A polyamide composition resistant to chloride salt stress corrosion cracking and its preparation method and application
A technology of stress corrosion cracking and polyamide composition, which is applied in the field of polyamide materials, can solve the problems of resistance to stress corrosion cracking of chloride salts, resistance to calcium chloride stress cracking that cannot meet the requirements of use, and polyamides that have not been mentioned. , to achieve the effect of low cost, low processing temperature and no pollution to the environment
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Embodiment 1-2 and comparative example 1-2
[0053] Table 1 lists the compositions of Examples 1-3 and Comparative Examples 1-2 and their anti-SSCC properties. These examples show that the SSCC resistance performance of the splines is significantly improved after radiation crosslinking treatment, especially the short carbon chain PA66 in Example 1 can obtain SSCC resistance equivalent to that of the long carbon chain PA612 in Comparative Example 2 after radiation crosslinking.
[0054] Table 1
[0055]
Embodiment 3-5 and comparative example 3-4
[0057] Table 2 lists the compositions of Examples 3-5 and Comparative Examples 3-4 and their SSCC resistance properties. It can be seen from Example 4 and Comparative Examples 3-4 that under the same weight percentage of the crosslinking agent, the crosslinking efficiency of PDM is higher than that of TAIC and TAC, so its corresponding anti-SSCC performance is more significant.
[0058] Table 2
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Embodiment 6-8 and comparative example 5
[0062] Table 3 lists the compositions of Examples 6-8 and Comparative Example 5 and their SSCC resistance. Compared with Comparative Example 5 without adding HS01, Examples 6-8 show stable SSCC resistance, especially at a higher radiation dose (150KGγ), HS01 has a more obvious radiation stabilizing effect, and after 30 days of salt stress corrosion After the second cycle processing, the spline does not break.
[0063] table 3
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