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Advances and Applications of 4D-Printed High-Strength Shape Memory Polymers
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作者 Jing Zhang Mingkun Xu +4 位作者 Nan Zhang Tingmei Wang Yaoming Zhang Zenghui Yang Qihua Wang 《Additive Manufacturing Frontiers》 2024年第1期134-159,共26页
“Life”represents a distinctive attribute inherent to organisms in nature,evident in their capacity to actively adapt to changes in their environment.In contrast to the static and intricate constructs of additive man... “Life”represents a distinctive attribute inherent to organisms in nature,evident in their capacity to actively adapt to changes in their environment.In contrast to the static and intricate constructs of additive manufacturing(AM),the dynamic structure of 4D printing(4DP)adeptly integrates AM technology,responsive mechanisms,and external stimuli,imbuing it with a semblance of“life.”This fusion significantly broadens its functional applica-tions across biomedicine,actuators,and metamaterials.The escalating demand across diverse fields necessitates heightened criteria for 4DP,encompassing rapid response,multi-stimulus response,large shape change,and specific mechanical properties(e.g.,high strength,high modulus)capable of accommodating varying environ-mental conditions.In recent years,shape memory polymers(SMPs)have garnered increasing attention among 4DP researchers due to their ease of design and preprogramming at the molecular level,facilitating controlled transformations along predictable pathways.However,4DP of high-strength SMPs,as an indispensable part of the high-performance field,is full of challenges because the intrinsic properties of the raw materials are not well compatible with the printing principle and the printed configuration is not flexible enough.Consequently,this paper provides a concise overview of the response mechanisms and applications of five prominent high-strength SMPs utilized in 4DP:epoxy resin,poly(ether-ether-ketone),polyimide,polylactic acid,and polyurethane.Ad-ditionally,it delves into the associated challenges and prospects,offering researchers valuable insights into the potential value of high-strength SMPs within the domain of 4DP. 展开更多
关键词 4D printing HIGH-STRENGTH shape memory polymer Stimulus response
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Shape Memory Polymers and Their Applications to Smart Textile Products 被引量:4
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作者 胡金莲 丁雪梅 +1 位作者 陶肖明 于建明 《Journal of Donghua University(English Edition)》 EI CAS 2002年第3期89-93,共5页
A review is presented in this paper on Shape Memory Polymers (SMPs) and their applications to smart, particularly textile products. Different kinds of SMPs developed by researchers around the world, characteristics of... A review is presented in this paper on Shape Memory Polymers (SMPs) and their applications to smart, particularly textile products. Different kinds of SMPs developed by researchers around the world, characteristics of SMPs and their applications, particularly to smart textiles are summarized. Current situations and potential application areas as well as future developments of smart textiles with shape memory polymers are discussed. 展开更多
关键词 shape memory polymers polyurethane smart TEXTILE products.
