size of the carrier 102, and the size of the fixing unit can be the same as the size of the first fixing member.
[0039] In an example, taking the fixation of the second component by two fixing units (i.e., the first fixing unit and the second fixing unit) as an example, an exemplary description is given. A part of the second clamping groove is provided at the first end of the first fixing unit, and another part of the second clamping groove is provided at the first end of the second fixing unit. Clamping structures are provided at the second ends of both the first fixing unit and the second fixing unit. In this way, the first end of the first fixing unit cooperates with the first end of the second fixing unit to form the second clamping groove, and the second clamping groove is clamped with the second component of the welding machine. By fixing the second component with the second fixing member, when moving the welding machine to the next welding position to be welded, the situation of the second component being scattered or omitted is reduced, and the efficiency of the welding work is improved.
[0040] Moreover, the clamping structure of the first fixing unit can be detachably connected to the corresponding first connection hole on the carrier 102 by bolts, and the clamping structure of the second fixing unit can also be detachably connected to the corresponding second connection hole on the carrier 102 by bolts. In this way, the first fixing unit and the second fixing unit can be flexibly adjusted in position on the carrier 102 according to actual usage requirements, so that the distance between the first connection hole and the second connection hole is adapted to the second component of the electric welding machine, improving the fixing effect of the second fixing member on the electric welding machine. The situation where the electric welding machine slips off the electric welding machine carrier is reduced, thereby improving the efficiency of the welding work.
[0041] It should be understood that in the case where the size of the second component is larger, the second fixing member may further include a third fixing unit, and the second component of the electric welding machine can be fixed to the carrier 102 by the first fixing unit, the second fixing unit and the third fixing unit.
[0042] Optionally, the plurality of fixing members 101 correspond to N loading areas on the carrier 102 for accommodating N components of the electric welding machine. One loading area of the carrier 102 corresponds to one component of the electric welding machine, and N is a positive integer;
[0043] The electric welding machine carrier further includes a control module and N sensors. The control module is respectively connected to the N sensors and the locking pin. The N sensors are used to obtain the fixing states of the components in the N loading areas, and the control module controls the state of the locking pin according to the fixing states of the components obtained by the N sensors;
[0044] Wherein, when the fixing state indicates that each component of the electric welding machine in the N loading areas is fixed to the corresponding fixing member, the control module controls the locking pin to be in a state of unlocking the moving member.
[0045] In this embodiment, it can be that one fixing member corresponds to one loading area on the stage 102 for accommodating a component of the electric welding machine, or it can be that multiple fixing members cooperate with each other to correspond to one loading area on the stage 102 for accommodating a component of the electric welding machine. In this way, multiple fixing members 101 correspond to N loading areas on the stage 102 for accommodating N components of the electric welding machine, and one loading area of the stage 102 corresponds to one component of the electric welding machine. By arranging a sensor in each of the N loading areas to obtain the fixing state of the electric welding machine components in the corresponding loading area, when it is determined that the fixing state indicates that all components of the electric welding machine in the N loading areas are fixed to the corresponding fixing members, the control module is set to control the locking pin to be in a state of unlocking the moving member, so as to move the electric welding machine to the next welding position through the electric welding machine carrier. And when the fixing state indicates that there is a component of the electric welding machine in any one of the N loading areas that is not fixed, it means that there are scattered or missing components of the electric welding machine. At this time, the control module controls the locking pin to maintain the state of locking the moving member. After all components of the electric welding machine are fixed to the fixing members of the electric welding machine carrier, the control module controls the locking pin to be in a state of unlocking the moving member to move the electric welding machine to the next welding position, reducing the situation of scattering and omission of each component of the electric welding machine and improving the efficiency of the welding work.
[0046] Among them, the sensor can be an infrared sensor, an optoelectronic sensor, etc., to detect whether the electric welding machine component in the loading area is connected to the corresponding fixing member 101.
[0047] In some alternative examples, a first indicator light can be arranged in each of the N loading areas, and the first indicator light is used to indicate the fixing state of the component in the loading area. Specifically, taking the first loading area among the N loading areas as an example, the first loading area is any one of the N loading areas. A first indicator light is arranged in the first loading area. When the fixing state of the first loading area indicates that the component of the electric welding machine is fixed to the corresponding fixing member, the first indicator light can indicate a green light; when the fixing state of the first loading area indicates that the component of the electric welding machine is not fixed to the corresponding fixing member, the first indicator light can indicate a red light. In this way, the components of the electric welding machine carried on the electric welding machine carrier can be quickly inspected according to the color indicated by the first indicator light. When moving the electric welding machine to the next position to be welded, the situation of scattering and omission of each component of the electric welding machine is reduced, and the efficiency of the welding work is improved.
