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KAMEYA Kyoko
| Technology and Information course | Lecturer |
Researcher information
■ Degree■ Research Keyword
■ Field Of Study
- Manufacturing technology (mechanical, electrical/electronic, chemical engineering), Machine materials and mechanics
- Manufacturing technology (mechanical, electrical/electronic, chemical engineering), Manufacturing and production engineering
- Apr. 2026 - Present, Saitama University, Faculty of Education, Lecturer
- Apr. 2025 - Present, Seikei University, Faculty of Science and Technology
- Apr. 2025 - Mar. 2026, University of Michigan, Mechanical Engineering, Visiting Scholar
- Aug. 2020 - Mar. 2025, Seikei University, Faculty of Science and Technology, Assistant Professor
- Apr. 2011 - Mar. 2014, Sophia University, Graduate School of Science and Technology
- Apr. 2009 - Mar. 2011, Sophia University, Graduate School of Science and Technology
- May 2005 - Mar. 2009, Sophia University, Faculty of Science and Technology, Department of Mechanical Engineering
- Feb. 2025, Certificate of Excellence in Reviewing (Chemical Engineering Science), Elsevier
Kyoko Kameya - Jun. 2024, Seikei Teaching Award Recipients,STARs, Seikei University
Kyoko Kameya - Feb. 2024, Editor’s Choice article, Polymer Engineering and Science (wiley)
Kyoko Kameya;Hiroyuki Ogata;Naoki Tanohata, Simulation-based analysis of weld line strength of glass fiber-reinforced polymer in injection molding (February 2024 issue), Official journal - Aug. 2020, Best presentation award, The International Conference on Advanced Composite Materials (held online),Session 3,
Kyoko Kameya - Jun. 2019, Best Paper Award, The American Society of Mechanical Engineers(ASME), The 37th International Conference on Ocean, Offshore & Arctic Engineering(OMAE2018),SSR (Safety, Structures, Reliability),
Yasuhira Yamada;Kyoko Kameya, https://www.nmri.go.jp/news/another_news/2019/news190807.html, International society - Mar. 2011, Miura Award, Japan Society of Mechanical Engineers
Kyoko Nakamura - Feb. 2010, Teilhard de Chardin Scholarship Essay Awards 2009, Award in Memory of Takashi Kitahara, Sophia University
Kyoko Nakamura - Mar. 2008, 第9回理工系学生科学技術論文コンクール, 特別賞, The Nikkan Kogyo Shimbun
Kyoko Nakamura
Performance information
■ Paper- Prediction of stress intensity factors using vision transformer with XFEM training data
Kyoko Kameya; Hikaru Kawakami; Shogo Shigemura; Hiroyuki Ogata; Toshio Nagashima
International Journal of Fatigue, Volume:203, First page:109339, Feb. 2026, [Reviewed]
Scientific journal
DOI:https://doi.org/10.1016/j.ijfatigue.2025.109339
DOI ID:10.1016/j.ijfatigue.2025.109339, ORCID:195057441 - Evaluation by Coupled Thermal-Structural Analysis of FGMs Considering Nanoparticle Agglomeration
Kyoko Kameya; Zhilan Xu; Takato Nakayama; Hiroyuki Ogata
Journal of Functionally Graded Materials, Volume:38, First page:1, Last page:6, May 2025, [Reviewed]
Japanese, Scientific journal
共同研究・競争的資金等ID:46052118 - Prediction of particle agglomeration during nanocolloid drying using machine learning and reduced-order modeling
Kyoko Kameya; Hiroyuki Ogata; Kentaro Sakoda; Masahiro Takeda; Yuki Kameya
Chemical Engineering Science, Volume:294, First page:120097, Jul. 2024, [Reviewed]
Elsevier BV, Scientific journal
ISSN:0009-2509, ORCID:156921376 - Simulation‐based analysis of weld line strength of glass fiber‐reinforced polymer in injection molding
Kyoko Kameya; Hiroyuki Ogata; Naoki Tanohata
Polymer Engineering & Science, Volume:64, Number:2, First page:852, Last page:864, Feb. 2024, [Reviewed]
Scientific journal
DOI:https://doi.org/10.1002/pen.26589
DOI ID:10.1002/pen.26589, ORCID:148918511 - Modeling nanoparticle agglomeration in the centrifugal method to evaluate heat-resistant functionally graded materials
Kyoko Kameya; Tsutomu Sekine; Yuki Kameya
Journal of Nanoparticle Research, Volume:25, Number:3, Mar. 2023, [Reviewed]
Scientific journal
DOI:https://doi.org/10.1007/s11051-023-05682-w
DOI ID:10.1007/s11051-023-05682-w, ORCID:129064590 - Comparative study on path interval determinations in filleted end milling
