Takeshi Maki

ORCID: 0000-0003-3250-5751
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Research Areas
  • Structural Behavior of Reinforced Concrete
  • Geotechnical Engineering and Soil Stabilization
  • Structural Load-Bearing Analysis
  • Geotechnical Engineering and Underground Structures
  • Structural Response to Dynamic Loads
  • Seismic Performance and Analysis
  • Geotechnical Engineering and Soil Mechanics
  • Concrete Corrosion and Durability
  • Innovative concrete reinforcement materials
  • Structural Engineering and Vibration Analysis
  • Geotechnical Engineering and Analysis
  • Concrete and Cement Materials Research
  • Grouting, Rheology, and Soil Mechanics
  • Structural Health Monitoring Techniques
  • Concrete Properties and Behavior
  • Fluid Dynamics Simulations and Interactions
  • Fatigue and fracture mechanics
  • Civil and Structural Engineering Research
  • Structural Analysis and Optimization
  • Infrastructure Maintenance and Monitoring
  • Innovations in Concrete and Construction Materials
  • Transportation Safety and Impact Analysis
  • Hydraulic and Pneumatic Systems
  • Civil and Geotechnical Engineering Research
  • Structural mechanics and materials

Saitama University
2008-2023

Kanazawa University
2009

Japan Society of Civil Engineers
1999-2001

Long-range transport of atmospheric microbiota with Asian dust (Kosa) particles is great concern in Northeast Asia view the health effect Kosa on human being, disturbance ecosystems caused through invasion new microbe, contribution microorganisms to biogeochemical cycle global/regional scales, and others. Information microbes over desert areas has been desired for a long time. Detection regions, base balloon-borne measurements, made at Dunhuang, China (40°00′ N, 94°30′ E; east end Taklamakan...

10.1007/s11869-009-0031-5 article EN cc-by-nc Air Quality Atmosphere & Health 2009-03-01

Abstract Modern seismic design codes stipulate that the response analysis should be conducted by considering complete structural system including superstructure, foundation, and ground. However, for development of method a system, it is first imperative to clarify behavior soil piles during earthquakes. In this study, full‐scale monotonic reversed cyclic lateral loading tests were carried out on concrete embedded into The test hollow, precast, prestressed with an outer diameter 300 mm...

10.1002/eqe.744 article EN Earthquake Engineering & Structural Dynamics 2007-08-20

10.1016/j.conbuildmat.2014.02.017 article EN Construction and Building Materials 2014-03-03

To evaluate the overall response of a structural system including its foundation and surrounding soil, an equivalent finite element model with reduced degrees freedom using fibre theory-based beam was proposed. The proposed based on investigations subgrade soil reaction single-layer model, verified for cyclic behaviour laterally loaded single RC pile in terms load–displacement relationship, deformation, pressures surface. Also investigated effect interfacial between pile. Copyright © 2006...

10.1002/eqe.588 article EN Earthquake Engineering & Structural Dynamics 2006-01-01

In the analysis of reinforced concrete (RC) buildings, beam–column joints are regarded as rigid nodes. fact, joint deformation may make a significant difference in lateral response RC buildings if not properly designed and detailed. To consider flexibility, several types models have been proposed. However, these require complicated computations, consequently making them challenging to apply engineering practice. This paper proposed simple approach for predicting contribution total interior...

10.3390/buildings10100176 article EN cc-by Buildings 2020-10-05

Loop reinforcements are commonly used to connect precast concrete elements. However, the strength of connection in case short overlapping lengths and mortar joints has not been discussed extensively previous studies. Moreover, proposed equations tend overestimate flexural capacity connection. In this study, six specimens with vertical loop steel bars were tested. The variables length, bending diameter, distance between a pair. findings indicated that reducing length diameter decreased joint....

10.3151/jact.21.436 article EN Journal of Advanced Concrete Technology 2023-06-06

This paper reports the results of experimental and analytical investigation on response behavior reinforced concrete piles under ground. From results, it was clarified that axial load at pile head affects restoring force degradation maximum damage point is dependent relative stiffness between surrounding soil. study using 3-dimensional FEM analysis, could be adequately simulated by applied method. Further investigations shapes or areas hysterisis loops will needed for future application this...

