Environment-friendly integrated welding wire annealing furnace

By designing opening and closing mechanisms and placement mechanisms, the automatic handling and placement of welding wire and uniform heating are achieved. Combined with the double-inlet and double-outlet structure and cooling mechanism, the problems of inconvenient handling and placement of welding wire and uneven heating in the welding wire annealing furnace are solved, thereby improving work efficiency and processing effect.

CN120905503AInactive Publication Date: 2025-11-07DONGYING XINDING TECH DEV CO LTD
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Patent Information

Application Number
CN202511125543.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-12
Publication Date
2025-11-07
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing welding wire annealing furnaces are inconvenient for handling welding wire, result in uneven heating of the welding wire, affect the annealing effect, and have a simple structure that leads to low work efficiency.

Method used

The furnace lid is automatically opened and closed by an opening and closing mechanism and a placement mechanism. The welding wire is evenly installed and rotated by a flipping motor and an adjusting screw. Combined with a double-inlet and double-outlet structure, two sets of welding wires can be annealed at the same time. A cooling mechanism is also provided for uniform cooling.

Benefits of technology

The welding wire is easy to handle, heats evenly, has a good annealing effect, and significantly improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of welding wire annealing furnaces, in particular to an environment-friendly integrated welding wire annealing furnace which enables welding wires to be taken and placed more conveniently, enables the welding wires to be heated more uniformly, enables the annealing treatment effect of the welding wires to be better, and effectively improves the working efficiency. Comprising a base, four sets of supporting columns are symmetrically connected to the bottom end of the base, an annealing furnace body is fixedly installed at the top end of the base, two sets of furnace covers cover two sets of taking and placing openings correspondingly, connecting battens are hinged between the two ends of four sets of hinge bases and the two ends of two sets of double-end hinge bases correspondingly, and two sets of guide columns are slidably arranged on two sets of guide sleeves in a bilateral symmetry mode; the inner sides of the four sets of guide columns are connected with the four sets of sliding blocks correspondingly, an adjusting lead screw is rotationally arranged between each set of furnace cover and each set of separation disc, the outer sides of the two sets of adjusting lead screws are connected with the output ends of the two sets of overturning motors correspondingly, and the two sets of adjusting lead screws are each sleeved with two sets of welding wire clamping discs in a screwed mode. A plurality of sets of welding wire clamping grooves are annularly formed in each set of welding wire clamping disc at equal intervals.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of welding wire annealing furnace, in particular to an environment-friendly integrated welding wire annealing furnace. BACKGROUND

[0002] With the development of the times, welding has become a common way of manufacturing process, welding wire is needed in the welding process, welding wire is a metal wire welding material used as filler metal or as a conductor, in gas welding and tungsten inert gas welding, welding wire is used as filler metal, in submerged arc welding, electroslag welding and other gas tungsten arc welding, welding wire is both filler metal.

[0003] The processing process of welding wire is relatively complex, welding wire annealing furnace is needed for annealing treatment in the welding wire production and processing process, annealing is a kind of metal heat treatment process, which means slowly heating the metal to a certain extent, keeping it for a long time, and then cooling it at a suitable speed, the purpose is to reduce hardness, improve cutting machinability, reduce residual stress, stabilize size, reduce deformation and crack tendency, refine grains, adjust organization, eliminate organizational defects, through annealing treatment, the material distribution of welding wire can be more uniform, the toughness is stronger, and the physical properties are better.

[0004] The commonly used welding wire annealing furnace at present adopts electric annealing furnace, but the existing electric annealing furnace has a single structure, in use, the cover needs to be opened manually first, then the welding wire is laid flat on the processing table, and then the processing table is sent into the furnace body, after closing the cover, annealing treatment is carried out, in the actual working process, the welding wire is not convenient to take and place, the welding wire is laid flat, which makes the welding wire unevenly heated, affects the annealing effect of the welding wire, and the furnace body structure is the same inlet and outlet, only one group of welding wire can be treated at a time, which affects the work efficiency. SUMMARY

[0005] To solve the above technical problems, the present application provides an environment-friendly integrated welding wire annealing furnace which can make the welding wire more convenient to take and place, make the welding wire more evenly heated, make the welding wire annealing treatment effect better, and effectively improve the work efficiency.