Tsutomu Sekine; Kyoko Kameya
Engineering and Applied Science Research, Volume:Vol. 49, Number:3, First page:373, Last page:380, Jan. 2022, [Reviewed]
English, Scientific journal - Remarkable Characteristics of a Novel Path Interval Determination in Filleted End Milling
Tsutomu Sekine; Kyoko Kameya
Journal Européen des Systèmes Automatisés, Volume:54, Number:3, First page:461, Last page:468, Jun. 2021, [Reviewed]
This study describes remarkable characteristics of a novel path interval determination in filleted end milling with a tool inclination. CNC milling machine is one of the core technologies in practical manufacturing. Computer-aided technologies have contributed to the technological advancement. Tool path generation in computer-aided manufacturing is really important for CNC milling process. Although there are a lot of parameters treated in tool path generation, path interval is one of the influential factors in considering the balance between manufacturing efficiency and machined surface feature. A path interval determination in filleted end milling commonly entails the intersection problems with mathematical complexities in essence. The related studies have been reported so far, while there has scarcely been a procedure to cope effectively with the complexities. Hence, this study focused on a novel path interval determination proposed in our previous study. After the analytical discussions were made with the computational and experimental results, it was acquired from the explicit evidences that the novel procedure possessed remarkable characteristics contributable for a path interval determination in multi-axis filleted end milling.
International Information and Engineering Technology Association, English, Scientific journal
DOI:https://doi.org/10.18280/jesa.540309
DOI ID:10.18280/jesa.540309, ISSN:1269-6935, eISSN:2116-7087 - A Study On The Dynamic Ultimate Strength of Global Hull Girder of Container Ships Subjected to Hogging Moment
Y.Ymada; K.Kameya
Proceedings of the ASME 37th International Conference on Ocean, Offshore and Arctic Engineering (OMAE2018), Volume:3, 2018, [Reviewed]
English, International conference proceedings
DOI:https://doi.org/10.1115/OMAE2018-77402
Scopus:https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85055469262&origin=inward
Scopus Citedby:https://www.scopus.com/inward/citedby.uri?partnerID=HzOxMe3b&scp=85055469262&origin=inward
DOI ID:10.1115/OMAE2018-77402, SCOPUS ID:85055469262 - A Fundamental Study on the Dynamic Response of Hull Girder of Container Ships due to Slamming Load
Y.Yamada; K.Kameya
Proceedings of the ASME 36th International Conference on Ocean, Offshore and Arctic Engineering (OMAE2017), 2017, [Reviewed]
English, International conference proceedings - Effects of parameters in time-based in-service inspections on the rupture probability of structural components subjected to creep
Yuji Nakasone; Kyoko Nakamura
Journal of the Japan Society of Applied Electromagnetics and Mechanics, Volume:Vol.23, Number:No.4, First page:677, Last page:680, Dec. 2015, [Reviewed]
The present paper has investigated the effects of parameters in the in-service inspections (ISIs) of time-based maintenance (TBM) or periodic maintenance on the rupture probability of a structural component subjected to creep. It is assumed that creep strain monitored in-service at regular time intervals to be a random variable following two-parameter Weibull distributions of the means and the standard deviations given by the modified θ method. The effects of such parameters as the allowable strain, the rupture strain and the shape parameters of the Weibull distributions on the rupture probability of the structural component is formulated based on Bayes theorem and is calculated considering the replacement of the component in a total operation hour of 105 hr. The replacement model simulates TBM in which creep strain of a component is found to reach the allowable strain level and is replaced with a new one having zero creep strain. Variations of the rupture probability of the model with the parameters above were calculated and discussed.
