In this paper, as the flame-retardant finishing process, Cr- and Ti-treating process was used. Flash points, ignition points and melting points for metal treated wool, silk and Nylon-6 were measured. Thermogravimetric analysis was used for them. ...

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https://www.riss.kr/link?id=A2046325
金光秀 (工科大學 纖維工學科)
1983
Korean
530.9
학술저널
133-142(10쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
In this paper, as the flame-retardant finishing process, Cr- and Ti-treating process was used. Flash points, ignition points and melting points for metal treated wool, silk and Nylon-6 were measured. Thermogravimetric analysis was used for them. ...
In this paper, as the flame-retardant finishing process, Cr- and Ti-treating process was used.
Flash points, ignition points and melting points for metal treated wool, silk and Nylon-6 were measured.
Thermogravimetric analysis was used for them.
The test results of thermal analysis to metal treated wool, silk and Nylon-6 are summed up as follows:
1. In the analysis of TGA, the temperature of initial major loss of Ti- and Cr- treated wool, silk, and Nylon-6 is lower than that of untreated yarns about 8∼20℃.
2. Flash points and ignition points of Ti- and Cr- treated wool and silk are higher than that of untreated yarns about 100∼200℃.
3. Melting point of metal treated Nylon-6 is higher than that of untreated Nylon-6 about 5∼6℃.
4. Tensile strength and elongation of wool, silk and Nylon-6 are decreased a little by Ti- and Cr-treating, but those of Ti-treated silk are decreased greatly.
綿經編布의 精鍊漂白 및 反應性染料에 의한 物性變化에 關한 硏究