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Thermoviscoelastic Modeling Approach for Predicting the Recovery Behaviors of Thermally Activated Amorphous Shape Memory Polymers 被引量:1
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作者 GU Jianping FANG Changqing +1 位作者 SUN Huiyu ZHANG Xiaopeng 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2019年第5期798-807,共10页
A thermoviscoelastic modeling approach is developed to predict the recovery behaviors of the thermally activated amorphous shape memory polymers(SMPs)based on the generalized finite deformation viscoelasticity theory.... A thermoviscoelastic modeling approach is developed to predict the recovery behaviors of the thermally activated amorphous shape memory polymers(SMPs)based on the generalized finite deformation viscoelasticity theory.In this paper,a series of moduli and relaxation times of the generalized Maxwell model is estimated from the stress relaxation master curve by using the nonlinear regression(NLREG)method.Assuming that the amorphous SMPs are approximately incompressible isotropic elastomers in the rubbery state,the hyperelastic response of the materials is well modeled with a hyperelastic model in Ogden form.In addition,the Williams-Landel-Ferry(WLF)equation is used to describe the horizontal shift factor obtained with time-temperature superposition principle(TTSP).The finite element simulations show good agreement with the experimental thermomechanical behaviors.Moreover,the possibility of developing a temperature-responsive intravascular stent with the SMP studied here is investigated in terms of its thermomechanical property.Therefore,it can be concluded that the model has good prediction capabilities for the recovery behaviors of amorphous SMPs. 展开更多
关键词 shape memory polymers(smps) thermoviscoelastic modeling approach finite deformation RECOVERY behavior
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An investigation on multilayer shape memory polymers under finite bending through nonlinear thermo-visco-hyperelasticity
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作者 A.BAKHTIYARI M.BAGHANI S.SOHRABPOUR 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2023年第1期73-88,共16页
This study presents a semi-analytical solution to describe the behavior of shape memory polymers(SMPs) based on the nonlinear thermo-visco-hyperelasticity which originates from the concepts of internal state variables... This study presents a semi-analytical solution to describe the behavior of shape memory polymers(SMPs) based on the nonlinear thermo-visco-hyperelasticity which originates from the concepts of internal state variables and rational thermodynamics.This method is developed for the finite bending of multilayers in a dual-shape memory effect(SME) cycle.The layer number and layering order are investigated for two different SMPs and a hyperelastic material.In addition to the semi-analytical solution,the finite element simulation is performed to verify the predicted results,where the outcomes demonstrate the excellent accuracy of the proposed solution for predicting the behavior of the multilayer SMPs.Since this method has a much lower computational cost than the finite element method(FEM),it can be used as an effective tool to analyze the SMP behavior under different conditions,including different materials,different geometries,different layer numbers,and different layer arrangements. 展开更多
关键词 smart material shape memory polymer(SMP) semi-analytical solution thermo-visco-hyperelasticity finite strain bending
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Constitutive Model for Glassy-Active Phase Transformation on Shape Memory Polymers Considering Small Deformations
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作者 Manuel lgnacio Varela-Jimenez Jorge A. Cortes-Ramirez Yi-chao Chen 《材料科学与工程(中英文版)》 2010年第5期14-22,共9页
