CN1672851A - Double-side forming single-side butt welding method for thick-wall red copper pipe - Google Patents

Double-side forming single-side butt welding method for thick-wall red copper pipe Download PDF

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Publication number
CN1672851A
CN1672851A CN 200510046236 CN200510046236A CN1672851A CN 1672851 A CN1672851 A CN 1672851A CN 200510046236 CN200510046236 CN 200510046236 CN 200510046236 A CN200510046236 A CN 200510046236A CN 1672851 A CN1672851 A CN 1672851A
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welding
weld seam
corronil
weld
thick
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CN 200510046236
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CN1325218C (en
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刘殿宝
赵振民
刘放
王熹哲
刘保安
陈凯
李德成
鹿本胜
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Bohai Shipyard Group Co Ltd
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Bohai Shipbuilding Heavy Industry Co Ltd
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Abstract

The present invention relates to butt welding method for thick wall red copper pipe. The welding process includes the following steps: forming end bevel for welding in red copper pipe, and producing Cu-Ni alloy washer or alloy chock; cleaning the weld seam and scales and wiping with acetone; locating the alloy washer or alloy chock in the weld seam; and welding through tungsten electrode helium arc welding to form locating weld seam, base weld seam and filling weld seam. The present invention adopts special tungsten electrode helium arc welding to raise electric arc power and raise electric arc fusion penetration capacity for no-preheating welding of thick wall red copper pipe. Certain amount of Ni, Si and Mn as alloy elements are added into the welding material can raise the liquid state weld seam surface tension, lower the liquid metal flowability, raise the melting point of the weld seam metal and raise weld seam quality.