[0006] In order to achieve the above object, the present application provides the following technical scheme: including base, opening and closing mechanism and placing mechanism, the bottom end of the base is symmetrically connected with four groups of support columns, the top end of the base is fixedly installed with annealing furnace body, the opening and closing mechanism comprises two groups of furnace covers, the left and right ends of the annealing furnace body are provided with taking and placing openings, the two groups of furnace covers are respectively covered on the two groups of taking and placing openings, two groups of lifting oil cylinders are fixedly installed on the base in front and back symmetry, the output ends of the two groups of lifting oil cylinders are both connected with double-head articulated seats, two groups of double-head articulated seats are connected with two groups of articulated shafts, two groups of guide sleeves are connected on the circumferential outer wall of the annealing furnace body in front and back symmetry, the bottom ends of the two groups of guide sleeves are provided with sliding grooves, two groups of sliding blocks are symmetrically and slidably arranged on the two groups of guide sleeves through the sliding grooves, the bottom ends of the four groups of sliding blocks are connected with articulated seats, the two ends of the four groups of articulated seats and the two groups of double-head articulated seats are both articulated with connecting strips, two groups of guide columns are symmetrically and slidably arranged on the two groups of guide sleeves, and the inner sides of the four groups of guide columns are respectively connected with the four groups of sliding blocks, two groups of connecting plates are symmetrically connected on the two groups of furnace covers, and the outer sides of the four groups of guide columns are respectively connected with the four groups of connecting plates, the placing mechanism comprises two groups of overturning motors, the two groups of overturning motors are respectively fixedly installed on the two groups of furnace covers, two groups of separation discs are symmetrically and slidably arranged in the annealing furnace body, an adjusting screw is rotatably arranged between each group of furnace cover and each group of separation disc, the outer sides of the two groups of adjusting screws are respectively connected with the output ends of the two groups of overturning motors, two groups of welding wire clamping discs are screwedly sleeved on the two groups of adjusting screws, and a plurality of welding wire clamping grooves are annularly and equidistantly formed in each group of welding wire clamping disc.

[0007] Preferably, the top end of the annealing furnace body is provided with a cooling mechanism, the cooling mechanism comprises two groups of fixing frames, the two groups of fixing frames are fixedly installed on the annealing furnace body in left and right symmetry, the two groups of fixing frames are both fixedly installed with cooling fans, the output ends of the two groups of cooling fans are both communicated with blowing pipes, the output ends of the two groups of blowing pipes are both provided with air scoops, the two groups of fixing frames are both connected with fixed plates, and the bottom ends of the two groups of fixed plates are respectively connected with the two groups of blowing pipes.

[0008] Preferably, the left and right ends of the inner side of the annealing furnace body are both fixedly connected with sealing tables, and the inner sides of the two groups of furnace covers are both connected with high-temperature sealing rings matched with the sealing tables.

[0009] Preferably, the bottom ends of the two groups of furnace covers are both connected with roller frames, the two groups of roller frames are both rotatably installed with supporting rollers, and the bottom ends of the two groups of supporting rollers are in rolling contact with the top end of the base.

[0010] Preferably, the bottom ends of the four groups of support columns are all provided with threaded holes, and the four groups of support columns are all screwed with screws through the threaded holes, and the bottom ends of the four groups of screws are all connected with foot plates.

[0011] Preferably, the top end of the air funnel is communicated with a plug sleeve, two sets of fixed bolts are screwed on the plug sleeve, and two sets of threaded pin holes are arranged on the air blowing pipe and matched with the fixed bolts.

