根据三乙胺硬化冷芯盒树脂砂的基本原理,设计了一种实验用硬化装置。该装置一次硬化树脂砂最大量为400 g(即6个标准∞字形工艺试样),在保证硬化强度的前提下,三乙胺的消耗量仅为1~3 m L,从而实现了硬化装置的微型化,适用于实验教学及...根据三乙胺硬化冷芯盒树脂砂的基本原理,设计了一种实验用硬化装置。该装置一次硬化树脂砂最大量为400 g(即6个标准∞字形工艺试样),在保证硬化强度的前提下,三乙胺的消耗量仅为1~3 m L,从而实现了硬化装置的微型化,适用于实验教学及相关科学研究。亦适用于生产过程中快速抽样检测树脂砂的硬化强度,做到预先修正和及时调整其吹胺压力及吹胺时间等参数。实验数据表明,在其他条件不变的情况下,利用该硬化装置硬化的冷芯盒树脂砂强度高;在强度不变的条件下,其吹胺压力低或吹胺时间短。展开更多
A new aqueous alkaline resol phenol-formaldehyde resin has been prepared from phenol and formaldehyde using NaOH as catalyst; the optimum synthetic process has been determined. With addition of some cross-linking agen...A new aqueous alkaline resol phenol-formaldehyde resin has been prepared from phenol and formaldehyde using NaOH as catalyst; the optimum synthetic process has been determined. With addition of some cross-linking agents, after passing carbon dioxide gas through the resin bonded sand, high as-gassed strength and 24 h strength are achieved. The bonding bridge of the resin bonded sand fracture has been analyzed by using SEM.展开更多
文摘根据三乙胺硬化冷芯盒树脂砂的基本原理,设计了一种实验用硬化装置。该装置一次硬化树脂砂最大量为400 g(即6个标准∞字形工艺试样),在保证硬化强度的前提下,三乙胺的消耗量仅为1~3 m L,从而实现了硬化装置的微型化,适用于实验教学及相关科学研究。亦适用于生产过程中快速抽样检测树脂砂的硬化强度,做到预先修正和及时调整其吹胺压力及吹胺时间等参数。实验数据表明,在其他条件不变的情况下,利用该硬化装置硬化的冷芯盒树脂砂强度高;在强度不变的条件下,其吹胺压力低或吹胺时间短。
文摘A new aqueous alkaline resol phenol-formaldehyde resin has been prepared from phenol and formaldehyde using NaOH as catalyst; the optimum synthetic process has been determined. With addition of some cross-linking agents, after passing carbon dioxide gas through the resin bonded sand, high as-gassed strength and 24 h strength are achieved. The bonding bridge of the resin bonded sand fracture has been analyzed by using SEM.