Mechanical Behavior of a Functional Polyethylene–Titanium Nickelide Composite Material

IF 0.3 Q4 METALLURGY & METALLURGICAL ENGINEERING Russian Metallurgy (Metally) Pub Date : 2025-02-10 DOI:10.1134/S0036029524702033
D. E. Gusev, M. Yu. Kollerov, D. V. Burdin, A. A. Sharonov, R. E. Vinogradov
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Abstract—The mechanical and functional properties of a composite material consisting of a polyethylene matrix reinforced with a titanium nickelide wire are investigated. This composite material has a high fracture strength under static and cyclic bending. The effective ultimate strength of the composite material during interlaminar shear exceeds 3.6 MPa. Depending on the structural state of titanium nickelide, the fatigue life of the composite material is 2–50 times longer than that after similar reinforcement with a corrosion-resistant steel wire. The viscoelastic behavior of polyethylene is found to affect the superelasticity and the one-way shape memory effect of the composite material. Despite the low adhesive strength of the polyethylene/titanium nickelide interface, this composite material can exhibit the one-way shape memory effect with a shape recovery η ≈ 0.95.

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功能性聚乙烯-镍化钛复合材料的力学行为
摘要:研究了镍化钛丝增强聚乙烯基复合材料的力学性能和功能性能。该复合材料在静弯曲和循环弯曲下具有较高的断裂强度。层间剪切作用下复合材料的有效极限强度超过3.6 MPa。根据镍化钛的结构状态不同,复合材料的疲劳寿命比用耐腐蚀钢丝进行类似加固后的疲劳寿命长2-50倍。聚乙烯的粘弹性行为影响了复合材料的超弹性和单向形状记忆效应。尽管聚乙烯/镍化钛界面的粘接强度较低,但该复合材料具有单向形状记忆效应,形状恢复η≈0.95。
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来源期刊
Russian Metallurgy (Metally)
Russian Metallurgy (Metally) METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
0.70
自引率
25.00%
发文量
140
期刊介绍: Russian Metallurgy (Metally)  publishes results of original experimental and theoretical research in the form of reviews and regular articles devoted to topical problems of metallurgy, physical metallurgy, and treatment of ferrous, nonferrous, rare, and other metals and alloys, intermetallic compounds, and metallic composite materials. The journal focuses on physicochemical properties of metallurgical materials (ores, slags, matters, and melts of metals and alloys); physicochemical processes (thermodynamics and kinetics of pyrometallurgical, hydrometallurgical, electrochemical, and other processes); theoretical metallurgy; metal forming; thermoplastic and thermochemical treatment; computation and experimental determination of phase diagrams and thermokinetic diagrams; mechanisms and kinetics of phase transitions in metallic materials; relations between the chemical composition, phase and structural states of materials and their physicochemical and service properties; interaction between metallic materials and external media; and effects of radiation on these materials.
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