The Experts below are selected from a list of 54060 Experts worldwide ranked by ideXlab platform
Ryota Ikeda - One of the best experts on this subject based on the ideXlab platform.
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study of internal finishing of austenitic stainless steel capillary tubes by magnetic abrasive finishing
Journal of Manufacturing Science and Engineering-transactions of The Asme, 2007Co-Authors: Hitomi Yamaguchi, Takeo Shinmura, Ryota IkedaAbstract:This paper studies the internal finishing of capillary tubes using a magnetic abrasive finishing process. Such tubes are used with nanoscale technologies and meet the demands of the present age in medical and Chemical Equipment. The finishing characteristics are influenced by the magnetic abrasive behavior against the inner surface of the capillary, which is controlled by the supplied amount of magnetic abrasive and the magnetic force acting on it. The development of the finishing unit identifies the characteristics of the magnetic field, which controls the magnetic force, required for the necessary magnetic abrasive behavior. Finishing experiments using SUS304 austenitic stainless steel capillary tube with 800 μm inner diameter demonstrate the effects of the supplied amount of the magnetic abrasive on the finishing characteristics, and the results suggest a standard method to determine the amount to achieve sufficient finishing. The run-out of the capillary while rotating at high speed under the cantilever tube support method causes instability of the magnetic abrasive behavior. The effects on the finishing characteristics are discussed, and a method to diminish the run-out is applied. Accordingly, this paper presents the conditions required for the internal finishing of capillary tubes and proposes methods to realize them. The internal finishing of 400 μm inner diameter capillary tubes conveys an understanding of the mechanisms involved and demonstrates the usefulness of the proposed methods.
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study of internal finishing of austenitic stainless steel capillary tubes by magnetic abrasive finishing
ASME 2006 International Manufacturing Science and Engineering Conference, 2006Co-Authors: Hitomi Yamaguchi, Takeo Shinmura, Ryota IkedaAbstract:This paper studies the internal finishing of capillary tubes using a Magnetic abrasive finishing process. Such tubes are used with nano-scale technologies and meet the demands of the present age in medical and Chemical Equipment. The finishing characteristics are influenced by the magnetic abrasive behavior against the inner surface of the capillary, which is controlled by the supplied amount of magnetic abrasive and the magnetic force acting on it. The development of the finishing unit identifies the characteristics of the magnetic field, which controls the magnetic force, required for the necessary magnetic abrasive behavior. Finishing experiments using SUS304 austenitic stainless steel capillary tube with 800 μm inner diameter demonstrate the effects of the supplied amount of the magnetic abrasive on the finishing characteristics, and the results suggest a standard method to determine the amount to achieve sufficient finishing. The run-out of the capillary while rotating at high speed under the cantilever tube support method causes instability of the magnetic abrasive behavior. The effects on the finishing characteristics are discussed, and a method to diminish the run-out is applied. Accordingly, this paper presents the conditions required for the internal finishing of capillary tubes and proposes methods to realize them. The internal finishing of 400 μm inner diameter capillary tubes conveys an understanding of the mechanisms involved and demonstrates the usefulness of the proposed methods.Copyright © 2006 by ASME
Hitomi Yamaguchi - One of the best experts on this subject based on the ideXlab platform.
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study of internal finishing of austenitic stainless steel capillary tubes by magnetic abrasive finishing
Journal of Manufacturing Science and Engineering-transactions of The Asme, 2007Co-Authors: Hitomi Yamaguchi, Takeo Shinmura, Ryota IkedaAbstract:This paper studies the internal finishing of capillary tubes using a magnetic abrasive finishing process. Such tubes are used with nanoscale technologies and meet the demands of the present age in medical and Chemical Equipment. The finishing characteristics are influenced by the magnetic abrasive behavior against the inner surface of the capillary, which is controlled by the supplied amount of magnetic abrasive and the magnetic force acting on it. The development of the finishing unit identifies the characteristics of the magnetic field, which controls the magnetic force, required for the necessary magnetic abrasive behavior. Finishing experiments using SUS304 austenitic stainless steel capillary tube with 800 μm inner diameter demonstrate the effects of the supplied amount of the magnetic abrasive on the finishing characteristics, and the results suggest a standard method to determine the amount to achieve sufficient finishing. The run-out of the capillary while rotating at high speed under the cantilever tube support method causes instability of the magnetic abrasive behavior. The effects on the finishing characteristics are discussed, and a method to diminish the run-out is applied. Accordingly, this paper presents the conditions required for the internal finishing of capillary tubes and proposes methods to realize them. The internal finishing of 400 μm inner diameter capillary tubes conveys an understanding of the mechanisms involved and demonstrates the usefulness of the proposed methods.
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study of internal finishing of austenitic stainless steel capillary tubes by magnetic abrasive finishing
ASME 2006 International Manufacturing Science and Engineering Conference, 2006Co-Authors: Hitomi Yamaguchi, Takeo Shinmura, Ryota IkedaAbstract:This paper studies the internal finishing of capillary tubes using a Magnetic abrasive finishing process. Such tubes are used with nano-scale technologies and meet the demands of the present age in medical and Chemical Equipment. The finishing characteristics are influenced by the magnetic abrasive behavior against the inner surface of the capillary, which is controlled by the supplied amount of magnetic abrasive and the magnetic force acting on it. The development of the finishing unit identifies the characteristics of the magnetic field, which controls the magnetic force, required for the necessary magnetic abrasive behavior. Finishing experiments using SUS304 austenitic stainless steel capillary tube with 800 μm inner diameter demonstrate the effects of the supplied amount of the magnetic abrasive on the finishing characteristics, and the results suggest a standard method to determine the amount to achieve sufficient finishing. The run-out of the capillary while rotating at high speed under the cantilever tube support method causes instability of the magnetic abrasive behavior. The effects on the finishing characteristics are discussed, and a method to diminish the run-out is applied. Accordingly, this paper presents the conditions required for the internal finishing of capillary tubes and proposes methods to realize them. The internal finishing of 400 μm inner diameter capillary tubes conveys an understanding of the mechanisms involved and demonstrates the usefulness of the proposed methods.Copyright © 2006 by ASME
Takeo Shinmura - One of the best experts on this subject based on the ideXlab platform.