10.3151/jact.2.37 article EN Journal of Advanced Concrete Technology 2004-01-01

SUMMARY By means of a simplified three degrees freedom model, seismic behavior reinforced concrete bridge piers and foundations were evaluated based on pseudo‐dynamic (PsD) tests for cases where pier strengthening foundation are implemented. In addition, analysis PsD test results was conducted to investigate the influence damage foundation. The show that suffers increased hysteretic response when is applied. also can prevent damage. Copyright © 2011 John Wiley & Sons, Ltd.

10.1002/eqe.1129 article EN Earthquake Engineering & Structural Dynamics 2011-05-25

RC構造物の地震時安全性および地震後の修復性照査への適用を念頭に置き,軸力と水平正負交番荷重を受けるRC柱部材の耐荷・変形機構について,構成材料の損傷と破壊に基づく定量的評価を試みた.二次元材料非線形有限要素解析では,柱部材のコンクリート全域に対する従来の平均化正規化累加ひずみエネルギーによる損傷評価に加え,平均化領域をコアコンクリートに限定した指標を算定し,軸方向鉄筋の座屈指標と組み合わせてRC柱の耐荷機構と軸力保持機能の評価を行った.併せて,ファイバーモデルによる骨組み解析を行い,材料損傷指標として断面の平均弾性剛性残存率を用いた評価も比較のため行った.これにより,コンクリートや軸方向鉄筋の座屈等の材料の損傷指標を用いて,繰返し変形を受けるRC柱の破壊の進行過程を把握できることを示した.

10.2208/jscejmcs.71.29 article EN Journal of Japan Society of Civil Engineers Ser E2 (Materials and Concrete Structures) 2015-01-01

本論文は,材料非線形有限要素解析の結果から,性能照査の枠組みに沿って,RCはり部材の損傷や破壊を評価するための方法を提案したものである.有限要素解析より得られる各要素積分点における局所ひずみから,偏差ひずみの第2不変量および正規化した累加ひずみエネルギーを算出し,これらをある領域内で空間平均化することにより,材料の損傷の定量化を行った.算出した平均化損傷指標を用いて,RCはり部材の曲げ破壊およびせん断破壊を統一的に評価する手法を提案した.提案した手法を用いれば,材料の力学モデルが異なる解析手法に適用した場合にも,部材の損傷評価が可能であることが確認された.

10.2208/jscejmcs.67.166 article EN Journal of Japan Society of Civil Engineers Ser E2 (Materials and Concrete Structures) 2011-01-01

本論文は,大規模な有限要素法解析のために,前川らによって提案されたコンクリートの非線形構成則を再定式化する.CG法に基づく高速ソルバが利用できるよう,全体剛性マトリクスの正定値性を保障することが主眼である.従来見逃されていた関係式を使うことで,非対称・非正定値の弾塑性テンソルの代わりに,対称・正定値の弾性テンソルと補正項を使う形式に構成則が再定式化された.また,計算負荷の高い4階のテンソルの逆テンソルの計算も不要とした.最も基本的な一軸圧縮に対し,再定式化された非線形構成則の収束性と,従来の構成則との等価性を数値計算によって検証した.再定式化された構成則に使われる対称テンソルの正定値性を実証し,剛性マトリクスの対称性と正定値性が保証されることを示した.

10.2208/jscejam.67.145 article EN Journal of Japan Society of Civil Engineers Ser A2 (Applied Mechanics (AM)) 2011-01-01

既往の地震被害分析の際に行われた,橋脚およびカルバートのRC構造物と地盤を連成した2次元動的非線形解析の2つの事例を対象に,材料損傷に基づいて限界状態を判定するための損傷指標の適用性を確認した.その結果,既に適用性が確認されている静的載荷実験と同様に,空間的に重み付き平均化処理を行った偏差ひずみの第2不変量および正規化累加ひずみエネルギーによって,地震応答時のRC構造物や部材の損傷過程を概ね矛盾なく評価できることを示した.あわせて,軸方向鉄筋の座屈挙動を確認し,修復工法との関連についても検討した.