The Japan Society of Applied Electromagnetics and Mechanics, Japanese, Scientific journal
DOI:https://doi.org/10.14243/jsaem.23.677
DOI ID:10.14243/jsaem.23.677, ISSN:0919-4452, CiNii Articles ID:130005123766, CiNii Books ID:AN10457520 - Study on identification of contact stiffness considering surface roughness
K.Nakamura; H.Sakamoto
Advanced Materials Research, Volume:Vol.1017, First page:441, Last page:446, Sep. 2014, [Reviewed]
English, Scientific journal - Study on an identification method of real contact area considering plastic deformation of a surface roughness
K.Nakamura; H.Sakamoto; T.Nagashima
Proceedings of International Conference on Precision Engineering, Volume:No.C05, 2014, [Reviewed]
English, International conference proceedings - Proposition of High Accuracy Identification Method of Contact Stiffness of Joint
K.Nakamura; A.Yoshitani; S.Shimizu; H.Sakamoto
TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series A, Volume:Vol.79, Number:No.807, First page:4389, Last page:4399, Nov. 2013, [Reviewed]
The contact stiffness of joints has been evaluated experimentally and the method quantifying them has been proposed by authors. However it was found out that the range of application for this method was limited, since the method was based on the assumption that the relationship between force and real contact area of the joint is linear. Therefore, in this paper, we consider a widely applicable and more general identification method of the contact stiffness which can be applied to the joints in which the relationship between the force and the real contact area shows non-linear characteristics. As a consequence, following results are obtained. (1) The model of the joint interface with surface roughness can be made as a surface covered by springs with same length and spring constant along the profile of surface roughness. (2)The identification method of the contact stiffness of the joint based on the model can be applied to the joints, even if the relationship between the force and the real contact area of the joints is non-linear. (3) The contact stiffness per real contact area k shows constant regardless of the applied force in the joint where the relationship between the force and the real contact area is non-linear.
The Japan Society of Mechanical Engineers, Japanese, Scientific journal
DOI:https://doi.org/10.1299/kikaic.79.4389
DOI ID:10.1299/kikaic.79.4389, ISSN:0387-5024, CiNii Articles ID:130003386496 - Analysis of Effective Cutting-edge Distribution of Grinding Wheel Based on Topography of Working and Ground Surfaces
H.Sakamoto; K.Nakamura; Y.Sasaki; S.Shimizu
Advanced Materials Research, Volume:Vol.325, First page:60, Last page:65, Aug. 2011, [Reviewed]
English, Scientific journal - Estimation method of contact stiffness of joint based on surface profile measurement
K.Nakamura; S.Shimizu; H.Sakamoto; K.Yamashita
Proceedings of the 6th International Conference on Leading Edge Manufacturing, Volume:No.3404, 2011, [Reviewed]
International conference proceedings - Quantitative Measurement Method of Contact Stiffness of the Joint with Different Material Combination
S.Shimizu; K.Nakamura; H.Sakamoto
Journal of Advanced Mechanical Design, Systems, and Manufacturing, Volume:Vol.4, Number:No.5, First page:1144, Last page:1153, Feb. 2010, [Reviewed]
The joints in machine tools influence greatly the static, dynamic and thermal characteristics of the machines. Then the many researches on them have been carried out. Under these conditions, the authors have established the quantitative measurement method of contact stiffness of the joint with same material combination considering the real contact area, since the real contact area is far smaller than the nominal contact area. In this research, we propose the new measurement method of contact stiffness of the joint with different material combination expanding the former method we developed and its validity is considered. In consequence, the following results are obtained. 1) The measurement method applicable to the joint with various material combinations is established using inserted specimens. 2) The real contact area of the joint with different material combination can be accurately measured considering the reflected level of ultrasonic wave at the real contact area of the joint. 3) The contact stiffness of the joint with different material combination can be treated as the series coupling of the each contact stiffness constructing the joint. 4) The contact stiffness of the joint and each contact stiffness of the contact springs constructing the joint can be measured by the proposed method.