[0012] Preferably, a plurality of ventilation holes are arranged on the two sets of partition plates.

[0013] Preferably, a sliding sleeve is fixedly arranged on the outer wall of each of the four sets of sliding blocks.

[0014] Preferably, an anti-skid pad is arranged at the bottom end of each of the four sets of foot plates.

[0015] Preferably, a reinforcing plate is arranged at the inner side of each of the two sets of fixing frames, and the bottom end of each of the two sets of reinforcing plates is connected with the outer wall of the annealing furnace body.

[0016] Compared with the prior art, the beneficial effects of the present application are as follows: when the device is used, the furnace cover needs to be opened first, the lifting oil cylinder is started first, the lifting oil cylinder drives the double-head hinged seat to move upwards, the double-head hinged seat drives the sliding blocks to slide outwards along the sliding grooves through the connecting strip plates, so that the sliding blocks drive the guide columns to slide outwards along the guide sleeves, the guide columns push the furnace cover outwards, the furnace cover can be opened, after the furnace cover is opened, the welding wire clamping disc can be rotated according to the length of the welding wire, the distance between the welding wire clamping discs is kept moderate, the welding wire slots on the two welding wire clamping discs are aligned left and right, then the two ends of the welding wire are clamped in the welding wire slots, the welding wire is evenly installed on the welding wire clamping disc through the clamping of the welding wire slots, then the lifting oil cylinder is started again, the lifting oil cylinder drives the double-head hinged seat to move downwards, the double-head hinged seat drives the sliding blocks to slide inwards along the sliding grooves through the connecting strip plates, so that the sliding blocks drive the guide columns to slide inwards, thereby the guide columns drive the furnace cover to close, so that the welding wire can be sent into the annealing furnace body for annealing treatment, during this period, the turning motor is started, the turning motor drives the adjusting screw rod to rotate, the adjusting screw rod drives the welding wire clamping disc to rotate, thereby the welding wire clamping disc drives the welding wire to rotate, so that the welding wire annealing treatment is more uniform, when the welding wire annealing treatment is completed, the furnace cover is opened again, and the welding wire clamping disc is pulled out, after cooling, the welding wire can be taken off from the welding wire clamping disc, the device can realize automatic opening and closing of the furnace cover through the setting of the opening and closing mechanism, the welding wire can be evenly arranged through the setting of the placing mechanism, the welding wire is installed in a clamping manner, so that in the actual working process, the welding wire can be conveniently taken and placed, the welding wire is heated more uniformly, the welding wire annealing treatment effect is better, in addition, the device adopts a double-in double-out structure, the welding wire can be installed on the two welding wire clamping discs on the left and right sides of the annealing furnace body each time, so that two sets of welding wires can be simultaneously annealed, thereby the working efficiency can be effectively improved. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is the isometric structural diagram of the application; Figure 2 is the front side structural diagram of the application; Figure 3 is the right side structural diagram of the application; Figure 4 is the right side sectional structural diagram of the application; Figure 5 is the local enlarged structural diagram at A of the application; Figure 6 is the isometric sectional structural diagram of the cooperation between the partition disc and the annealing furnace body in the application; Figure 7 is the isometric structural diagram of the welding wire clamping disc in the application; Figure 8 is the front side sectional structural diagram of the cooperation between the guide column and the guide sleeve in the application; Figure 9 is the right side sectional structural diagram of the cooperation between the sliding block and the guide sleeve in the application; Figure 10 is the local structural diagram of the installation of the air scoop and the air blowing pipe in the application; Figure 11 is the local sectional structural diagram of the installation of the air scoop and the air blowing pipe in the application; Figure 12 is the local sectional structural diagram of the connection between the lead screw and the support column in the application; Figure 13 is the isometric structural diagram of the furnace cover in the application; Figure 14 is the front side local sectional structural diagram of the annealing furnace body in the application; Figure 15 is the isometric structural diagram of the double-end hinge seat in the application; Markings in the drawings: 1, base; 2, support column; 3, annealing furnace body; 4, furnace cover; 5, lifting oil cylinder; 6, double-end hinge seat; 7, hinge shaft; 8, guide sleeve; 9, sliding block; 10, hinge seat; 11, connecting strip plate; 12, guide column; 13, connecting plate; 14, overturning motor; 15, partition disc; 16, adjusting lead screw; 17, welding wire clamping disc; 18, welding wire clamping groove; 19, fixing frame; 20, cooling fan; 21, air blowing pipe; 22, air scoop; 23, fixing plate; 24, sealing table; 25, high-temperature sealing ring; 26, roller frame; 27, supporting roller; 28, lead screw; 29, foot plate; 30, plug-in sleeve pipe; 31, fixing bolt; 32, ventilation hole; 33, sliding sleeve; 34, anti-skid pad; 35, reinforcing plate. DETAILED DESCRIPTION

