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Investigating The Impact Properties of Rubber as a Material for shredder hammer Tips

机译:研究橡胶作为切碎机锤头材料的冲击性能

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A preliminary study into the feasibility of using rubber-tipped shredder hammers has been conducted by testing the impact properties of rubber against cane and non-cane objects, which typically accompany cane billets into the shredder. rubber layers were fixed to a projectile and fired at cane samples, 'tramp iron' objects and dirt particles. the damage to the cane was assessed using POC analysis. The rubber layers trialled were 6,10 and 20 mm thick; two rubber compounds were trialled, one at 90 SDH which is the hardest commercial rubber available, and 70 SDH (slightly softer). The cane damage tests showed that the rubber-tipped projectiles could prepare the cane in a similar manner to the standard projectile (no rubber attached). The thicker 70 SDH rubber layers were found to produce lower levels of damage than the rest of the rubbers and standard projectile. This decrease in damage was a result of the impact energy being absorbed by the viscoelastic rubber, wich reduced the preparation efficiency of the impact event. The rubber compounds were found to withstand considerable impact against metallic materials as long as the impact load was widely distributed, but fractured or failed when the impact loading was concentrated due to sharp edges or corners on the metallic objects. Sand, soil and gravel caused no apparent damage to the rubber, except where the rubber had been previously fractured; the sma;; 'dirt' particles embedded in the fractures and further reduced the serviceability of the rubber.
机译:通过测试橡胶对甘蔗和非甘蔗物体的冲击性能,对使用带胶撕碎机锤子的可行性进行了初步研究,而甘蔗坯料通常伴随着甘蔗坯料进入破碎机。橡胶层固定在射弹上,并向甘蔗样品,“流铁”物体和灰尘颗粒射击。使用POC分析评估对甘蔗的伤害。试穿的橡胶层厚度为6,10和20 mm;对两种橡胶混合物进行了试验,一种为90 SDH(最硬的市售橡胶),另一种为70 SDH(略软)。拐杖损坏测试表明,带有橡胶尖端的射弹可以以与标准射弹类似的方式(不附有橡胶)来准备拐杖。发现较厚的70 SDH橡胶层比其他橡胶和标准射弹产生的损伤程度低。损伤的减少是由于冲击能量被粘弹性橡胶吸收的结果,从而降低了冲击事件的准备效率。只要冲击载荷广泛分布,就可以发现橡胶混合物对金属材料具有相当大的冲击力,但是当冲击载荷集中时,由于金属物体上的尖锐边缘或拐角,橡胶化合物会破裂或破裂。沙子,土壤和砾石对橡胶没有造成明显的损害,除非橡胶先前已经断裂过。 sma ;;嵌入裂缝中的“污垢”颗粒进一步降低了橡胶的使用寿命。

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