Description

Not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method
(1) technical field
The present invention relates to welding method, particularly relate to not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method.
(2) background technology
The difficult problem that red copper welding at present exists, the thermal conductivity that is copper is than the big 7-11 of ordinary carbon steel times, the mother metal heat radiation is too fast, be difficult to fusion with the filling metal, mother metal thickness and size are big more, and it is serious more to dispel the heat, the also difficult more fusion temperature that reaches, even adopt the high power welding power supply, must still need take to heat synchronously measure in the welding process in weld preheating.In order to keep workpiece temperature, labor strength is big, and execution conditions are abominable, and it is very big to splash, and weldquality is poor, and the performance loss of performance mother metal is big, and welding point place mechanical performance seriously descends.The surface tension of copper when molten state is littler by 1/3 than carbon steel, mobile than the big 1-1.5 of steel times, so shaping surface ability, can't realize one side welding with back formation according to present existing welding method at all, general linear expansion coefficient and shrinkage ratio steel are twice above, postwelding can produce moderate finite deformation and stress, the existence of impurity element in the copper in addition, and the welding point hot cracking tendency is big.
Red copper welding prior art: according to the content of present standard GB/T11618-1999 " copper pipe joint " and shipbuilding industry standard C B/T3790-1997 " boats and ships pipe process technology condition ", the copper tube of wall thickness δ<6mm can adopt spigot-type pipe fitting and banjo fixing butt jointing, welding method is gas brazing, and for the thick-wall red copper pipe of wall thickness δ 〉=6mm, GB and ship mark all provide against the employing soldering, and must adopt the welding of arc fusion welding method, but all do not provide exercisable arc fusion welding technology in GB and the ship mark.
Domestic known thick-wall red copper pipe arc fusion welding technology all is to use manual arc soldering method or melt pole electrical arc soldering method basically at present, adopt red copper welding rod (GB/T3670-1995Ecu) or red copper welding wire (GB9160-88HSCu) as packing material, need preheating more than 550 ℃ during welding, the welding condition very severe, efficiency is low, welding quality is difficult for guaranteeing, the loss of mother metal mechanical performance is also very big, and adopts above-mentioned welding method all can't realize copper tube butt weld one side welding with back formation.Because the domestic welding method that does not have directly to realize not preheating of thick-wall red copper pipe butt weld one side welding with back formation does not at present just have corresponding butt weld Non-Destructive Testing (radioscopy) standard and specification requirement naturally yet.
(3) summary of the invention
The technical problem to be solved in the present invention, provide a kind of need not preheating, one side welding with back formation, welding process do not have that hot tearing, weld seam can be satisfied radioscopy, guarantee mother metal and welding point mechanical performance, high-quality, alleviate labor intensity, improve not preheating of the thick-wall red copper pipe butt weld single face welding and double face direct forming welding method of execution conditions.
The technical scheme that adopts is:
Not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method comprises the steps:
1, adopt machining to make the copper tube bevel for welding, processing and fabricating corronil fusing packing ring or corronil location chock;
2, strict oxide skin, oil, rust, water and other dirt of removing in the weld seam both sides 30mm before the weldering, and use the acetone wiped clean.
3, corronil is melted packing ring or corronil location chock and insert the bevel for welding location;
4, tack weld adopts gas tungsten arc welding, and tack weld respectively welds place's tack weld along copper tube circumferential direction position of halving, and tack weld is long to be 10-20mm;
5, backing weld seam adopts gas tungsten arc welding, in the welding process of backing weld seam, must continuously fill the high-purity inert gas shielding in the copper tube;
6, filling weld seam adopts gas tungsten arc welding, and joins the welding of corronil welding wire and fill weld seam.
Above-mentioned copper tube bevel for welding, its welding groove surface angle α is 30-40 °.
Above-mentioned corronil fusing packing ring sectional dimension, thick H is 1.0-2.5mm, and wide A is 3.5-6.5mm, and the high R of wedge is 2.0-2.5mm, and the wide B of wedge is 1.0-2.5mm.
Above-mentioned corronil location chock sectional dimension, the high D of plug wedge is 1.5-2.0mm,, the wide C of plug wedge is 1.5-5.5mm.
The gas tungsten arc welding that above-mentioned tack weld, backing weld seam and filling weld seam all adopt is a tungsten polar helium arc.
In the above-mentioned backing weld seam welding process, must continuously fill highly purified inert gas protection in the copper tube, for purity is protected greater than 99.99% straight argon.
Above-mentioned corronil fusing packing ring, corronil location chock and corronil welding wire, its corronil is the alloy of CuNi90/10, CuNi70/30, CuNi25/75.
Above-mentioned not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method is suitable for the welding of thick plate-like red copper material.
This method need not the weld seam preheating, improve working environment, alleviated working strength of workers, heavy wall heavy caliber red copper pipeline or not preheating of thick plate-like red copper material butt weld single face welding and double face direct forming have been realized, weldquality can satisfy the secondary quality requirement of national ray detection standard GB3323-87, improve weld strength and do not reduced plastic property of weld bead, improved weld seam heat crack resistance and joint overall synthetic mechanical performance.
