Affiliation:
1. Don State Technical University
2. University of Rostock
Abstract
Special protective clothing is used to protect people in critically low temperatures. It exposed not only by temperature, but also by the effects of wind and the movements of the person. These aerodynamic and mechanical influences compress certain areas that return to their original position only after a certain period of time. However, during this interval the thermal resistance of the compressed part of the clothing decreases. In order to avoid such a situation, material packages have been developed to increase their elasticity. This article proposes a new material package design using a thermo-elastic element which, when the temperature changes to the required temperature, changes its shape. The article proposes the placement of the thermoelastic element, as well as a technique in which the thermoelastic element acquires the property of memorizing its shape at a certain temperature. Titanium nickelide alloy NiTi (nitinol) is used as a thermoelastic element. According to the method proposed in the article, this alloy remembers the shape at a temperature of +20°C (straight) and-18°C (bending). Thus, when the nitinol wire responses at negative temperature, the bend is manifested and the wire lifts the fabric of the top, thereby increasing the volume of the material package, which allows the insulation to occupy a larger volume increasing the thermal resistance of the package.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference20 articles.
1. I.V. Cherunova, M.P. Stenkina, P.V. Cherunov, Investigation of the structure and properties of flexible polymeric materials for integration with thin heat conductors structural membranes, 8th International Conference on Textile Composites and Inflatable Structures - STRUCTURAL MEMBRANES-2017. (2018) 210-216.
2. On the Improvement of Thermal Protection for Temperature-Responsive Protective Clothing Incorporated with Shape Memory Alloy;He;Materials,2018
3. Experimental study of the out-of-equilibrium behavior of the two-way shape memory effect;Bellouard;Journal de Physique IV (Proceedings)
4. Effects of training on the thermomechanical behavior of NiTiHf and NiTiZr high temperature shape memory alloys;Karakoc;Materials Science and Engineering: A
5. Effect of Thermal Treatments on Ni–Mn–Ga and Ni-Rich Ni–Ti–Hf/Zr High-Temperature Shape Memory Alloys;Santamarta;Shape Memory and Superelasticity,2015
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