[0018] The specific embodiments of the present application will be further described with reference to the drawings and examples. The following examples are intended to illustrate the present application and are not intended to limit the scope of the present application.

[0019] Examples See Figures 1-15The utility model discloses an environmental protection integrated type welding wire annealing furnace, including base 1, the bottom end symmetrical connection of base 1 is equipped with four groups of support column 2, and the top of base 1 is fixedly installed annealing furnace body 3, and the left and right two ends of annealing furnace body 3 are equipped with the taking and placing mouth, and two groups of furnace cover 4 are covered respectively on two groups of taking and placing mouth, and two groups of lifting oil cylinder 5 are fixedly installed on base 1 symmetrically, and the output of two groups of lifting oil cylinder 5 is connected with double -end articulated seat 6, and two groups of double -end articulated seat 6 are connected with two groups of articulated shaft 7, and the circumference outer wall of annealing furnace body 3 is connected with two groups of guide sleeve 8 symmetrically, and the bottom of two groups of guide sleeve 8 is equipped with the sliding slot, and two groups of guide sleeve 8 are slid symmetrically with two groups of sliding block 9 through the cooperation of sliding slot, and the bottom of four groups of sliding block 9 is connected with articulated seat 10, and the both ends of four groups of articulated seat 10 and two groups of double -end articulated seat 6 are articulated with connecting strip board 11, and two groups of guide sleeve 8 are slid symmetrically with two groups of guide column 12, and the inside of four groups of guide column 12 is connected with four groups of sliding block 9 respectively, and two groups of furnace cover 4 are connected with two groups of connecting plate 13 symmetrically, and the outside of four groups of guide column 12 is connected with four groups of connecting plate 13 respectively, and two groups of turnover motor 14 are fixedly installed on two groups of furnace cover 4 respectively, and two groups of separating disc 15 are slid in annealing furnace body 3 symmetrically, and the adjusting screw rod 16 is rotatably arranged between each group of furnace cover 4 and each group of separating disc 15, and the outside of two groups of adjusting screw rod 16 is connected with the output of two groups of turnover motor 14 respectively, and two groups of welding wire clamping disc 17 are screw -assembled on two groups of adjusting screw rod 16, and a plurality of welding wire clamping grooves 18 are annularly and equidistantly formed on each group of welding wire clamping disc 17.When the device is used, the furnace cover 4 needs to be opened first. Firstly, the lifting oil cylinder 5 is started to make the lifting oil cylinder 5 push the double-head articulated seat 6 to move upwards. The double-head articulated seat 6 pushes the sliding block 9 to slide outwards along the sliding groove through the connecting strip plate 11, so that the sliding block 9 drives the guide column 12 to slide outwards along the guide sleeve 8. The guide column 12 pushes the furnace cover 4 outwards, so that the furnace cover 4 can be opened. After the furnace cover 4 is opened, the welding wire clamping disc 17 can be rotated according to the length of the welding wire, so that the welding wire clamping disc 17 keeps a moderate distance and the welding wire clamping slots 18 on the two welding wire clamping discs 17 are aligned. Then, the two ends of the welding wire are clamped in the welding wire clamping slots 18. Through the clamping of the welding wire clamping slots 18, the welding wire can be evenly installed on the welding wire clamping disc 17 in a ring shape. Then, the lifting oil cylinder 5 is started again to make the lifting oil cylinder 5 drive the double-head articulated seat 6 to move downwards. The double-head articulated seat 6 pulls the sliding block 9 to slide inwards along the sliding groove through the connecting strip plate 11, so that the sliding block 9 drives the guide column 12 to slide inwards. Thus, the guide column 12 drives the furnace cover 4 to close, so that the welding wire can be sent into the annealing furnace body 3 for annealing treatment. During this period, the reversing motor 14 is started to drive the adjusting screw 16 to rotate, and the adjusting screw 16 drives the welding wire clamping disc 17 to rotate, so that the welding wire clamping disc 17 drives the welding wire to rotate. In this way, the annealing treatment of the welding wire is more uniform. When the annealing treatment of the welding wire is completed, the furnace cover 4 is opened again, and the welding wire clamping disc 17 is pulled out. After cooling, the welding wire can be taken off from the welding wire clamping disc 17. Through the setting of the opening and closing mechanism, the automatic opening and closing of the furnace cover 4 can be realized. Through the setting of the placing mechanism, the welding wire can be evenly arranged. The welding wire is installed in a clamping manner, so that the welding wire can be conveniently taken and placed in the actual working process, the welding wire is heated more uniformly, and the annealing treatment effect of the welding wire is better. In addition, the device adopts a double-in and double-out structure. Welding wires can be installed on the two welding wire clamping discs 17 on the left and right sides of the annealing furnace body 3 each time. In this way, two groups of welding wires can be annealed at the same time, so that the working efficiency can be effectively improved.