关键词 形状记忆聚合物 动本构模型 相变温度 玻璃化转变温度 小变形 实验数据 有效应变 热机械行为
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Two-Way 4D Printing: A Review on the Reversibility of 3D-Printed Shape Memory Materials 被引量:23
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作者 Amelia Yilin Lee Jia An Chee Kai Chua 《Engineering》 SCIE EI 2017年第5期663-674,共12页
The rapid development of additive manufacturing and advances in shape memory materials have fueled the progress of four-dimensional (4D) printing. With the right external stimulus, the need for human interaction, se... The rapid development of additive manufacturing and advances in shape memory materials have fueled the progress of four-dimensional (4D) printing. With the right external stimulus, the need for human interaction, sensors, and batteries will be eliminated, and by using additive manufacturing, more complex devices and parts can be produced. With the current understanding of shape memory mechanisms and with improved design for additive manufacturing, reversibility in 4D printing has recently been proven to be feasible. Conventional one-way 4D printing requires human interaction in the programming (or shapesetting) phase, but reversible 4D printing, or two-way 4D printing, will fully eliminate the need for human interference, as the programming stage is replaced with another stimulus. This allows reversible 4D printed parts to be fully dependent on external stimuli; parts can also be potentially reused after every recovery, or even used in continuous cycles-an aspect that carries industrial appeal. This paper presents a review on the mechanisms of shape memory materials that have led to 4D printing, current findings regarding 4D printing in alloys and polymers, and their respective limitations. The reversibility of shape memory materials and their feasibility to be fabricated using three-dimensional (3D) printing are summarized and critically analyzed. For reversible 4D printing, the methods of 3D printing, mechanisms used for actuation, and strategies to achieve reversibility are also highlighted. Finally, prospective future research directions in reversible 4D printing are suggested. 展开更多
关键词 4D printing Additive manufacturing shape memory material Smart materials shape memory alloy shape memory polymer
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Modeling size-dependent thermo-mechanical behaviors of shape memory polymer Bernoulli-Euler microbeam 被引量:3
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作者 Bo ZHOU Xueyao ZHENG +1 位作者 Zetian KANG Shifeng XUE 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2019年第11期1531-1546,共16页
The objective of this paper is to model the size-dependent thermo-mechanical behaviors of a shape memory polymer (SMP) microbeam.Size-dependent constitutive equations,which can capture the size effect of the SMP,are p... The objective of this paper is to model the size-dependent thermo-mechanical behaviors of a shape memory polymer (SMP) microbeam.Size-dependent constitutive equations,which can capture the size effect of the SMP,are proposed based on the modified couple stress theory (MCST).The deformation energy expression of the SMP microbeam is obtained by employing the proposed size-dependent constitutive equation and Bernoulli-Euler beam theory.An SMP microbeam model,which includes the formulations of deflection,strain,curvature,stress and couple stress,is developed by using the principle of minimum potential energy and the separation of variables together.The sizedependent thermo-mechanical and shape memory behaviors of the SMP microbeam and the influence of the Poisson ratio are numerically investigated according to the developed SMP microbeam model.Results show that the