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    • 1. 发明专利
    • Shield box for welding active metal, and welding truck
    • 用于焊接活性金属的屏蔽盒和焊接卡车
    • JP2007136461A
    • 2007-06-07
    • JP2005329555
    • 2005-11-15
    • Hitachi Ltd株式会社日立製作所
    • IMANAGA AKIYOSHIASHIDA EIJIOBANA TAKESHIYANOKURA YUKIOKIMURA MASAHIRO
    • B23K9/16B23K9/167B23K9/23B23K31/00B23K37/02B23K103/14
    • PROBLEM TO BE SOLVED: To provide a shield box for welding an active metal, and a welding truck capable of preventing oxidation and nitridation of a weld joint necessary in the arc welding of an active metal such as zirconium, and enhancing the execution and the operability of the automatic welding, and effective for obtaining a weld part having excellent quality.
      SOLUTION: The shield box 21 for welding the active metal used when performing the arc welding of joint members 1a, 1b consisting of an active metal such as zirconium comprises: an opening part 23 for feeding a welding wire 12 from a forward side of the welding direction and for picking up an image of an arc-welded part by a CCD camera 14; a torch mounting mechanism 16 for arranging a TIG welding torch 10 in the opening part 23; a gas emission mechanism unit for emitting inert gas 32 to a heat-affected zone around the TIG welding torch 10 for arc welding and behind the weld; and a flexible and deformable heat-resistant sheet 24 provided on the outer periphery of a side surface of the shield box 21 except a part of the opening part 23.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于焊接有源金属的屏蔽盒和能够防止在诸如锆的活性金属的电弧焊中所需的焊接接头的氧化和氮化的焊接卡车,并且增强执行 以及自动焊接的可操作性,并且有效地获得具有优良品质的焊接部。 解决方案:用于焊接由诸如锆等活性金属组成的接合部件1a,1b进行电弧焊时所使用的活性金属的屏蔽盒21包括:开口部23,用于从前侧供给焊丝12 的焊接方向,并且通过CCD照相机14拾取电弧焊接部的图像; 用于将TIG焊炬10布置在开口部23中的焊炬安装机构16; 气体发射机构单元,用于将惰性气体32发射到用于电弧焊接的TIG焊枪10周围的热影响区域并在焊接后面; 以及设置在除了开口部23的一部分之外的屏蔽箱21的侧面的外周的柔性且可变形的耐热片24.(C)2007,JPO&INPIT
    • 2. 发明专利
    • Seal welding method for small diameter hole and its automatic welding device
    • 小直径密封焊接方法及其自动焊接装置
    • JP2005021939A
    • 2005-01-27
    • JP2003189940
    • 2003-07-02
    • Hitachi LtdHitachi Maxell Ltd日立マクセル株式会社株式会社日立製作所
    • IMANAGA AKIYOSHIHANEDA MITSUAKIINAGAKI MASATOSHIWATANABE OSAMUSOMATOMO YOSHIKIHIRASAWA SHIGEKI
    • B23K9/167B23K9/02B23K9/29
    • PROBLEM TO BE SOLVED: To provide a seal welding method for a small diameter hole, by which the small diameter hole provided on the surface of a metal plate of a small article can be easily welded in a short time and can be surely and completely sealed, and a high quality welding part with the smooth surface after welding can be obtained, and to also provide its automatic welding device. SOLUTION: The seal welding method is composed so as to seal the small diameter hole by inserting a sealing plug 3 to the small diameter hole 4 provided on the surface of a metal base material 2 which is a lid plate or a flat plate of a container 1 for the small article. A circular or polygonal thin wall thickness part 5b, in which the vicinity of the small diameter hole is in a plane shape, is formed on the rear face side of the metal base material. A circular or polygonal overhanging part 3a, whose outer diameter is larger than the inner diameter of the small diameter hole, is formed to the head part of the sealing plug. The seal welding is executed by melting the sealing plug and the thin wall thickness part of the metal base material by an arc heat source from a welding torch after inserting the sealing plug into the small diameter hole. