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| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 薛人愷 | zh_TW |
| dc.contributor.advisor | Ren-Kae Shiue | en |
| dc.contributor.author | 林昱霖 | zh_TW |
| dc.contributor.author | Yu-Lin Lin | en |
| dc.date.accessioned | 2026-07-22T16:19:10Z | - |
| dc.date.available | 2026-07-23 | - |
| dc.date.copyright | 2026-07-22 | - |
| dc.date.issued | 2026 | - |
| dc.date.submitted | 2026-07-15 | - |
| dc.identifier.citation | Arsenyeva, O. P., Tovazhnyanskyy, L. L., Kapustenko, P. O., Khavin, G. L., Yuzbashyan, A. P., & Arsenyev, P. Y. (2016). Two types of welded plate heat exchangers for efficient heat recovery in industry. Applied Thermal Engineering, 105, 763–773.
Arsenyeva, O., Tovazhnyanskyy, L., Kapustenko, P., Klemeš, J. J., & Varbanov, P. S. (2023). Review of developments in plate heat exchanger heat transfer enhancement for single-phase applications in process industries. Energies, 16(13), 4976. Faes, W., Lecompte, S., Ahmed, Z. Y., Van Bael, J., Salenbien, R., Verbeken, K., & De Paepe, M. (2019). Corrosion and corrosion prevention in heat exchangers. Corrosion Reviews, 37(2), 131–155. Fan, J.-K., Yang, H.-C., Zhang, P.-Z., Li, J.-Y., Jing, Z.-J., Chen, F.-L., Liu, D.-G., Tang, B., Kou, H.-C., & Li, J.-S. (2024). Mechanism of high temperature oxidation of Inconel 625 superalloy with various solution and ageing heat treatment processes. Transactions of Nonferrous Metals Society of China, 34(11), 3662–3676. Xia, C., & Kou, S. (2020). Evaluating susceptibility of Ni-base alloys to solidification cracking by transverse-motion weldability test. Science and Technology of Welding and Joining, 25(8), 690–697. Garcia-Fresnillo, L., Chyrkin, A., Böhme, C., Barnikel, J., Schmitz, F., & Quadakkers, W. J. (2014). Oxidation behaviour and microstructural stability of alloy 625 during long-term exposure in steam. Journal of Materials Science, 49(17), 6127–6142. Gajjar, P. K. (2024). Experimental investigation on the effect of post weld heat treatment parameters on sensitization recovery of auto TIG welded austenitic stainless steel tube [Doctoral dissertation, Gujarat Technological University]. Jacobson, D. M., & Humpston, G. (2005). Principles of brazing. ASM International. Eustathopoulos, N., Hodaj, F., & Kozlova, O. (2013). The wetting process in brazing. In D. P. Sekulić (Ed.), Advances in brazing: Science, technology and applications (pp. 3–30). Woodhead Publishing. Kou, S. (2003). Welding metallurgy (2nd ed.). Wiley. Sanya, O. T., Nenuwa, O. B., & Olakolegan, O. D. (2022). Corrosion, heat treatment, and microstructural studies of GTA welded 316 austenitic stainless steel joint. International Journal of Innovative Research and Development, 11(7). Brown, B., Lough, C., Wilson, D., Newkirk, J., & Liou, F. (2024). Atmosphere effects in laser powder bed fusion: A review. Materials, 17(22), 5549. | - |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/102776 | - |
| dc.description.abstract | 板式熱交換器因結構緊湊、熱傳效率高等優勢,在產業界被廣泛採用。隨著應用場合擴展至高溫高壓環境,對板片材料與接合部位的性能要求也隨之提高,銲後接點的組織與性質為影響整體產品可靠性的重要因素。
本研究分為兩部分進行:以碟片雷射對 IN-625 鎳基超合金進行同質銲接製程參數研究,並對 Alfa Nova HP52-20 板式熱交換器之 316L 不鏽鋼銲點進行破壞性分析。透過調控板材厚度配置與雷射功率等變因,搭配 EPMA/WDS 與 EBSD 分析,探討其對銲道顯微組織、析出相與接合品質之影響。 實驗結果顯示,雷射功率與穿透能力呈正相關,薄對薄 500 W 配置具有最小銲道間隙與最低變形,而厚板銲接則需提升至 2800 W 方可達成鎖孔模式,而在無氣氛保護的條件下,許多板材內都產生了TiN析出物,不利於整體結構之可靠性。而Alfa Nova HP52-20 之 316L 銲點則觀察到富鉻硼化物、與富鉻鉬硼化物兩類硼化物,其未構成連續性脆性相,推測與 Mo 元素之抑制硼化物粗化有關。研究成果可作為 IN-625 同質雷射銲接製程參數設計,以及板式熱交換器接合品質提供參考依據。 | zh_TW |
| dc.description.abstract | Plate heat exchangers have been widely adopted in industry owing to their advantages of compact structure and high heat transfer efficiency. As their applications extend to high-temperature and high-pressure environments, the performance requirements for plate materials and joints have correspondingly increased, making the microstructure and properties of joints a critical factor affecting the overall reliability of the product.
