CN212918145U - Processing equipment with welding angle real-time adjustment function for production of air conditioner four-way valve - Google Patents

Processing equipment with welding angle real-time adjustment function for production of air conditioner four-way valve Download PDF

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Publication number
CN212918145U
CN212918145U CN202021636108.7U CN202021636108U CN212918145U CN 212918145 U CN212918145 U CN 212918145U CN 202021636108 U CN202021636108 U CN 202021636108U CN 212918145 U CN212918145 U CN 212918145U
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rod
welding
block
air conditioner
processing equipment
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CN202021636108.7U
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范裕鹏
郑潇
麦梓铭
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Nanjing Xinrong Air Conditioning Co ltd
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Dongguan Goode Intelligent Technology Co ltd
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Abstract

The invention discloses processing equipment with welding angle real-time adjustment for production of an air conditioner four-way valve, which comprises a machine table, a first transmission rod, a support, a second transmission rod and a fixed frame, wherein a telescopic rod is installed at the top of the machine table, a material frame is installed on the surface of the sliding rod, a bevel block is installed inside a limiting plate, a pushing rod is installed at the bottom of the bevel block, the first transmission rod is positioned on the side surface of the material frame, the support is installed on the side surface of the limiting plate, a baffle is installed on the side surface of a second hydraulic rod in a deviating manner, a connecting plate is installed at the bottom of the second hydraulic rod, a sliding block is installed on the surface of the fixed block, the second transmission rod is positioned on the side surface of a welding device, a valve is installed at the bottom of a movable rod, a water tank is installed on the side surface of the valve, and, the material rack can move forwards along the sliding rod, so that the positioning and conveying of the materials are completed.

