发明名称 Apparatus and method for delamination reduction of composite materials
摘要 The present invention provides a drilling apparatus and a method thereof capable of providing an adjustable active backup force to a composite workpiece to effectively reduce the delamination of the workpiece during drilling such that the application of the active backup force in terms of its force magnitude and its application location on the workpiece can adjustably counter the drill thrust force to retard the onset of delamination growth and reduce delamination damage at the drill exit in the workpiece, in particular in situation where large feed rate with short cycle time is desired for drilling of composite materials. A critical drill thrust force of the drilling apparatus and the method of the present invention is advantageously obtained in relation to said active backup force and the application of the active backup force to reduce the crack propagation of the delamination occurred in the composite workpiece.
申请公布号 US9162294(B2) 申请公布日期 2015.10.20
申请号 US201213620701 申请日期 2012.09.14
申请人 发明人 Hocheng Hong;Tsao Chung-chen;Chen Yen Chu
分类号 B23B41/00;B23B47/00;B23B35/00 主分类号 B23B41/00
代理机构 代理人 Shih Chun-Ming
主权项 1. A drilling apparatus capable of providing a reduction of delamination of composite materials, comprising: a workpiece of a composite material in a layered form with a thickness defined by a drill-entrance surface and a drill-exit surface opposite of said drill-entrance surface spaced apart therefrom; a supporting base provided on said drill-exit surface of the workpiece, configured to receive said workpiece and to restrict directional movements thereof; a drill bit for drilling of said workpiece with a thrust force FB, having an outer perimeter of a bit radius C and a drilling axis O substantially perpendicular to said surfaces of the workpiece, provided on a side of said drill-entrance surface of the workpiece and to travel at a feed rate in a first direction toward said drill-exit surface thereof along the drilling axis O; and an active-force exertion mechanism for providing an active backup force R to said drill-exit surface of the workpiece in a second direction substantially parallel to said drilling axis O of the drill bit and at a contact region having an exertion distance δ away from said outer perimeter of the drill bit, further comprising a contact bracket at least partially contacting said drill-exit surface of the workpiece at said contact region and an adjustable force generator for driving said contact bracket to displace in said second direction toward said drill-entrance surface of the workpiece; and wherein said active backup force R is of a force magnitude correlated to said thrust force FB of the drill bit such that delamination of the workpiece is reduced, wherein said force magnitude of the active backup force R is correlated to said bit radius C of the drill bit and to said exertion distance δ of the contact region of the active-force exertion mechanism.
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