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Aesthetics and Gloss of Ground Surfaces: A Review on Measurement and Generation

机译:地面的美学和光泽度:测量和一代综述

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摘要

Visual appearance of an object significantly influences a consumer's choice and largely controls the market economy. The perceived quality of products is governed by surface's optical properties (reflection, refraction, etc.), geometrical properties (roughness, waviness, etc.), and chemical properties (oxide layer formation, thermal variation, etc.). Surface shininess attracts researchers from many different disciplines, in particular manufacturing, metrology, psychology, physiology, and computer science. Unfortunately, there are still huge knowledge gaps on characterizing and appraising shiny surfaces in a reproducible way. This paper introduces the main definitions and physics of shininess and gloss, methods of gloss sensing, and relates these definitions and methods to surface generation by grinding. Automated gloss measurement is difficult in particular for free-form surfaces, and optical quality is still often evaluated by human workers. Gloss models are often based on the bidirectional reflection distribution function (BRDF) of the surface, but the models are commonly not connected with the manufacturing process. This study proposes to consider the geometrical features (defects, waviness, lay, and roughness) of metal surfaces as well as the physical and chemical features (grain structure and microlayers) to understand surface appearance and manufacturing in a holistic way. Preliminary tests show that 2D roughness measurements are not connected well with measured gloss units (GUs) and subjective, perceived quality. More fundamental research on the generation and measurement of surface appearance is needed and would benefit many industries.
机译:对象的视觉外观显着影响消费者的选择并在很大程度上控制市场经济。产品质量的产品质量受到表面的光学性质(反射,折射等),几何特性(粗糙度,波纹等)和化学性质(氧化物层形成,热变化等)。表面闪耀吸引了来自许多不同学科的研究人员,特别是制造,计量,心理学,生理学和计算机科学。不幸的是,仍然具有巨大的知识差距,以可再现的方式表征和评估闪亮表面。本文介绍了光泽和光泽的主要定义和物理,光泽传感方法,并通过研磨来实现这些定义和方法。自动光泽测量尤其难以用于自由形状表面,并且仍然经常由人类工作者评估光学质量。光泽模型通常基于表面的双向反射分布函数(BRDF),但模型通常与制造过程有关。本研究提出了考虑金属表面的几何特征(缺陷,波纹,铺设,粗糙度,粗糙度)以及以整体方式理解表面外观和制造的物理和化学特征。初步测试表明,2D粗糙度测量没有良好的测量光泽单元(GUS)和主观感知质量。需要对表面外观的产生和测量的更多基础研究,并将有利于许多行业。

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