标题: | 内螺纹自动检测机台之设计研发 Design and Develop an Internal Thread Auto-Inspection Machine |
作者: | 彭德保 PERNG DER-BAAU 国立交通大学工业工程与管理学系(所) |
关键字: | 内螺纹;硬式工业用内视镜;机器视觉;Internal Thread;Rigid Industrial Endoscope;Machine Vision |
公开日期: | 2008 |
摘要: | 内螺纹(Internal Thread)自动化攻牙制程虽已行之多年,但仍会发生異常狀况,最 常見的问题为螺纹攻出器(Screw Taps)的磨损太大,导致加工后的内螺纹數量不足、 螺距狭窄、螺纹山形狀不佳,甚至完全无法制成螺纹。为维持内螺纹之品质与功能性, 业界常以螺纹塞规(Thread Plug Gauge)反应内螺纹的中径、螺距和螺纹山角度的精度; 然而,使用螺纹塞规必须面臨许多接触式检测(Contact Inspection)固有且不可避免的 缺点。因此,为了适应大批量生产且满足自动化的需求,势必要导入非接触式的检测 (Non-contact Inspection)技术。本计画的目标在于提出以机器视觉(Machine Vision) 为基础的内螺纹非接触式检测方法并开发一种针对内螺纹进行检测的机具,其主要的精 神为建构一光学式螺纹塞规(Optical Thread Plug Gauge ),计画中将引入工业用内视镜 (Industrial Endoscope)、电荷耦合元件(Charge Coupled Device,CCD)与马达控制单 元(Motion Control Unit),并发展一新的图像拼贴法(Unwrapped Method)建立内螺纹 孔壁的全周图像(Hologram),接着,再从全周图像的特征中,找出可用于辨識或检测 螺纹品质的资讯。本计画所提出的内螺纹自动检测机制将能够自动地判别螺距是否正 常、螺纹山是否受损、螺峰、螺谷的边界是否平滑、是否尚有攻牙制程的残留料屑等问 题。囿于内螺纹特殊的结构与空间的限制,目前尚未見到以机器视觉进行自动内螺纹检 测的文献。透过本计画特殊设计的取像机制,将可解决内螺纹深度与孔径尺寸所带來的 取像困扰,并可在大批量生产环境之下,提供快速且自动化地综合性检测;而所研发的 内螺纹自动检测机台亦能用于内螺纹制程中,当螺纹攻出器产生过度磨耗或出现断裂等 異常现象之初,就能及早发掘问题的征兆,并给予操作员适时的警报讯息,进而使产品 品质稳定与节省成本。 Although the tapping process of internal thread has been automatized, some exceptional conditions still arise. All too often, a damaged screw tap may shape nonconforming threads. To preserve the quality and functionality of internal thread, a thread plug gauge is used to reveal the precision of pitch diameter, thread pitch and lead angle. However, manual and contact inspection causes various inherent and invertible persecutions. Therefore, industry should introduce automatic and non-contact inspection method to satisfy the environment of mass-produce. This project is to propose a novel internal thread inspection mechanism by machine vision. The main purpose is to construct an optical thread plug gauge. To do so, partial wall image of internal thread captures by elegantly cooperating and guiding the rigid industrial endoscope, CCD camera and motion control unit. An unwrapped image method can then be reconstructed the hologram of internal thread. Next, some crucial features would be extracted to identify the quality of internal thread. The developed optical thread plug gauge would be capable of distinguishing the thread pitches, the thread flank, the thread crest or root and residual material filings. Consequently, the novel method can provide high-speed, composite and automatic inspection in mass-production environment. It can send an alarm signal to the operator when the screw tap was over-weared or broken down such that the industry can achieve the goal and a stable product quality and save cost. |
官方说明文件#: | NSC97-2221-E009-112-MY3 |
URI: | http://hdl.handle.net/11536/102385 https://www.grb.gov.tw/search/planDetail?id=1674597&docId=287972 |
显示于类别: | Research Plans |