This paper is published in Volume-4, Issue-2, 2018
Area
Mechanical Engineering
Author
Kamlesh Sahu, Dharmendra Tyagi
Org/Univ
Sagar Institute of Research and Technology-Excellence, Bhopal, Madhya Pradesh, India
Pub. Date
26 April, 2018
Paper ID
V4I2-2184
Publisher
Keywords
Aluminium alloys, Direct extrusion, Extrude, Process parameters.

Citationsacebook

IEEE
Kamlesh Sahu, Dharmendra Tyagi. Analysis of triaxiality stress behavior in three dimensional simulation of Al 2024 aluminum alloy extrusion by using finite element method, International Journal of Advance Research, Ideas and Innovations in Technology, www.IJARIIT.com.

APA
Kamlesh Sahu, Dharmendra Tyagi (2018). Analysis of triaxiality stress behavior in three dimensional simulation of Al 2024 aluminum alloy extrusion by using finite element method. International Journal of Advance Research, Ideas and Innovations in Technology, 4(2) www.IJARIIT.com.

MLA
Kamlesh Sahu, Dharmendra Tyagi. "Analysis of triaxiality stress behavior in three dimensional simulation of Al 2024 aluminum alloy extrusion by using finite element method." International Journal of Advance Research, Ideas and Innovations in Technology 4.2 (2018). www.IJARIIT.com.

Abstract

Extrusion is an extremely flexible manufacturing process, as a single press can be used to extrude various materials and a large number of profiles by simply changing the die and the associated tooling with it. Extrusion Process is highly influenced by the process parameters required for determining the quality of process and extrude. The process parameters such as billet pre-heating temperature, container temperature, die temperature, extrusion ratio, ram speed, die pre-heating temperature, the number of cavities in the die and triaxiality stresses etc. control the process, which ultimately affects the productivity and quality of the extrude. This paper deals with an extensive literature review of the effect of process parameters on the extrusion of various Al 2024 aluminum alloys.