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Yanming Zhang

Researcher at Northwestern University

Publications -  5
Citations -  70

Yanming Zhang is an academic researcher from Northwestern University. The author has contributed to research in topics: Machining & Magnetic field. The author has an hindex of 2, co-authored 5 publications receiving 20 citations. Previous affiliations of Yanming Zhang include Huazhong University of Science and Technology.

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Study on machining characteristics of magnetically controlled laser induced plasma micro-machining single-crystal silicon

TL;DR: In this paper, a magnetically controlled laser induced plasma micro-machining (MC-LIPMM) was proposed to improve the machining characteristics of silicon materials and cavitation bubbles showed an apparently negative impact on the surface morphology.
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Effect of assisted transverse magnetic field on distortion behavior of thin-walled components in WEDM process

TL;DR: In this paper, a transverse magnetic field assisted method is applied for affecting the uniformity of discharge point distribution so as to reduce the distortion in WEDM-LS processing thin-wall component.
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Analysis and reduction of process energy consumption and thermal deformation in a micro-structure wire electrode electric discharge machining thin-wall component

TL;DR: In this paper, a new micro crack wire electrode was applied to enhance machine characteristic, and the reduction mechanism of above two critical factors compared with brass wire when machining thin-wall components.
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Investigation of the Capabilities of Transverse Magnetic Field Controlled Laser-Induced Plasma Micro-Machining

TL;DR: In this paper, the authors explored the use of external magnetic fields to further enhance process outcomes in laser-induced plasma micro-machining (LIPMM) and showed that plasma intensity and aspect ratios can be significantly increased in the presence of transverse magnetic fields.
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Investigation on the evolution and distribution of plasma in magnetic field assisted laser-induced plasma micro-machining

TL;DR: In this paper, an analysis of the confinement effect and enhanced collision of electrons-ions in the plasma in the presence of a magnetic field is performed for revealing the influence of the magnetic field on its diffusion and geometric size, while experiments were conducted to analyze the effects of key process parameters on the geometrical size, shape and fluence of the plasma.