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標(biāo)題: Titlebook: Electromechanically Active Polymers; A Concise Reference Federico Carpi Living reference work 20200th edition Actuators, Mechano-electrica [打印本頁]

作者: 大小    時間: 2025-3-21 19:04
書目名稱Electromechanically Active Polymers影響因子(影響力)




書目名稱Electromechanically Active Polymers影響因子(影響力)學(xué)科排名




書目名稱Electromechanically Active Polymers網(wǎng)絡(luò)公開度




書目名稱Electromechanically Active Polymers網(wǎng)絡(luò)公開度學(xué)科排名




書目名稱Electromechanically Active Polymers被引頻次




書目名稱Electromechanically Active Polymers被引頻次學(xué)科排名




書目名稱Electromechanically Active Polymers年度引用




書目名稱Electromechanically Active Polymers年度引用學(xué)科排名




書目名稱Electromechanically Active Polymers讀者反饋




書目名稱Electromechanically Active Polymers讀者反饋學(xué)科排名





作者: antenna    時間: 2025-3-21 21:06
Polymers and Polymeric Composites: A Reference Serieshttp://image.papertrans.cn/e/image/306072.jpg
作者: Tracheotomy    時間: 2025-3-22 01:15

作者: 喚起    時間: 2025-3-22 05:03
,Konzeptbest?tigung mechatronischer Systeme, element is summarized. In the next part, how to setup a measurement system of IPMC actuator and test the actuator performance is described. In the last part, a control method of IPMC actuator is discussed. From the information in this chapter, experiments with IPMC actuators can be started.
作者: 集合    時間: 2025-3-22 10:02

作者: 小鹿    時間: 2025-3-22 15:33

作者: 小鹿    時間: 2025-3-22 20:50

作者: GLOOM    時間: 2025-3-22 21:58
IPMCs as EAPs: Models,rlying principles of IPMC actuation and sensing, and to develop functional real-time control systems for IPMC devices. This chapter provides an overview of IPMC modeling with specific emphasis on physics-based models and control models. The underlying governing equations are presented and methods of solving are discussed.
作者: SPURN    時間: 2025-3-23 03:23
https://doi.org/10.1007/978-3-319-31767-0Actuators, Mechano-electrical sensors and Energy Harvesters; Dielectric Elastomers; Electrically-drive
作者: encyclopedia    時間: 2025-3-23 05:49
https://doi.org/10.1007/978-3-531-90653-9, environment-friendly, and energy-saving actuators (or power force generators). This chapter describes applications of conducting polymers (CPs) to EAPs such as bending actuators, microactuators, and linear actuators. The bending actuators were applied to diaphragm pumps, swimming devices, and flex
作者: CHECK    時間: 2025-3-23 13:58

作者: STALE    時間: 2025-3-23 19:21
Herausforderung Management Auditinciples are presented. Actuators, or artificial muscles, transducing those volume variations into large macroscopic movements are presented here. The same reaction gives exchange of anions, or cations, and opposed film volume variations (here described) from different families of CPs. Transduction
作者: PLAYS    時間: 2025-3-24 01:02
https://doi.org/10.1007/978-3-658-01879-5 to all kind of audience, from confirmed researchers starting in the field of EAPs to teachers wanting to propose practical works on such materials. It will focus on bi(tri)layer bending actuators operating in liquid electrolyte and on two kinds of trilayer bending devices able to operate in open-ai
作者: babble    時間: 2025-3-24 05:20
Andreas Günther,Martina Hasselerhe microfabrication of conducting polymer actuators, resulting in a toolbox of techniques to engineer microsystems comprising CP microactuators, which will be explained in more detail. CP layers can be patterned using both subtractive and additive techniques to form CP microactuators in a variety of
作者: 注意力集中    時間: 2025-3-24 07:04
Herausforderung Risikomanagementth the basic models needed in order to assess the feasibility of using conducting polymers, design devices, describe the device response, and predict behavior. The chapter begins with an overview of the basic observations and phenomena on which physical models are based, briefly describes models emp
作者: Infusion    時間: 2025-3-24 11:22
https://doi.org/10.1007/978-3-322-80534-8rs, and sensors. This chapter presents multiple electromechanical transduction systems including biologically inspired robotics, tactile feedback and displays, tunable optics, fluid control and microfluidics, capacitive sensors, and energy harvesters.
作者: 傾聽    時間: 2025-3-24 15:47
Das Siemens Leadership Excellence Programmorward and can be done at low cost. This chapter provides information on making two types of basic dielectric elastomer actuators, as well as detailed information on using DE for energy harvesting (converting mechanical energy into electrical energy)... Voltages of several thousand volts are require
作者: 誘騙    時間: 2025-3-24 20:31

