SMART MATERTECH
  • HOME
  • SHAPE MEMORY MATERIALS/TECHNOLOGY
    • Shape memory alloys >
      • Shape memory alloy actuators
      • Grains and deformation
      • SMA suppliers
    • Shape memory polymers >
      • Thermo-responsive >
        • Heating-responsive >
          • Thermo-plastic elastic SMP >
            • Body/room temperature programmable
          • Thermoset elastic SMP >
            • Body/room temperature programmable
          • Tailoring Tg of polymers via alloying
          • Vitrimer
          • 3D printing filaments
          • Show time
          • Body-temperature programmable elastic shape memory materials: a brief history
        • Cooling-responsive >
          • Cooling-responsive shape memory materials: a brief history
      • Chemo-responsive >
        • Electrospinning: fundametals
        • Natural biopolymers
        • Water-responsive SME: a brief history
      • Hydrogel
      • Simulation of SMP
    • Shape memory hybrids >
      • Electro-activated shape memory hybrid
      • SMHs: tailorable properties
      • Shape memory hybrids: a brief history
    • Triple/multiple SME
    • Reversible/shape change effect
    • Programming conditions
    • Temperature memory effect in DSC
    • Buckling 失稳
    • Constrained recovery of 2way EVA
    • Shape memory structures
    • Shape memory composites
    • Intro. & Refs. >
      • SME in commercial polymers
      • SMM introduction videos
      • PMMA (acrylic)
  • DIY
    • Laser engraving and beyond
    • DIY (step-by-step) to protect power charge cable 自制充电线接头保护层
    • DIY SMP screw 自制形状记忆螺丝
    • DIY shape memory foam 自制形状记忆海绵
    • DIY shape memory shoes 自制形状记忆鞋
    • Modifying superelastic Nitinol 超弹镍钛记忆合金改性
    • Goggles
    • Temple Tip Retainers /眼镜防滑钩
    • Nose pads
    • 硅胶+TPU样品制作 搅拌流程
    • Unlock smart phones
  • PROJECTS
    • Biomedical applications 生物医疗应用 >
      • Self-tightening band aid 自收缩创可贴
      • Self-tightening staple 自收缩手术钉
      • Shape memory plug 形状记忆栓塞
      • Artificial blood vessels
      • Comfort fitting 舒适贴合 >
        • Shape memory shoes 形状记忆鞋
        • Wrist rings/rings
        • Mask口罩 >
          • DIY口罩扣松紧器
          • Mask holder 口罩支架
          • Improved fitting
          • Comfort fitting "invisible" mask 舒适贴合“隐形”口罩 >
            • Animation (mask)
        • Facial mask (面膜)
      • Retractable 可收回
      • Wrinkle removal 除皱
    • SMA devices 形状记忆合金器件 >
      • Buttons-on-demand 按需按钮
      • Sunlight activated heat engine 阳光驱动的热机
      • Adjustable high heel 可调高跟鞋
      • SMA inchworm 形状记忆合金驱动的竹节虫
      • Rolling car 滚动车
      • SMA springs
      • Gripper
    • SMP applications >
      • 4D latte art 4D 拉花 >
        • Spinning 4D latte art
      • Re-writable Braille paper 可复写盲文纸
      • Surface patterning
      • 2D to 3D switching
      • Ear impression/plugs
    • Metals/polymers >
      • Smart manufacturing
      • Powerless cooling
      • Self-healing
      • Sensors 传感器 >
        • Temperature sensors 温度标签
        • Anti-counterfeit labels 防伪标签
      • Vertical gardening 垂直绿化 >
        • 盆景 >
          • In Singapore
        • Products 产品 >
          • Event sponsorship
        • Projects 项目 >
          • A project in Guangzhou (2022)
          • 2nd Project in Guangzhou
          • 3rd Project in Singapore
        • Water on-demand irrigation system
        • Vertical greening panel (2nd type)
        • 2nd type of foam
      • Wearable electronics 可穿戴电子设备