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种小直径孔的密封焊接方法,通过该密封焊接方法可以在短时间内容易地焊接小型制品的金属板的表面上的小直径孔,并且可以肯定地 并完全密封,可以获得焊接后光滑表面的优质焊接部件,并提供自动焊接装置。 解决方案:密封焊接方法是通过将密封塞3插入到设置在作为盖板或平板的金属基材2的表面上的小直径孔4上来密封小直径孔 的小物品的容器1。 在金属基材的背面侧形成有圆形或多边形的薄壁部5b,其中小直径孔附近为平面形状。 在密封塞的头部形成有外径大于小直径孔的内径的圆形或多边形突出部3a。 在将密封塞插入小直径孔之后,通过来自焊炬的电弧热源将金属基材的密封塞和薄壁部分熔化,进行密封焊接。 版权所有(C)2005,JPO&NCIPI
    • 3. 发明专利
    • Both-side welding method and weld structure thereby
    • 双面焊接方法和焊接结构
    • JP2007196266A
    • 2007-08-09
    • JP2006018360
    • 2006-01-27
    • Hitachi Ltd株式会社日立製作所
    • IMANAGA AKIYOSHIASHIDA EIJIOBANA TAKESHIKOIDE HIROOLUO XIANGJUN
    • B23K9/02B23K9/16B23K9/167B23K9/23B23K103/04
    • PROBLEM TO BE SOLVED: To provide a both-side welding method effective for obtaining a sound joint part by both-side welding, and to provide a weld structure formed by the method. SOLUTION: The both-side welding method performs arc-welding of a non-consumable electrode type after applying a penetration accelerator, which contains a metal oxide powder, to the front or rear side of a roughly I-shaped joint or a roughly T-shaped joint, which is made of a stainless steel material or a low-carbon steel material. In the both-side welding method, a penetration accelerator 4a is applied to one side of the front and rear sides of the joint and is dried, and then fusion welding is conducted to a penetration depth H1 within a specified range by feeding and melting a welding wire from the rear of the advancing direction of the welding. Next, a penetration accelerator 4b is applied to the other side of the front and rear sides of the remaining joint on the opposite side and is dried, and then fusion welding is conducted to a penetration depth H2 within a specified range by feeding and melting the welding wire from the rear of the advancing direction of the welding. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供通过双面焊接有效获得声音接合部分的双面焊接方法,并提供通过该方法形成的焊接结构。 解决方案:双面焊接方法在将包含金属氧化物粉末的穿透促进剂施加到大致I形接头的前侧或后侧上进行非消耗性电极型的电弧焊接 大致T形接头,由不锈钢材料或低碳钢材料制成。 在双面焊接方法中,将穿透加速器4a施加到接头的前侧和后侧的一侧并干燥,然后通过进料和熔融将熔融进行到指定范围内的穿透深度H1 焊丝从焊接前进方向的后方焊接。 接下来,在相对侧的剩余接头的前侧和后侧的另一侧施加穿透促进器4b,并将其干燥,然后通过进给和熔化将熔融熔化至穿透深度H2在指定范围内 焊丝从焊接前进方向的后方焊接。 版权所有(C)2007,JPO&INPIT
    • 4. 发明专利
    • Residual stress-improving welding method, and welded structure
    • 残余应力改进焊接方法和焊接结构
    • JP2007083263A
    • 2007-04-05
    • JP2005273053
    • 2005-09-21
    • Hitachi Ltd株式会社日立製作所
    • IMANAGA AKIYOSHIOBANA TAKESHIASHIDA EIJILUO XIANGJUNKOIDE HIROOHAYASHI SHOJISUGANO SATOSHISAITO HIDEYONEFU AKIRAYANAGIDA NOBUYOSHI
    • B23K31/00B23K9/167B23K9/23
    • PROBLEM TO BE SOLVED: To provide a residual stress-improving welding method which is effective for preventing stress corrosion crack or the like by improving the residual stress exerted in a back bead part on a back side formed by the single side welding of a tubular member or a plate member of a bevel joint, and a part in a vicinity thereof into the compressive stress, and a welded structure by the method. SOLUTION: In the residual stress improving welding method, the residual stress in a back bead part on a back side formed by