作者: ARBOR    時間: 2025-3-25 01:36

作者: 痛苦一生    時間: 2025-3-25 05:15

作者: CYT    時間: 2025-3-25 08:21
Frieden in der Weltgesellschaft?ration. So far, carbon nanotubes (CNTs) have gained unrivaled attention. Their popularity is reflected in a production capacity that presently exceeds several thousand tons per year. In addition to carbon nanotubes, other electrically conductive carbon allotropes that contain electron-rich conjugate
作者: 宏偉    時間: 2025-3-25 12:53
Innovative Bew?ltigung neuartiger Aufgabenting the carbon nanotube fibers generates a volume increase that drives a partial untwist of the fiber. The process is reversible upon cooling with the aid of a return spring mechanism. The actuation can be magnified by incorporation of a guest material, such as paraffin wax. The torsional stroke an
作者: arbiter    時間: 2025-3-25 18:08
Soziale Wirklichkeit und Konzepte,lacement, soft material, capability of activation in water or in wet condition, possibility to work in dry condition, durability, and easy to miniaturize. In recent years, a great number of applications based on the IPMCs have been carried out by many workers. In this chapter, IPMC research on biome
作者: FLAIL    時間: 2025-3-25 20:01

作者: HILAR    時間: 2025-3-26 01:06
,Konzeptbest?tigung mechatronischer Systeme, element is summarized. In the next part, how to setup a measurement system of IPMC actuator and test the actuator performance is described. In the last part, a control method of IPMC actuator is discussed. From the information in this chapter, experiments with IPMC actuators can be started.
作者: famine    時間: 2025-3-26 05:49

作者: defibrillator    時間: 2025-3-26 08:32
https://doi.org/10.1007/978-3-658-21272-8rlying principles of IPMC actuation and sensing, and to develop functional real-time control systems for IPMC devices. This chapter provides an overview of IPMC modeling with specific emphasis on physics-based models and control models. The underlying governing equations are presented and methods of
作者: isotope    時間: 2025-3-26 16:32
https://doi.org/10.1007/978-3-658-22669-5Dielectric elastomer actuators (DEAs) consist of a thin elastomer with even thinner compliant electrodes, both of equal importance for obtaining actuation. In this chapter, materials for both elastomers and electrodes will be discussed.
作者: peritonitis    時間: 2025-3-26 19:51

作者: Felicitous    時間: 2025-3-26 23:40
Dielectric Elastomers as EAPs: Models,troelastic behavior of DEs in the framework of finite-strain electromechanics. The second approach, based on lumped parameters, is motivated by the desire to provide a simple and adequate description of the behavior of DE actuators under the influence of an electrical voltage applied to the electrodes.
作者: 遭受    時間: 2025-3-27 02:52
IPMCs as EAPs: Applications,ize. In recent years, a great number of applications based on the IPMCs have been carried out by many workers. In this chapter, IPMC research on biomedical applications, biomimetic robotics, sensor/actuator integration, and energy harvesting is reviewed.
作者: Assemble    時間: 2025-3-27 08:07

作者: 談判    時間: 2025-3-27 11:35
https://doi.org/10.1007/978-3-658-01879-5r. Experimental details will be provided on how to fabricate each of them step by step giving examples. Electrical and electromechanical characterizations will be also described from basic measurements to some more complicated concepts.
作者: 樂意    時間: 2025-3-27 16:55

作者: Ejaculate    時間: 2025-3-27 21:43
Herausforderung Risikomanagementloyed, and gives some references to literature presenting the models. The use of system identification techniques is then presented, and it is shown that these can very effectively be employed to create and validate models, as well as extract physical phenomena and enable predictions.
作者: 調(diào)味品    時間: 2025-3-27 23:31

作者: Amnesty    時間: 2025-3-28 04:33
2510-3458 dels, applications and operative guidelines for smart materi.This book provides a comprehensive and clearly structuredintroduction to the broad field of transducers and artificial muscles based onelectromechanically active polymers (EAP), the goal being to present basicconcepts and established knowl
作者: panorama    時間: 2025-3-28 10:15
Julius Golovatchev,Marcus Felsmanntroelastic behavior of DEs in the framework of finite-strain electromechanics. The second approach, based on lumped parameters, is motivated by the desire to provide a simple and adequate description of the behavior of DE actuators under the influence of an electrical voltage applied to the electrodes.
作者: Deceit    時間: 2025-3-28 11:01

作者: 開花期女    時間: 2025-3-28 16:03
Living reference work 20200th editioncally active polymers (EAP), the goal being to present basicconcepts and established knowledge in an accessible form. Its tutorial styleand structure make this book an easy-to-use reference guide for students,researchers and practitioners alike.?Different sections cover allcategories of EAP material
作者: 戰(zhàn)役    時間: 2025-3-28 18:45

