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    一种新的衍射劳埃德的镜子干扰仪 (DLMI) 能够实现广场3D形状测量. 该系统克服了用于大物体分析的传统干扰仪的尺寸限制.

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    科学领域:

    • 光学和光子学 在光学和光子学.
    • 计量学和测量科学 计量学和测量科学

    背景情况:

    • 干扰边缘投影是用于3D测量的关键非接触式光学分析技术.
    • 传统的干扰度边缘投影系统面临着由于光学约束的最大可测量物体大小的限制.

    研究的目的:

    • 引入和评估一个衍射劳埃德的镜子干扰仪 (DLMI) 作为一个宽场边缘投影系统用于3D形状测量.
    • 为了证明DLMI在测量较大物体方面的能力,与传统方法相比.

    主要方法:

    • 使用衍射劳埃德的镜子干扰仪 (DLMI) 在一个大面积上产生侧面干扰边缘.
    • 应用DLMI系统用于测试对象的3D形状测量.
    • 通过通过阶段值标准偏差进行稳定性和可重复性评估来评估系统性能.

    主要成果:

    • DLMI成功地在一个大面积上产生干扰边缘,使广场投影成为可能.
    • 该系统展示了比传统的劳埃德镜子干扰仪更大的物体的测量能力.
    • 性能评估表明相位测量中的稳定性和可重复性.

    结论:

    • 衍射劳埃德的镜子干扰仪 (DLMI) 是一个可行的和有效的系统,用于广场3D形状测量.
    • DLMI克服了传统的干扰度边缘投影方法固有的尺寸限制.
    • 开发的系统为大规模物体的3D形状测量提供了一个有前途的解决方案.