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
    • Companies
    • References

4D latte art/拉花


(FYP) Zhang JK
Picture
​Latte art: folding/unfolding (triangle)
Picture
Including flat to dome
(FYP) Ang KK
Picture
Picture
Picture
Picture

Zhu ZR (p-FYP)
Picture
Concept and demonstration

​It was rotating even after 10 mins.

Simulation of up-down bending

(Intern) ​Meghna Pisupati


Testing of industrial food printer

​4D latte art: unfolding atop of water


f95b1ba3e75a7b4c84bbbc09de3cbbbc.mp4
File Size: 1062 kb
File Type: mp4
Download File

d2f57961d5412b97cb47360178638f18.mp4
File Size: 553 kb
File Type: mp4
Download File

3336dc231f5a6966c0360abec707f265.mp4
File Size: 522 kb
File Type: mp4
Download File

More video clips for various applications


Learn more
4d拉花.pdf
File Size: 3039 kb
File Type: pdf
Download File


Patent pending
​Kueh FanSi Recipe

Another approach


​These Marshmallow Flowers Actually Bloom in Hot Chocolate
​3D Latte Art Maker Awa Taccino
​Coffee foam sculpture machine by Takara Tomy

​亲水胶体作为食品中的增稠剂和胶凝剂
​创联食用胶网
​​复合食用胶
​食用胶的使用方法
​食用明胶粉做法
​加拿大的牛排是胶水粘的?
​Homemade Glue
​瓜尔豆(Cyamopsis tetragonoloba),能够提取一种叫「瓜尔胶」的食品添加剂
​卡拉胶与魔芋粉有啥区别?哪种能遇热水后膨胀近百倍?这两种作为代餐食品常吃有啥危害吗?
Picture
​魔芋粉
​卡拉胶(Carrageenan)是一种亲水性胶体
​卡拉胶是一种无臭、无味的大型(分子量在10万道尔顿以上)的高度弹性分子,相互卷曲在一起形成双螺旋结构。卡拉胶具有亲水性、粘性、稳定性,溶于80摄氏度热水形成粘性透明液体,并能在室温下形成不同形式的凝胶。这使食品工业及其他产业亦广泛使用卡拉胶作增稠剂及稳定剂
​做食品加工,如果不了解TG酶,你就亏大了
​添加到含有蛋白的食品里能够催化蛋白质之间发生交联,改善蛋白质的结构和功能,使蛋白具有弹性
​卡拉胶和TG酶到底是什么?

​吃着人工鱼子酱的我,才知道这货是海带做的

​Cascatelli
Picture
​Mafaldine
Picture
​Bucatini
Picture
​MIT研发出可变形意大利面
​意大利面的3D到4D打印
​每一位面点师傅,都是隐藏的力学专家!
“谷物圈效应”(Cheerios Effect)
能吃的4D打印?

​Marangoni Effect
​马拉高尼效应
​【马拉高尼效应】倒出的水能逆流而上什么原理
​薄荷醇 Menthol
​Peppermint ice薄荷冰
水可以逆流而上
​Theoretical and Experimental Design of Self-propelled Objects Based on Nonlinearity
​Culinary biomimicry
​The Cocktail Boat
Picture

​From: Measured surface tension and interface tension values of common articles of everyday use


​有关食品安全3D打印:所有你需要知道的!
Reading for fun
《左手咖啡,右手世界:一部咖啡的商业史》
​世界顶级咖啡大全
​萌到炸的人气咖啡师拉花作品
​啥叫艺术?看到这样的咖啡,有些人都舍不得喝了!
Picture