      • Controlled folding/unfolding 可控展开/折叠 >
        • Folding (multiple layered)
        • Reshape & reprogram
      • Active disassembly 自拆卸
      • Morphing wing 变翼
      • Magnetic circuit design
    • Solid state UV cross-linking >
      • Solid-state heating cross-linking
    • Additive manufacturing增材制造 >
      • 3D/4D printing 打印
      • Rapid 3D printing in solid state 快速固态3D打印 >
        • Rapid volumetric additive manufacturing in solid-state: hydrogels
        • UV cross-linkable vitrimer 2022
        • UV cross-linking of solid material
        • UV cross-linking machine
        • Solid-state VAM (3D)
        • SVAM: A brief history
        • Review of Solid state VAM by AI
      • New ways of additive manufacturing (animation)
      • UV-FDM printer
      • Cooling-responsive shape memory hydrogel via FDM
      • 3D fashion >
        • Formation of 3D structures
    • Shape capture
    • Surface capture >
      • Surface pattern for structural coloring
  • Store room
    • References/tools >
      • 3D models >
        • More STL models
        • 生肖
        • 3D printing service
      • Sample dimensions for tensile test
      • Temperature calibration
      • Toolbox工具箱
      • Toolbox II (工具箱 II)
    • Jungle >
      • About polymers >
        • Thermally reversible solid-liquid transition
        • Cyclic loading
        • Mullins effect
        • Photoelsticity 光弹
        • Shear-thickening 剪切增强 >
          • 4 CNA
        • Closed to open cell foams
        • Laser induced graphene
        • Electrospinning
        • Nano imprinting
        • Gel 凝胶 >
          • Instability in wetting of hydrogel
          • Electroactive gel电活性凝胶
        • Cellulose 纤维素
        • Plastic bottle 塑料瓶
        • Polymer recycling
        • Rapid swelling 快速溶胀
        • Rapid hardening in water
        • Patterns
        • Brittle-ductile transition
        • Tan delta >
          • Re-programmable Tan delta
        • UV cross-linking
        • Hardening speed
      • Coloring 变色 >
        • Structural coloring atop curved surfaces
        • Thermochromic 热致变色
        • Photochromic 光致变色
        • Stress induced color change力致变色 >
          • Patterned coloring via stretching 拉出色彩
      • Moire interference 莫尔干涉
      • Lenticular lens
      • Transformation front
      • Contact angle vs surface pattern
      • Laser: applications
      • Insects 昆虫
      • Structural engineer >
        • Static and Dynamic Balancing
        • Introduction videos
        • Bistable structures: a case study >
          • 3D printing of bistable structures
          • Step-wise morphing
        • Yield criterion >
          • Normalized yield surface via GPU
          • Yield surface of SMAs and beyond
        • Buckling of embedded threads
        • Buckling of embedded strip
        • Buckling of strip atop soft substrate
        • Foam structures for packaging
      • Interesting >
        • Exhibition
        • Ideas
      • Experimental >
        • Tensile test
        • Differential Scanning Calorimetry (DSC) Procedure
        • Dynamic Mechanical Analysis (DMA) Procedure
        • Shape Memory Performance Characterization Procedure for Shape Memory Polymers
      • ChatGPT 4 fun
      • 智谱测试
  • Contact
    • SMM course
    • Representative publications
    • Projects of undergraduate students
    • List of videos
    • Special issues| Conferences
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    • References

