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水合作用和裂纹方向对象牙质中裂纹尖端应变、裂纹张开位移和裂纹尖端屏蔽的影响。

Effect of hydration and crack orientation on crack-tip strain, crack opening displacement and crack-tip shielding in elephant dentin.

机构信息

School of Materials, University of Manchester, Manchester M13 9PL, UK; Electrochemical Innovation Lab, Department of Chemical Engineering, University College London, London WC1E 7JE, UK.

School of Materials, University of Manchester, Manchester M13 9PL, UK.

出版信息

Dent Mater. 2018 Jul;34(7):1041-1053. doi: 10.1016/j.dental.2018.04.002. Epub 2018 Apr 22.

Abstract

OBJECTIVES

To quantify the extent of crack-tip plasticity, crack opening displacement (COD) and crack bridging for crack growth perpendicular (HAH) and parallel (RAR) to the tubules in elephant dentin under both hydrated and dry conditions to better understand their influence on intrinsic and extrinsic toughening during crack growth.

METHODS

Compact tension test-pieces were prepared from a tusk of African elephant ivory. Crack-tip strain mapping and COD measurements by digital image correlation (DIC) technique were made under incremental loading and unloading of cracks for hydrated and dry dentin of different orientations.

RESULTS

For the RAR test-piece the plastic zones were significantly larger in the hydrated condition compared to when dry. By contrast, the plastic strains in the HAH test-piece were negligible in both wet and dry conditions. In the RAR condition the crack front was broken up into overlapping longitudinal 'fingers' with crack bridging regions in between, the ligaments extending 400μm behind the crack front in the dry case. This could only be seen in 3D by X-ray CT. Extrinsic shielding reduces the crack-tip stresses by 52% and 40% for hydrated and dry RAR test-pieces respectively. No significant bridging was found in the HAH case.

SIGNIFICANCE

For crack growth parallel to the tubules, collagen plasticity determines the intrinsic toughening, whereas microcracking from the tubules governs extrinsic shielding via ligament bridging, which is maintained further behind the crack in the hydrated case. For cracks grown perpendicular to the tubules, neither toughening mechanisms are significant.

摘要

目的

量化象牙质中垂直(HAH)和平行(RAR)于管腔的裂纹扩展过程中裂纹尖端塑性、裂纹开口位移(COD)和裂纹桥联的程度,以更好地理解它们对裂纹扩展过程中固有和外在增韧的影响。

方法

从非洲象象牙的獠牙上制备紧凑拉伸测试片。通过数字图像相关(DIC)技术在干湿条件下不同取向的牙本质的裂纹逐渐加载和卸载过程中进行裂纹尖端应变映射和 COD 测量。

结果

对于 RAR 测试片,在湿润条件下的塑性区明显大于干燥条件下的塑性区。相比之下,在干湿条件下,HAH 测试片中的塑性应变可以忽略不计。在 RAR 条件下,裂纹前缘被分成重叠的纵向“手指”,裂纹桥接区域位于其间,在干燥情况下,韧带在裂纹前缘后面延伸 400μm。这只能通过 X 射线 CT 在 3D 中看到。对于湿润和干燥的 RAR 测试片,外屏蔽分别将裂纹尖端应力降低了 52%和 40%。在 HAH 情况下未发现明显的桥接。

意义

对于平行于管腔的裂纹扩展,胶原塑性决定了固有增韧,而管腔的微裂纹控制了通过韧带桥联的外屏蔽,在湿润的情况下,这种桥联在裂纹后面更远的地方得以维持。对于垂直于管腔的裂纹扩展,两种增韧机制都不显著。

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