Description

Processing equipment with welding angle real-time adjustment function for production of air conditioner four-way valve
Technical Field
The invention relates to the technical field of air conditioner four-way valve production, in particular to processing equipment for producing an air conditioner four-way valve and adjusting a welding angle in real time.
Background
The four-way valve is an indispensable component in the refrigeration equipment, when a solenoid valve coil is in a power-off state, a pilot slide valve is driven by a right compression spring to move left, high-pressure gas enters a right piston cavity after entering a capillary tube, on the other hand, gas in the left piston cavity is exhausted, and due to the fact that pressure difference exists between two ends of a piston, the piston and a main slide valve move left, an exhaust pipe is communicated with an outdoor unit connecting pipe, the other two connecting pipes are communicated, and a refrigeration cycle is formed.
The welding is an essential process for producing and processing the four-way valve, the welding process of the four-way valve is generally performed through a welding machine at present, but the flexibility and the automation of a plurality of existing four-way valve welding machines are not high, great inconvenience is brought to the welding of the four-way valve, and therefore the processing equipment with the welding angle adjusting function in real time is provided for the production of the four-way valve of the air conditioner.
Disclosure of Invention
The invention aims to provide processing equipment with welding angle real-time adjustment for air conditioner four-way valve production, and aims to solve the problems that a plurality of existing four-way valve welding machines in the background art are low in flexibility and automation and bring great inconvenience to four-way valve welding.
In order to achieve the purpose, the invention provides the following technical scheme: the processing equipment comprises a machine table, a first transmission rod, a support, a second transmission rod and a fixing frame, wherein a telescopic rod is installed at the top of the machine table, a sliding rod penetrates through the inner side of the telescopic rod, a material frame is installed on the surface of the sliding rod, a limiting plate is installed on the side surface of the material frame in a deviated mode, an inclined surface block is installed inside the limiting plate, a stress rod is installed on the side surface of the inclined surface block, a push rod is installed at the bottom of the inclined surface block, a seesaw rod is installed on the bottom of the push rod in a fit mode, a supporting block is installed at the top of the seesaw rod, the first transmission rod is located on the side surface of the material frame, a first hydraulic rod is installed at the tail of the first transmission rod, the support is installed on the side surface of the limiting plate, a second hydraulic rod is installed on the inner, the utility model discloses a hydraulic control valve, including first hydraulic stem, second hydraulic stem, movable rod, valve, clamping ring, connecting plate, fixed block surface mounting has a slider, and the bottom of slider installs welding set, the second transfer line is located welding set's side, and the bottom of second transfer line installs the movable rod, the valve is installed to the bottom of movable rod, and the bottom of valve installs the water jet, the side-mounting of valve has the water tank, and fixed frame is located support left side internal surface, and fixed frame internally mounted has the non slipping spur, the skew snap ring of installing in side of non slipping spur, and the surface mounting of snap ring has the pull rod.
Preferably, the material frame is connected with the sliding rod in a sliding mode, and the material frame pushes the first transmission rod through the first hydraulic rod to form a sliding structure.
Preferably, the inclined plane piece is connected with the stress rod through a clamping groove, and the inclined plane piece drives the push rod through the stress rod to form a telescopic structure.
Preferably, the supporting block surface is the slope design of degree, and the supporting block passes through the push rod and sticks up the pole and constitutes extending structure with warping.
Preferably, the sliding block is connected with the fixed block in a sliding mode, and the sliding block drives the welding device to form a sliding structure through the second hydraulic rod.
Preferably, the welding device comprises a supporting plate, a welding plate, a rotating ring and a rotating rod, the supporting plate is located at the bottom of the connecting plate, the rotating ring is installed at the bottom of the supporting plate, the welding plate is installed on the left side surface of the rotating ring, and the rotating rod is installed on the right side surface of the rotating ring.
Preferably, the rotating ring is connected with the supporting plate in a sliding manner, and the rotating ring forms a sliding structure at the bottom of the supporting plate through a rotating rod.
Preferably, the movable rod, the second transmission rod and the valve are connected through shafts, and the movable rod drives the valve through the second hydraulic rod to form a closed structure.
Preferably, the pull rod runs through and installs in fixed frame surface, and pull rod snap ring formula design as an organic whole is semicircle form and surrounds the snap ring, and the snap ring passes through the pull rod moreover and constitutes the structure of opening and shutting.
