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Featured researches published by Dai Jinming.


Journal of Composite Materials | 2014

Preparation and properties of cellulose-based carbon microsphere/poly(lactic acid) composites

Wang Shuhua; Xu Qiaoli; Li Fen; Dai Jinming; Jia Husheng; Xu Bingshe

Carbon microspheres were prepared using cellulose as a precursor by hydrothermal carbonization and the composites were prepared using carbon microspheres as the filler and poly(lactic acid) as the polymeric matrix. The morphologies and structures of carbon microspheres were characterized by scanning electron microscopy and Fourier-transform infrared spectrometry. The crystallinity, tensile properties and thermal properties of the composites were tested. The results show that the tensile properties and thermal properties of the carbon microsphere/poly(lactic acid) composites were improved by the addition of CMSs.


Fibers and Polymers | 2015

Preparation and characterization of cyclotriphosphazenekeratin/viscose fibers

Zhao Zhou; Bao Weiren; Di Youbo; Dai Jinming

The aim of this study is to develop a flame-retardant viscose fiber using the phosphazene derivative of a natural polymer. Hexachlorocyclotriphosphazene (HCCTP) and keratin were used as the raw materials to synthesize cyclotriphosphazenekeratin (CCTPK). The Fourier transform infrared spectroscopic results indicate that CCTPK was successfully synthesized. The thermal analysis shows that the introduction of phosphazene into keratin lowered the primary decomposition temperature, increased the decomposition rate, and caused less weight loss. CCTPK blended viscose fibers were prepared by the wet spinning method, and the properties of the fiber were investigated. Limiting oxygen index of the flame-retardant fiber containing 10 % flame retardant was 28.6 %, which decreased to 27.5 % after 30 washing cycles. After burning, the scanning electron microscopy image showed an inflated carbonized coat on the fiber surface. The effect of CCTPK on the mechanical properties of the fibers was insignificant. CCTPK was compatible with keratin, and the flame retardancy of the viscose fiber was significantly improved.


Carbohydrate Polymers | 2009

Antibacterial activity of chitosan coated Ag-loaded nano-SiO2 composites

Niu Mei; Liu Xuguang; Dai Jinming; Jia Husheng; Wei Liqiao; Xu Bingshe


Archive | 2014

Preparation method for heat-resisting polylactic acid fiber

Liu Shuqiang; Wu Gaihong; Jia Husheng; Zhang Ruiping; Dai Jinming


Journal of Applied Polymer Science | 2009

Structure and properties of composite antibacterial PET fibers

Wang Shuhua; Hou Wensheng; Wei Liqiao; Dai Jinming; Jia Husheng; Liu Xuguang; Xu Bingshe


Archive | 2014

Surface modification method for carbon nano tube

Niu Mei; Dai Jinming; Hou Wensheng; Wang Shuhua; Fan Haibin


Archive | 2013

Preparation method of composite flame retardant

Niu Mei; Hou Wensheng; Dai Jinming; Luo Qiulan; Wu Zilu; Li Jingya; Ren Jianxi


Archive | 2014

Core-shell type carbon microspheres and preparation method and application thereof

Niu Mei; Dai Jinming; Wang Xin; Hou Wensheng; Wang Shuhua; Xue Baoxia; Zhang Ying


Archive | 2013

Preparation method of Ag-carrying carbon microsphere antibacterial agent

Hou Wensheng; Niu Mei; Ren Jianxi; Dai Jinming; Chen Xuhong


Archive | 2013

Method for recycling waste polyester/cotton blended fabric

Hou Wensheng; Zhang Yongfang; Dai Jinming; Chen Xuhong; Shi Sheng; Niu Zhenhuai; Zhu Qiurong

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Hou Wensheng

Taiyuan University of Technology

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Niu Mei

Taiyuan University of Technology

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Wang Shuhua

Taiyuan University of Technology

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Xu Bingshe

Taiyuan University of Technology

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Liu Xuguang

Taiyuan University of Technology

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Wang Xin

Chinese Academy of Sciences

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Jia Husheng

Taiyuan University of Technology

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Wei Liqiao

Taiyuan University of Technology

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Li Fen

Taiyuan University of Technology

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Xu Qiaoli

Taiyuan University of Technology

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