size effects of the SMP microbeam are significant when the dimensionless height is small enough.However,they are too slight to be necessarily considered when the dimensionless height is large enough.The bending flexibility and stress level of the SMP microbeam rise with the increasing dimensionless height,while the couple stress level declines with the increasing dimensionless height.The larger the dimensionless height is,the more obvious the viscous property and shape memory effect of the SMP microbeam are.The Poisson ratio has obvious influence on the size-dependent behaviors of the SMP microbeam.The paper provides a theoretical basis and a quantitatively analyzing tool for the design and analysis of SMP micro-structures in the field of biological medicine,microelectronic devices and micro-electro-mechanical system (MEMS) self-assembling. 展开更多
关键词 shape memory polymer (SMP) SIZE-DEPENDENT CONSTITUTIVE equation MICROBEAM model size effect modified COUPLE stress theory (MCST)
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Buckling-controlled two-way shape memory effect in a ring-shaped bilayer 被引量:4
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作者 Hao Li Xiaoyan Liang Weibin Song 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2019年第6期1217-1225,共9页
Shape memory polymers(SMPs)usually have a one-way shape memory effect.In this paper,an easy-operating method to realize a two-way shape memory effect was demonstrated in a ring-shaped bilayer structure where the two l... Shape memory polymers(SMPs)usually have a one-way shape memory effect.In this paper,an easy-operating method to realize a two-way shape memory effect was demonstrated in a ring-shaped bilayer structure where the two layers are SMPs with different thermal transition temperatures.By designing specific thermomechanical processes,the mismatched deformation between the two layers leads to a morphology change of ring-shaped bilayer structures from a smooth ring to a gear-like buckling shape under cooling and a reversible recovery to the smooth shape under heating.Such a morphology change is ascribed to occurrence and recovery of thermoelastic buckling.This method was validated by finite element simulation.We experimentally investigated the influence of pre-strain on buckling,and it was found that both the buckling occurrence and recovery temperature vary with pre-strain.Furthermore,considering a ring-shaped SMP-SMP bilayer structure,finite element analysis was conducted to study the influence of film thickness and modulus ratio of two layers on buckling behavior.The results showed that the critical buckling wavelength was greatly influenced by film thickness and modulus ratio.W e made a theoretical analysis that accorded well with the numerical results. 展开更多
关键词 shape memory polymers Two-way shape memory effect BUCKLING Ring-shaped BILAYER
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4D printing of PLA/PCL shape memory composites with controllable sequential deformation 被引量:5
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作者 Suqian Ma Zeyu Jiang +5 位作者 Meng Wang Lan Zhang Yunhong Liang Zhihui Zhang Lei Ren Luquan Ren 《Bio-Design and Manufacturing》 SCIE EI CSCD 2021年第4期867-878,共12页
Shape memory polymers(SMPs)are a promising class of materials for biomedical applications due to their favorable mechanical properties,fast response,and good biocompatibility.However,it is difficult to achieve control... Shape memory polymers(SMPs)are a promising class of materials for biomedical applications due to their favorable mechanical properties,fast response,and good biocompatibility.However,it is difficult to achieve controllable sequential shape change for most SMPs due to their high deformation temperature and the simplex deformation process.Herein,shape