[0048] It should be understood that the above scheme can also be adopted for other loading areas among the N loading areas, and the same technical effects can be achieved. To avoid repetition, it will not be elaborated here.
[0049] In some optional examples, a second indicator light may also be provided on the carrier table 102, and the second indicator light is used to indicate whether all components of the electric welding machine in the N loading areas are fixed to the corresponding fixing members. Further, by providing a second indicator light on the carrier table 102, it is used to indicate whether all components of the electric welding machine in the N loading areas are fixed to the corresponding fixing members. For example, in the case where any of the electric welding machine components in the N loading areas is not fixed, it means that there are scattered or missing electric welding machine components. At this time, the second indicator light can flash to remind that there are scattered or missing electric welding machine components, and the control module is used to control the locking pin to keep the moving member locked; after all components of the electric welding machine are fixed to the fixing members of the electric welding machine carrier, at this time, the second indicator light can be on constantly to indicate that all components of the electric welding machine have been fixed, and the control module is used to control the locking pin to be in the unlocked state of the moving member, so as to move the electric welding machine to the next welding position, reducing the situation of scattered or missing components of the electric welding machine and improving the efficiency of the welding work.
[0050] Optionally, the electric welding machine carrier further includes a second support member 105, and the second support member 105 and the first support member 103 are alternately arranged on the side of the carrier table 102 away from the plurality of fixing members 101, and one end of the second support member 105 is fixed to the carrier table 102, and an anti-slip pad 106 is provided at the other end of the second support member 105.
[0051] In this embodiment, there may be 4 first support members 103, 4 second support members 105, and the carrier table 102 may be a rectangular platform. The 4 first support members 103 are arranged at the vertex positions on the side of the carrier table 102 facing the ground, and the second support members 105 may be arranged on the sides between adjacent vertices of the carrier table 102, that is, the second support members 105 may be arranged between adjacent first support members 103 so that the second support members 105 and the first support members 103 are alternately arranged. When it is necessary to move the electric welding machine to the next welding position to be welded, the locking pin can be controlled to be in the unlocked state of the moving member 104, and the moving member 104 on the first support member 103 is used for moving; when reaching the welding position to be welded, the locking pin can be controlled to be in the locked state of the moving member 104, and the second support member 105 is used to support the carrier table 102 and the electric welding machine on the carrier table 102. In addition, an anti-slip pad 106 is further provided on the second support member 105, further improving the support effect of the second support member 105, thereby enhancing the stability of the electric welding machine carrier.
[0052] Optionally, the second support member 105 includes a first support rod and a second support rod. The first support rod and the second support rod are nested. When the first support rod cooperates with the second support rod such that the second support member 105 is in an extended state, the length of the second support member 105 is greater than or equal to the length of the first support member 103. When the second support member 105 is in a contracted state, the length of the second support member 105 is less than the length of the first support member 103.
[0053] In this embodiment, the first end of the first support rod is fixed to the carrier 102. The second end of the first support rod is movably connected to the first end of the second support rod. The second support rod is sleeved inside the first support rod, and an anti-slip pad 106 is provided at the second end of the second support rod. In this way, the cooperation between the first support rod and the second support rod enables the length of the second support member 105 to be adjustable.
[0054] When it is necessary to move the welding machine to the next welding position to be welded, the lock pin can be controlled to be in a state of unlocking the moving member 104, so that the welding machine carrier can be moved through the moving member 104 on the first support member 103. At this time, the second support member 105 is in a contracted state, such that the length of the second support member 105 is less than the length of the first support member 103, so as to facilitate the movement of the welding machine carrier to the next welding position to be welded;
[0055] When the welding machine carrier reaches the welding position to be welded, the lock pin can be controlled to be in a state of locking the moving member 104, reducing the situation of the welding machine carrier sliding, and enabling the second support member 105 to be in an extended state. At this time, the length of the second support member 105 is greater than or equal to the length of the first support member 103. In this way, the second support member 105 can support the carrier 102 and the welding machine on the carrier 102, and the anti-slip pad 106 on the second support member 105 further improves the supporting effect of the second support member 105, thereby further enhancing the stability of the welding machine carrier.
[0056] It should be understood that the length of the first support member 103 is the sum of the length of the body of the first support member 103 and the length of the moving member 104, and the length of the second support member 105 is the sum of the length of the body of the second support member 105 and the length of the anti-slip pad 106.
[0057] Optionally, a lifting ring 107 is further provided on the carrier 102, and the lifting rings 107 are symmetrically arranged on the carrier 102.
