Open Access Open Access  Restricted Access Subscription or Fee Access

Development of VMC Fixture for End Cap of TFO Twister Machine to Reduce Setup Time

B. B. Panchani, A. R. Moradiya, S. K. Pandav, D. A. Rathod, R. P. Shah, C. R. Sanghani

Abstract


In industries, different types of fixtures are used to hold and support the workpiece according to requirements to ensure dimensional accuracy during machining. This paper presents the solution for an industrial problem to develop a single fixture for machining of an end cap of a two-for-one (TFO) twister machine. Currently, two different fixtures are used for performing different operations on the end cap in a horizontal and vertical position on the vertical machining center (VMC). As the setup of fixture and component is done manually, loading and unloading time are more which results in higher cycle time. The main objective of this paper is to develop a fixture that can replace two fixtures with a reduction in setup time and labor work as well as improvement in the production rate. A new fixture is designed and manufactured according to requirements. The comparative analysis of the existing and newly developed fixture showed a reduction in weight and setup time by 22.61% and 34.09% respectively.

Keywords


Fixture, VMC, TFO twister machine, end cap, setup time

Full Text:

PDF

References


Maniar NP, Vakharia DP, Patel CM. Design & manufacturing with modeling, dynamic balancing & finite element analysis of rotary fixture for CNC turning centre to function as HMC. ASME Early Career Technical Conference, Tuscaloosa, Alabama, USA, October 2–3, 2009.

Vasundara M, Padmanaban KP, Sabareeswaran M, Raj Ganesh M. Machining fixture layout design for milling operation using FEA, ANN and RSM. Proc Eng. 2012; 38: 1693– 1703p.

Campatelli G, Sallese L, Scippa A. Design of an active workpiece holder. Proc. CIRP 2015; 34: 217– 222p.

Möhring HC, Wiederkehr P. Intelligent Fixtures for High Performance Machining. Proc. CIRP 2016; 46: 383–390p.

Hui L, Weifang C, Shengjie S. Design and Application of Flexible fixture. Proc. CIRP 2016;56: 528– 532p.

Calabrese M, Primo T, Del Prete A. Optimization of machining fixture for aeronautical thin-walled components. Proc. CIRP 2017;60: 32–37p. [7] Förstmann R, Wagner J, Kreisköther K, Kampker A, Busch D. Design for Automation: The Rapid Fixture Approach. Proc. Manuf. 2017; 11: 633–640p.

Gameros A, Lowth S, Axinte D, Nagy-Sochacki A, Craig O, Siller HR. State-of-the-art in fixture systems for the manufacture and assembly of rigid components: A review. Int J Mach Tool Manu. 2017; 123: 1–21p.

Vijaya Ramnath B, Elanchezhian C, Rajesh S, Jaya Prakash S, Manoj Kumaar B, Rajeshkannan K. Design and Development of Milling Fixture for Friction Stir Welding. Mater Today: Proc. 2018;5(1): 1832–1838p.

Radhwan H, Effendi MSM, Rosli MF, Shayfull Z, Nadia KN. Design

and Analysis of Jigs and Fixtures for Manufacturing Process. IOP Conf. Ser.: Mater. Sci. Eng. 2019; 551: 012028–1–9p.


Refbacks

  • There are currently no refbacks.