Compared with the prior art, the invention has the beneficial effects that:
1. this production of air conditioner cross valve has the processing equipment that welding angle was adjusted in real time, through the setting of first transfer line and first hydraulic stem, when first hydraulic stem drove the transfer line and moves forward, the material frame can consequently move forward along the slide bar to this location of accomplishing the material is carried.
2. This production of air conditioner cross valve has the processing equipment that welding angle adjusted in real time, through the setting of inclined plane piece and push rod, when the material frame promoted the atress pole forward, the inclined plane piece can drive push rod downstream, sticks up the pole and can consequently push up the supporting shoe with material frame bottom surface contact, puts up the propelling movement of material to parallel with fixed frame.
3. This air conditioner cross valve production has the processing equipment that welding angle adjusted in real time, through the setting of second hydraulic stem and slider, when second hydraulic stem downwardly extending, the slider can only move forward because of the baffle's the reason for welding set can slide again to needs welded position department when the decline.
4. This air conditioner cross valve production has the processing equipment that welding angle adjusted in real time, through the setting of movable rod and valve, because the movable rod is the hub connection with second transfer line and valve, when second hydraulic stem stretches out and draws back from top to bottom, can consequently open or the closed state through pulling the valve switch drive valve constitution.
5. This air conditioner cross valve production has the processing equipment that welding angle adjusted in real time, sets up through the relation of being connected of rotatory ring and backup pad for this equipment is when welding the cross valve, and accessible control rotary rod is with this welding angle of transferring the welding board.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a left side schematic view of the present invention;
FIG. 3 is a schematic view of a welding apparatus of the present invention;
FIG. 4 is a schematic view of the inside of the fixing frame according to the present invention;
FIG. 5 is a schematic top view of a machine of the present invention;
FIG. 6 is a partially enlarged view of the present invention.
In the figure: 1. a machine platform; 2. a telescopic rod; 3. a slide bar; 4. a material rack; 5. a limiting plate; 6. a bevel block; 7. a support block; 8. raising the rod; 9. a first hydraulic lever; 10. a first drive lever; 11. a support; 12. a second hydraulic rod; 13. a connector tile; 14. a fixed block; 15. a slider; 16. a welding device; 1601. a support plate; 1602. welding the plate; 1603. a rotating ring; 1604. rotating the rod; 17. a baffle plate; 18. a second transmission rod; 19. a movable rod; 20. a valve; 21. a water jet; 22. a water tank; 23. a fixing frame; 24. anti-skid blocks; 25. a pull rod; 26. a snap ring; 27. a stress beam; 28. a push rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and all other embodiments obtained by a person of ordinary skill in the art without creative efforts based on the embodiments of the present invention belong to the protection scope of the present invention.
Referring to fig. 1-6, the present invention provides a technical solution: a processing device with welding angle real-time adjustment function for production of an air conditioner four-way valve comprises a machine table 1, a first transmission rod 10, a support 11, a second transmission rod 18 and a fixed frame 23, wherein a telescopic rod 2 is installed at the top of the machine table 1, a slide rod 3 is installed on the inner side of the telescopic rod 2 in a penetrating mode, a material frame 4 is installed on the surface of the slide rod 3, a limiting plate 5 is installed on the side surface of the material frame 4 in a deviating mode, a bevel block 6 is installed inside the limiting plate 5, a stress rod 27 is installed on the side surface of the bevel block 6, a push rod 28 is installed at the bottom of the bevel block 6, the bevel block 6 is connected with the stress rod 27 in a clamping groove mode, the bevel block 6 drives the push rod 28 to form a telescopic structure through the stress rod 27, through the arrangement of the bevel block 6 and the push rod 28, when the stress rod 27 is pushed forwards by the material frame 4, the bevel block 6 can drive the push rod 28, the material frame 4 is pushed to be parallel to the fixed frame 23, the bottom of the push rod 28 is attached with the warped rod 8, the top of the warped rod 8 is provided with the supporting block 7, the surface of the supporting block 7 is designed to be inclined by 30 degrees, the supporting block 7 and the warped rod 8 form a telescopic structure through the push rod 28, the first transmission rod 10 is located on the side face of the material frame 4, the material frame 4 is in sliding connection with the slide rod 3, the material frame 4 pushes the first transmission rod 10 through the first hydraulic rod 9 to form a sliding structure, through the arrangement of the first transmission rod 10 and the first hydraulic rod 9, when the first hydraulic rod 9 drives the first transmission rod 10 to move forwards, the material frame 4 can move forwards along the