Your browser does not support viewing this document. Click here to download the document.
​这份文档主要介绍了一种名为“4D 拉花”的创意咖啡艺术,它通过特殊的食品膜和墨水,在热/冷水上展开预先印刷的图案,呈现出动态的视觉效果。以下是对文档知识点的分析:
1. 4D 拉花原理:
食品膜: 使用食品级的膜材,确保安全食用。
打印技术: 可以使用商业咖啡打印机或工业级食品打印机进行图案打印。
动态效果: 当食品膜接触热/冷水时,预先打印的图案会随着膜的展开而显现,形成动态的视觉效果。
2. 4D 拉花案例:
静态图案: 例如花朵、文字等,在热/冷水上展开后呈现完整图案。
动态图案: 例如蝴蝶、花朵绽放等,通过精心设计的图案和展开方式,呈现出动态的视觉效果。
主题设计: 例如“茶杯里的谋杀案”,结合故事情节和图案设计,营造出独特的氛围。
3. 4D 拉花制作:
图案设计: 需要考虑图案的展开效果,以及与主题的契合度。
打印技术: 商业咖啡打印机适合小批量制作,工业级食品打印机适合大批量生产。
食品膜选择: 根据图案特点和展开方式选择合适的食品膜。
4. 4D 拉花应用:
咖啡艺术: 为咖啡饮品增添独特的视觉体验。
广告宣传: 吸引顾客眼球,提升品牌形象。
互动体验: 为顾客提供参与式体验,增强趣味性。
5. 4D 拉花未来发展:
图案多样化: 开发更多样化的图案设计,满足不同需求。
技术改进: 提升食品膜的展开效果和图案清晰度。
应用拓展: 将 4D 拉花技术应用于更多领域,例如蛋糕、糖果等。
总结:
4D 拉花是一种新颖的咖啡艺术形式,它结合了食品科技和设计美学,为咖啡饮品增添了独特的视觉体验。随着技术的不断发展和应用的拓展,4D 拉花有望在未来成为咖啡行业的一种重要趋势。
​This document primarily introduces a creative coffee art form called “4D Latte Art,” which utilizes special food-grade membranes and inks to reveal pre-printed patterns when exposed to hot or cold water, creating dynamic visual effects. Here’s an analysis of the key points in the document:
1. 4D Latte Art Principles:
Food Membrane: Utilizes food-grade membrane materials to ensure safety for consumption.
Printing Technology: Can be printed using commercial coffee printers or industrial-grade food printers.
Dynamic Effects: When the food membrane comes into contact with hot or cold water, the pre-printed patterns emerge as the membrane unfolds, creating dynamic visual effects.
2. 4D Latte Art Examples:
Static Patterns: Such as flowers, text, etc., which reveal complete patterns when the membrane unfolds on hot or cold water.
Dynamic Patterns: Such as butterflies, blooming flowers, etc., with carefully designed patterns and unfolding techniques to create dynamic visual effects.
Theme-Based Designs: Such as “Murder in a Mug,” combining storytelling with pattern design to create a unique atmosphere.
3. 4D Latte Art Production:
Pattern Design: Requires considering the unfolding effect of the pattern and its relevance to the theme.
Printing Technology: Commercial coffee printers are suitable for small batches, while industrial-grade food printers are suitable for mass production.
Food Membrane Selection: Choose appropriate food membranes based on pattern characteristics and unfolding techniques.
4. 4D Latte Art Applications:
Coffee Art: Adds a unique visual experience to coffee beverages.
Advertising and Promotion: Attracts attention and enhances brand image.
Interactive Experience: Provides an engaging and fun experience for customers.
5. Future Development of 4D Latte Art:
Diverse Patterns: Develop more varied pattern designs to meet different needs.
Technological Improvements: Enhance the unfolding effect and clarity of the patterns on the food membrane.
Expanded Applications: Apply 4D Latte Art technology to other fields, such as cakes, candies, etc.
Summary:
4D Latte Art is a novel form of coffee art that combines food technology and design aesthetics, adding a unique visual experience to coffee beverages. With the continuous development of technology and the expansion of applications, 4D Latte Art is expected to become an important trend in the coffee industry in the future.
Powered by Create your own unique website with customizable templates.
  • 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
    • Companies
    • References