(4) description of drawings
Fig. 1 is the embodiment of the invention one schematic diagram.
Fig. 2 is the embodiment of the invention two schematic diagrames.
(5) specific embodiment
Not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method; be to adopt the bigger direct current source of welding current of power output; its output current is greater than 400A; simultaneously with the tungsten polar helium arc of pure helium as protective gas; according under the identical condition of electric current; the hot input quantity of helium is 1.5 times of argon gas; the penetration capacity of heliarc increases 3-5 doubly than argon arc; improve arc power and electric arc penetration ability, arc power density can be increased to 3-5 times of argon tungsten-arc welding, the helium good cooling results; arc energy density is big; arc column is carefully concentrated, and can improve the penetration ability, thereby realizes the pre-thermal weld of thick-wall red copper 6-30mm.Utilize the molten fully admittedly principle of copper nickel, adopt intensity, plasticity, alloy molten surface tension force good comprehensive properties corronil welding wire, improve liquid weld metal surface tension as CuNi90/10, CuNi70/30, CuNi25/75 welding wire, reduce the flowability of liquid weld metal, thereby improve root of joint appearance of weld ability.Usually improve the weld metal fusing point by the Ni unit that in welding material, doses 10-75%, in welding material, add Si, Mn deoxygenated alloy element enhancing deoxidizing capacity, the final method that improves weld metal intensity and do not reduce plastic property of weld bead improves weld seam hot-cracking resistance and welding point overall synthetic performance, sees Table 1.
Table 1
Alloy Fusing point (℃) Intensity σ b (MPa) Plasticity δ 10 (%)
??Cu ????1083 ????≥1?70 ????≥30
??CuNi90/10 ????1110 ????≥270 ????≥25
??CuNi70/30 ????1180 ????≥350 ????≥30
??CuNi25/75 ????1330 ????≥480 ????≥30
Embodiment one
Not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method comprises the steps:
1, adopt machining to make the bevel for welding 1 of the copper tube 2 of heavy wall, processing and fabricating corronil fusing packing ring 3;
2, strict oxide skin, oil, rust, water and other dirt of removing in the weld seam both sides 30mm before the weldering, and use the acetone wiped clean;
3, corronil is melted bevel for welding 1 assembling that packing ring 3 is inserted the copper tube 2 of heavy wall, the groove face angle α of the bevel for welding 1 after the assembling=35 °, the sectional dimension of corronil fusing packing ring 3: thick H=2mm, wide A=5.5mm, the high R=2mm of wedge, the wide B=2.5mm of wedge;
4, tack weld adopts tungsten polar helium arc, does not dose welding wire and does fusion welding, and tack weld respectively welds place's tack weld along copper tube 2 circumferential direction six position of halving, and tack weld is long to be 15mm;
5, backing weld seam, adopt tungsten polar helium arc, not preheating, do not dose welding wire and do fusion welding, during operation electric arc is stopped slightly at bevel for welding 1 root both sides red copper mother metal, and do not stop at corronil fusing packing ring 3 places, to guarantee that bevel for welding 1 both sides root fusion is good and realize the back appearance of weld, in the welding process of whole backing weld seam, must continuously fill high-purity argon (purity is greater than 99.99%) protection in the copper tube 2 of heavy wall;
6, filling weld seam, after backing weld seam welded, weld seam was filled in the not pre-thermal weld of corronil welding wire that can adopt tungsten polar helium arc to join Φ 1.6-Φ 3.2mm, and filling the weld seam welding only needs just can according to normal argon tungsten-arc welding welding operation technology.
Embodiment two
Not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method comprises the steps:
1, adopt machining to make the bevel for welding 1 of the copper tube 2 of heavy wall, processing and fabricating corronil location chock 4;
2, strict oxide skin, oil, rust, water and other dirts of removing in the weld seam both sides 30mm before the weldering, and use the acetone wiped clean;
3, corronil is located bevel for welding 1 assembling that chock 4 is inserted the copper tube 2 of heavy wall, to guarantee joint fit-up gap and location during assembling, the groove face angle α of this routine bevel for welding 1=36 °, the wide C=3.5mm of plug wedge of corronil location chock 4, the high D=2mm of plug wedge, the quantity of corronil location chock 4 can be different and different with the diameter of the copper tube 2 of heavy wall, and general diameter needs four corronils location chocks 4 to locate greater than the joint of 100mm;
4, tack weld adopts in the tungsten polar helium arc and fills out the corronil welding wire, with the copper tube 2 and the corronil location chock 4 welding location of heavy wall;
5, backing weld seam, adopt tungsten polar helium arc, join the welding of corronil welding wire, in the welding process of whole backing weld seam, straight argon (purity is greater than 99.99%) protection must continuously be filled in copper tube 2 inside of heavy wall, and in order to guarantee the protection effect of argon gas, whole one week of joint is located except that one section that welds, all leave the position in gap all must use adhesive sticker bar seal, run away to prevent argon gas, which chock 4 place, corronil location backing weld seam is soldered to, and the corronil that just will locate location chock 4 removes, and continues welding hypomere backing weld seam;
6, filling weld seam, after backing weld seam welded, weld seam was filled in the not pre-thermal weld of corronil welding wire that can adopt tungsten polar helium arc to join Φ 1.6-Φ 3.2mm, and filling the weld seam welding only needs just can according to normal argon tungsten-arc welding welding operation technology.

