@inbook{c9907e51fbf447ae8a6d4d8453b33df2,
title = "A Force-Sensitive Mechanical Deep Rolling Tool for Process Monitoring",
abstract = "Deep rolling is an efficient process to increase the service life of highly stressed components such as crankshafts or roller bearings by inducing compressive residual stresses. The residual stresses correspond to the deep rolling force applied. Monitoring the deep rolling force enables the processing result to be assessed. The rolling force is a two-dimensional vector. However, current approaches only allow the measurement of one dimension. Thus, this article presents a force-sensitive deep rolling tool that can measure the applied deep rolling force in two axes. This article, describes the principle of the sensory deep rolling tool and its calibration process. Finally, the sensory properties are evaluated.",
keywords = "Mechanical deep rolling, Sensors, Surface modification",
author = "J. Berlin and B. Denkena and H. Klemme and O. Maiss and M. Dowe",
note = "Funding Information: The cooperation project “Process-monitored and controlled mechanical deep rolling” (ZF4810001LP9/ZF4070523LP9) is funded by the Federal Ministry of Economics and Climate Protection (BMWK) as part of the Central Innovation Program for SMEs (ZIM) and is supervised by the Working Group of Industrial Research Associations (AiF). The ECOROLL AG thanks for the productive cooperation in this project. The MCU GmbH \& Co. KG and the IFW thanks for the financial support ",
year = "2023",
month = feb,
day = "2",
doi = "10.1007/978-3-031-18318-8\_17",
language = "English",
isbn = "978-3-031-18317-1",
series = "Lecture Notes in Production Engineering",
publisher = "Springer Nature",
pages = "162--169",
booktitle = "Lecture Notes in Production Engineering",
address = "United States",
}