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David Dornfeld

Researcher at University of California, Berkeley

Publications -  382
Citations -  17890

David Dornfeld is an academic researcher from University of California, Berkeley. The author has contributed to research in topics: Machining & Acoustic emission. The author has an hindex of 63, co-authored 382 publications receiving 16582 citations. Previous affiliations of David Dornfeld include National Tsing Hua University & University of California.

Papers
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Advanced monitoring of machining operations

TL;DR: In this paper, the past contributions of CIRP in these areas are reviewed and an up-to-date comprehensive survey of sensor technologies, signal processing, and decision making strategies for process monitoring is provided.
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Towards Energy and Resource Efficient Manufacturing: A Processes and Systems Approach

TL;DR: A systematic overview of the state of the art in energy and resource efficiency increasing methods and techniques in the domain of discrete part manufacturing, with attention for the effectiveness of the available options is provided in this paper.
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Recent Advances in Mechanical Micromachining

TL;DR: In this article, the main drivers, developments and future requirements in the field of micromanufacturing as related to the machining process from the perspective of the recent research and development literature are reviewed.
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Tool Condition Monitoring (TCM) — The Status of Research and Industrial Application

TL;DR: The use of sensor systems for tool condition monitoring in machining and grinding is becoming more commonplace to enhance productivity as mentioned in this paper, and the motivation and basis for the utilization of these systems in industry, the sensors used in such systems including industrial application, new developments in signal and information processing, sensor based process optimization and control and directions for future developments.
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Advancing Cutting Technology

TL;DR: A review of the main developments in cutting technology since the foundation of CIRP over fifty years ago is given in this paper, where the main technological developments associated with the cutting tool and tool materials, the workpiece material, the machine tool, the process conditions and the manufacturing environment are given detailed consideration.