10.2208/jscejmcs.70.226 article EN Journal of Japan Society of Civil Engineers Ser E2 (Materials and Concrete Structures) 2014-01-01

本論文は,RC構造物の地震時安全性および地震後の修復性照査への適用を念頭に置き,複数部材で構成されるRC骨組み構造物が正負交番載荷を受ける際の損傷過程を,構成材料の損傷と破壊に基づいて詳細に評価する枠組みの構築を目的としたものである.材料非線形有限要素解析から得られる各要素積分点でのひずみのスカラー量に空間平均化した値を材料の損傷指標と定義し,軸力下で静的漸増正負交番載荷を受けるRC柱部材の損傷を評価する手法としての適用性を検証した.さらに,RC1層・2層ラーメン構造物および中央隔壁を有する2連ボックスカルバートを対象とした同様の非線形解析を実施することにより,RC骨組み構造物の損傷過程を詳細に評価した.

10.2208/jscejmcs.69.33 article EN Journal of Japan Society of Civil Engineers Ser E2 (Materials and Concrete Structures) 2013-01-01

本研究は,材料非線形に立脚した有限要素解析を用いてRC面部材の性能照査を推進することを目指し,静的載荷実験を対象に,構成材料の損傷解析値に基づいて構造物/部材の破壊や耐力を特定できる汎用性の高い指標を提案するものである.様々な形状のRC面部材の応答を解析的に精度良く評価できることを再検証するとともに,コンクリート標準示方書で規定する程度の要素寸法を用いれば,局所ひずみに基づく既往の2つの手法により,部材の最大荷重時を概ね同定できることが認められた.さらに,はり部材で適用性が確認されている非局所化正規化累加ひずみエネルギーによっても,これらの手法と同等の精度で壁部材も評価できることが検証され,要素分割の粗密に関わらない高い汎用性を有することが提示された.

10.2208/jscejmcs.68.209 article EN Journal of Japan Society of Civil Engineers Ser E2 (Materials and Concrete Structures) 2012-01-01

Cement-treated sand is a material used for increasing the axial and lateral capacity of ground around piles. Piles are commonly to carry load; however, in some structures, pile also important. This study investigates improving single using cement-treated sand. was cast high-early-strength cement, limestone powder. Displacement-controlled cyclic-load tests were performed on piles embedded compacted 70% its relative density, The volume varied determine effect pile. flexural stiffness affected...

10.1680/jphmg.17.00020 article EN International Journal of Physical Modelling in Geotechnics 2018-08-08

Road base layers play an important role in bearing, transmitting, and distributing part of the load to underground. Unbound aggregates crushed from natural rock are most popular materials used construct pavements. However, nowadays sources have been increasingly exhausted pollution construction demolition waste (CDW) is a big problem Vietnam. Therefore, utilization CDW for recycling crucial issue reduce generation amount consumption resources. With regards applicability recycled concrete...

10.3208/jgssp.v09.cpeg116 article EN Japanese Geotechnical Society Special Publication 2021-10-11

Full-scale lateral loading tests were carried out on hollow-pre-cast-pre-stressed concrete piles embedded into the ground. The results from used as basis for analysis where soil was modelled 20-node solid elements; and modelling of comparison done between 3-node beam elements elements. It showed that element pile largely underestimates its capacity. can, however, accurately simulate experimental when interface soil, degradation shear stiffness in cyclic is considered.

10.7158/s12-022.2013.14.3 article EN Australian Journal of Structural Engineering 2013-01-01

単純支持されるせん断スパン比が1.5~3.0の鉄筋コンクリート梁を主対象に,せん断補強鉄筋量がせん断耐力に及ぼす影響を数値解析的に検討し,既往のせん断耐力算定式との比較を行った.梁の形状・寸法やせん断補強鉄筋比および降伏強度等をパラメータとした2次元の非線形FEM解析から,せん断補強鉄筋が多量に配筋されたせん断スパン比が大きい棒部材では,降伏強度に相当する引張力をせん断補強鉄筋が負担する前に,載荷版近傍の圧縮域のコンクリートの損傷が進展し,部材の最大耐力がせん断耐力の算定値を下回ることが示唆された.解析から得られた最大耐力,すなわちせん断破壊耐力と,修正トラス理論に基づくせん断耐力算定値との比較から,既往のせん断耐力算定式に対する,せん断補強鉄筋が受け持つせん断耐力に関する上限を提案した.

10.2208/jscejmcs.69.192 article EN Journal of Japan Society of Civil Engineers Ser E2 (Materials and Concrete Structures) 2013-01-01
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