Shape memory shoes
形状记忆鞋


Basic concept: one size for all

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Shape memory shoes 

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3D printed soles and shoes

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Patents granted
STL
​Vivobarefoot 推出3D打印定制鞋
​英国公司 Vivobarefoot 基于 Vivobiome 平台,实现了一种通过增材制造(3D打印)进行鞋类定制的新方法。该平台的核心是全数字化流程,包括 3D 足部扫描、AI 驱动的建模和本地化 3D 打印三大模块。该系统的第一个原型是 Tabi Gen 01 凉鞋,实现了设计与穿着者的足部解剖结构完全匹配。
----------------2025.5.

(FYP) Eng HR, Rayner 

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(FYP) Hu H

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Maybe the 1st (ever) half piece of molded elastic shape memory shoe that can be comfort fitted at body temperature

FYP: Toh LS
Mold designed by Dr He LW
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Elasticity of two types of body temperature programmable shape memory materials
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To integrate the shape memory effect into, e.g.,
​​voxeljet’s Coral Runner
1. For enhanced comfort fitting;
2. One-size-for-all.
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Sock shoes (Toh LS, FYP; Tan JM, URECA)

Sock-shoes



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(P-FYP) Leonard Teo ET

Body-temperature programmable elastic shape memory sole

(P-FYP) Azharuddin Bin MN
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(FYP) Lee ZX Rayner

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Before and after fitting (size change: from 38 to 40)
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After fitting
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3D printed: comparison after fitting and after recovery
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DIY shape memory shoes

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3D printed elastic shape memory insole

FDM; ​Flexible filament (ESun)

A collection of shoes
Feb. 20, 2016

References

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​硬拆解:ANTA KT5 LOW
​硬拆解:安踏 隆多6代
​LBJ18硬拆解
​“拆解”一双篮球鞋
​中国航天员在太空舱里穿的鞋子
​鞋底材料大全以及优缺点
​鞋底材料知识
​跑鞋也有保质期
​跑鞋的中底革命
​一双可以长大的鞋
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​你的脚型适合什么鞋?
​脚型配鞋子穿着就舒适
​学会按照脚型来挑选,才能穿得舒适又好看 
​国外版球鞋,真的比国内版更好吗?
​亚洲鞋友群体的宽楦需求比例,是远比欧美鞋友群体大的。
​壁纸 | 从图纸到成品,球鞋的诞生
​​如何修复价值1000美元的鞋子?
翻新勃肯拖鞋(微信)
​Putting your best foot forward: new ‘snapping’ footwear developed to help diabetic patients
​跑鞋技术的进步及其对跑步经济性和性能的影响 - 当前的概念概述
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​The only app in the world which empowers you to try on footwear thanks to Augmented Reality and find your perfect fit in a few moments.

 One-size-fits-all shoe by Japanese designer Muneo Ariga 
Ki ecobe - Customizable Self Assembled Footwear
​颠覆传统,一双鞋竟有三种穿法
Replication using shape memory material (URECA and FYP)
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​Foot Orthosis: fabrication​
​DIY Custom Silicone Orthotics and Insoles for Plantar Fasciitis
​The Big Lie About Flat Feet & Custom Arch Supports
环保鞋,沸水里消失 (微信)
SKINNERS: Revolutionary Ultraportable Footwear with Silver
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​LEARN EVERYTHING ABOUT THE FUROSHIKI SHOES
​比五指鞋更合脚 你从没见过的包袱鞋Vibram Furoshiki
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PHARRELL X ADIDAS CNY BYW

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​Crocs
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​Vibram Five Fingers
ADIDAS YEEZY X D ROSE
XYZ-SHOE
​FUTURECRAFT.STRUNG
4D forward​
划重点丨当我们拿到最新的4D跑鞋时,我们在聊些什么?
​匹克3D打印聚变2.0
​3D打印学步鞋
​耐克发布免提鞋,穿脱竟然不用手
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​耐克新款可拆卸运动鞋

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​voxeljet’s Coral Runner

​The Coral Runner shoe reveals how nature inspires 3D Printing
​Advancing 3D printed footwear beyond aesthetics and into performance
When corals shake a leg 
​
The Coral Runner shoe
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voxeljet
​Covestro in Additive Manufacturing: On the path to circular economy
​Balenciaga's new barefoot 'Zero' shoes expose your feet and cost $450
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​Balenciaga x Vibram Heel Knit Limited Sneaker
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3D打印鞋穿着报告:有人脚踩匕首,有人依然足力健
​发泡颗粒3D打印运动鞋

Weight of typical shoes (size: 39-40)