The Japan Society of Mechanical Engineers, English
DOI:https://doi.org/10.1299/jamdsm.4.1044
DOI ID:10.1299/jamdsm.4.1044, ISSN:1881-3054, CiNii Articles ID:130000335378 - Relationship between longitudinal elastic modulus and contact stiffness of different material combination
S.Shimizu; K.Nakamura; H.Sakamoto
Proceedings of 4th CIRP International Conference on High Performance Cutting, Volume:No.C30, 2010, [Reviewed]
International conference proceedings
- U-Net を利⽤した材料最終状態からのナノ粒⼦凝集過程の予測
畠村菜羽; 亀谷恭子; 小方博之
2025年度精密工学会,秋季大会学術講演会, Sep. 2025 - 大規模言語モデルを利用した新しい形の会話型調査システムの提案
橘田健太郎; 小方博之; 亀谷恭子
Aug. 2025 - VR空間の把持可能範囲においてヘッドマウントディスプレイのモーメントが距離知覚に及ぼす影響
鳥海 青真; 小西 遼一; 伝保 昭彦; 小方 博之; 亀谷 恭子
Mar. 2025
Summary national conference - 本人確認における合成顔画像の顔部位が判別に与える影響度合いの分析
山田 竜大; 堀内 和也; 森崎 皓大; 小方 博之; 安田 晶子; 亀谷 恭子
Mar. 2025
Summary national conference - 基盤モデルと物体検 出モデルを併用した歩道移動ロボットにおける横断歩道検出 法の提案
田倉謙; 小方博之; 亀谷恭子
Mar. 2025
Summary national conference - 自律歩道移動ロボットにおける基盤モデルの活用
小方博之; 亀谷恭子
Jan. 2025
Japanese, Introduction commerce magazine - 把持可能範囲において人間がバーチャルリアリティ空間で知覚する距離の変化の研究
鳥海 青真; 久保 友八; 小方 博之; 伝保 昭彦; 亀谷 恭子; 安田 晶子
第29回日本バーチャルリアリティ学会大会, Sep. 2024
Summary national conference - 本人確認における関心領域に着目した合成顔画像の識別難易度の分析
山田 竜大; 圷 優菜; 小方 博之; 安田 晶子; 亀谷 恭子
日本テスト学会 第22回大会, Aug. 2024 - 強化学習によるサフランめしべ収穫自動化における切断位置への誘導
土田裕太; 笹田祐樹; 小方博之; 亀谷恭子
Mar. 2024
Summary national conference - 基盤モデルを利用した歩道移動ロボットにおける横断歩道検出法の提案
田倉謙; 山本詩歩; 小方博之; 亀谷恭子
Mar. 2024
Summary national conference - 添い寝時の寝かしつけインタラクションにより入眠を促すロボットの提案(第 2報:寝かしつけ作業の設計)
木下菜々花; 小方博之; 亀谷恭子; 安田晶子
Mar. 2024
Summary national conference - Haptic retargeting で与えられたズレに対する慣れの影響
鳥海青真; 小方博之; 亀谷恭子
Sep. 2023 - 合成顔画像が目視による本人確認に及ぼす影響の男女差の検証
山田 竜大; 高橋 奏; 小方 博之; 安田 晶子; 亀谷 恭子
Aug. 2023 - 深層ニューラルネットワークによるサフラン摘花時の切断点の決定
土田裕太; 山口隼人; 小方博之; 亀谷恭子
Jun. 2023 - 歩道移動ロボットにおける横断歩道検出法の検討
山本詩歩; 田倉謙; 佐々木翼; 小方博之; 亀谷恭子
Jun. 2023 - 添い寝時の寝かしつけインタラクションにより入眠を促すロボットの提案
木下菜々花; 小方博之; 亀谷恭子; 安田晶子
Jun. 2023
Summary national conference - Design of Ti-Ni Shape Memory Alloy Reinforced Aluminum Composites with Enhanced Mechanical Properties using Finite Element Analysis
K.Kameya; T.Nagasawa; H.Tsukamoto
The 3rd International Conference on Advanced Composite Materials (held online), Aug. 2020
Summary international conference - Fabrication and Characterization of Ti-Ni Shape-Memory Alloy Reinforced Aluminum Composites
T.Nagasawa; K.Kameya; H.Tsukamoto
Mar. 2020
Summary national conference - Creep Characteristics of Ni/ZrO2 Functionally Graded Materials Investigated by Coupled Thermal-Structural Analysis
Kyoko Kameya; Syota Ando; Hideaki Tsukamoto
法政大学情報メディア教育研究センター研究報告, Volume:Vol.34, First page:63, Last page:69, Jul. 2019