memory composites based on polylactic acid(PLA)matrix and semi-crystalline linear polymer polycaprolactone(PCL)are fabricated using 4D printing technology.Compared with pure PLA,with the rise of PCL content,the 4D-printed PLA/PCL composites show decreased glass transition temperature(Tg)from 67.2 to 55.2°C.Through the precise control of the deformation condition,controllable sequential deformation with an outstanding shape memory effect can be achieved for the PLA/PCL shape memory composites.The response time of shape recovery is less than 1.2 s,and the shape fixation/recov-ery rates are above 92%.In order to simulate sequential petal opening and sequential drug releasing effects,a double-layer bionic flower and a drug release device,respectively,are presented by assembling PLA/PCL samples with different PLA/PCL ratios.The results indicate the potential applications of 4D-printed PLA/PCL composites in the field of bio-inspired robotics and biomedical devices. 展开更多
关键词 4D printing shape memory polymer TEMPERATURE-RESPONSIVE Polylactic acid POLYCAPROLACTONE
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Switchable dry adhesive based on shape memory polymer with hemispherical indenters for transfer printing 被引量:4
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作者 Hongyu Luo Chenglong Li +2 位作者 Chuanqian Shi Shuang Nie Jizhou Song 《Theoretical & Applied Mechanics Letters》 CSCD 2021年第6期375-379,共5页
Transfer printing based on switchable adhesive is essential for developing unconventional systems,including flexible electronics,stretchable electronics,and micro light-emitting diode(LED)displays.Here we report a des... Transfer printing based on switchable adhesive is essential for developing unconventional systems,including flexible electronics,stretchable electronics,and micro light-emitting diode(LED)displays.Here we report a design of switchable dry adhesive based on shape memory polymer(SMP)with hemispherical indenters,which offers a continuously tunable and reversible adhesion through the combination of the preloading effect and the thermal actuation of SMP.Experimental and numerical studies reveal the fundamental aspects of design,fabrication,and operation of the switchable dry adhesive.Demonstrations of this adhesive concept in transfer printing of flat objects(e.g.,silicon wafers),three-dimensional(3D)objects(e.g.,stainless steel balls),and rough objects(e.g.,frosted glasses)in two-dimensional(2D)or 3D layouts illustrate its unusual manipulation capabilities in heterogeneous material integration applications. 展开更多
关键词 Switchable dry adhesive shape memory polymer Transfer printing
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Shape Memory Polymer Composite Booms with Applications in Reel-Type Solar Arrays 被引量:1
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作者 Hong Xiao Sijie Wu +4 位作者 Dongdong Xie Hongwei Guo Li Ma Yuxuan Wei Rongqiang Liu 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2023年第3期326-338,共13页
Solar arrays are the primary energy source for spacecraft.Although traditional rigid solar arrays improve power supply,the quality increases proportionally.Hence,it is difficult to satisfy the requirements of high-pow... Solar arrays are the primary energy source for spacecraft.Although traditional rigid solar arrays improve power supply,the quality increases proportionally.Hence,it is difficult to satisfy the requirements of high-power and low-cost space applications.In this study,a shape-memory polymer composite(SMPC)boom was designed,fabricated,and characterized for flexible reel-type solar arrays.The SMPC boom was fabricated from a smart material,a shape-memory polymer composite,whose mechanical properties were tested.Additionally,a mathematical model of the bending stiffness of the SMPC boom was developed,and the bending and buckling behaviors of the boom were further analyzed using the ABAQUS software.An SMPC boom was fabricated to demonstrate its shape memory characteristics,and the driving force of the booms with varying geometric parameters was investigated.We also designed and manufactured a reel-type solar array based on an SMPC boom and verified its self-deployment capability.The results indicated that the SMPC boom can be used as a deployable unit to roll out flexible solar arrays. 展开更多