[0058] In this embodiment, by providing the lifting rings 107 on the carrier 102, the requirements for high-altitude welding operations can be met. Specifically, a lifting ring 107 can be provided on each side of the carrier 102, and the lifting ring 107 is connected to the cable of the crane. The crane contracts the cable to move the welding machine carrier to the high-altitude welding position. In this way, the height of the welding machine carrier from the ground can be flexibly adjusted, thereby expanding the scope of welding work and improving welding efficiency. Among them, the two lifting rings 107 are symmetrically arranged on the carrier 102 to enhance the stability during the lifting of the welding machine carrier. Preferably, a lifting ring 107 can be provided around the carrier 102. By providing 4 lifting rings 107, the connection points between the welding machine carrier and the crane are increased, thereby further enhancing the stability during the movement of the welding machine carrier.
[0059] It should be noted that in this article, the term "including", "comprising" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "including one..." does not exclude the existence of another identical element in the process, method, article or device including the element. In addition, it should be pointed out that the scope of the methods and devices in the embodiments of the present invention is not limited to performing functions in the order discussed, and may also include performing functions in a substantially simultaneous manner or in a reverse order according to the functions involved. For example, the described method may be performed in an order different from that described, and various steps may be added, omitted, or combined. Additionally, the features described with reference to certain examples may be combined in other examples.
[0060] The embodiments of the present invention have been described above in conjunction with the accompanying drawings. However, the present invention is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present invention, those of ordinary skill in the art can also make many forms without departing from the purpose and scope protected by the claims of the present invention, and all of them belong to the protection scope of the present invention.
Claims
1. A welding machine carrier, characterized in that, For carrying an electric welding machine, the electric welding machine carrier includes: a plurality of fixing members, a carrier table, and a first support member. The plurality of fixing members are detachably connected to the carrier table. One end of the first support member is fixed to the carrier table, and a moving member is provided at the other end of the first support member. A locking pin is provided on the moving member. Each component of the electric welding machine is fixed to the carrier table by the plurality of fixing members; Wherein, when moving the electric welding machine by the electric welding machine carrier, the locking pin is in a state of unlocking the moving member. When moving the electric welding machine to a preset position by the electric welding machine carrier, the locking pin is in a state of locking the moving member.
2. The welding machine carrier according to claim 1, wherein, The carrier table is provided with a plurality of connection holes, and the size of each connection hole is the same. The distance between adjacent connection holes among the plurality of connection holes is the same. The plurality of fixing members are detachably connected to the carrier table through the plurality of connection holes.
3. The welding machine carrier according to claim 2, wherein, The plurality of fixing members include a first fixing member and a second fixing member; The first component of the electric welding machine is fixed to the carrier table by the first fixing member; The second fixing member includes a first fixing unit and a second fixing unit. The first fixing unit is connected to a first connection hole among the plurality of connection holes, and the second fixing unit is connected to a second connection hole among the plurality of connection holes. The second component of the electric welding machine is fixed to the carrier table by the first fixing unit and the second fixing unit, and the connection hole spacing is adapted to the size of the second component of the electric welding machine. The connection hole spacing is the distance between the first connection hole and the second connection hole.
4. The welding machine carrier according to claim 1, wherein The plurality of fixing members correspond to N loading areas on the carrier table for accommodating N components of the electric welding machine. One loading area of the carrier table corresponds to one component of the electric welding machine, and N is a positive integer; The electric welding machine carrier further includes a control module and N sensors. The control module is respectively connected to the N sensors and the locking pin. The N sensors are used to obtain the fixing states of the components in the N loading areas. The control module controls the state of the locking pin according to the fixing states of the components obtained by the N sensors; Wherein, when the fixing state indicates that each component of the electric welding machine in the N loading areas is fixed to the corresponding fixing member, the control module controls the locking pin to be in a state of unlocking the moving member.
5. The welding machine carrier according to claim 4, wherein, A first indicator light is provided in each of the N loading areas. The first indicator light is used to indicate the fixing state of the component in the loading area.
6. The welding machine carrier according to claim 4, characterized in that, A second indicator light is provided on the carrier table. The second indicator light is used to indicate the state of whether each component of the electric welding machine in the N loading areas is fixed to the corresponding fixing member.
7. The welding machine carrier according to claim 1, characterized in that, The electric welding machine carrier further includes a second support member. The second support member and the first support member are alternately arranged on the side of the carrier table away from the plurality of fixing members. One end of the second support member is fixed to the carrier table, and an anti-slip pad is provided at the other end of the second support member.
8. The welding machine carrier according to claim 7, wherein, The second support member includes a first support rod and a second support rod, the first support rod and the second support rod are nested, and when the first support rod and the second support rod cooperate to make the second support member in an extended state, the length of the second support member is greater than or equal to the length of the first support member, and when the second support member is in a shortened state, the length of the second support member is less than the length of the first support member.
9. The welding machine carrier according to claim 1, wherein A lifting ring is further provided on the carrier table, and the lifting rings are symmetrically arranged on the carrier table.
10. The welding machine carrier according to claim 1, characterized in that, The moving member is a wheel hub.