[0020] Please refer to Figure 2 、 Figure 10 and Figure 11The cooling mechanism is installed at the top end of the annealing furnace body 3, and comprises two groups of fixing frames 19 which are fixed and installed on the annealing furnace body 3 in a left-right symmetrical manner, cooling fans 20 which are fixed and installed on the two groups of fixing frames 19, blowing pipes 21 which are in communication with the output ends of the two groups of cooling fans 20, air hoods 22 which are arranged at the output ends of the two groups of blowing pipes 21, and fixing plates 23 which are connected to the two groups of fixing frames 19 and connected with the two groups of blowing pipes 21 at the bottom ends of the two groups of fixing plates 23. During the working process, after the welding wire is heated in the annealing furnace body 3, the welding wire is located below the air hood 22 after the furnace cover 4 is opened, then the cooling fan 20 is started, the cooling fan 20 blows the cooling air into the blowing pipe 21, and then the air is uniformly blown to the surface of the welding wire through the air hood 22. In addition, the reversing motor 14 is started, the reversing motor 14 drives the adjusting screw rod 16 to rotate, the adjusting screw rod 16 drives the welding wire clamping disc 17 to rotate, so that the welding wire is uniformly cooled. Through the arrangement of the cooling mechanism, the welding wire can be fully and quickly cooled, and the annealing treatment efficiency of the welding wire is further improved.

[0021] Please refer to Figure 13 and Figure 14 The left and right ends of the inner side of the annealing furnace body 3 are fixedly connected with sealing tables 24, and the inner sides of the two groups of furnace covers 4 are connected with high-temperature sealing rings 25 in a matched manner. Through the arrangement of the sealing table 24 and the high-temperature sealing ring 25, after the furnace cover 4 is closed, the high-temperature sealing ring 25 can be buckled with the sealing table 24, so that the sealing property between the furnace cover 4 and the annealing furnace body 3 can be enhanced, and the furnace cover 4 can be covered more tightly.