the single side welding of joint members 1, 2 of a bevel formed by butting a tubular member or a plate member, and a part in the vicinity thereof is improved into the compressive stress. After forming a back bead 15 on the back side of a bevel bottom part in a first pass weld, the lamination welding 41 is performed to the specified lamination bead height Hb within a heat input range Q1 of ≥ 4 kJ/cm and ≤ 12 kJ/cm, and then, the lamination welding 42 is performed from a remaining bevel portion to the final layer of an upper portion of the bevel within the heat input range Q2 of ≥ 2 kJ/cm and ≤ 6 kJ/cm to form a compressive residual stress in the back bead part and a heat-affected zone in the vicinity thereof. Alternatively, the compressive residual stress with slight tensile stress being mixed in a part of the back bead is exerted in the heat-affected zone. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种残留应力改善焊接方法,其通过改善由单侧焊接形成的背面侧的后胎圈部中的残余应力来防止应力腐蚀裂纹等 锥形接头的管状构件或板构件,以及其附近的压缩应力的一部分,以及通过该方法的焊接结构。 解决方案:在残余应力改善焊接方法中,通过对通过对接管状构件或板构件形成的斜面的接头构件1,2的单侧焊接而形成的背面侧的胎圈部中的残余应力 ,并且其附近的部分被提高到压缩应力。 在第一焊缝中的斜面底部的背侧上形成后胎圈15之后,在≥4kJ/ cm 2的热输入范围Q1和≤12kJ的热输入范围Q1内对层压焊接41进行规定的层叠焊道高度Hb / cm,然后,在≥2kJ/ cm 2且≤6kJ/ cm 2的热输入范围Q2内,从斜面的上部的剩余斜面到最后一层进行层压焊接42,以形成压缩 后胎圈部的残留应力和附近的热影响区。 或者,在热影响区域中施加具有稍微拉伸应力的压缩残余应力在后部胎圈的一部分中混合。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Multi-layer welding structure of stainless steel
    • 不锈钢多层焊接结构
    • JP2006205183A
    • 2006-08-10
    • JP2005017178
    • 2005-01-25
    • Hitachi Ltd株式会社日立製作所
    • RA SHOGUNKOIDE HIROOHANEDA MITSUAKIIMANAGA AKIYOSHIOBANA TAKESHI
    • B23K9/23B23K9/167B23K9/173B23K103/04
    • PROBLEM TO BE SOLVED: To provide a multi-layer welding structure of a stainless steel capable of performing the multi-layer welding from the initial layer back-bead welding of a groove bottom part to the final layer welding of a groove upper face part on a groove joint of a thick plate, and changing the tensile stress residual in a weld portion on a back face side after completion of welding to the compressive stress. SOLUTION: In the multi-layer welding structure of a stainless steel in which joint members 1, 2 with an end of the stainless steel grooved butted to each other, a welding wire is melted to form a multi-layer welded portion by the pulse arc welding or the DC arc welding of the consumable electrode type or a non-consumable electrode type, and the joint members are welded to each other, an austenitic welding wire is melted and solidified to the height of 1/5 to 4/5 of the thickness of the joint member from the back side of the groove to form an initial back-bead weld part, a martensitic welding wire is melted and solidified to an upper face of the groove to provide compressive stresses in a weld part on the groove back face side and in a vicinity thereof. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供能够进行多层焊接的多层焊接结构,从槽底部的初始层回珠焊接到槽上部的最终层焊接 面对部分在厚板的槽接头上,并且在焊接完成之后将背面侧的焊接部分中的拉伸应力残余变化为压缩应力。 解决方案:在不锈钢的多层焊接结构中,其中不锈钢端部彼此对接的接合构件1,2将焊丝熔化以形成多层焊接部分,由 可消耗电极型或非消耗性电极型的脉冲电弧焊接或直流电弧焊接,接合部件彼此焊接,使奥氏体焊丝熔化固化至1/5〜4 / 5,从槽的背面形成接合构件的厚度,以形成初始的后珠焊接部,马氏体焊丝熔化并固化到槽的上表面,从而在焊接部上形成压应力 凹槽背面侧及其附近。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • Welding equipment
    • 焊接设备
    • JP2006192437A
    • 2006-07-27
    • JP2005003297
    • 2005-01-11
