The Mechanical Engineering department carried out an industry-based project on the long-term deformation of thermoplastic pipes under constant stress. A 42-day study was carried out to assess the mechanical stability and performance of the pipes, following ISO 9967 requirements. These included repeatedly measuring at specific intervals and processing and analyzing the acquired data for the ongoing project which needed to be accurate and suitably time-efficient. To meet these demands, a complete diagnostic system was created, including the multiple elements needed to automate the measurement process. Accurate data acquisition, minimal manual intervention, and adherence to international standards were achieved through a similar combination of handheld wireless systems, which allowed for a detailed understanding of the deformation characteristics of thermoplastic materials undergoing prolonged loading conditions.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Control and Data Processing of Creep Test Machine in Compliance with ISO 9967

  • Hanna Madbak,
  • Husam A. Neamah,
  • Hothefa Shaker Jassim,
  • Zaid Ameen Abduljabbar

摘要

The Mechanical Engineering department carried out an industry-based project on the long-term deformation of thermoplastic pipes under constant stress. A 42-day study was carried out to assess the mechanical stability and performance of the pipes, following ISO 9967 requirements. These included repeatedly measuring at specific intervals and processing and analyzing the acquired data for the ongoing project which needed to be accurate and suitably time-efficient. To meet these demands, a complete diagnostic system was created, including the multiple elements needed to automate the measurement process. Accurate data acquisition, minimal manual intervention, and adherence to international standards were achieved through a similar combination of handheld wireless systems, which allowed for a detailed understanding of the deformation characteristics of thermoplastic materials undergoing prolonged loading conditions.