slide rod 3, so that the positioning and conveying of the material are completed, the tail portion of the first transmission rod 10 is provided with the first hydraulic rod 9, the support 11 is arranged on the side face of the limiting plate 5, and the inner side of the top of the support 11 is, the side of the second hydraulic rod 12 is provided with a baffle 17 in a deviating way, through the arrangement of the second hydraulic rod 12 and the slide block 15, when the second hydraulic rod 12 extends downwards, the slide block 15 can only move forwards due to the baffle 17, so that the welding device 16 can slide to a position to be welded while descending, the bottom of the second hydraulic rod 12 is provided with the connecting plate 13, the surface of the connecting plate 13 is provided with the fixed block 14, the surface of the fixed block 14 is provided with the slide block 15, the bottom of the slide block 15 is provided with the welding device 16, the welding device 16 comprises a support plate 1601, a welding plate 1602, a rotating ring 1603 and a rotating rod 1604, the support plate 1601 is positioned at the bottom of the connecting plate 13, the bottom of the support plate 1601 is provided with the rotating ring 1603, the left surface of the rotating ring 1603 is provided with the welding plate 1602, the right surface of the rotating ring, the rotating ring 1603 forms a sliding structure at the bottom of the supporting plate 1601 through the rotating rod 1604, the welding angle of the welding plate 1602 is adjusted by controlling the rotating rod 1604 through the connection relationship between the rotating ring 1603 and the supporting plate 1601 when the four-way valve is welded, the slider 15 is in sliding connection with the fixed block 14, the slider 15 drives the welding device 16 through the second hydraulic rod 12 to form the sliding structure, the second transmission rod 18 is located at the side of the welding device 16, the bottom of the second transmission rod 18 is provided with the movable rod 19, the bottom of the movable rod 19 is provided with the valve 20, the movable rod 19 and the valve 20 are arranged through the movable rod 19, because the movable rod 19 and the second transmission rod 18 are both connected through a shaft, when the second hydraulic rod 12 extends and retracts up and down, the valve 20 is driven to form an open or closed state by pulling the valve 20 to open or close, and the bottom of the valve 20 is provided with the water injection port 21, the movable rod 19 is connected with the second transmission rod 18 and the valve 20 through shafts, the movable rod 19 drives the valve 20 through the second hydraulic rod 12 to form a closed structure, a water tank 22 is installed on the side face of the valve 20, the fixed frame 23 is located on the inner surface of the left side of the support 11, an anti-slip block 24 is installed inside the fixed frame 23, a clamping ring 26 is installed on the side face of the anti-slip block 24 in a deviating mode, a pull rod 25 is installed on the surface of the fixed frame 26 in a penetrating mode, the clamping ring 26 of the pull rod 25 is designed into a semicircular mode to surround the clamping ring 26, and the clamping ring 26 forms an opening and closing structure through the.
The working principle is as follows: the production of this air conditioner cross valve has processing equipment that welding angle adjusts in real time, at first the main pipeline of cross valve inserts in fixed frame 23 during the use, under the effect of snap ring 26 and non slipping spur 24, the main pipeline can be fixed, insert three spinal branch pipes in fixed frame 23, under the effect of first hydraulic stem 9, first drive lever 10 can drive material frame 4 and slide on slide bar 3, when material frame 4 touches atress pole 27 in the slip in-process, because atress pole 27 is sliding connection with sloping block 6, so when atress pole 27 moves forward, sloping block 6 can drive push rod 28 and move down, when push rod 28 touches stick up pole 8 left side, stick up pole 8 right side can perk up, supporting shoe 7 can consequently push three spinal branch pipes of cross valve to promote to the main pipeline in, second hydraulic stem 12 can drive fixed block 14 and move down afterwards, welding set 16 also can consequently move down, and because the slide block 15 is connected with the fixed block 14 in a sliding way, the slide block 15 can simultaneously drive the welding device 16 to approach the workpiece when the connecting plate 13 moves downwards, when the welding plate 1602 reaches the position where the main pipe contacts the branch pipe, welding is started, and since the rotating ring 1603 is in sliding connection with the support plate 1601, the welding direction of the welding plate 1602 can be adjusted by controlling the rotation rod 1604 during the welding process, and after the welding is finished, the second hydraulic ram 12 will drive the connector tile 13 upwards and the welding device 16 will be moved away from the workpiece, since the second transmission rod 18 is connected to the valve 20 by an axle, when the welding device 16 moves upwards, the valve 20 is controlled to be in an open state, water in the water tank 22 is sprayed from the water spray opening 21 to the welding position to accelerate cooling, the whole working principle of the processing equipment with the welding angle adjusted in real time in the production of the air conditioner four-way valve is as above.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (9)