Claims (7)

1, not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method, its feature comprises the steps:
A, employing machining are made copper tube bevel for welding (1), processing and fabricating corronil fusing packing ring (3) or corronil location chock (4);
Strict oxide skin, oil, rust, water and other dirt of removing in the weld seam both sides 30mm before B, the weldering, and use the acetone wiped clean;
C, corronil is melted packing ring (3) or corronil location chock (4) insert the bevel for welding location;
D, tack weld adopt gas tungsten arc welding, and tack weld respectively welds place's tack weld along copper tube (2) circumferential direction position of halving, and tack weld is long to be 10-20mm;
E, backing weld seam adopt gas tungsten arc welding, in the welding process of backing weld seam, must continuously fill the high-purity inert gas shielding in the copper tube (2);
F, filling weld seam adopt gas tungsten arc welding, and join the welding of corronil welding wire and fill weld seam.
2, not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method according to claim 1 is characterized in that the bevel for welding (1) of described copper tube (2), and its bevel for welding (1) groove face angle α is 30-40 °.
3, not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method according to claim 1, it is characterized in that described corronil fusing packing ring (3) sectional dimension, thick H is 1.0-2.5mm, wide A is 3.5-6.5mm, the high R of wedge is 2.0-2.5mm, and the wide B of wedge is 1.0-2.5mm.
4, not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method according to claim 1 is characterized in that described corronil location chock (4) sectional dimension, and the high D of plug wedge is 1.5-2.0mm, and the wide C of plug wedge is 1.5-5.5mm.
5, not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method according to claim 1 is characterized in that the gas tungsten arc welding that described tack weld, backing weld seam and filling weld seam all adopt is a tungsten polar helium arc.
6, not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method according to claim 1; it is characterized in that in the described backing weld seam welding process; must continuously fill highly purified inert gas protection in the copper tube (2), for purity is protected greater than 99.99% straight argon.
7, not preheating of thick-wall red copper pipe butt weld single face welding and double face direct forming welding method according to claim 1, it is characterized in that described corronil fusing packing ring (3), corronil location chock (4) and corronil welding wire, its corronil is the alloy of CuNi90/10, CuNi70/30, CuNi25/75.
CNB200510046236XA 2005-04-13 2005-04-13 Double-side forming single-side butt welding method for thick-wall red copper pipe Active CN1325218C (en)

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Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101352785B (en) * 2007-07-23 2010-05-26 上海重型机器厂有限公司 Method for welding pressing sleeve of large-sized hydraulic press
CN102091852A (en) * 2011-01-07 2011-06-15 蓬莱巨涛海洋工程重工有限公司 Method for welding copper nickel pipe
CN101885101B (en) * 2009-12-25 2012-11-07 中钢集团鞍山热能研究院有限公司 Method for welding casting red copper oxygen lance spray nozzle
CN103978287A (en) * 2014-05-12 2014-08-13 中国能源建设集团江苏省电力建设第三工程公司 Flame-preheating-free argon arc welding method for red copper
CN103990894A (en) * 2014-05-29 2014-08-20 南通中远重工有限公司 One-side-welding and two-side-forming welding technology for pipe
CN104708180A (en) * 2015-03-13 2015-06-17 南京宝泰特种材料股份有限公司 Red copper crucible welding method
CN109945155A (en) * 2019-03-22 2019-06-28 哈尔滨锅炉厂有限责任公司 The circumferential weld structure and its manufacturing method of water storage tank
CN110681946A (en) * 2019-10-08 2020-01-14 鞍钢股份有限公司 Method for ensuring test weld assembly gap by oblique Y-shaped groove welding crack test method
CN111958091A (en) * 2020-08-04 2020-11-20 新疆八一钢铁股份有限公司 Welding method for welding copper cooling wall without preheating
CN112427826A (en) * 2020-11-09 2021-03-02 上海中船三井造船柴油机有限公司 Butt welding assembly method for stainless steel pipes
CN112792444A (en) * 2020-09-17 2021-05-14 葫芦岛渤船工贸通和防腐有限公司 Method for welding reversing interface of steam pipeline and main engine
CN115070165A (en) * 2022-05-11 2022-09-20 华路德(浙江)焊接科技有限公司 Narrow-gap vertical electro-gas welding process and equipment
CN115870591A (en) * 2023-02-20 2023-03-31 天津市金桥焊材科技有限公司 MIG welding process method for titanium-steel dissimilar metal and welding wire used in MIG welding process method

