Seguir
Xinzhou Wang
Xinzhou Wang
PhD. candidate of wood sicence, Nanjing Forestry University
Dirección de correo verificada de utk.edu - Página principal
Título
Citado por
Citado por
Año
Numerical investigation of the influence of process conditions on the temperature variation in fused deposition modeling
J Zhang, XZ Wang, WW Yu, YH Deng
Materials & Design 130, 59-68, 2017
1492017
Incorporation of graphitic nano‐filler and poly (lactic acid) in fused deposition modeling
WW Yu, J Zhang, JR Wu, XZ Wang, YH Deng
Journal of Applied Polymer Science 134 (15), 2017
1042017
Effects of thermal modification on the physical, chemical and micromechanical properties of Masson pine wood (Pinus massoniana Lamb.)
X Wang, X Chen, X Xie, Y Wu, L Zhao, Y Li, S Wang
Holzforschung 72 (12), 1063-1070, 2018
802018
In situ identification of the molecular-scale interactions of phenol-formaldehyde resin and wood cell walls using infrared nanospectroscopy
X Wang, Y Deng, Y Li, K Kjoller, A Roy, S Wang
RSC advances 6 (80), 76318-76324, 2016
572016
Evaluation of the effects of compression combined with heat treatment by nanoindentation (NI) of poplar cell walls
X Wang, Y Deng, S Wang, C Min, Y Meng, T Pham, Y Ying
Holzforschung 68 (2), 167-173, 2014
432014
Optimization of cellulose nanofibrils carbon aerogel fabrication using response surface methodology
Y Meng, X Wang, Z Wu, S Wang, TM Young
European Polymer Journal 73, 137-148, 2015
402015
In situ measurement of heat-treated wood cell wall at elevated temperature by nanoindentation
D Xing, J Li, X Wang, S Wang
Industrial crops and products 87, 142-149, 2016
392016
Multi-Scale Evaluation of the Effect of Phenol Formaldehyde Resin Impregnation on the Dimensional Stability and Mechanical Properties of Pinus Massoniana Lamb.
X Wang, X Chen, X Xie, S Cai, Z Yuan, Y Li
Forests 10 (8), 646, 2019
372019
The effects of thermal treatment on the nanomechanical behavior of bamboo (Phyllostachys pubescens Mazel ex H. de Lehaie) cell walls observed by nanoindentation, XRD, and wet …
Y Li, C Huang, L Wang, S Wang, X Wang
Holzforschung 71 (2), 129-135, 2017
372017
Multi-scale evaluation of the effects of nanoclay on the mechanical properties of wood/phenol formaldehyde bondlines
X Wang, S Wang, X Xie, L Zhao, Y Deng, Y Li
International Journal of Adhesion and Adhesives 74, 92-99, 2017
322017
Nanoscale characterization of reed stalk fiber cell walls
X Wang, Y Deng, S Wang, C Liao, Y Meng, T Pham
BioResources 8 (2), 1986-1996, 2013
292013
Effect of the penetration of isocyanates (pMDI) on the nanomechanics of wood cell wall evaluated by AFM-IR and nanoindentation (NI)
X Wang, L Zhao, Y Deng, Y Li, S Wang
Holzforschung 72 (4), 301-309, 2018
282018
Contributions of basic chemical components to the mechanical behavior of wood fiber cell walls as evaluated by nanoindentation
X Wang, Y Li, Y Deng, W Yu, X Xie, S Wang
BioResources 11 (3), 6026-6039, 2016
262016
Temperature-dependent mechanical properties of wood-adhesive bondline evaluated by nanoindentation
X Wang, Y Li, S Wang, W Yu, Y Deng
The Journal of Adhesion 93 (8), 640-656, 2017
242017
Effects of accelerated aging treatment on the microstructure and mechanics of wood-resin interphase
X Wang, L Zhao, B Xu, Y Li, S Wang, Y Deng
Holzforschung 72 (3), 235-241, 2018
152018
Investigating the nanomechanical behavior of thermosetting polymers using high-temperature nanoindentation
X Wang, Y Li, S Wang, Y Deng, D Xing, S He
European Polymer Journal 70, 360-370, 2015
142015
竹柳材性及其刨花板制造工艺研究
董葛平, 邓玉和, 王新洲, 吴晶, 侯天宇, 杨莹, 范祥林, 张健
西南林业大学学报: 自然科学 33 (3), 92-96, 2013
142013
Microstructure and mechanical properties of silvergrass fiber cell walls evaluated by nanoindentation
C Liao, Y Deng, S Wang, Y Meng, X Wang, N Wang
Wood and Fiber Science, 63-70, 2012
142012
芦苇中 (高) 密度纤维板的研究
王新洲, 邓玉和, 王伟, 骆嘉言, 陈旻, 谢盛豪, 王军
林产工业, 19-21, 2010
122010
Manufacture and mechanical properties of biocomposite made of reed and silvergrass
CB Liao, YH Deng, XZ Wang, XL Fan, T Yu, Y Yang
Applied Mechanics and Materials 248, 237-242, 2013
62013
El sistema no puede realizar la operación en estos momentos. Inténtalo de nuevo más tarde.
Artículos 1–20