[0022] Please refer to Figure 13 The bottom ends of the two groups of furnace covers 4 are connected with roller frames 26, the roller frames 26 are rotatably installed with supporting rollers 27, and the bottom ends of the two groups of supporting rollers 27 are in rolling contact with the top end of the base 1. Through the arrangement of the roller frame 26 and the supporting roller 27, during the left-right movement of the furnace cover 4, the furnace cover 4 drives the supporting roller 27 to roll on the base 1 through the roller frame 26, and the furnace cover 4 can be supported after being opened through the roller frame 26 and the supporting roller 27, so as to guide the column 12 in the case of skew.

[0023] Please refer to Figure 12 The bottom ends of the four groups of supporting columns 2 are provided with threaded holes, the four groups of supporting columns 2 are screwed with screw rods 28 through the threaded holes, and the bottom ends of the four groups of screw rods 28 are connected with foot plates 29. When the base 1 is placed, the extending amount of the adjusting screw rod 28 can be adjusted by rotating the adjusting screw rod 28, so that the level of the base 1 can be adjusted according to the flatness of the ground, and the base 1 can be placed more stably.

[0024] Please refer to Figure 10The top end of the air funnel 22 is communicated with a plug sleeve 30, two groups of fixing bolts 31 are screwed on the plug sleeve 30, the blowing pipe 21 is provided with two groups of threaded pin holes matched with the fixing bolts 31, and the plug sleeve 30 is sleeved on the blowing pipe 21 through the cooperation of the fixing bolts 31 and the threaded pin holes; in use, the air funnel 22 can be disassembled and assembled through the disassembly and assembly of the fixing bolts 31, so that the air funnel 22 can be disassembled and replaced or cleaned at any time.

[0025] Please refer to Figure 6 A plurality of ventilation holes 32 are communicated through the two groups of partition plates 15; through the ventilation holes 32, the heat inside the annealing furnace body 3 can flow when the welding wire is annealed after the furnace cover 4 is covered, so that the temperature of the spaces on both sides of the partition plate 15 is more uniform.

[0026] Please refer to Figure 9 The outer walls of the four groups of sliding blocks 9 are fixedly sleeved with sliding sleeves 33; through the sliding sleeves 33, the friction between the surfaces of the sliding blocks 9 and the inner walls of the guide sleeves 8 can be reduced, so that the sliding of the sliding blocks 9 in the guide sleeves 8 is smoother.

[0027] Please refer to Figure 12 The bottom ends of the four groups of foot plates 29 are connected with anti-skid pads 34; through the anti-skid pads 34, the friction between the bottom of the foot plate 29 and the placement place can be increased, so that the slipping condition can be effectively avoided.

[0028] Please refer to Figure 1 The inner sides of the two groups of fixing frames 19 are connected with reinforcing plates 35, and the bottom ends of the two groups of reinforcing plates 35 are connected with the outer walls of the annealing furnace body 3; through the reinforcing plates 35, the connection between the fixing frame 19 and the annealing furnace body 3 can be more firm and stable, so that the cooling fan 20 can be more stable and reliable during operation.

