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Quality Assessment of Glass Fibre Composites by Acousto Ultrasonic Technique

机译:超声波技术对玻璃纤维复合材料的质量评估

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This paper deals with the application of Acousto ultrasnonic (A-U) technique for quality assessment of fabricated Glass Fibre Reinforced plastic (GRP) composite specimens,. GRP composites are becoming the material of choice in many applications. Teh need for stiffness and strength combiend with low density hasled the designers of air crafts, missiles, cars, sports equipments and prosthetic devices to turn to composites for most of the components. It has been established that the mechanical properties of any composite materials are generally determined by the properties of fibres. The properties in any direction will be governed mainlyby the amount of fibres in that direction. Thus in case of composites the properties may vary from one part to another and it is very difficult to control the amount of defects. The mechanical proeprties of these composites were widely studied usign A-U technique. This technique is essentially an amalgamation of two separate existing technique viz acoustic emission and ultrasonic technique. Unlike the acoustic emission technique this technique is truly non-destructive, only the application of low intensive pulses have to be made and that also for a few second to get a proper evaluation of the specimen. The objective in A-U technique is to simulate stress waves that resemble acoustic emission waves but without disrupting the material. In order to fulfil these obejctives, cross ply (0/90) GRP composites were tested by A-U technique, a parameter Stress Wave Factor (SWF) was evaluated and correlated with the mechanical strength (Tensile&Flexural strength) of fabricated GRP composites for assessment of quality of these composite specimens.
机译:本文探讨了声超音波(A-U)技术在玻璃纤维增​​强塑料(GRP)复合材料标本质量评估中的应用。 GRP复合材料正在成为许多应用中的首选材料。对刚度和强度的需求与低密度的结合使航空器,导弹,汽车,运动器材和假肢装置的设计人员转向大多数部件的复合材料。已经确定,任何复合材料的机械性能通常由纤维的性能决定。在任何方向上的特性将主要由该方向上的纤维量决定。因此,在复合材料的情况下,其性能可能在一个部分到另一个之间变化,并且很难控制缺陷的数量。这些复合材料的力学性能在A-U技术中得到了广泛的研究。该技术实质上是两种独立的现有技术(即声发射和超声技术)的合并。与声发射技术不同,该技术是真正的无损技术,仅需要施加低强度脉冲,并且还需要花费几秒钟的时间才能对样品进行正确评估。 A-U技术的目的是模拟类似于声发射波但不会破坏材料的应力波。为了实现这些目标,通过AU技术测试了交叉层(0/90)GRP复合材料,评估了应力波因子(SWF)参数,并将其与制造的GRP复合材料的机械强度(拉伸强度和弯曲强度)相关联,以评估质量这些复合标本。

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