نتایج جستجو برای: فرآیند gmaw
تعداد نتایج: 32521 فیلتر نتایج به سال:
Gas metal arc welding (GMAW) is the most widely used process for metal joining because of its high productivity and good quality, but analysis shows that the fundamental characteristic restricts conventional GMAW from further increasing the welding productivity. A novel GMAW process, refereed to as double-electrode GMAW or DE-GMAW, thus has been developed to make it possible to increase the mel...
To provide quantitative information to choose the best welding processes for minimizing workplace emissions, nine gas metal arc welding (GMAW) processes for mild steel were assessed for fume generation rates, normalized fume generation rates (milligram fume per gram of electrode consumed), and normalized generation rates for elemental manganese, nickel, and iron. Shielded metal arc welding (SMA...
یکی از مشخصه های کیفیت اتصالات جوش شده در جوشکاری قوس الکتریکی با گاز محافظ (gmaw) ارتفاع جوش (wh) می باشد. این مقاله بر یک مطالعه ی آزمایشگاهی که به منظور دستیابی به یک مدل با استفاده از شبکه ی عصبی مصنوعی (ann) برای پیش بینی wh در فرآیند gmaw با حضور نانوذرات tio2 انجام شد، تاکید دارد. برای مدلسازی، ولتاژ قوس، جریان جوشکاری، سرعت جوشکاری، درصد گاز آرگون در ترکیب گاز ar و co2 و ضخامت نانوذرات ...
Double-Electrode Gas Metal Arc Welding (DE-GMAW) is a novel welding process recently developed to increase welding productivity while maintaining the base metal heat input at a desired low level. In this paper, the DE-GMAW process was improved by replacing its non-consumable tungsten electrode with a consumable welding wire electrode resulting in a new process called consumable DE-GMAW. To unde...
روش جوشکاری قوس الکتریکی با گاز محافظ[1] (GMAW) از فرآیندهای مهم در ایجاد اتصالات دائمی با کیفیت بالا در قطعات فلزی است. در فرآیندهای جوشکاری، هندسه و کیفیت اتصالات بهمیزان زیادی وابسته به مقادیر پارامترهای تنظیمی است. از جمله پارامترهای مهم تنظیمی میتوان به ولتاژ، نرخ تغذیه سیم، نرخ جریان گاز، فاصله نازل تا صفحه و زاویه نازل نسبت به صفحه جوشکاری اشاره نمود. کیفیت جوش معمولا توسط هندسه گرده ...
Arc sensors have been used in seam tracking and widely studied since the 80s and commercial arc sensing products for T and V shaped grooves have been developed. However, it is difficult to use these arc sensors in narrow gap welding because the arc stability and sensing accuracy are not satisfactory. Pulse gas melting arc welding (P-GMAW) has been successfully applied in narrow gap welding and ...
Evaluation of welding process such as metal inert gas welding and tungsten inert gas arc welding on tensile, bend and hardness properties of austenitic stainless steel SS347H(18Cr 10Ni 1Cb ), T22(21⁄4Cr Mo) and T91(9Cr 1Mo V) grades are studied. Tubes of 54 mm of outer diameter and 4 mm of wall thickness is used as a base material in the following combination SS347H VS T91 and T91 VS T22 is wel...
The weld pool is the core of the welding process where complex welding phenomena originate. Skilled welders acquire their process feedback primarily from the weld pool. Observation and measurement of the three-dimensional weld pool surface thus play a fundamental role in understanding and future control of complex welding processes. To this end, a laser line is projected onto the weld pool surf...
Gas Metal Arc Welding (GMAW) processes is an important joining process widely used in metal fabrication industries. This paper addresses modeling and optimization of this technique using a set of experimental data and regression analysis. The set of experimental data has been used to assess the influence of GMAW process parameters in weld bead geometry. The process variables considered here inc...
Aluminum alloy welding suffers from problems such as solidification cracking and hydrogen-induced porosity, which are sufficiently severe to limit its potential applications. Because mitigated porosity incidence and solidification cracking are observed in aluminum welds using double pulsed gas metal arc welding (DP-GMAW), a comprehensive review of the mechanism is necessary, but absent from the...
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