作者: Cardiac    時間: 2025-3-29 00:31

作者: 去才蔑視    時間: 2025-3-29 04:27

作者: 名詞    時間: 2025-3-29 08:47
Conducting Polymers as EAPs: How to Start Experimenting with Them,r. Experimental details will be provided on how to fabricate each of them step by step giving examples. Electrical and electromechanical characterizations will be also described from basic measurements to some more complicated concepts.
作者: 紳士    時間: 2025-3-29 13:35
Conducting Polymers as EAPs: Microfabrication, configurations including bulk expansion, bilayer, and trilayer actuators. Methods to integrate CP microactuators into complex microsystems and interfaces to connect them to the outside world are also described. Finally, some specifications, performance, and a short introduction to various applications are presented.
作者: FLACK    時間: 2025-3-29 18:16
Conducting Polymers as EAPs: Physical Description and Simulation,loyed, and gives some references to literature presenting the models. The use of system identification techniques is then presented, and it is shown that these can very effectively be employed to create and validate models, as well as extract physical phenomena and enable predictions.
作者: 媽媽不開心    時間: 2025-3-29 21:51

作者: infelicitous    時間: 2025-3-30 03:14

作者: Abjure    時間: 2025-3-30 04:46
Conducting Polymers as EAPs: Characterization Methods and Metrics,ng polymers (CP) to provide fundamental metrics such as strain, strain rate, stress, force, modulus of elasticity, and work capacity. In addition to providing metrics, these characterization techniques have served as valuable tools for studying CPs, providing a greater understanding of the actuation
作者: Guileless    時間: 2025-3-30 11:34
Conducting Polymers as EAPs: Device Configurations,e are presented, some successful device configurations are reviewed, and a detailed account of their operation principles is described. The chapter is concluded with critical research issues. With reference to the significant progress made in the field of EAP transducers in the last two decades, the
作者: 記憶法    時間: 2025-3-30 14:45

作者: comely    時間: 2025-3-30 18:54

作者: 輕打    時間: 2025-3-30 22:34

作者: 有發(fā)明天才    時間: 2025-3-31 03:11
Conducting Polymers as EAPs: Physical Description and Simulation,th the basic models needed in order to assess the feasibility of using conducting polymers, design devices, describe the device response, and predict behavior. The chapter begins with an overview of the basic observations and phenomena on which physical models are based, briefly describes models emp
作者: indigenous    時間: 2025-3-31 07:07

作者: Cholesterol    時間: 2025-3-31 11:38
Dielectric Elastomers as EAPs: How to Start Experimenting with Them,orward and can be done at low cost. This chapter provides information on making two types of basic dielectric elastomer actuators, as well as detailed information on using DE for energy harvesting (converting mechanical energy into electrical energy)... Voltages of several thousand volts are require
作者: frugal    時間: 2025-3-31 16:08
Dielectric Elastomers as EAPs: Models,lectromechanical behavior. In this chapter, we present two different approaches for modeling DE. The first approach is focussed on describing the electroelastic behavior of DEs in the framework of finite-strain electromechanics. The second approach, based on lumped parameters, is motivated by the de
作者: violate    時間: 2025-3-31 17:34

作者: 分離    時間: 2025-3-31 23:06

作者: cluster    時間: 2025-4-1 04:01

作者: Emmenagogue    時間: 2025-4-1 09:08

作者: geometrician    時間: 2025-4-1 11:58
IPMCs as EAPs: Applications,lacement, soft material, capability of activation in water or in wet condition, possibility to work in dry condition, durability, and easy to miniaturize. In recent years, a great number of applications based on the IPMCs have been carried out by many workers. In this chapter, IPMC research on biome
作者: 出處    時間: 2025-4-1 14:44
IPMCs as EAPs: Fundamentals,of IPMCs is described, and a brief review of their development is provided. Then, the configurations of various devices based on them, including those of the electrode materials and ionic polymers, are described. Then, the basic techniques used to characterize IPMCs are described. In the next sectio
作者: Exuberance    時間: 2025-4-1 18:29
IPMCs as EAPs: How to Start Experimenting with Them, element is summarized. In the next part, how to setup a measurement system of IPMC actuator and test the actuator performance is described. In the last part, a control method of IPMC actuator is discussed. From the information in this chapter, experiments with IPMC actuators can be started.
作者: 拖債    時間: 2025-4-1 23:36

作者: 緯線    時間: 2025-4-2 05:15
IPMCs as EAPs: Models,rlying principles of IPMC actuation and sensing, and to develop functional real-time control systems for IPMC devices. This chapter provides an overview of IPMC modeling with specific emphasis on physics-based models and control models. The underlying governing equations are presented and methods of




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