This study is conducted in two parts: a process parameter study on homogeneous welding of IN-625 nickel-based superalloy using a disk laser, and a destructive analysis of the 316L stainless steel brazed joints in an Alfa Nova HP52-20 plate heat exchanger. By controlling variables such as plate thickness configuration and laser power, combined with EPMA/WDS and EBSD analyses, the effects on weld microstructure, precipitates, and joint quality were investigated. Experimental results show that laser power is positively correlated with penetration capability. The thin-to-thin 500 W configuration exhibited the smallest weld gap and lowest distortion, while thick-plate welding required power up to 2800 W to achieve keyhole-mode penetration; moreover, under the condition without shielding gas, TiN precipitates were generated within most weld specimens, which is detrimental to the overall structural reliability. In the 316L joints of Alfa Nova HP52-20, Cr-rich Boride and Cr/Mo-rich Boride were observed, which did not form continuous brittle phases, presumably related to the role of Mo in suppressing boride coarsening. The findings can serve as a reference for the process parameter design of IN-625 homogeneous laser welding, as well as for the joint quality assessment of plate heat exchangers. | en |
| dc.description.provenance | Submitted by admin ntu (admin@lib.ntu.edu.tw) on 2026-07-22T16:19:10Z No. of bitstreams: 0 | en |
| dc.description.provenance | Made available in DSpace on 2026-07-22T16:19:10Z (GMT). No. of bitstreams: 0 | en |
| dc.description.tableofcontents | 口試委員審定書 i
學位論文學術倫理暨原創性聲明書 ii 致謝 iii 摘要 v Abstract vi 目次 ix 圖次 xi 表次 xiv 第一章 前言 1 第二章 文獻回顧 2 2-1 板式熱交換器簡介 2 2-1-1 板式熱交換器之構造與工作原理 2 2-1-2 熱交換器常見之失效成因 2 2-2 實驗材料特性 3 2-2-1 Inconel 625 鎳基超合金 3 2-2-2 316L 沃斯田鐵不鏽鋼 4 2-3 接合製程簡介 4 2-3-1 熔接製程 5 2-3-2 硬銲製程 6 2-3-3 銲道區域介紹 7 2-4 雷射銲接技術 7 2-4-1 雷射銲接常見缺陷與抑制 9 第三章 實驗方法與步驟 16 3-1 雷射銲接試片與熱交換器材料取得 16 3-2 實驗試片製備 16 3-3 FESEM/EBSD之銲道顯微組織觀察 17 3-4 EPMA/WDS之化學組成分析 18 第四章 實驗結果與討論 27 4-1 IN-625薄板對薄板於500W下之試片 27 4-2 IN-625薄板對厚板於500W下之試片 28 4-3 IN-625 厚板對薄板於1800W下之試片 30 4-4 IN-625 厚板對厚板於2800W下之試片 31 4-5 Alfa Nova HP52-20 316L 不鏽鋼試片 32 第五章 結論 56 參考文獻 58 | - |
| dc.language.iso | zh_TW | - |
| dc.subject | 碟片雷射 | - |
| dc.subject | IN-625 | - |
| dc.subject | 316L 不鏽鋼 | - |
| dc.subject | 板式熱交換器 | - |
| dc.subject | disk laser | - |
| dc.subject | IN-625 | - |
| dc.subject | 316L stainless steel | - |
| dc.subject | plate heat exchanger | - |
| dc.title | 板式熱交換器用 316L不鏽鋼 與 IN-625接合製程之研究 | zh_TW |
| dc.title | The Study of Joining Processes for 316L Stainless Steel Plate Heat Exchanger and IN-625 | en |
| dc.type | Thesis | - |
| dc.date.schoolyear | 114-2 | - |
| dc.description.degree | 碩士 | - |
| dc.contributor.oralexamcommittee | 郭東昊;蔡履文 | zh_TW |
| dc.contributor.oralexamcommittee | Dong-Hau Kuo;Leu-Wen Tsay | en |
| dc.subject.keyword | 碟片雷射; IN-625; 316L 不鏽鋼; 板式熱交換器 | zh_TW |
| dc.subject.keyword | disk laser; IN-625; 316L stainless steel; plate heat exchanger | en |
| dc.relation.page | 59 | - |
| dc.identifier.doi | 10.6342/NTU202601947 | - |
| dc.rights.note | 同意授權(全球公開) | - |
| dc.date.accepted | 2026-07-15 | - |
| dc.contributor.author-college | 工學院 | - |
| dc.contributor.author-dept | 材料科學與工程學系 | - |
| dc.date.embargo-lift | 2026-07-23 | - |
| 顯示於系所單位: | 材料科學與工程學系 | |
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