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相关概念视频

Three-Dimensional Force System01:30

Three-Dimensional Force System

In mechanical engineering, a three-dimensional force system is a system of forces acting in three dimensions, with forces applied along the x, y, and z coordinate axes. The three-dimensional force system is an important concept in mechanical engineering, as it allows engineers to understand and analyze the behavior of objects and structures in three dimensions. By understanding the forces acting on a system, engineers can design more efficient and effective mechanical systems that can withstand...
Three-Dimensional Force System:Problem Solving01:30

Three-Dimensional Force System:Problem Solving

A three-dimensional force system refers to a scenario in which three forces act simultaneously in three different directions. This type of problem is commonly encountered in physics and engineering, where it is necessary to calculate the resultant force on the system, which can then be used to predict or analyze the behavior of the object or structure under consideration.
To solve a three-dimensional force system, first resolve each force into its respective scalar components. Do this using...
Support Reactions in Three Dimensions01:27

Support Reactions in Three Dimensions

Support reactions in three dimensions help maintain the stability and equilibrium of various structures and systems. These reactions prevent the system from translating and rotating, ensuring the design can withstand external forces and perform its intended function efficiently and safely. Some of the supports providing support reactions in three dimensions are discussed below:
Ball and Socket Joint is one of the supports allowing free rotation about any axis. This freedom of rotation is...
Three-Dimensional Analysis of Strain01:29

Three-Dimensional Analysis of Strain

Three-dimensional strain analysis is crucial for understanding how materials deform under stress, particularly in elastic, homogeneous materials. This method employs principal stress axes to simplify complex stress states into more understandable forms. Subjected to stress, a small cubic element within a material either expands or contracts along these axes, transforming into a rectangular parallelepiped. This transformation effectively illustrates the material's deformation. The principal...
Three-Dimensional Microscopy in Microbiology01:28

Three-Dimensional Microscopy in Microbiology

Three-dimensional imaging techniques are essential in cell biology, allowing researchers to visualize intricate cellular structures with high resolution. Two prominent methods, Differential Interference Contrast Microscopy (DIC) and Confocal Scanning Laser Microscopy (CSLM), provide distinct advantages for imaging live and thick specimens, respectively.Differential Interference Contrast MicroscopyDIC microscopy enhances contrast in transparent, unstained samples by converting phase...
Cylinders in Three-Dimensional Space01:28

Cylinders in Three-Dimensional Space

A cylindrical surface is generated when a two-dimensional profile curve is translated along a straight line in three-dimensional space. The translated copies of the curve form a surface composed of parallel rulings, each oriented in the same fixed direction. This construction allows many three-dimensional forms to be described using relatively simple planar equations.In Cartesian coordinates, a cylindrical surface is often recognized by an equation that omits one of the three variables. For...

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相关实验视频

Updated: Jun 19, 2026

Micro 3D Printing Using a Digital Projector and its Application in the Study of Soft Materials Mechanics
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Micro 3D Printing Using a Digital Projector and its Application in the Study of Soft Materials Mechanics

Published on: November 27, 2012

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用光增长的三维物体.

Gabriel Lipkowitz1, Max A Saccone2,3, Matthew A Panzer4

  • 1Department of Mechanical Engineering, Stanford University, Stanford, CA 94305.

Proceedings of the National Academy of Sciences of the United States of America
|July 1, 2024
PubMed
概括
此摘要是机器生成的。

由于光,接口和材料方面的创新,Vat光聚合 (VP) 3D打印已经取得了重大进展. 这项技术现在可以为各种工业应用提供更快,更高分辨率的打印.

关键词:
通过3D打印打印3D打印.添加剂制造 添加剂制造 添加剂制造计算制造制造的计算制造.

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科学领域:

  • 增材制造 增材制造 增材制造
  • 材料科学 材料科学 材料科学
  • 摄影化学的使用.

背景情况:

  • 瓦特光聚合 (VP) 3D打印在20世纪80年代发展,在速度和材料特性方面面临限制.
  • 几十年来,光传输,接口设计和材料化学方面的进步已经克服了最初的缺点.
  • VP技术已经成熟,适用于工业规模的生产和实际应用.

研究的目的:

  • 追踪推动VP打印革命的关键发展.
  • 突出光,接口和材料在VP进步中的基本作用.
  • 在更广泛的VP领域内为连续液体接口生产 (CLIP) 提供背景.

主要方法:

  • 专注于基础物理和VP的关键突破.
  • 检查光输送,接口设计和材料化学方面的进展.
  • 讨论现场印刷过程监控技术,如光学连贯性断层扫描.

主要成果:

  • 确定了实现更快,更高分辨率的VP打印的突破.
  • 证明了3D打印零件的改进材料性能.
  • 展示了现场监控如何提高流程理解.

结论:

  • VP增材制造经历了一场革命,这是由基本的科学和工程进步推动的.
  • 连续液体接口生产 (CLIP) 是这些进步的一个例子.
  • 未来的前沿领域包括使用VP技术进行多材料和无机材料印刷.