Report research institution - 粉末焼結・圧延によるカーボンナノチューブ/Al基複合材料の作製と評価
T.Suzuki; G.Toma; K.Kameya; H.Tsukamoto
Mar. 2019
Summary national conference - ホギングモーメントに対するコンテナ船のハルガーダ最終強度の簡易推定手法について
Y.Komoriyama; K.Kameya; Y.Yamada
Number:26, 2018
Summary national conference
ISSN:2185-1840, J-Global ID:201802259176643320 - スラリー遠心力法を用いたジルコニア/ステンレス系傾斜機能材料の作製と評価
牛谷康平; 高橋翼; 西村滉; 濱野直紀; 亀谷恭子; 塚本英明
2018
Summary national conference - マイクロ波焼結によるジルコニア/チタン系傾斜機能材料の作製と性能評価
S.Kawasaki; R.Masuda; N.Hamano; K.Kameya; H.Tsukamoto
2018
Summary national conference - A Fundamental Study on the Dynamic Response of Hull Girder of Container Ships
Y.Yamada; Y.Komoriyama; K.Kameya
Conference proceedings, the Japan Society of Naval Architects and Ocean Engineers, 2018
Summary national conference - コンテナ船のハルガーダ動的応答に関する基礎的検討(第2報)
Y,Yasuhira; K.Kameya
Number:25, 2017
Summary national conference
ISSN:2185-1840, J-Global ID:201802268470927046 - コンテナ船のハルガータ動的応答に関する基礎的検討
Y.Yamada; K.Kameya; T.Ozawa
Number:23, 2016
Summary national conference
ISSN:2185-1840, J-Global ID:201602233682733233 - Bayesian approach to determine optimum inspection intervals for structural components of high temperature materials subjected to creep
K.Nakamura; Y.Nakasone
The 12th International Conference on the Mechanical Behavior of Materials, 2015
Summary international conference
- Comparison of weld line strength of glass fiber-reinforced polymer in injection molding using Moldex3D/Digimat-RP analysis
Kyoko Kameya
JSOL Corporation Moldex3D topic seminar 2024, [Invited]
Jan. 2025 - Feb. 2025, Public discourse - Digimat-RP/Nastranと樹脂流動解析を連携させたウェルドラインの強度評価に関する研究
Kyoko Kameya
Hexagon LIVE Manufacturing Intelligence Japan 2024, Jun. 2024, [Invited]
Jun. 2024 - Jun. 2024, Public discourse
- Sep. 2020 - Present
精密加工学, Kogakuin University - Sep. 2024 - Mar. 2025
PBL2, Seikei University - Apr. 2024 - Mar. 2025
PBL1, Seikei University - Sep. 2023 - Mar. 2025
機械工学実験, Seikei University - Apr. 2023 - Mar. 2025
応用Pythonプログラミング, Seikei University - Sep. 2020 - Mar. 2024
プロジェクト実習, Seikei University - Apr. 2021 - Jul. 2023
システムデザイン実験Ⅱ, Seikei University - Apr. 2021 - Jul. 2023
弾塑性学, Seikei University - Sep. 2020 - Mar. 2023
システムデザイン実験Ⅰ, Seikei University - Sep. 2020 - Mar. 2023
確率統計Ⅰ, Seikei University
- Functionally Graded Materials FORUM of JAPAN
- THE JAPAN SOCIETY FOR COMPUTATIONAL ENGINEERING AND SCIENCE
- Understanding of nanoparticle behavior using generative AI technique and FEM to solve the deterioration of strength in functionally graded materials
