Title page for etd-0815123-190644


URN etd-0815123-190644 Statistics This thesis had been viewed 26 times. Download 2 times.
Author SHU-HSIEN PENG,
Author's Email Address lien527229@gmail.com
Department Department of construction & spatial design
Year 2022 Semester 2
Degree Master Type of Document Master's Thesis
Language zh-TW.Big5 Chinese Page Count 68
Title Research on Construction Method Optimization of Dry Type Light Steel Frame Partition Wall
Keyword
  • Light Compartment
  • Optimization Method
  • Dry type
  • Light-weight Steel Frame Partition Wall
  • Light-weight Steel Frame Partition Wall
  • Dry type
  • Optimization Method
  • Light Compartment
  • Abstract Dry type light-weight steel frame partition walls are widely used in modern construction. However, they still have some deficiencies including joint cracks, waterproof performance, and sound insulation. These issues can lead to warranty problem and maintenance work increased, resulting in costs increased in terms of manpower, resources, and finances. In order to improve the quality and reduce the frequency of subsequent management and maintenance, it is expected to research and optimize construction way of the dry lightweight steel frame partition walls through improved construction methods to achieve the aforementioned goals.
    Research has found that methods to improve construction quality often come with costs increased, but in return, they can reduce the frequency of subsequent management and maintenance. When choosing construction methods, it is necessary to explore a balance between construction quality and costs. By using more optimized methods and technologies and establishing stricter construction standards and specifications, it is possible to achieve a dual improvement in construction quality and efficiency. Through optimized construction methods, we can reduce the frequency of subsequent management and maintenance after construction. This study shows that the optimization of the construction methods can lead to better building quality and efficiency.
    Advisor Committee
  • Jia-Chong Du - advisor
  • Sun,Yung-Ming - co-chair
  • Cheng-Xiao  Li - chair
  • Files indicate access worldwide
    Date of Defense 2023-06-27 Date of Submission 2023-08-15

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