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Brief history
Your browser does not support viewing this document. Click here to download the document.
​文章核心观点
这份文档概述了使用形状记忆材料 (SMM) 开发舒适贴合鞋子的研究进展。该研究始于 2013 年 11 月,旨在解决传统鞋子在舒适度、即时贴合度和便利性方面的不足。 **主要特点**: * **舒适贴合**: 鞋子能够根据脚部形状进行贴合,提供更好的舒适度。 * **即时贴合**: 用户可以在现场进行鞋子贴合,无需等待定制。 * **便利贴合**: 无需测量脚部尺寸,无需区分左右脚。 * **经济实惠**: 价格亲民,无需额外定制费用。 * **无尺码差异**: 一双鞋子适合所有人,无需根据脚部大小选择不同尺码。 **关键技术**: * **形状记忆材料 (SMM)**: 利用 SMM 的特性,鞋子可以在加热后变形,并在冷却后恢复原状,从而实现即时贴合。 **研究进展**: * 研究人员开发了多种形状记忆鞋垫和鞋子原型,包括袜子版本、EVA 泡沫版本、软垫版本、固态 TPU 版本等。 * 通过 2D 动画和 3D 仿真验证了概念可行性。 * 进行了多项测试,包括室内外测试、不同材料的性能测试等。 * 研究人员还探索了 3D 打印技术,并将其应用于形状记忆鞋子的制造。 **未来方向**: * 进一步优化形状记忆材料的性能,提高鞋子的舒适度和耐用性。 * 开发更多样化的形状记忆鞋子款式,满足不同用户的需求。 * 推动形状记忆鞋子技术的商业化应用。
试试以下例子:
📔 文档总结
帮我梳理整个文档的大纲
帮我分析整个文档的知识点
帮我总结这篇文档的关键词,输出不超过10个
💼 文档提问
这款智能记忆鞋垫的原理是什么?它如何根据个人脚型进行调整?
这款鞋垫是否需要加热才能进行形状记忆,如果是,加热到多少温度?是否对人体安全?
除了袜子和鞋垫,该技术是否还可以应用于其他类型的鞋类,例如运动鞋或皮鞋?
帮我梳理整个文档的大纲
项目目标: 开发一款舒适度极高的鞋类产品,具备以下特点:
舒适度: 即时贴合脚型,提供个性化舒适体验。
便捷性: 随时随地调整,无需额外工具。
重复性: 可多次调整,适应脚型变化。
经济性: 价格亲民,人人可负担。
通用性: 一鞋多码,无需区分左右脚。
技术路线:
形状记忆材料: 利用形状记忆材料的特性,实现鞋子的即时塑形和记忆功能。
原型开发: 从袜子和鞋垫等简单产品开始,逐步开发出功能更完善的鞋类产品。
3D 打印: 利用 3D 打印技术,快速制作原型,并进行测试和改进。
材料研究: 研究不同形状记忆材料的性能,选择最合适的材料用于鞋类产品。
功能改进: 不断改进鞋子的舒适度、稳定性和耐用性。
项目进展:
2013.11 - 2015.01: 项目启动,进行初步研究和概念设计。
2015.01 - 2017.04: 开发不同版本的袜子和鞋类产品,并进行测试和改进。
2017.04 - 2019.04: 利用 3D 打印技术,开发出形状记忆鞋底和鞋面,并进行测试和改进。
2019.04 - 2020.03: 开发出形状记忆弹性鞋底和超软形状记忆泡沫材料,进一步提升鞋子的舒适度。
2020.03 - 至今: 进行概念设计和功能测试,进一步完善鞋类产品。
未来展望:
开发更多款式和功能的鞋类产品。
探索形状记忆材料在其他领域的应用。
建立完善的销售和售后服务体系。
总结: 该项目展示了形状记忆材料在鞋类产品中的应用潜力,为未来鞋类产品的设计和开发提供了新的思路。
​Project Objective: To develop a highly comfortable footwear product with the following features:
Comfort: Instantly fits the foot shape for personalized comfort.
Convenience: Can be adjusted on the spot, no additional tools required.
Repeatability: Can be adjusted multiple times to accommodate foot shape changes.
Affordability: Priced for everyone.
Versatility: One shoe fits multiple sizes, no distinction between left and right.
Technology Roadmap:
Shape Memory Materials: Utilize the properties of shape memory materials to achieve instant molding and memory function of the shoes.
Prototype Development: Start from simple products like socks and insoles, gradually developing more functional footwear.
3D Printing: Use 3D printing technology to quickly create prototypes for testing and improvement.
Material Research: Study the properties of different shape memory materials to select the most suitable materials for footwear.
Function Improvement: Continuously improve the comfort, stability, and durability of the shoes.
Project Progress:
2013.11 - 2015.01: Project initiation, preliminary research, and concept design.
2015.01 - 2017.04: Development of different versions of socks and footwear, testing, and improvement.
2017.04 - 2019.04: Use 3D printing technology to develop shape memory soles and uppers, and conduct testing and improvement.
2019.04 - 2020.03: Develop shape memory elastic soles and ultra-soft shape memory foam materials to further enhance the comfort of the shoes.
2020.03 - Present: Conceptual design and functional testing to further improve the footwear.
Future Prospects:
Develop more styles and functional footwear products.
Explore the application of shape memory materials in other fields.
Establish a complete sales and after-sales service system.