Japan Society for the Promotion of Science, Grants-in-Aid for Scientific Research (KAKENHI), Grant-in-Aid for Scientific Research(C), Apr. 2024 - Mar. 2028
Kyoko Kameya; Hiroyuki ogata, Seikei university, Principal investigator
Grant amount(Total):4680000, Direct funding:3600000, Indirect funding:1080000
Grant number:24K07279
論文ID:49127224 - 材料設計最適化を目指した機械学習による傾斜機能材料製造時の粒子凝集要因の解明
Sep. 2023 - Mar. 2024
Kyoko Kameya, Principal investigator - 難削材を含む焼結材料の加工熱を低減する最適切削加工法の開発
Apr. 2022 - Mar. 2023
Kyoko Kameya, Principal investigator - Study on the Dynamic Hull Girder Ultimate Strength and Structural Reliability of Large Container Ships Considering Uncertinities
Japan Society for the Promotion of Science, Grants-in-Aid for Scientific Research, Grant-in-Aid for Scientific Research (C), Apr. 2015 - Mar. 2018
Yamada Yasuhira; KAWAMURA Yasumi; KAMEYA Kyoko, National Institute of Maritime, Port and Aviation Technology, Others
Grant amount(Total):4810000, Direct funding:3700000, Indirect funding:1110000
A series of 3-dimentional non-linear finite element simulation is carried out using a full model ship in order to investigate dynamic structural response of container ships.
①Dynamic collapse mechanism and structural response of container ships due to longitudinal bending moment are investigated in detail.②Effects of load duration , amplitude and analysis models on dynamic structural response of ultimate strength is investigated.③It is found by the analysis that, 1 transverse model gives un-conservative results, and that a full model and/or 1/2 hold model gives fairly reasonable results. ④Accuracies of 3 analysis methods(non-linear FEA, simplified method, closed formula) are compared, and a new closed formula for container ships is developed and its effectiveness is verified. ⑤Validation analysis for model test is carried out and effects of friction as well as in-plane stress-concentration on ultimate strength is revealed.
Grant number:15K06627 - 表面粗さの繰返し塑性変形を考慮した接触剛性のベイズ推定に関する研究
Japan Society for the Promotion of Science, Grants-in-Aid for Scientific Research Grant-in-Aid for Young Scientists (B), Grant-in-Aid for Young Scientists (B), Apr. 2015 - Mar. 2016
Tokyo University of Science
Grant amount(Total):4030000, Direct funding:3100000, Indirect funding:930000
Grant number:15K21406 - The17th International Symposium on Advances in Abrasive Technologyでの発表
2014 - 2014
K.Nakamura - 異種材料間結合部における接触剛性の理論的定式化に関する研究
Japan Society for the Promotion of Science, Grants-in-Aid for Scientific Research Grant-in-Aid for JSPS Fellows, Grant-in-Aid for JSPS Fellows, 2012 - 2013
Sophia University
Grant amount(Total):1800000, Direct funding:1800000
Grant number:12J04969
