摘要(英) |
Abstract
This thesis will focus on the improvement of the "motion control of Wire
assembly” assembly line in the catheter device for catheter ablation. The operating
characteristic of the device is to reach the heart through the 2.0-3.5cm venous
blood vessel. It is conceivable that the design of the device′s motion mechanism
and internal parts should be compact and subtle, and because medical devices
must comply with specific medical specifications and strict quality requirements
during the manufacturing process, currently most of the industry still relies on
manual assembly. The requirements for eyesight, hand stability and technical
experience are extremely high, and the demand for human resources has also
become higher. In today′s environment of lack of manpower, it is undoubtedly
worse.
This research is to use the principle of the eye mold mechanism in the
automatic threading system of the wire cutting machine to improve the design of
the fixture, supplemented by the TRIZ theory to find out the bad factors and
improvement opportunities of the assembly process of the motion control line
components, and to carry out the operation interface of the assembly line , Process
design improvement, to reduce the work cycle, assembly process and production
resource requirements, and reduce the dependence on the experience and
technology of operators, so that the production management and manufacturing
units are more flexible in the scheduling of operators, and finally achieve both
The goal of reducing resource requirements and improving production capacity
and quality.
In addition to achieving the three goals set for the purpose of the research (1)
III
reducing the 60-second assembly cycle time, (2) reducing the dependence on the
ability of the operator, and (3) integrating the two welding stations into one, the
research results finally allowed demand for laser welding equipment and
operators has been reduced simultaneously. |
參考文獻 |
參考文獻
[1] https://www.stopafib.org/content/uploads/2021/10/SAF-60-CatheterAblation-AdobeStock_325760392-2048x1109.jpeg, access 2022/12/25
[2] 鐿鈦科技股份有限公司內部訓練教材:「雷射應用與原理」,pages
2,pages 23.
[3] Keyence:「Laser Basic G-KW-EN-TW 1039-2」,pages 5~6
[4] Clark-MXR Inc., “Machining with ultrafast pulses,” 2011,
http://www.cmxr .com/Education/Short.html. access 2022/12/25
[5] https://www.accutex.com.tw/cht/cnc%E7%B7%9A%E5%88%87%E5%-
89%B2%E6%A9%9F.htm,vu04fu, 徠通科技股份有限公司:線切割機介
紹,access 2022/12/06。
[6] FANUC ROBOCUT - High precision CNC wire Electrical Discharge
Machining - EXTENDED Version; https://youtu.be/4Pc5azfcKDk. access
2022/12/11。
[7] https://www.clbcwire.com/specification, 中良實業股份有限公司:眼模標準
規格,access 2022/12/11。
[8] https://www.triz-tw.com/,中華萃思學會:關於學會,access 2022/12/06。
[9] 高木芳德著,李雅茹譯:「創意不足?用TRIZ40則發明原理幫您解決」,
第一版,台北,五南圖書出版社,pages 3, pages 22~25, pages 27, 2016.
[10] M.R.M. Asyrafa, M.R. Ishak, S.M. Sapuand, N. Yidrisa: “Conceptual
design of creep testing rig for full-scale cross arm using TRIZMorphological chart-analytic network process technique “, Journal of
Materials Research and Technology Volume 8, Issue 6, November–
December 2019, Pages 5647-5658
[11] Siti Nur Humaira Mazlan, Aini Zuhra Abdul Kadir, Mariusz Deja, Dawid
Zielinski, Mohd Rizal Alkahari : ” Development of Technical Creativity
59
Featuring Modified TRIZ-AM Inventive Principle to Support De for
Additive Manufacturing”, Journal of Mechanical Design Volume 144, Issue
5, October 2021, page1-49.
[12] Wu Chunlonga, Zhou Youcheng, Marcus Vinicius Pereia Pessôad, Qingjin
Penge, Tan Runhua:” Conceptual digital twin modeling based on an
integrated five-dimensional framework and TRIZ function model”, Journal
of Manufacturing Systems Volume 58, Part B, January 2021, Pages 79-93.
[13] Ching-Hung Lee, Chun-Hsien Chen, Fan Li, An-Jin Shie: “Customized and
knowledge centric service design model integrating case based reasoning
and TRIZ”, Expert Systems with Applications Volume 143, 1 April 2020,
113062, page 10 |