Summary: This project demonstrates the potential of shape memory materials in footwear applications, providing new ideas for the design and development of future footwear products.
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  • HOME
  • SHAPE MEMORY MATERIALS/TECHNOLOGY
    • Shape memory alloys >
      • Shape memory alloy actuators
      • Grains and deformation
      • SMA suppliers
    • Shape memory polymers >
      • Thermo-responsive >
        • Heating-responsive >
          • Thermo-plastic elastic SMP >
            • Body/room temperature programmable
          • Thermoset elastic SMP >
            • Body/room temperature programmable
          • Tailoring Tg of polymers via alloying
          • Vitrimer
          • 3D printing filaments
          • Show time
          • Body-temperature programmable elastic shape memory materials: a brief history
        • Cooling-responsive >
          • Cooling-responsive shape memory materials: a brief history
      • Chemo-responsive >
        • Electrospinning: fundametals
        • Natural biopolymers
        • Water-responsive SME: a brief history
      • Hydrogel
      • Simulation of SMP
    • Shape memory hybrids >
      • Electro-activated shape memory hybrid
      • SMHs: tailorable properties
      • Shape memory hybrids: a brief history
    • Triple/multiple SME
    • Reversible/shape change effect
    • Programming conditions
    • Temperature memory effect in DSC
    • Buckling 失稳
    • Constrained recovery of 2way EVA
    • Shape memory structures
    • Shape memory composites
    • Intro. & Refs. >
      • SME in commercial polymers
      • SMM introduction videos
      • PMMA (acrylic)
  • DIY
    • Laser engraving and beyond
    • DIY (step-by-step) to protect power charge cable 自制充电线接头保护层
    • DIY SMP screw 自制形状记忆螺丝
    • DIY shape memory foam 自制形状记忆海绵
    • DIY shape memory shoes 自制形状记忆鞋
    • Modifying superelastic Nitinol 超弹镍钛记忆合金改性
    • Goggles
    • Temple Tip Retainers /眼镜防滑钩
    • Nose pads
    • 硅胶+TPU样品制作 搅拌流程
    • Unlock smart phones
  • PROJECTS
    • Biomedical applications 生物医疗应用 >
      • Self-tightening band aid 自收缩创可贴
      • Self-tightening staple 自收缩手术钉
      • Shape memory plug 形状记忆栓塞
      • Artificial blood vessels
      • Comfort fitting 舒适贴合 >
        • Shape memory shoes 形状记忆鞋
        • Wrist rings/rings
        • Mask口罩 >
          • DIY口罩扣松紧器
          • Mask holder 口罩支架
          • Improved fitting
          • Comfort fitting "invisible" mask 舒适贴合“隐形”口罩 >
            • Animation (mask)
        • Facial mask (面膜)
      • Retractable 可收回
      • Wrinkle removal 除皱
    • SMA devices 形状记忆合金器件 >
      • Buttons-on-demand 按需按钮
      • Sunlight activated heat engine 阳光驱动的热机
      • Adjustable high heel 可调高跟鞋
      • SMA inchworm 形状记忆合金驱动的竹节虫
      • Rolling car 滚动车
      • SMA springs
      • Gripper
    • SMP applications >
      • 4D latte art 4D 拉花 >
        • Spinning 4D latte art
      • Re-writable Braille paper 可复写盲文纸
      • Surface patterning
      • 2D to 3D switching
      • Ear impression/plugs
    • Metals/polymers >
      • Smart manufacturing
      • Powerless cooling
      • Self-healing
      • Sensors 传感器 >
        • Temperature sensors 温度标签
        • Anti-counterfeit labels 防伪标签
      • Vertical gardening 垂直绿化 >
        • 盆景 >
          • In Singapore
        • Products 产品 >
          • Event sponsorship
        • Projects 项目 >
          • A project in Guangzhou (2022)
          • 2nd Project in Guangzhou
          • 3rd Project in Singapore
