Thermoelastic-plastic stress analysis in a thermoplastic composite disc

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Yes

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Abstract

In this study, an elastic-plastic stress analysis is carried out on a steel fiber-reinforced thermoplastic composite disc under uniform thermal distribution. The composite disc is reinforced by steel fibers curvilinearly. Its mechanical properties are obtained by strain gauges and Instron test machine. The modulus of elasticity in the tangential direction is measured by fitting a solid disc to the composite disc, exactly. However, other material properties are found approximately. The material is assumed to be non work hardening. Stresses are determined for uniform temperature distribution. The magnitude of the tangential stress component in polar coordinates is the highest at the inner points of the disc. Plastic solution is performed numerically. Plastic region begins at the inner surface of the disc. The residual stress component of the tangential stress is the highest at the inner surface of the disc.

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Keywords

Disc, Steel fiber, Thermoelastic-plastic, Thermoplastic, Composite materials, Electric resistance, Fiber reinforced materials, Hydraulics, Matrix algebra, Polyethylenes, Pressure effects, Strain hardening, Stress analysis, Hydraulic press, Thermoelastic- plastic, Thermoelasticity, Electric resistance, Stress analysis, Hydraulics, Thermoelastic- plastic, Steel fiber, Composite materials, Pressure effects, Disc, Fiber reinforced materials, Matrix algebra, 620, 510, Thermoelastic-plastic, Hydraulic press, Thermoplastic, thermoelastic-plastic; steel fiber; thermoplastic; disc, Polyethylenes, Thermoelasticity, Strain hardening

Fields of Science

02 engineering and technology, 0203 mechanical engineering, 0210 nano-technology

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OpenCitations Citation Count
9

Volume

24

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1

Start Page

21

End Page

34
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CrossRef : 8

Scopus : 14

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Mendeley Readers : 3

SCOPUS™ Citations

15

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Web of Science™ Citations

10

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49

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