Kapłon Tomasz, Milecki Andrzej
Institute of Mechanical Technology, Poznan University of Technology, Pl. M. Skłodowskiej-Curie 5, 60-965 Poznan, Poland.
Materials (Basel). 2022 Dec 1;15(23):8570. doi: 10.3390/ma15238570.
Silicon-ethanol is a relatively new smart composite in the category of phase-change materials (PCM). It consists of liquid ethanol entrapped in bubbles spread into a silicone rubber matrix, i.e., during cooling. The composite is able to expand significantly when heat is applied and shrink when it is removed. The properties of this material can be used in a new type of actuator. In this paper, the basic equations that describe the properties of actuators with a silicon-ethanol composite are given. Using them, two solutions of unidirectional actuators with a composite inserted into polycarbonate tubes and metal bellows are designed and investigated. In the study, actuators with different geometric dimensions and applied composite volumes are investigated. The elongations of the actuators and the blocking forces are measured. The theoretical relationships given at the beginning of the paper that describe the properties of the composite are validated using the performed experimental results of the built actuators. The tube actuators achieved elongation between 32% and 35% at a temperature of 75 degrees Celsius, that is, less than that predicted according to equations from earlier publications. Due to this, a modified equation that includes the influence of friction was proposed and compared with experimental results. The performance of the tube actuator deteriorates rapidly. In the case of bellow actuators, they stabilize after a few cycles of heating and cooling.
硅 - 乙醇是相变材料(PCM)类别中一种相对较新的智能复合材料。它由包裹在气泡中的液态乙醇散布在硅橡胶基体中组成,即在冷却过程中形成。该复合材料在受热时能够显著膨胀,在热量移除时收缩。这种材料的特性可用于新型致动器。本文给出了描述含硅 - 乙醇复合材料致动器特性的基本方程。利用这些方程,设计并研究了两种将复合材料插入聚碳酸酯管和金属波纹管中的单向致动器解决方案。在该研究中,对具有不同几何尺寸和应用复合材料体积的致动器进行了研究。测量了致动器的伸长量和阻塞力。利用所构建致动器的实验结果验证了本文开头给出的描述复合材料特性的理论关系。管形致动器在75摄氏度的温度下实现了32%至35%的伸长,即低于根据早期出版物中的方程预测的值。因此,提出了一个包含摩擦影响的修正方程,并与实验结果进行了比较。管形致动器的性能迅速恶化。对于波纹管致动器,它们在经过几次加热和冷却循环后会稳定下来。