关键词 shape memory polymer composite Reel-type solar array Deployable boom Bending behavior
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A Shape-Memory Deployable Subsystem with a Large Folding Ratio in China’s Tianwen-1 Mars Exploration Mission 被引量:1
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作者 Chengjun Zeng Liwu Liu +14 位作者 Yang Du Miao Yu Xiaozhou Xin Tianzhen Liu Peilei Xu Yu Yan Dou Zhang Wenxu Dai Xin Lan Fenghua Zhang Linlin Wang Xue Wan Wenfeng Bian Yanju Liu Jinsong Leng 《Engineering》 SCIE EI CAS CSCD 2023年第9期49-57,共9页
Once China’s Tianwen-1 Mars probe arrived in a Mars orbit after a seven-month flight in the deep cold space environment,it would be urgently necessary to monitor its state and the surrounding environment.To address t... Once China’s Tianwen-1 Mars probe arrived in a Mars orbit after a seven-month flight in the deep cold space environment,it would be urgently necessary to monitor its state and the surrounding environment.To address this issue,we developed a flexible deployable subsystem based on shape memory polymer composites(SMPC-FDS)with a large folding ratio,which incorporates a camera and two temperature telemetry points for monitoring the local state of the Mars orbiter and the deep space environment.Here,we report on the development,testing,and successful application of the SMPC-FDS.Before reaching its Mars remote-sensing orbit,the SMPC-FDS is designed to be in a folded state with high stiffness;after reaching orbit,it is in a deployed state with a large envelope.The transition from the folded state to the deployed state is achieved by electrically heating the shape memory polymer composites(SMPCs);during this process,the camera on the SMPC-FDS can capture the local state of the orbiter from multiple angles.Moreover,temperature telemetry points on the SMPC-FDS provide feedback on the environment temperature and the temperature change of the SMPCs during the energization process.By simulating a Mars on-orbit space environment,the engineering reliability of the SMPC-FDS was comprehensively verified in terms of the material properties,structural dynamic performance,and thermal vacuum deployment feasibility.Since the launch of Tianwen-1 on 23 July 2020,scientific data on the temperature environment around Tianwen-1 has been successfully acquired from the telemetry points on the SMPCFDS,and the local state of the orbiter has been photographed in orbit,showing the national flag of China fixed on the orbiter. 展开更多
关键词 Flexible deployable structure shape memory polymer composite Mars exploration Temperature telemetry On-orbit deployment
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Tunable Thermo-Responsive Shape Memory Materials Enabled by Poly(ε-caprolactone)-Poly(2-vinyl)ethylene Glycol Copolymers via Facile Thiol-Ene Photo-Crosslink
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作者 Ming-Hang Wang Fan Yang Yong-Jian Zhang 《Chinese Journal of Polymer Science》 2025年第2期278-288,共11页
