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Effect of type and loading of surface-modifying agent on mechanical properties of modified geothermal scale powder/stereolithography polymer composite

机译:表面改性剂类型和加载效果对改性地热尺度粉末/立体镀层聚合物复合材料的力学性能

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This study investigated the effect of stearic acid (SA), glycerol monostearate (GMS) and 3-trimethoxysilylpropyl methacrylate (TSPM) at varied loadings on the hardness and flexural properties of modified geothermal scale powder (GSP)/stereolithography (SLA) polymer composite. TSPM-modified GSP/SLA composite has the highest value of hardness due to increased filler dispersion and crystallinity. Hardness of GSP/SLA composite increases with loading of surface-modifying agent due to increase filler dispersion. Pronounced effect of surface modification to flexural modulus is observed. While low loading of SA and GMS leads to reduction of flexural modulus, increasing loading enhances the said property. Further increase of SA deteriorates the property. TSPM-modified GSP enhances the modulus due to increased crystalline phase of the system owing to TSPM copolymerization. Likewise, addition of SA and GMS increases flexural strength due to efficient reduction of filler agglomerates. However, unreacted TSPM produces weak interfaces and poor adhesion between GSP and SLA matrix.
机译:该研究研究了硬脂酸(SA),甘油单硬脂酸甲磺酸盐(GMS)和3-三甲氧基甲硅烷基丙基丙烯酸甲酯(TSPM)在改性地热比例粉末(GSP)/立体光刻(SLA)聚合物复合材料的硬度和弯曲性能下的各种载体处的影响。由于填充分散和结晶度增加,TSPM改性GSP / SLA复合材料具有最高的硬度值。由于增加填充分散,GSP / SLA复合材料的硬度随着表面改性剂的负载而增加。观察到表面改性对弯曲模量的发音效果。虽然低负载的SA和GMS导致弯曲模量的降低,但增加负载增强了上述性质。 SA的进一步增加恶化了该性质。由于TSPM共聚合,TSPM改性GSP增强了由于系统的晶相增加的模量。同样,由于填充聚集物的有效减少,因此加入SA和GMS增加弯曲强度。然而,未反应的TSPM在GSP和SLA矩阵之间产生弱界面和差的粘附性。

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