Li Qingde, Gao Xun, Cheng Wanli, Han Guangping
Key Laboratory of Bio-based Material Science and Technology (Ministry of Education), Northeast Forestry University, Harbin 150040, China.
College of Arts and Design, Qiqihar University, Qiqihar 161000, China.
Materials (Basel). 2017 Jan 26;10(2):111. doi: 10.3390/ma10020111.
Red pottery clay (RPC) was modified using a silane coupling agent, and the modified RPC (mRPC) was then used to enhance the performance of high-density polyethylene-based wood-plastic composites. The effect of the mRPC content on the performances of the composites was investigated through Fourier transform infrared spectrometry, differential mechanical analysis (DMA) and ultraviolet (UV)-accelerated aging tests. After adding the mRPC, a moisture adsorption hysteresis was observed. The DMA results indicated that the mRPC effectively enhanced the rigidity and elasticity of the composites. The mRPC affected the thermal gravimetric, leading to a reduction of the thermal degradation rate and a right-shift of the thermal degradation peak; the initial thermal degradation temperature was increased. After 3000 h of UV-accelerated aging, the flexural strength and impact strength both declined. For aging time between 0 and 1000 h, the increase in amplitude of Δ (luminescence) and Δ (color) reached a maximum; the surface fading did not became obvious. Δ and Δ increased more significantly between 1000 and 2000 h. These characterization results indicate that the chromophores of the mRPC became briefly active. However, when the aging times were higher than 2000 h, the photo-degradation reaction was effectively prevented by adding the mRPC. The best overall enhancement was observed for an mRPC mass percentage of 5%, with a storage modulus of 3264 MPa and an increase in loss modulus by 16.8%, the best anti-aging performance and the lowest degree of color fading.
采用硅烷偶联剂对红陶土(RPC)进行改性,然后将改性后的RPC(mRPC)用于提高高密度聚乙烯基木塑复合材料的性能。通过傅里叶变换红外光谱、动态力学分析(DMA)和紫外(UV)加速老化试验研究了mRPC含量对复合材料性能的影响。添加mRPC后,观察到了吸湿滞后现象。DMA结果表明,mRPC有效地提高了复合材料的刚性和弹性。mRPC影响热重分析,导致热降解速率降低,热降解峰右移;初始热降解温度升高。经过3000 h的UV加速老化后,弯曲强度和冲击强度均下降。在老化时间为0至1000 h时,Δ(发光)和Δ(颜色)的增幅达到最大值;表面褪色不明显。在1000至2000 h之间,Δ和Δ增加更为显著。这些表征结果表明,mRPC的发色团短暂活化。然而,当老化时间高于2000 h时,添加mRPC有效地防止了光降解反应。当mRPC质量百分比为5%时,观察到最佳的整体增强效果,储能模量为3264 MPa,损耗模量增加16.8%,具有最佳的抗老化性能和最低的褪色程度。