无损检测
無損檢測
무손검측
NONDESTRUCTIVE TESTING
2015年
8期
71-75
,共5页
齐子诚%张国斌%唐盛明%郭智敏
齊子誠%張國斌%唐盛明%郭智敏
제자성%장국빈%당성명%곽지민
活塞%镶圈检测%C扫描成像%薄片状探头
活塞%鑲圈檢測%C掃描成像%薄片狀探頭
활새%양권검측%C소묘성상%박편상탐두
Piston%Ring detection%C-scan imaging%Lamellar probe
针对活塞毛坯在机加工过程中存在镶圈松动、结合层开裂的问题,设计了一种活塞镶圈结合面质量的超声波快速检测系统,其中超声波探头使用薄片状探头,采用一发二收的模式进行检测。介绍了用于检测活塞镶圈结合面图像描述的4个阶段。首先采集结合层透射声波信号幅值,同时提取实时检测位置信息,在活塞镶圈圆周上利用预设的色表进行伪色彩缺陷显示。在缺陷定量方面,采用标准试块对比法对缺陷的等效当量进行判定。结果表明:系统在10 s内即可实现对单个直径不大于220 mm的活塞上下结合面的同步检测,较目前普遍检测设备具有结构简单、定量精度高的优势。
針對活塞毛坯在機加工過程中存在鑲圈鬆動、結閤層開裂的問題,設計瞭一種活塞鑲圈結閤麵質量的超聲波快速檢測繫統,其中超聲波探頭使用薄片狀探頭,採用一髮二收的模式進行檢測。介紹瞭用于檢測活塞鑲圈結閤麵圖像描述的4箇階段。首先採集結閤層透射聲波信號幅值,同時提取實時檢測位置信息,在活塞鑲圈圓週上利用預設的色錶進行偽色綵缺陷顯示。在缺陷定量方麵,採用標準試塊對比法對缺陷的等效噹量進行判定。結果錶明:繫統在10 s內即可實現對單箇直徑不大于220 mm的活塞上下結閤麵的同步檢測,較目前普遍檢測設備具有結構簡單、定量精度高的優勢。
침대활새모배재궤가공과정중존재양권송동、결합층개렬적문제,설계료일충활새양권결합면질량적초성파쾌속검측계통,기중초성파탐두사용박편상탐두,채용일발이수적모식진행검측。개소료용우검측활새양권결합면도상묘술적4개계단。수선채집결합층투사성파신호폭치,동시제취실시검측위치신식,재활새양권원주상이용예설적색표진행위색채결함현시。재결함정량방면,채용표준시괴대비법대결함적등효당량진행판정。결과표명:계통재10 s내즉가실현대단개직경불대우220 mm적활새상하결합면적동보검측,교목전보편검측설비구유결구간단、정량정도고적우세。
For piston blanks in the mechanical machining process,it is often that practical problems involving in loosing the ring and crazing the combining layers occur.We designed and implemented a system capable of quick detection of the combining quality in ultrasonic.A brief description of the system hardware is given,including a laminar ultrasonic probe,using the models of one transmitter and two receivers for testing.Then we introduced the four stages of the image description to the testing of the combination quality.First,we acquired layer transmission of sound signal amplitude,at the same time to extract the location information in real time detection,piston/ring on the circumference of a circle in the use of a preset pseudo color defect display color table.In the way of the quantitative defection, we used the standard test block contrast method to determine the equivalent defect. Experiments show that this system can realize a synchronous inspection of a single piston of diameter 220 mm or less within 10 s,and it possesses the advantages of simple structure and high quantitative precision as compared with most currently employed testing equipment.