[0029] The environmental protection integrated type welding wire annealing furnace of the present application, when working, needs to open the furnace cover 4 first, firstly, the lifting oil cylinder 5 is started to make the lifting oil cylinder 5 push the double head articulated seat 6 to move upward, the double head articulated seat 6 pushes the sliding block 9 to slide outward along the sliding groove through the connecting strip plate 11, so that the sliding block 9 drives the guide column 12 to slide outward along the guide sleeve 8, the guide column 12 pushes the furnace cover 4 outward, the furnace cover 4 can be opened, after the furnace cover 4 is opened, the welding wire clamping disc 17 can be rotated according to the length of the welding wire, the welding wire clamping disc 17 keeps moderate spacing, and the welding wire clamping groove 18 on the two groups of welding wire clamping disc 17 is aligned left and right, then the two ends of the welding wire are clamped in the welding wire clamping groove 18, through the clamping of the welding wire clamping groove 18, the welding wire can be evenly installed on the welding wire clamping disc 17 in a ring shape, then the lifting oil cylinder 5 is started again to make the lifting oil cylinder 5 drive the double head articulated seat 6 to move downward, the double head articulated seat 6 pulls the sliding block 9 to slide inward along the sliding groove through the connecting strip plate 11, the sliding block 9 drives the guide column 12 to slide inward, so that the guide column 12 drives the furnace cover 4 to close, so that the welding wire can be sent to the annealing furnace body 3 for annealing treatment, during this period, the reversing motor 14 is started, the reversing motor 14 drives the adjusting screw rod 16 to rotate, the adjusting screw rod 16 drives the welding wire clamping disc 17 to rotate, so that the welding wire clamping disc 17 drives the welding wire to rotate, so that the welding wire annealing treatment is more uniform, when the welding wire annealing treatment is completed, the furnace cover 4 is opened, and the welding wire clamping disc 17 is pulled out, at this time, the welding wire can be located below the air scoop 22, then the cooling fan 20 is started, the cooling fan 20 blows the cooling air into the blowing pipe 21, and then blows to the surface of the welding wire through the air scoop 22, and the reversing motor 14 is started, the reversing motor 14 drives the adjusting screw rod 16 to rotate, so that the adjusting screw rod 16 drives the welding wire clamping disc 17 to rotate, so that the welding wire is evenly cooled, after cooling, the welding wire can be taken off from the welding wire clamping disc 17, after the treated welding wire is taken off, the next group of welding wire to be treated can be installed.

[0030] The installation mode, connection mode or setting mode of the environmental protection integrated type welding wire annealing furnace of the present application are all common mechanical modes, as long as the beneficial effects can be achieved, they can be implemented; the lifting oil cylinder, the reversing motor and the cooling fan of the environmental protection integrated type welding wire annealing furnace of the present application are purchased on the market, and the technical personnel in the industry only need to install and operate according to the attached instruction manual.

[0031] The above is only the preferred embodiment of the present application, it should be pointed out that, for ordinary technical personnel in the technical field, a number of improvements and modifications can be made without departing from the technical principles of the present application, and these improvements and modifications should be regarded as the protection scope of the present application.

Claims

1. An environmentally friendly integrated welding wire annealing furnace comprising a base (1), characterized in that, It also includes opening and closing mechanism and placing mechanism; The base (1) is symmetrically connected with four groups of support columns (2) at the bottom end, and an annealing furnace body (3) is fixedly installed at the top end of the base (1); The opening and closing mechanism includes two groups of furnace covers (4), and the left and right ends of the annealing furnace body (3) are provided with taking and placing openings, and the two groups of furnace covers (4) are respectively covered on the two groups of taking and placing openings; two groups of lifting oil cylinders (5) are fixedly installed on the base (1) in front and back symmetry, and the output ends of the two groups of lifting oil cylinders (5) are connected with double-head articulated seats (6); two groups of articulated shafts (7) are connected on the two groups of double-head articulated seats (6); two groups of guide sleeves (8) are connected on the circumferential outer wall of the annealing furnace body (3) in front and back symmetry, and the bottom ends of the two groups of guide sleeves (8) are provided with sliding grooves; two groups of sliding blocks (9) are slidably arranged on the two groups of guide sleeves (8) in left and right symmetry through the cooperation of the sliding grooves; the bottom ends of the four groups of sliding blocks (9) are connected with articulated seats (10); the two ends of the four groups of articulated seats (10) and the two groups of double-head articulated seats (6) are hingedly connected with connecting strips (11); two groups of guide columns (12) are slidably arranged on the two groups of guide sleeves (8) in left and right symmetry, and the inner sides of the four groups of guide columns (12) are respectively connected with the four groups of sliding blocks (9); the two groups of furnace covers (4) are symmetrically connected with two groups of connecting plates (13), and the outer sides of the four groups of guide columns (12) are respectively connected with the four groups of connecting plates (13). The placing mechanism includes two groups of overturning motors (14), and the two groups of overturning motors (14) are respectively fixedly installed on the two groups of furnace covers (4); two groups of separation discs (15) are slidably arranged in the annealing furnace body (3) in left and right symmetry; an adjusting screw (16) is rotatably arranged between each group of furnace covers (4) and each group of separation discs (15), and the outer sides of the two groups of adjusting screws (16) are respectively connected with the output ends of the two groups of overturning motors (14); two groups of welding wire clamping discs (17) are screwedly sleeved on the two groups of adjusting screws (16); a plurality of groups of welding wire clamping grooves (18) are annularly and equidistantly formed in each group of welding wire clamping disc (17).

