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Metabolic response of <i>Brevibacterium epidermidis</i> TRM83610 to NaCl stress. [PDF]
Luo T, Zhao Y, Wang L, Xia Z.
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Review of advanced sensor system applications in grinding operations. [PDF]
Pimenov DY +5 more
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Helical Gearbox Defect Detection with Machine Learning Using Regular Mesh Components and Sidebands. [PDF]
Lupea I, Lupea M, Coroian A.
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Mask-guided microbial jet machining for functionalized textured interface fabrication. [PDF]
Ruan J, Wang X, Wang Y, Zou W.
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Laser Powder Bed Fusion and Hot Forging of 316L Stainless Steel: A Hybrid Additive Manufacturing Approach for Enhanced Performance. [PDF]
Kusekar S +6 more
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High performance plain carbon steels obtained through 3D-printing. [PDF]
Tan Q +10 more
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Study on surface generation mechanism and roughness distribution in gear profile grinding
International Journal of Mechanical Sciences, 2020Abstract The non-uniform grinding conditions due to the tool and workpiece geometries lead to the complexities of the chip geometry and topography characteristic in gear profile grinding. As a result, the previous surface prediction models that have been extensively studied for surface grinding are not able to reveal the surface generation mechanism ...
Weihua Zhou, Jinyuan Tang, Wen Shao
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Modelling and experiment of gear hob tooth profile error for relief grinding
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2021Gear hob is an important tool that is most used in gear processing. Hob accuracy directly exerts an overwhelming influence on the quality of the processed gear. Generally, the hob tooth profile accuracy is mainly determined by relief grinding process.
Shuying Yang +3 more
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CIRP Journal of Manufacturing Science and Technology, 2020
Abstract Gear hobbing is one of the most common soft-machining processes for pre-toothing. The process kinematics result in a characteristic tooth-flank topography, which is mainly determined by so-called feed marks. For an economical finishing process by gear grinding in automotive applications, the feed-mark depths should not exceed a maximum value
Nikolai Guba +2 more
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Abstract Gear hobbing is one of the most common soft-machining processes for pre-toothing. The process kinematics result in a characteristic tooth-flank topography, which is mainly determined by so-called feed marks. For an economical finishing process by gear grinding in automotive applications, the feed-mark depths should not exceed a maximum value
Nikolai Guba +2 more
openaire +3 more sources

