Reducing Testing Time by Considering the Rubber Curing Time in Tire Manufacturing Company

Author:

Wulung R.B. Seno1,Saputri Syah Reihan1

Affiliation:

1. Politeknik ATK Yogyakarta, Ministry of Industry

Abstract

Abstract. Vulcanization and testing are important in the tire industry. This paper aims to reduce the total time of testing by considering the effect of rubberized vulcanization curing time on the peeling test. The experiment utilizes rubberized from natural rubber and polyester fabric as a sample. Furthermore, this paper investigates the shortest time which still maintains the standard properties of the product. This paper use nonfactorial Complete Randomized Design (CRD) with five variations of curing time including 20; 30; 40; 50; and 60 minutes. The results show that the duration of curing time affected the Force value and visualization of the peeling test. The result indicates that the most efficient rubberized curing time treatment was 30 minutes and obtained Force values 201 N, 216 N, 214 N, 201 N, and 211 N with an average of 208.6 N. Moreover, the result shows satisfactory adhesion characteristics in three category visualization values. Therefore, the sample met the company standard in both aspects of testingKeywords: Vulcanization, tire, curing time, peeling test, rubberized

Publisher

Trans Tech Publications, Ltd.

Subject

Anesthesiology and Pain Medicine

Reference16 articles.

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2. T.L.M. Baumard, A.G. Thomas, J.J.C. Busfield, Fatigue Peeling at rubber interface. Plastics, Rubber, and Composites 14 (2012).

3. E.T.McDonel,Tire Cord and Cord to Rubber Bonding, in: A.N. Gent, J.D. Walter,The Pneumatic Tire, Mechanical Engineering Faculty Research, University of Akron, Ohio, 2006, pp.80-104

4. B.E. Lindenmuth, An Overview of Tire Technology, in: A.N. Gent, J.D. Walter, The Pneumatic Tire, Mechanical Engineering Faculty Research, University of Akron, Ohio, 2006, pp.1-27

5. T. Berger, M. Kaliske, An arbitrary Lagrangian Eulerian formulation for tyre production simulation, Finite Elements in Analysis and Design, 204(2022)

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