Control crosslink network and chain connectivity are essential to develop shape memory polymers(SMPs)with high shape memory capabilities,adjustable response temperature,and satisfying mechanistical properties.In this ... Control crosslink network and chain connectivity are essential to develop shape memory polymers(SMPs)with high shape memory capabilities,adjustable response temperature,and satisfying mechanistical properties.In this study,novel poly(ε-caprolactone)(PCL)-poly(2-vinyl)ethylene glycol(PVEG)copolymers bearing multi-pendant vinyl groups is synthesized by branched-selective allylic etherification polymerization of vinylethylene carbonate(VEC)with linear and tetra-arm PCLs under a synergistic catalysis of palladium complex and boron reagent.Facile thiol-ene photo-click reaction of PCL-PVEG copolymers with multifunctional thiols can rapidly access a serious crosslinked SMPs with high shape memory performance.The thermal properties,mechanical properties and response temperature of the obtained SMPs are tunable by the variation of PCL prepolymers,vinyl contents and functionality of thiols.Moreover,high elastic modulus in the rubbery plateau region can be maintained effectively owing to high-density topological networks of the PCL materials.In addition,the utility of the present SMPs is further demonstrated by the post-functionalization via thiol-ene photo-click chemistry. 展开更多
关键词 shape memory polymers POLYCAPROLACTONE Thiol-ene photo-crosslink Controlled crosslinking density Tunable response temperature
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Fabrication of Dex-Loaded Shape Memory Polymer Based Composite Nanofibers for Potential Bone Tissue Engineering
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作者 王先流 谢静 +2 位作者 杨亮亮 娄向新 张彦中 《Journal of Donghua University(English Edition)》 EI CAS 2014年第5期709-713,共5页
Biodegradable shape memory polymers( SMPs) are a class of intelligent materials with great potential for imparting biomaterial scaffolds multifunctionality in the field of tissue engineering and regenerative medicine.... Biodegradable shape memory polymers( SMPs) are a class of intelligent materials with great potential for imparting biomaterial scaffolds multifunctionality in the field of tissue engineering and regenerative medicine.In this study,the biodegradable SMP poly( D,L-lactide-co-trimethylene carbonate)( PLMC) incorporated with the dexamethasone( Dex),which was a kind of synthetic bone-formation inducing factor,was fabricated into nanofibers via electrospinning.The morphology,constituent,thermal and mechanical properties of the produced Dex / PLMC composite nanofibers were characterized by scanning electron microscopy( SEM), Fourier transform infrared spectroscopy( FTIR), differential scanning calorimetry( DSC),and tensile testing,respectively.Then,ultrasound was employed as a remote stimulus to regulate the Dex releasing behavior from the composite nanofibers.It was found that the generated Dex /PLMC composite nanofibers had a uniform and smooth morphology with a diameter of ca.564 nm.Mechanical testing results showed that incorporation of the Dex gave rise to improved mechanical performance with the tensile strength,Young's modulus and strainat-break increased by 18.2%,20.0% and 64.4%,respectively.DSC data revealed that the glass transition temperature( Tg) of the composite nanofibers, i.e., the thermal transition temperature( Ttrans) for activating shape memory effect, was 39.7 ℃.Moreover, the release kinetics of the encapsulated Dex in the nanofibers could be manipulated by varying the acoustic power and insonation duration.These results suggested that the newly developed Dex / PLMC nanofibers could be a promising drug delivery system for applications in bone tissue engineering( BTE). 展开更多
关键词 DEXAMETHASONE (Dex) shape memory polymer (SMP) ultrasound BONE TISSUE engineering( BTE) ELECTROSPINNING
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Shape Memory Properties of Poly(L-Lactide) / Poly(ε-Caprolactone) Blends and Their Composites with Carbon Nanotubes