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study of internal finishing of austenitic stainless steel capillary tubes by magnetic abrasive finishing
Journal of Manufacturing Science and Engineering-transactions of The Asme, 2007Co-Authors: Hitomi Yamaguchi, Takeo Shinmura, Ryota IkedaAbstract:This paper studies the internal finishing of capillary tubes using a magnetic abrasive finishing process. Such tubes are used with nanoscale technologies and meet the demands of the present age in medical and Chemical Equipment. The finishing characteristics are influenced by the magnetic abrasive behavior against the inner surface of the capillary, which is controlled by the supplied amount of magnetic abrasive and the magnetic force acting on it. The development of the finishing unit identifies the characteristics of the magnetic field, which controls the magnetic force, required for the necessary magnetic abrasive behavior. Finishing experiments using SUS304 austenitic stainless steel capillary tube with 800 μm inner diameter demonstrate the effects of the supplied amount of the magnetic abrasive on the finishing characteristics, and the results suggest a standard method to determine the amount to achieve sufficient finishing. The run-out of the capillary while rotating at high speed under the cantilever tube support method causes instability of the magnetic abrasive behavior. The effects on the finishing characteristics are discussed, and a method to diminish the run-out is applied. Accordingly, this paper presents the conditions required for the internal finishing of capillary tubes and proposes methods to realize them. The internal finishing of 400 μm inner diameter capillary tubes conveys an understanding of the mechanisms involved and demonstrates the usefulness of the proposed methods.
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study of internal finishing of austenitic stainless steel capillary tubes by magnetic abrasive finishing
ASME 2006 International Manufacturing Science and Engineering Conference, 2006Co-Authors: Hitomi Yamaguchi, Takeo Shinmura, Ryota IkedaAbstract:This paper studies the internal finishing of capillary tubes using a Magnetic abrasive finishing process. Such tubes are used with nano-scale technologies and meet the demands of the present age in medical and Chemical Equipment. The finishing characteristics are influenced by the magnetic abrasive behavior against the inner surface of the capillary, which is controlled by the supplied amount of magnetic abrasive and the magnetic force acting on it. The development of the finishing unit identifies the characteristics of the magnetic field, which controls the magnetic force, required for the necessary magnetic abrasive behavior. Finishing experiments using SUS304 austenitic stainless steel capillary tube with 800 μm inner diameter demonstrate the effects of the supplied amount of the magnetic abrasive on the finishing characteristics, and the results suggest a standard method to determine the amount to achieve sufficient finishing. The run-out of the capillary while rotating at high speed under the cantilever tube support method causes instability of the magnetic abrasive behavior. The effects on the finishing characteristics are discussed, and a method to diminish the run-out is applied. Accordingly, this paper presents the conditions required for the internal finishing of capillary tubes and proposes methods to realize them. The internal finishing of 400 μm inner diameter capillary tubes conveys an understanding of the mechanisms involved and demonstrates the usefulness of the proposed methods.Copyright © 2006 by ASME
Ricardo De La Vega - One of the best experts on this subject based on the ideXlab platform.
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psychophysiological response to the use of nuclear biological and Chemical Equipment with military tasks
Physiology & Behavior, 2019Co-Authors: Elena Gomezoliva, Jose Juan Roblesperez, Roberto Ruizbarquin, Francisco Hidalgobellota, Ricardo De La VegaAbstract:Abstract The current military training requires the development and optimization of different strategies to improve performance in extreme conditions as well as the possible risk of suffering attacks with Chemical and/ or radioactive substances. It turns out mandatory to research the psychophysiological response of soldiers and sanitary personnel when wearing the nuclear, biological and Chemical (NBC) Equipment. A longitudinal prospective experimental quantitative study has been developed, using a pre-treatment and post-treatment design. A total of 20 soldiers (33.3 ± 5.4 years), belonging to the Spanish Armed Forces have been analyzed, divided into two groups, when carrying out different training activities designed to that effect. The following variables were analyzed right before and after accomplishing the different tasks: heart rate, heart variability, thermoregulation, blood glucose, explosive strength, perceived effort and motion performance in a munitioning task. The results showed a significant increase (p
Elena Gomezoliva - One of the best experts on this subject based on the ideXlab platform.
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psychophysiological response to the use of nuclear biological and Chemical Equipment with military tasks
Physiology & Behavior, 2019Co-Authors: Elena Gomezoliva, Jose Juan Roblesperez, Roberto Ruizbarquin, Francisco Hidalgobellota, Ricardo De La VegaAbstract:Abstract The current military training requires the development and optimization of different strategies to improve performance in extreme conditions as well as the possible risk of suffering attacks with Chemical and/ or radioactive substances. It turns out mandatory to research the psychophysiological response of soldiers and sanitary personnel when wearing the nuclear, biological and Chemical (NBC) Equipment. A longitudinal prospective experimental quantitative study has been developed, using a pre-treatment and post-treatment design. A total of 20 soldiers (33.3 ± 5.4 years), belonging to the Spanish Armed Forces have been analyzed, divided into two groups, when carrying out different training activities designed to that effect. The following variables were analyzed right before and after accomplishing the different tasks: heart rate, heart variability, thermoregulation, blood glucose, explosive strength, perceived effort and motion performance in a munitioning task. The results showed a significant increase (p