1. The utility model provides an air conditioner cross valve production has processing equipment that welding angle was adjusted in real time, includes board (1), first transfer line (10), support (11), second transfer line (18) and fixed frame (23), its characterized in that: the top of the machine table (1) is provided with a telescopic rod (2), the inner side of the telescopic rod (2) is provided with a sliding rod (3) in a penetrating mode, the surface of the sliding rod (3) is provided with a material frame (4), the side of the material frame (4) is deviated to form a limiting plate (5), the limiting plate (5) is internally provided with a bevel block (6), the side of the bevel block (6) is provided with a stress rod (27), the bottom of the bevel block (6) is provided with a push rod (28), the bottom of the push rod (28) is provided with a warping rod (8) in a laminating mode, the top of the warping rod (8) is provided with a supporting block (7), the first transmission rod (10) is located on the side of the material frame (4), the tail of the first transmission rod (10) is provided with a first hydraulic rod (9), the support (11) is arranged on the side of the limiting plate (5), and the inner side of the top of, the side deviation of second hydraulic stem (12) installs baffle (17), link up fishplate bar (13) is installed to the bottom of second hydraulic stem (12), and link up fishplate bar (13) surface mounting has fixed block (14), fixed block (14) surface mounting has slider (15), and welding set (16) are installed to the bottom of slider (15), second transfer line (18) are located the side of welding set (16), and the bottom of second transfer line (18) installs movable rod (19), valve (20) are installed to the bottom of movable rod (19), and the bottom of valve (20) installs water jet (21), water tank (22) are installed to the side of valve (20), and fixed frame (23) are located support (11) left side internal surface, and fixed frame (23) internally mounted has non slipping spur (24), snap ring (26) are installed to the side deviation of non slipping spur (24), and a pull rod (25) is arranged on the surface of the snap ring (26).
2. The processing equipment with the welding angle capable of being adjusted in real time for the production of the air conditioner four-way valve according to claim 1, is characterized in that: the material frame (4) is connected with the sliding rod (3) in a sliding mode, and the material frame (4) pushes the first transmission rod (10) through the first hydraulic rod (9) to form a sliding structure.
3. The processing equipment with the welding angle capable of being adjusted in real time for the production of the air conditioner four-way valve according to claim 1, is characterized in that: the inclined plane block (6) is connected with the stress rod (27) through a clamping groove, and the inclined plane block (6) drives the pushing rod (28) to form a telescopic structure through the stress rod (27).
4. The processing equipment with the welding angle capable of being adjusted in real time for the production of the air conditioner four-way valve according to claim 1, is characterized in that: the surface of the supporting block (7) is designed to be inclined by 30 degrees, and the supporting block (7) and the tilting rod (8) form a telescopic structure through a pushing rod (28).
5. The processing equipment with the welding angle capable of being adjusted in real time for the production of the air conditioner four-way valve according to claim 1, is characterized in that: the sliding block (15) is connected with the fixed block (14) in a sliding mode, and the sliding block (15) drives the welding device (16) to form a sliding structure through the second hydraulic rod (12).
6. The processing equipment with the welding angle capable of being adjusted in real time for the production of the air conditioner four-way valve according to claim 1, is characterized in that: the welding device (16) comprises a supporting plate (1601), a welding plate (1602), a rotating ring (1603) and a rotating rod (1604), wherein the supporting plate (1601) is located at the bottom of the connecting plate (13), the rotating ring (1603) is installed at the bottom of the supporting plate (1601), the welding plate (1602) is installed on the left side surface of the rotating ring (1603), and the rotating rod (1604) is installed on the right side surface of the rotating ring (1603).
7. The processing equipment with the welding angle capable of being adjusted in real time for the production of the air conditioner four-way valve according to claim 6, is characterized in that: the rotating ring (1603) is connected with the supporting plate (1601) in a sliding mode, and the rotating ring (1603) forms a sliding structure at the bottom of the supporting plate (1601) through the rotating rod (1604).
8. The processing equipment with the welding angle capable of being adjusted in real time for the production of the air conditioner four-way valve according to claim 1, is characterized in that: the movable rod (19) is connected with the second transmission rod (18) and the valve (20) through shafts, and the movable rod (19) drives the valve (20) through the second hydraulic rod (12) to form a closed structure.
9. The processing equipment with the welding angle capable of being adjusted in real time for the production of the air conditioner four-way valve according to claim 1, is characterized in that: pull rod (25) run through to be installed in fixed frame (23) surface, and pull rod (25) snap ring (26) formula design as an organic whole is semicircle form and surrounds snap ring (26), and snap ring (26) constitute through pull rod (25) moreover and open and shut the structure.
CN202021636108.7U 2020-08-10 2020-08-10 Processing equipment with welding angle real-time adjustment function for production of air conditioner four-way valve Active CN212918145U (en)

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CN202021636108.7U CN212918145U (en) 2020-08-10 2020-08-10 Processing equipment with welding angle real-time adjustment function for production of air conditioner four-way valve

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Application Number Priority Date Filing Date Title
CN202021636108.7U CN212918145U (en) 2020-08-10 2020-08-10 Processing equipment with welding angle real-time adjustment function for production of air conditioner four-way valve

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CN212918145U true CN212918145U (en) 2021-04-09

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115319251A (en) * 2022-09-16 2022-11-11 宋卓 Plasma arc welding machine with adjustable welding angle

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115319251A (en) * 2022-09-16 2022-11-11 宋卓 Plasma arc welding machine with adjustable welding angle

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Effective date of registration: 20230330

Address after: No. 40-13, Huju South Road, Qinhuai District, Nanjing, Jiangsu, 210000

Patentee after: Nanjing Xinrong Air Conditioning Co.,Ltd.

Address before: 523808 room 1117, building 1, No.5, Xincheng Road, Songshanhu Park, Dongguan City, Guangdong Province

Patentee before: Dongguan Goode Intelligent Technology Co.,Ltd.