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作者 Maryam Amirian Wei Cai Ali Nabipour Chakoli Jiehe Sui Jiangtao Feng 《材料科学与工程(中英文版)》 2010年第3期27-34,共8页
关键词 碳纳米管复合材料 多壁碳纳米管 形状记忆特性 Ε-己内酯 共混物 聚乳酸 内存性能 差示扫描量热法
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桐油基光热双重响应型形状记忆聚合物的制备与性能研究
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作者 邢一 李梅 +3 位作者 林明涛 李守海 冯永顺 庄晓伟 《林产化学与工业》 北大核心 2025年第1期72-80,共9页
以桐油为原料制备了一种新型的融合羧基和苯基氨基甲酸肟酯基团的活性预聚体——桐油聚合马来苯醌二肟酯(TOMABD),然后与E51、E44、AG602和EBA30这4种环氧树脂进行交联聚合,构筑得到一系列基于不同环氧树脂的桐油基光热双重响应形状记... 以桐油为原料制备了一种新型的融合羧基和苯基氨基甲酸肟酯基团的活性预聚体——桐油聚合马来苯醌二肟酯(TOMABD),然后与E51、E44、AG602和EBA30这4种环氧树脂进行交联聚合,构筑得到一系列基于不同环氧树脂的桐油基光热双重响应形状记忆聚合物。通过FT-IR和1H NMR表征了预聚体的结构,并测试了聚合物的机械性能、热稳定性和形状记忆性能。FT-IR和1H NMR分析结果表明:目标产物TOMABD已经成功制备。聚合物的机械性能和热稳定性分析表明:4个不同聚合体系具有可控的机械性能,其中TOMABD/E51和TOMABD/AG602聚合体系具有较强的刚性和较高的玻璃化转变温度(Tg),Tg分别为102.49和112.31℃,TOMABD/EBA30聚合体系具有最佳的柔性,其断裂伸长率可达161.22%,而TOMABD/E44聚合体系具有最佳的综合拉伸性能,其拉伸强度可达到27.95 MPa,断裂伸长率可达到37.11%。同时4个不同聚合体系均具有优异的热稳定性,初始热分解温度均超过360℃。TOMABD/E44聚合体系具有优异的光热双重响应形状记忆性能,弯曲样品可在室温6 min、60℃下1 min或背面点状紫外光照射10 s时迅速恢复原状。 展开更多
关键词 桐油 光热双重响应 形状记忆 环氧聚合物
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基于微透镜阵列的可调谐成像及仿真研究
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作者 顾志祥 曾露 +3 位作者 裴峰 肖轶 李建权 吴思竹 《光子学报》 北大核心 2025年第2期156-164,共9页
结合湿法蚀刻工艺和飞秒激光直写加工技术,在石英玻璃上制备了微孔阵列模板。利用形状记忆聚合物对模板进行软光刻复制,制备出了200×200(30.0μm)的微透镜阵列,通过Zemax仿真软件对微透镜的焦距及分辨率进行模拟仿真,结果与实验数... 结合湿法蚀刻工艺和飞秒激光直写加工技术,在石英玻璃上制备了微孔阵列模板。利用形状记忆聚合物对模板进行软光刻复制,制备出了200×200(30.0μm)的微透镜阵列,通过Zemax仿真软件对微透镜的焦距及分辨率进行模拟仿真,结果与实验数据高度一致。在特定的转变温度(130℃)下,形状记忆微透镜阵列可实现微透镜尺寸、轮廓及空间分布的高度可编程性,从而赋予其形态转变能力。形状记忆微透镜阵列能够在不同形态间自由切换,当微透镜阵列处于压平状态时,经过再次加热至转变温度,能迅速恢复为最初态,实现了微透镜阵列的实时可变形功能。所提出的调谐方法为微光学器件的移动运输和光学传感等应用提供了新的解决方案。 展开更多
关键词 微透镜阵列 飞秒激光 形状记忆聚合物 仿真 可调谐成像
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超临界CO_(2)发泡PBAT/PLA复合材料及其形状记忆性能
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作者 宫政 高秀鲁 +1 位作者 赵玲 胡冬冬 《化工学报》 北大核心 2025年第2期888-896,共9页
采用超临界CO_(2)辅助制备生物可降解聚己二酸对苯二甲酸丁二醇酯(PBAT)/聚乳酸(PLA)形状记忆发泡材料,研究了PLA含量对PBAT/PLA复合材料中CO_(2)溶解扩散行为、熔融结晶、流变行为及发泡行为的影响,考察了PLA含量对PBAT/PLA发泡材料的... 采用超临界CO_(2)辅助制备生物可降解聚己二酸对苯二甲酸丁二醇酯(PBAT)/聚乳酸(PLA)形状记忆发泡材料,研究了PLA含量对PBAT/PLA复合材料中CO_(2)溶解扩散行为、熔融结晶、流变行为及发泡行为的影响,考察了PLA含量对PBAT/PLA发泡材料的形状记忆性能和力学性能的影响。结果表明,PBAT有利于PLA分子链段局部运动,促进了PLA的冷结晶过程;在低频剪切作用下,随着PLA含量的增加,PBAT/PLA的复数黏度增加;PLA降低了CO_(2)在PBAT/PLA复合材料中的解吸扩散系数,提高了发泡材料的刚性,起到稳定泡孔形貌和抗收缩的作用;PLA质量分数20%时,复合材料获得最大稳定发泡倍率20.5倍,PBAT/PLA发泡材料(发泡倍率7.5)形状固定率为86.8%,形状恢复率为94.3%,综合性能最佳。PLA有利于提高PBAT/PLA发泡材料的形状固定率,但不利于其形状恢复率。同时,PLA质量分数低于20%时,PLA的引入提高了PBAT/PLA发泡材料的拉伸/压缩模量和强度。 展开更多
关键词 超临界二氧化碳 聚合物加工 泡沫 生物可降解 形状记忆性能
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SMP双喷头打印工艺及回复性能分析
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作者 康水苗 周蕊 +1 位作者 杨利 宋凯峰 《机械设计与制造》 北大核心 2025年第4期198-202,208,共6页
形状记忆聚合物(Shape Memory Polymer)作为一种智能材料,其可变形结构在航空航天、医疗等诸多领域具有巨大应用潜力。为更好地研究4D打印技术对SMP复合材料的应用,这里采用双喷头FDM打印机制备聚乳酸-形状记忆聚合物复合材料打印试件,... 形状记忆聚合物(Shape Memory Polymer)作为一种智能材料,其可变形结构在航空航天、医疗等诸多领域具有巨大应用潜力。为更好地研究4D打印技术对SMP复合材料的应用,这里采用双喷头FDM打印机制备聚乳酸-形状记忆聚合物复合材料打印试件,利用正交实验分析方法,研究不同复合结构和打印工艺,包括材料的连接形状,重叠长度,填充密度等因素,对打印试件的尺寸精度、拉伸性能以及结构回复性能的影响,并进行参数优化。研究结果表明,复合结构采用燕尾槽重叠方式,可获得更加稳定的性能,且重叠密度为3mm,填充类型为网格填充,燕尾槽角度为30°时,综合性能指标最优。 展开更多
关键词 FDM 形状记忆聚合物 双喷头4D打印 优化 正交实验 机械性能 回复性能
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多功能SMPs在生物医学领域的研究进展
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作者 李娜 李进 +5 位作者 王娟 张正涛 何荣祥 陈勇 张玮莹 曹一平 《江汉大学学报(自然科学版)》 2014年第5期19-24,共6页
形状记忆聚合物(SMPs)是一种可以感知—响应外界刺激,并调整自身力学参数,从而回复预先设定形状的智能材料,在自动化、包装材料、微-纳米电子机械等领域具有良好的使用价值。为了进一步拓展形状记忆材料的实际应用范围,满足一些特殊领域... 形状记忆聚合物(SMPs)是一种可以感知—响应外界刺激,并调整自身力学参数,从而回复预先设定形状的智能材料,在自动化、包装材料、微-纳米电子机械等领域具有良好的使用价值。为了进一步拓展形状记忆材料的实际应用范围,满足一些特殊领域(如航空航天、生物医学)的功能化要求,弥补材料单一形状记忆功能所造成的不足,多功能SMPs越来越受到科学家的广泛关注。概述了多功能SMPs的研究进展,综述了多功能SMPs在生物医学工程上的应用,并展望其发展前景。 展开更多
关键词 形状记忆聚合物(smps) 生物医学应用 智能材料
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