工程塑料应用
工程塑料應用
공정소료응용
ENGINEERING PLASTICS APPLICATION
2015年
8期
6-10
,共5页
李华强%孙洁%钱坤%魏晴晴
李華彊%孫潔%錢坤%魏晴晴
리화강%손길%전곤%위청청
三聚氰胺泡沫%1,4–丁二醇%压缩强度%泡沫改性
三聚氰胺泡沫%1,4–丁二醇%壓縮彊度%泡沫改性
삼취청알포말%1,4–정이순%압축강도%포말개성
melamine foam%1%4–butanediol%compression strength%foam modification
以甲醛、三聚氰胺为原料合成了三聚氰胺树脂,在其合成过程中加入1,4–丁二醇单体作为改性剂,使其参与三聚氰胺泡沫的固化交联过程,以此减小泡沫脆性,提高泡沫强度.通过微观形态、力学性能、热学性能的对比分析,考察改性剂含量对泡沫性能的影响.结果表明,经过改性的三聚氰胺泡沫压缩强度以及弹性模量均有明显提升,泡孔结构更为均匀,但耐热性和阻燃性有不同程度的损失.当1,4–丁二醇添加量为10%时,泡沫的综合性能最好,其中压缩强度为0.947 MPa,压缩弹性模量为15.013 MPa,泡沫粉化率为2.90%,最大分解速率温度为376.8℃,极限氧指数为36.7%.
以甲醛、三聚氰胺為原料閤成瞭三聚氰胺樹脂,在其閤成過程中加入1,4–丁二醇單體作為改性劑,使其參與三聚氰胺泡沫的固化交聯過程,以此減小泡沫脆性,提高泡沫彊度.通過微觀形態、力學性能、熱學性能的對比分析,攷察改性劑含量對泡沫性能的影響.結果錶明,經過改性的三聚氰胺泡沫壓縮彊度以及彈性模量均有明顯提升,泡孔結構更為均勻,但耐熱性和阻燃性有不同程度的損失.噹1,4–丁二醇添加量為10%時,泡沫的綜閤性能最好,其中壓縮彊度為0.947 MPa,壓縮彈性模量為15.013 MPa,泡沫粉化率為2.90%,最大分解速率溫度為376.8℃,極限氧指數為36.7%.
이갑철、삼취청알위원료합성료삼취청알수지,재기합성과정중가입1,4–정이순단체작위개성제,사기삼여삼취청알포말적고화교련과정,이차감소포말취성,제고포말강도.통과미관형태、역학성능、열학성능적대비분석,고찰개성제함량대포말성능적영향.결과표명,경과개성적삼취청알포말압축강도이급탄성모량균유명현제승,포공결구경위균균,단내열성화조연성유불동정도적손실.당1,4–정이순첨가량위10%시,포말적종합성능최호,기중압축강도위0.947 MPa,압축탄성모량위15.013 MPa,포말분화솔위2.90%,최대분해속솔온도위376.8℃,겁한양지수위36.7%.
Melamine resin was synthetised using formaldehyde and melamine.By adding different amount of 1,4–butanediol monomer into melamine resin,it could react with melamine resin through the curing process.The 1,4–butanediol could increase the distance between rigid groups of melamine resin,thus enhancing the flexibility and strength of the molecular chain.The effects of modifier contents were studied through micromorphology,thermal properties and mechanical properties analyses.Results indicate that by adding 1,4–butanediol monomer into melamine resin,the compression strength and elasticity modulus of melamine resin foam are improved,and the foam structure is more uniform.But the heat resistance and fire resistance are decreased.When the added content is 10%,the compression strength is 0.947 MPa,compression modulus is 15.013 MPa,foam powder ratio is 2.90%,temperature of maximum decomposition rate is 376.8℃ and LOI is 36.7%.