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Scratching technique for the study and analysis of soil surface abrasion mechanism

机译:用于研究和分析土壤表面磨损机理的划痕技术

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摘要

Aeolian abrasion is the most fundamental and active surface process that takes place in arid and semi-arid environments. Its nature is a wear process for wind blown grains impinging on a soil or sediment surface, which causes particles and aggregates to fracture from the soil surface through a series of plastic and brittle cracking deformation such as cutting, ploughing and brittle fracturing. Using a Universal Micro-Tribometer (UMT), a scratching test was carried out on six soil surfaces (sandy soil, sand loam, silt loam, loam, silt clay loam, and silt clay). The results indicate that traces of normal and tangential force vs. time show a jagged curve, which can reflect the plastic deformation and brittle fracturing of aggregates and particles of various sizes fractured from the soil surfaces. The jagged curve peaks, and the area enclosed underneath, may represent the bonding forces and bonding energies of some aggregates and grains on the soil surface, respectively. Connecting the scratching test with an impact abrasion experiment furthermore demonstrates that soil surface abrasion rates are proportional to the square of speeds of impacting particles and to the 2.6 power of mean soil grain size, and inversely proportional to the 1.5 power of specific surface abrasive energy or to the 1.7 power of specific surface hardness.
机译:风沙磨蚀是在干旱和半干旱环境中发生的最基本,最活跃的表面过程。它的性质是风吹颗粒撞击到土壤或沉积物表面的磨损过程,通过一系列塑性和脆性开裂变形(例如切割,耕作和脆性压裂),导致颗粒和聚集体从土壤表面破裂。使用通用微摩擦计(UMT),在六个土壤表面(沙土,砂壤土,粉质壤土,壤土,粉质黏土壤土和粉质黏土)上进行了划痕测试。结果表明,法向力和切向力与时间的关系曲线呈锯齿状,可以反映出从土壤表面破裂的各种尺寸的聚集体和颗粒的塑性变形和脆性断裂。锯齿状的曲线峰及其下方的区域分别代表了土壤表面某些聚集体和谷物的结合力和结合能。将刮擦测试与冲击磨蚀实验相结合还进一步证明,土壤表面磨蚀率与冲击颗粒速度的平方和平均土壤粒度的2.6幂成正比,与比表面磨耗能的1.5幂成反比或达到比表面硬度的1.7倍。

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