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相关概念视频

Confocal Fluorescence Microscopy01:16

Confocal Fluorescence Microscopy

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Confocal microscopy is an advanced microscopic technique. The prime advantage of the confocal microscope over other microscopy techniques is its ability to block the out-of-focus light from the illuminated samples using pinholes. It is widely used with fluorescence optics to obtain high-resolution, sharp contrast images. Unlike optical microscopes, confocal microscopes use a focused beam of light laser to scan the entire sample surface at different z-planes. These microscopes are, therefore,...
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Hydrostatic Pressure Force on a Curved Surface01:04

Hydrostatic Pressure Force on a Curved Surface

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Hydrostatic pressure on curved surfaces is a fundamental concept in fluid mechanics with broad applications in the civil engineering field. When fluid is in contact with a curved surface, as in a reservoir, dam, or storage tank, it exerts pressure that varies in magnitude and direction along the curved surface. To assess the total hydrostatic force exerted by the fluid on a curved structure, engineers typically isolate the fluid volume adjacent to the surface and analyze the forces acting on...
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High-speed Particle Image Velocimetry Near Surfaces
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使用高速三倍光仪激光3D扫描系统处理曲面.

Yi Liu, Xinke Xu, Yunfei Zhang

    Optics express
    |August 13, 2025
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    概括

    一个新的三倍仪激光3D扫描系统 (TGLSS) 提高了曲面的高速处理. 变速填充可提高激光切除应用中的均性和质量.

    科学领域:

    • 材料科学 材料科学 材料科学
    • 制造业 工程 制造工程
    • 光学工程是指光学工程.

    背景情况:

    • 由于现有的3D扫描设备的局限性,曲面表面的高速激光处理面临效率和统一性的挑战.
    • 在非平面几何形状上实现一致的激光能量分布和点重叠是一个重大障碍.

    研究的目的:

    • 引入和评估一种用于曲面加工的新型高速三倍仪激光3D扫描系统 (TGLSS).
    • 通过使用开发的系统,研究曲表面上的激光材料相互作用和剥离机制.
    • 通过优化扫描策略来提高处理质量和统一性.

    主要方法:

    • 开发和实施一个高速的三倍仪激光3D扫描系统 (TGLSS).
    • 在曲面上推导激光能量分布和空间点重叠率的方程.
    • 在圆柱形表面上进行实验验证,分析不同位置的加工差异.
    • 应用变速填充方法以提高表面加工质量.

    主要成果:

    • TGLSS证明了对曲面的高速激光处理的能力.
    • 分析显示了激光能量分布的变化和曲线几何形状上的点重叠.
    • 实验结果证实了不同表面位置的加工差异.

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  • 变速填充方法显著提高了在圆柱形表面激光切除的均性和质量.
  • 结论:

    • 开发的TGLSS有效地解决了高速曲面激光处理的局限性.
    • 了解激光材料相互作用和优化扫描参数,如变速填充,对于统一的剥离至关重要.
    • 这种方法为复杂几何形状的激光制造提供了提高精度和效率的途径.