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* Cited by examiner, † Cited by third party
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JPS5725288A (en) * 1980-07-23 1982-02-10 Hitachi Ltd Method for welding thick copper plate
CN1228167C (en) * 2003-04-17 2005-11-23 哈尔滨工业大学 Method for red copper transition welding without preheating metal alloy
CN1285440C (en) * 2004-04-14 2006-11-22 哈尔滨工业大学 Micro melting soldering method of argon-shielded tungsten arc welding for thick plate of red copper without warming-up

Cited By (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101352785B (en) * 2007-07-23 2010-05-26 上海重型机器厂有限公司 Method for welding pressing sleeve of large-sized hydraulic press
CN101885101B (en) * 2009-12-25 2012-11-07 中钢集团鞍山热能研究院有限公司 Method for welding casting red copper oxygen lance spray nozzle
CN102091852A (en) * 2011-01-07 2011-06-15 蓬莱巨涛海洋工程重工有限公司 Method for welding copper nickel pipe
CN103978287A (en) * 2014-05-12 2014-08-13 中国能源建设集团江苏省电力建设第三工程公司 Flame-preheating-free argon arc welding method for red copper
CN103990894A (en) * 2014-05-29 2014-08-20 南通中远重工有限公司 One-side-welding and two-side-forming welding technology for pipe
CN104708180A (en) * 2015-03-13 2015-06-17 南京宝泰特种材料股份有限公司 Red copper crucible welding method
CN109945155B (en) * 2019-03-22 2020-10-13 哈尔滨锅炉厂有限责任公司 Method for manufacturing circular seam structure of water storage tank
CN109945155A (en) * 2019-03-22 2019-06-28 哈尔滨锅炉厂有限责任公司 The circumferential weld structure and its manufacturing method of water storage tank
CN110681946A (en) * 2019-10-08 2020-01-14 鞍钢股份有限公司 Method for ensuring test weld assembly gap by oblique Y-shaped groove welding crack test method
CN110681946B (en) * 2019-10-08 2021-08-20 鞍钢股份有限公司 Method for ensuring test weld assembly gap by oblique Y-shaped groove welding crack test method
CN111958091A (en) * 2020-08-04 2020-11-20 新疆八一钢铁股份有限公司 Welding method for welding copper cooling wall without preheating
CN112792444A (en) * 2020-09-17 2021-05-14 葫芦岛渤船工贸通和防腐有限公司 Method for welding reversing interface of steam pipeline and main engine
CN112427826A (en) * 2020-11-09 2021-03-02 上海中船三井造船柴油机有限公司 Butt welding assembly method for stainless steel pipes
CN115070165A (en) * 2022-05-11 2022-09-20 华路德(浙江)焊接科技有限公司 Narrow-gap vertical electro-gas welding process and equipment
CN115070165B (en) * 2022-05-11 2024-05-03 浙江飞弧自动化科技有限公司 Narrow-gap vertical electro-gas welding process and equipment
CN115870591A (en) * 2023-02-20 2023-03-31 天津市金桥焊材科技有限公司 MIG welding process method for titanium-steel dissimilar metal and welding wire used in MIG welding process method

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