    • Hitachi Ltd株式会社日立製作所
    • IMANAGA AKIYOSHIHANEDA MITSUAKIOBANA TAKESHIKATO MITSUOKOIDE HIROO
    • B23K9/095
    • PROBLEM TO BE SOLVED: To provide welding equipment capable of forming a back bead which is free from any recess on a back side, projecting in shape and substantially uniform by adequately performing the pulse arc welding or the DC arc welding to a groove joint with tubular members or flat plate members formed of a thick plate butted to each other. SOLUTION: A first image pickup means to pick up an image of a molten pool on a back side and a peripheral part thereof and an illumination means are arranged at the position on the back side opposite to the position of an electrode. A first image display means is arranged, which displays on a screen images of the molten pool on the back side picked up by the first image pickup means and the images of the peripheral part thereof, the dimensions to indicate the size of the images, the width of the molten pool on the back side, and the width of a back bead in a vicinity of the molten pool, and a specified value to indicate an adequate range of the width of the back bead to be formed by the root running. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供能够形成后边缘的后边缘的焊接设备,其通过适当地执行脉冲电弧焊接或直流电弧焊接到凹槽来形成并基本上均匀的凹凸 与由彼此对接的厚板形成的管状构件或平板构件接合。 解决方案:在与电极位置相反的背面上的位置处布置有用于拾取其背侧及其周边部分上的熔池的图像和照明装置的第一图像拾取装置。 布置第一图像显示装置,其在由第一图像拾取装置拾取的背面上的熔池的屏幕图像和其周边部分的图像上显示用于指示图像的尺寸的尺寸, 背面侧的熔池的宽度以及熔池附近的后胎圈的宽度,以及指定由根部行驶形成的后胎圈的宽度的适当范围的规定值。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • Back-bead welding method
    • 背面焊接方法
    • JP2006159226A
    • 2006-06-22
    • JP2004352149
    • 2004-12-06
    • Hitachi Ltd株式会社日立製作所
    • IMANAGA AKIYOSHIHANEDA MITSUAKIOBANA TAKESHIINAGAKI MASATOSHIKOIDE HIROO
    • B23K9/167B23K9/028B23K9/095B23K9/23B23K103/04B23K103/08
    • PROBLEM TO BE SOLVED: To provide a method of suitably forming a nearly uniform back bead width in a projected shape with no recess on the rear face by properly executing pulsed arc welding or DC arc welding using a non-consumable tungsten electrode, in a groove joint that requires back-bead formation on the rear face of a narrow groove bottom.
      SOLUTION: One or more conditions are adjusted or controlled among a peak current, base current, peak voltage or average arc voltage, or arc length, welding speed or travelling speed of pulsed arc welding; or, in addition to the above conditions, one or more conditions are adjusted or controlled including a wire feeding speed during the peak current or the base current time or a wire feeding speed during both times. Otherwise, one or more conditions are adjusted or controlled among the average current, average arc voltage or arc length, welding speed or travelling speed, and wire feeding speed of DC arc welding, and then, a molten pool width on the rear face or the back-bead width near this molten pool is formed in the range of 4-6 mm which is a specific value.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过适当地执行使用非消耗性钨电极的脉冲电弧焊或直流电弧焊,提供适当地形成背面没有凹部的突出形状的几乎均匀的后边缘宽度的方法, 在需要在窄槽底部的后表面上形成后珠的凹槽接头中。

      解决方案:在峰值电流,基极电流,峰值电压或平均电弧电压或电弧长度,焊接速度或脉冲电弧焊接的行进速度之间调整或控制一个或多个条件; 或者除了上述条件之外,在峰值电流或基准电流时间期间调整或控制一个或多个条件,包括馈线速度,或在两次期间的送丝速度。 否则,在平均电流,平均电弧电压或电弧长度,焊接速度或行进速度以及直流电弧焊接的送丝速度之间调整或控制一个或多个条件,然后在背面或 在该熔池附近的后边缘宽度形成为4-6mm的范围,这是特定值。 版权所有(C)2006,JPO&NCIPI