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Hrishikesh Bale

Researcher at Carl Zeiss AG

Publications -  80
Citations -  2532

Hrishikesh Bale is an academic researcher from Carl Zeiss AG. The author has contributed to research in topics: Ceramic & Microstructure. The author has an hindex of 22, co-authored 75 publications receiving 2075 citations. Previous affiliations of Hrishikesh Bale include Oklahoma State University–Tulsa & University of California, Berkeley.

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Age-related changes in the plasticity and toughness of human cortical bone at multiple length scales

TL;DR: This work attributes the loss in toughness to increased nonenzymatic collagen cross-linking, which suppresses plasticity at nanoscale dimensions, and to an increased osteonal density, which limits the potency of crack-bridging mechanisms at micrometer scales.
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Real-time quantitative imaging of failure events in materials under load at temperatures above 1,600 °C

TL;DR: Using synchrotron X-ray computed microtomography, this work fully resolved sequences of microcrack damage as cracks grow under load at temperatures up to 1,750 °C, key ingredients for the high-fidelity simulations used to compute failure risks under extreme operating conditions.
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Vitamin D Deficiency Induces Early Signs of Aging in Human Bone, Increasing the Risk of Fracture

TL;DR: The detailed understanding of human bone structure may provide some insight into more effective ways to prevent or treat fractures in patients with vitamin D deficiency, and the characteristic increase in osteoid-covered surfaces in vitamin D–deficient bone hampers remodeling of the remaining mineralized bone tissue.
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Characterizing Three‐Dimensional Textile Ceramic Composites Using Synchrotron X‐Ray Micro‐Computed‐Tomography

TL;DR: In this paper, the shape and positioning of the fiber tows in the 3D woven architecture is performed, based on a decomposition of the spatial variations of any geometrical characteristic of the tows into non-stochastic periodic trends and non-periodic stochastic deviations.