Fiber orientation via spider web form has not yet been used as a reinforcing engineering composite product. However, fiber orientation influences the fiber-reinforced composite's mechanical properties. The burst test result on spider web form indicated a spider web form's potential candidacy to utilize it as a future fiber orientation technique to form an enhanced composite reinforcement. The obtained results are compared with published works on different effects of fiber architectures. A spider web develops a self-stressing nature, which offers its excellent inelasticity and provides a mechanism for competent and economical means to harmonize the local and global induced stresses in their structure. The spider web form orientation is prepared using Embroidery machine. ![]() ![]() ![]() In this study, the burst strength of a spider web-formed fabric structure is experimentally investigated. Burst strength is a significant property that determines all other properties of structures to perform under induced internal pressure.
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