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Design and fabrication hazard stakes golf course polymeric foam material empty bunch (EFB) fiber reinforced

机译:设计和制作危险赌注高尔夫球场聚合物泡沫材料空束(EFB)纤维增强

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A golf course with obstacles in the forms of water obstacle and lateral water obstacle marked with the stakes which are called golf course obstacle stake in this study. This study focused on the design and fabrication of the golf course obstacle stake with a solid cylindrical geometry using EFB fiber-reinforced polimeric foam composite materials. To obtain the EFB fiber which is free from fat content and other elements, EFB is soaked in the water with 1% (of the watre total volume) NaOH. The model of the mould designed is permanent mould that can be used for the further refabrication process. The mould was designed based on resin-compound paste materials with talc powder plus E-glass fiber to make the mould strong. The composition of polimeric foam materials comprised unsaturated resin Bqtn-Ex 157 (70%), blowing agent (10%), fiber (10%), and catalyst (10%). The process of casting the polimeric foam composit materials into the mould cavity should be at vertical casting position, accurate interval time of material stirring, and periodical casting. To find out the strength value of the golf course obstacle stake product, a model was made and simulated by using the software of Ansys workbench 14.0, an impact loading was given at the height of 400 mm and 460 mm with the variation of golf ball speed (USGA standard) v = 18 m/s, v = 35 m/s, v = 66.2 m/s, v = 70 m/s, and v = 78.2 m/s. The clarification showed that the biggest dynamic explicit loading impact of Fmax = 142.5 N at the height of 460 mm with the maximum golf ball speed of 78.2 m/s did not experience the hysteresis effect and inertia effect. The largest deformation area occurred at the golf ball speed v = 66.2 mm/s, that is 18.029 mm (time: 2.5514e-004) was only concentrated around the sectional area of contact point of impact, meaning that the golf course obstacle stakes made of EFB fiber-reinforced polymeric foam materials have the geometric functional strength that are able to absorb the energy of golf ball impact.
机译:一个高尔夫球场,具有障碍的水障碍和横向水障碍,标有赌注在本研究中称为高尔夫球场障碍物的赌注。本研究专注于使用EFB纤维增强骨质泡沫复合材料的固体圆柱形几何设计和制造高尔夫球场障碍物桩。为了获得不含脂肪含量和其他元素的EFB纤维,EFB浸泡在水中,1%(Watre总量)NaOH。设计的模型是永久模具,可用于进一步的简化过程。该模具是基于树脂复合膏材料设计,具有滑石粉加上电子玻璃纤维,使模具强。卵形泡沫材料的组成包括不饱和树脂BQTN-EX 157(70%),发泡剂(10%),纤维(10%)和催化剂(10%)。将卵形泡沫复合材料浇铸到模腔中的过程应在垂直铸造位置,精确的材料间隔时间搅拌,以及期间铸造。要找出高尔夫球场障碍物桩产品的强度值,通过使用ANSYS工作台14.0的软件进行模型,并在400 mm和460mm的高尔夫球速度的变化下给出冲击载荷(USGA标准)v = 18 m / s,v = 35 m / s,v = 66.2 m / s,v = 70 m / s,v = 78.2 m / s。澄清显示,最大高尔夫球速度为78.2米/秒的最大动态显式加载冲击率为460毫米的高度为460毫米的高尔夫球速度没有经历滞后效应和惯性效应。在高尔夫球速度v = 66.2mm / s时发生的最大变形区域,即18.029 mm(时间:2.5514E-004)仅集中在接触点的截面区域,这意味着高尔夫球场障碍赌注所做的EFB纤维增强聚合物泡沫材料具有能够吸收高尔夫球撞击能量的几何功能强度。

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