2. The environmentally friendly integrated welding wire annealing furnace of claim 1, wherein, The top end of the annealing furnace body (3) is provided with a cooling mechanism, the cooling mechanism includes two groups of fixing frames (19), the two groups of fixing frames (19) are fixedly installed on the annealing furnace body (3) in left and right symmetry, the two groups of fixing frames (19) are fixedly installed with cooling fans (20), the output ends of the two groups of cooling fans (20) are communicated with blowing pipes (21), the output ends of the two groups of blowing pipes (21) are provided with air hoods (22), the two groups of fixing frames (19) are connected with fixed plates (23), and the bottom ends of the two groups of fixed plates (23) are respectively connected with the two groups of blowing pipes (21).

3. The environmentally friendly integrated welding wire annealing furnace of claim 2, wherein, The left and right ends of the inner side of the annealing furnace body (3) are fixedly connected with sealing tables (24), and the inner sides of the two groups of furnace covers (4) are connected with high-temperature sealing rings (25) matched with the sealing tables (24).

4. The environmentally friendly integrated welding wire annealing furnace of claim 3, wherein, The bottom ends of the two groups of furnace covers (4) are connected with roller frames (26), and support rollers (27) are rotatably installed on the two groups of roller frames (26), and the bottom ends of the two groups of support rollers (27) are in rolling contact with the top end of the base (1).

5. The environmentally friendly integrated welding wire annealing furnace of claim 4, wherein, The bottom end of the four groups of support columns (2) is provided with a threaded hole, and the four groups of support columns (2) are all screwed with a lead screw (28) through the threaded hole.

6. The environmentally friendly integrated welding wire annealing furnace of claim 5, wherein, The top end of the air funnel (22) is connected and communicated with a plug sleeve pipe (30), the plug sleeve pipe (30) is screwed with two groups of fixing bolts (31), the blowing pipe (21) is provided with two groups of threaded pin holes matched with the fixing bolts (31), and the plug sleeve pipe (30) is sleeved on the blowing pipe (21) through the cooperation of the fixing bolts (31) and the threaded pin holes.

7. The environmentally friendly integrated welding wire annealing furnace of claim 6, wherein, The two groups of separation discs (15) are all provided with a plurality of groups of ventilation holes (32) in communication.

8. The environmentally friendly integrated welding wire annealing furnace of claim 7, wherein, The outer wall of the four groups of sliding blocks (9) is all fixedly sleeved with a sliding sleeve (33).

9. The environmentally friendly integrated welding wire annealing furnace of claim 8, wherein, The bottom end of the four groups of foot plates (29) is all connected with an anti-skid pad (34).

10. The environmentally friendly integrated welding wire annealing furnace of claim 9, wherein, The inner side of the two groups of fixing frames (19) is all connected with a reinforcing plate (35), and the bottom end of the two groups of reinforcing plates (35) is connected with the outer wall of the annealing furnace body (3).