Manufacturing, characterisation and moulding of magnetoactive thermoplastic elastomers with focus on applications for sensors and actuators
Manufacturing, characterisation and moulding of magnetoactive thermoplastic elastomers with focus on applications for sensors and actuators
批准号:
238080255
负责人:
Dr. Mario Schrödner
金额:
$0.0万
依托单位国家:
德国
项目类别:
Priority Programmes
财政年份:
2013
资助国家:
德国
项目状态:
已结题
起止时间:
2012-12-31 至 2014-12-31
中文摘要
对多功能和功能集成器件的需求不断增加,支持了智能材料的研究。其中包括混合材料,其组分的微观相互作用导致宏观性能,表现出磁控制的机械顺应性。衍生的应用可以是单片传感器执行器系统。考虑的项目是材料合成和技术实施领域的桥梁。为了使基本材料适合技术用途,强烈要求制造技术。成形(半成品,特殊形式)和工业过程的潜在适用性也是至关重要的标准。根据电活性弹性体的经验,提出了磁活性热塑性弹性体的工艺改造方案。这包括磁性颗粒、弹性体基质和附加剂的选择和测试。需要进一步表征机械动力学和磁动力学特性以及依赖于相关特性(颗粒分散、可加工性、精细图案)的生产。早期的目标是塑造简单的几何形状(纤维挤压)和连接技术(编织或接触基板),重点是操纵感官应用。详细地说,研究涉及a)纤毛结构功能表面(用于夹具)和b)触觉传感网。这两个主体的机械顺应性都是由磁性控制的,对于b),另外,变形影响电导率提供了感觉功能。
英文摘要
Increasing demand for multifunctional and functional integrated devices supports the research on smart materials. They include hybrid materials, whose microscale interaction of components results in macroscopic properties, which show magnetically controlled mechanical compliancy. Derived applications can be monolithic sensor actuator systems.The considered project bridges the fields of material synthesis and technical implementation. Manufacturing technologies are strongly required to make the basic material fit for technical purposes. Shaping (semi-finished products, special forms) and the potential suitability for industrial processes are crucial criteria, too.Basing on the experiences with electroactive elastomers, the proposer plans the adaption of processes on magnetoactive thermoplastic elastomers. This includes the selection and testing of magnetic particles, the elastomer matrix and additional agents. Further characterization of the mechanical-dynamic and magnetic-dynamic properties as well as production depending on relevant properties (particle dispersion, processability, fine patterning) is required. The early aim is the shaping of simple geometries (fiber extrusion) and joining technologies (weaving or contacting on substrate) with the focus on manipulative sensoric applications. In Detail, investigation concern a) cilia structured functional surfaces (for grippers) and b) a tactile sensoric mesh. The mechanic compliancy of both subjects is controlled magnetically and, for b), an additional, deformation influenced electrical conductivity provides a sensoric function.
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会议论文
Dynamischen Eigenschaften von All-Polymer-OFETs mit feinststrukturierten S-D-Elektroden als Weg zu schnellen Polymer-ICs
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批准号:5407043
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项目类别:Priority Programmes
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资助金额:$0.0万
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财政年份:2003
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负责人:Dr. Mario Schrödner
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依托单位:
海外基金