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1.
Characteristics of FTIR and XRD for wood with high-temperature heating treatment.
高温热处理木材的FTIR和XRD分析
2.
The Heat-treated Wood of Chinese Red Pine under the Condition of High Temperature and Ordinary Pressure
马尾松木材高温常压热处理工艺研究
3.
Thermal Stability of Superheated Steam-treated Wood under High Temperature and Pressure
高温高压过热蒸汽处理木材的热稳定性
4.
The Study on Technics and Properties of Heat Treated Fir Wood;
高温热处理杉木木材的工艺及性能研究
5.
Research on Technics and Property of Mongolian Scotch Pine after Thermal Treatment with Pressure;
樟子松木材压力高温热处理工艺及材性研究
6.
Influence of Different High-temperature Treat on the Thermwood Capability of Plantation;
高温热处理条件对速生材炭化木性能的影响
7.
The effect of high temperature thermal treatment on the colour of Chinese fir
高温炭化热处理对杉木材色的影响规律
8.
Changing Rules of Components of Cunninghamia lanceolata Thinning Wood in Heat Treating Process
杉木间伐材高温热处理后化学成分的变化
9.
Effects of High Temperature Heat Treatment at 185 ℃ on Mechanical Properties of Ash Wood
185℃高温热处理对水曲柳木材力学性能的影响
10.
Responses of Main Wood Mechanical Properties in Chinese Fir Plantation to Different Heat Treatment Process
人工林杉木木材力学性质对高温热处理条件变化的响应
11.
Effects of High Temperature Heat Treatment on the Physical-Mechanical Properties of the Compressed Poplar Lumber
高温热处理对杨木压缩板材物理力学性能的影响
12.
The Research of Mechanical Properties and Dimensional Stability of Heat-treated Chinese Fir
高温热处理杉木板材力学性能与尺寸稳定性研究
13.
Effect of High Temperature Heat Treatment on XRD Properties of Chinese Fir Wood
高温炭化热处理对杉木XRD特征的影响规律
14.
Research on High Frequency Heating Quarantine Treatment Technology for Wood Packaging Materials
木包装材料高频加热检疫处理技术研究
15.
Study on Impregnation Enhancement-Heat Treatment Process of Eucalyptus Pellita Lumber
粗皮桉木材浸渍增强—热处理工艺研究
16.
Research on the Main Chemical Components, Physical and Mechanical Properties of Bamboo after Thermal Treatment
高温热处理前后竹材主要化学成分及物理力学性能研究
17.
Physical and Mechanical Properties of Heat-Treated Lumber Ⅰ.
热处理改性木材的性能分析 Ⅰ.热处理材的物理力学性能
18.
Production choosing β titanium alloy after heat treatment could increase the high temperature intensity and wear off with hardness of HRC42.
选择β钛合金材质生产,经热处理后增加高温强度及耐磨性,硬度HRC42。