浏览全部资源
扫码关注微信
纸质出版日期:1963-12-20,
扫 描 看 全 文
李斌才, 刘亚东, 孙成芳, 张玉民. 顺-1,4-聚丁二烯的工艺性质——Ⅰ.钛盐催化聚合顺-1,4-聚丁二烯的性质[J]. 高分子学报, 1963,5(3):110-122.
LEE BIN-TSOI, LIU YA-DUNG, SUN CHENG-FANG, CHANG YU-MING. THE TECHNICAL PROPERTIES OF CIS-1,4-POLYBUTADIENEⅠ. THE PROPERTIES OF CIS-1,4-POLYBUTADIENE OBTAINED WITH TITANIUM CATALYST[J]. Acta Polymerica Sinica, 1963,5(3):110-122.
李斌才, 刘亚东, 孙成芳, 张玉民. 顺-1,4-聚丁二烯的工艺性质——Ⅰ.钛盐催化聚合顺-1,4-聚丁二烯的性质[J]. 高分子学报, 1963,5(3):110-122. DOI:
LEE BIN-TSOI, LIU YA-DUNG, SUN CHENG-FANG, CHANG YU-MING. THE TECHNICAL PROPERTIES OF CIS-1,4-POLYBUTADIENEⅠ. THE PROPERTIES OF CIS-1,4-POLYBUTADIENE OBTAINED WITH TITANIUM CATALYST[J]. Acta Polymerica Sinica, 1963,5(3):110-122. DOI:
研究了用钛盐催化剂制备而具有不同分子量的顺-1
4-聚丁二烯的性貭。 各种具有不同分子量的顺-1
4-聚丁二烯生胶的性貭很相似:(1)凝胶含量低于1%
(2)玻璃化温度在—110至—114℃之间
(3)顺-1
4结构含量在93至97%(表1A)。但门尼粘度则随[η]值而激增(图1)。从生胶的应力-应变曲线可见各种顺-1
4-聚丁二烯样品在拉伸时并没有结晶现象(图2)。 顺-1
4-聚丁二烯在滚筒上的加工性能对配炼温度极敏感。在25℃
40℃和60℃滚筒温度下的加炭黑配炼试验中
发现唯有在25℃下配炼才得到光滑的混合物
由此可制得抗张强度超过200公斤/厘米~2的硫化物中
如果配炼系在40℃或60℃下进行
则顺-1
4-聚丁二烯趋向于破碎(图4)
得不到光滑的混合物
由此而制得的硫化物丧失抗张强度(图3)。 根据下列试验结果:(1)将顺-1
4-聚丁二烯分别在25℃
40℃和60℃下进行素炼
在素炼过程中都不产生疑胶
无明显的降解(图6)
又素炼后链节结构并无变化(表3);(2)温度对滚炼的影响是可逆的(表4)。我们认为
在40℃或60℃下配炼得到的硫化物之所以丧失抗张强度可能由于炭黑没有均匀分散。从合炭黑硫化物断面的显微镜照片亦可看到在25℃下配炼的硫化物确不同于在40℃和60℃下配炼里(图5A)。当含炭黑硫化物的定伸强度(M300%)超过60公斤、厘米2时,则抗张强度显著下降(图8).但采用适当的硫用量去控制交联程度则可以得到抗张强度超过20公斤/厘米2的硫化物(图8和表1B).顺-1,4-聚丁二烯硫化物的弹性和抗磨耗性都远胜地天然橡胶(表1B)。研究了顺-1,4-聚丁二烯生胶的分子量对硫化物的机械性质的影响,发现在很宽的分子量范围内([n]2.5-3.6),硫化物的抗张强度者在200公斤/厘米2左右;但弹性则随生胶的[n]值而增(图9).
The properties of cis-1
4-polybutadiene rubbers with different molecular weights which were obtained with titanium catalyst have been studied.The properties of raw cis-1,4-polybutadiene rubbers with different molecular weights are similar to each other with respect to (1) gel content,less than 1%,(2) cis-1,4-con-tent
93—97%,and (3) glass temperature,-110 to一114℃ (Table 1A).However,the Mooney viscosity increases rapidly with [n] (Fig.1).It is shown by stress-strain curves that a11 the cis-1,4-polybutadiene samples under examination do not crystallize during stretching (Fig.2).The behaviour of cis-1,4-polybutadiene in milling is very sensitive to temperature.Carbon black compoundings have been carried out on an open laboratory mill at cylinder temperatures of 25,40,and 60。C,respectively. Smooth compounds from which vul-canizates with tensile strength over 200 kg/cm2 may be prepared can only be obtained at 25℃. When compounding is carried out at 40 or 60℃,cis-1,4-polybutadiene tends to crumble(Fig.4),no smooth compound can be prepared,and the vulcanizate obtained loses tensile strength(Fig.3).According to the following experimental results: (1)no gel formation,no signi ficant degradation,and no change in microstructure can be observed when cis-1,4一poly- butadiene is masticated either at 25℃ or at 40 or 60℃ (Fig.6 and Table 3);(2)the effect of temperature on milling is reversible (Table 4),it is presumed that the lOSS of tensile strength of the vulcanizate obtained from compound prepared at 40 or 60℃ is due to the difficulty of incorporation and dispersion of carbon black into the cis-1
4-polybutadiene rubber at a temperature above 40℃.This presumption is supported by the microscopic photographs of the CROSS-sections of the vulcanizates(Fig.5).It is found that the tensile strength of the vulcanizate decreases rapidly as the mo-dulus(M300%) exceeds 60 kg/cm2 (Fig.8).However,with a suitable amount of sulphur to control the degree of cross-14nking,vulcanizates of tensile strengths over 200 kg/cm2 can be obtained (Fig.8 and Table 1B).The elastisity (Yerzley) and abrasive resistance of cis-1,4-polybutadiene vulcanizates are much better than those of natural rubber(Table 1B).The effect of molecular weight of cis-1
4-polybutadiene on the mechanical proper-ties of the vulcanizate has been investigated. It is found that vulcanizates of tensile strength around 200 kg/cm2 can be obtained within wide range of molecular weights ([n] 2.5 to 3.6),whereas elasticity increases with the M of the raw rubber(Fig.9).
0
浏览量
7
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构