Experimental Investigation on Mechanical Properties of AISI 316l SS Weldment by Using GTAW Process
Journal Title: International Journal of Mechanical and Production Engineering Research and Development (IJMPERD ) - Year 2018, Vol 8, Issue 2
Abstract
Welding is considered as one of the most important methods of metal joining process among other joing process. In this study, GTAW and Pulsed GTAW process is are used to weld AISI 316L type of Austenitic steel(3)along with the filler material as ER 316L. Pure Argon is considered as shielding gas(2). For both the process, by using trial and error method, the mechanical properties like tensile strength, hardness was were determined. And also mechanical properties of weldments using GTAW and pulsed GTAW were determined along with the identification of maximum strength in the above said two process
Execution of Cryogenically Treated Brisk Steel Enters in Exhausting of Austenitic Solidified Steels
Within this Evaluation, Implementation of cryogenically treated M35 Lively steel (HSS) In depleting of turn moves 316 tempered steels and AISI 304 was evaluated surface, regarding drive control Disagreeableness mechanica...
Numerical Parametric Study of Crack Parameters Near Crack Tip
It is necessary to measure accurately crack tip parameters to analyze crack and rate of crack propagation in fracture mechanics. Numerous efforts have been made towards the determination of stress intensity factor (SIF)...
Optimization of Design Parameters of Bellows Expansion Joints
A technique for optimizing the design parameters of the metal corrugated shell of bellows expansion joints is proposed. The purpose of the development is to improve the accuracy of resource assignment, as well as further...
VIBRATION ANALYSIS OF HONEYCOMB SANDWICH PANEL IN SPACECRAFT STRUCTURE
A Spacecraft structure has a cuboid construction and is composed of central cylinder and a number of interconnected honeycomb sandwich panels. A spacecraft structure accommodates all electronic packages and provides adeq...
Yield Characteristic of Biodiesel Derived from Used Vegetable Oil Methyl Ester (UVOME) Blended with Diesel in the Presence of Sodium Hydroxide (NaOH) and Potassium Hydroxide(KOH) Catalyst as Alternative Fuel for Diesel Engines
Used vegetable oil methyl ester (UVOME) was derived through transesterification process, by using used vegetable oil (UVO) and methanol in the presence of either sodium hydroxide (NaOH) or Potassium hydroxide (KOH) catal...