        • Water on-demand irrigation system
        • Vertical greening panel (2nd type)
        • 2nd type of foam
      • Wearable electronics 可穿戴电子设备
      • Controlled folding/unfolding 可控展开/折叠 >
        • Folding (multiple layered)
        • Reshape & reprogram
      • Active disassembly 自拆卸
      • Morphing wing 变翼
      • Magnetic circuit design
    • Solid state UV cross-linking >
      • Solid-state heating cross-linking
    • Additive manufacturing增材制造 >
      • 3D/4D printing 打印
      • Rapid 3D printing in solid state 快速固态3D打印 >
        • Rapid volumetric additive manufacturing in solid-state: hydrogels
        • UV cross-linkable vitrimer 2022
        • UV cross-linking of solid material
        • UV cross-linking machine
        • Solid-state VAM (3D)
        • SVAM: A brief history
        • Review of Solid state VAM by AI
      • New ways of additive manufacturing (animation)
      • UV-FDM printer
      • Cooling-responsive shape memory hydrogel via FDM
      • 3D fashion >
        • Formation of 3D structures
    • Shape capture
    • Surface capture >
      • Surface pattern for structural coloring
  • Store room
    • References/tools >
      • 3D models >
        • More STL models
        • 生肖
        • 3D printing service
      • Sample dimensions for tensile test
      • Temperature calibration
      • Toolbox工具箱
      • Toolbox II (工具箱 II)
    • Jungle >
      • About polymers >
        • Thermally reversible solid-liquid transition
        • Cyclic loading
        • Mullins effect
        • Photoelsticity 光弹
        • Shear-thickening 剪切增强 >
          • 4 CNA
        • Closed to open cell foams
        • Laser induced graphene
        • Electrospinning
        • Nano imprinting
        • Gel 凝胶 >
          • Instability in wetting of hydrogel
          • Electroactive gel电活性凝胶
        • Cellulose 纤维素
        • Plastic bottle 塑料瓶
        • Polymer recycling
        • Rapid swelling 快速溶胀
        • Rapid hardening in water
        • Patterns
        • Brittle-ductile transition
        • Tan delta >
          • Re-programmable Tan delta
        • UV cross-linking
        • Hardening speed
      • Coloring 变色 >
        • Structural coloring atop curved surfaces
        • Thermochromic 热致变色
        • Photochromic 光致变色
        • Stress induced color change力致变色 >
          • Patterned coloring via stretching 拉出色彩
      • Moire interference 莫尔干涉
      • Lenticular lens
      • Transformation front
      • Contact angle vs surface pattern
      • Laser: applications
      • Insects 昆虫
      • Structural engineer >
        • Static and Dynamic Balancing
        • Introduction videos
        • Bistable structures: a case study >
          • 3D printing of bistable structures
          • Step-wise morphing
        • Yield criterion >
          • Normalized yield surface via GPU
          • Yield surface of SMAs and beyond
        • Buckling of embedded threads
        • Buckling of embedded strip
        • Buckling of strip atop soft substrate
        • Foam structures for packaging
      • Interesting >
        • Exhibition
        • Ideas
      • Experimental >
        • Tensile test
        • Differential Scanning Calorimetry (DSC) Procedure
        • Dynamic Mechanical Analysis (DMA) Procedure
        • Shape Memory Performance Characterization Procedure for Shape Memory Polymers
      • ChatGPT 4 fun
      • 智谱测试
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