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Optimization of Weld Parameters and Weld Bead Dimensions in Welding of 0.3C-Cr-Mo-V Steel by Gas Tungsten Arc Welding Process

机译:焊接焊接焊接参数优化焊接参数和焊接珠尺寸通过气体钨电弧焊接工艺焊接0.3%C-CR-Mo-V钢

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ISRO space programs use Maraging Steel for its Solid rocket motor casings. Because of its higher cost and limitations in the availability, there is a need to develop alternate to this steel.ISRO has developed a unique material as a alternative to Maraging Steel namely 0.3%C-Cr-Mo-V steel (Electro Slag Refined modified 15CDV6 steel-ESR MOD 15CDV6). This material is being considered for making rocket motor casings and considered as substitute as well as replacement for Maraging Steel. Weldability is an important factor considered for fabrication of this material in the areas of rocketry.Since it is a new material, enough studies and welding details are not available to exploit this material for aero space applications.Among the various welding methods available in the welding of steels, GTAW (Gas Tungsten Arc Welding) process selected for undertaking this study because this process is clean, contamination free, easily adaptable and generally suitable for welding of high strength alloy steel.Literature survey indicates not much work has been reported in welding of such low alloy high strength steel with conventional welding methods.Similarly effect of heat treatment on weldments, quench characteristics, hardness response etc. also not available much. Hence these factors are main reason to undertake this study.This paper is limited to studying, fixing of weld parameters and weld bead dimensions. In this expriment the welding parameters, its response for each set of experiments and influence on weld dimensions are studied. In this work a combination of weld parameters were selected using Design of Experiment (DOE) principle with three levels and four parameter (variables).Totally nine experiments with different combination of parameters conducted on the test pieces (TP) of size 8×200×150mm.The chemical composition of parent metal and filler rod remains same. Three levels of current and voltage, and correspondingly other parameters like root gap, number of passes and welding speeds were employed.Details like the amount of shielding, purging gas used and quantity of flow are noted. Weld bead dimensions like bead width -B, reinforcement-R, penetration-r, penetration height-b are chosen as response.All the nine test coupons were subjected to Liquid Penetrant Test (LPT), X-ray radiography and found defect free.
机译:ISRO空间计划使用Mastring Steel为其固体火箭电机壳体。由于其更高的成本和局限性,需要开发替代品.ISRO已经开发了一种独特的材料作为替代的载人钢,即0.3%C-CR-Mo-V钢(电渣改装) 15cdv6钢eSR mod 15cdv6)。正在考虑制造火箭电机外壳并考虑替代品以及替代品的替代品。可焊性是考虑在鲁莽地区制造这种材料的重要因素.Since它是一种新材料,足够的研究和焊接细节无法利用这种用于航空空间应用的材料。焊接中可用的各种焊接方法可用钢材,GTAW(气体钨弧焊)所选择的工艺,因为该过程是清洁的,污染无污染,易于适应,通常适用于高强度合金钢的焊接.LITERATION调查表明在焊接中报告了没有多少工作这种低合金高强度钢具有常规焊接方法。热处理对焊接,淬火特性,硬度反应等的影响。因此,这些因素是承接本研究的主要原因。本文仅限于研究,固定焊接参数和焊缝尺寸。在这种情况下,研究了焊接参数,研究了对每组实验的响应和对焊缝尺寸的影响。在这项工作中,使用实验(DOE)原理的设计选择焊接参数的组合,具有三个级别和四个参数(变量).Totally九个实验,其中尺寸为8×200×的试验片(TP)的不同参数组合。母金属和填充棒的化学成分保持不变。采用三个电流和电压,相应的其他参数,如根间​​隙,通过和焊接速度的次数。类似的屏蔽量,所使用的吹扫气体和流量的数量。焊珠尺寸如珠宽-b,加强液-r,penetration-r,渗透高度-b被选为反应。所有九个测试试样都经受液体渗透试验(LPT),X射线射线照相和发现缺陷。

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