Fireproof composition based on thermoplastic matrix
A thermoplastic matrix and composition technology, applied in the field of thermoplastic flame retardant compositions, can solve the problems of unstable flame retardants and reduced flame retardant efficiency
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Embodiment 1
[0051] Example 1 : Preparation of the composition
[0052] Compositions were prepared by mixing the components in the proportions indicated in Table 1 of Example 2 on a Werner & Pfleiderer ZSK 40 twin-screw extruder at 270°C at a screw speed of 200 rpm and a throughput of 35 kg / h . The glass fibers were added to the mixture at the neck of the extruder. On an Arburg 320M500-210 injection molding machine, the pellets were dried and melted at a temperature of 270-280°C and then molded at 80-90°C in the form of test specimens.
[0053] The final composition contained 30% glass fiber and 0.5% calcium stearate.
Embodiment 2
[0054] Example 2 : Determination of performance
[0055] Measure the properties of the sample according to the following methods:
[0056] - Fire resistance was tested according to test UL-94 ("Underwriters Laboratories"). The test was carried out on 0.8 mm thick specimens after conditioning for 48 hours at 50% RH (relative humidity) and 168 hours at 70°C. The results are marked as follows: N.C.: Not rated (low flame retardancy). V-2: the average burning time is less than 25 seconds, the maximum burning time is less than 30 seconds (self-extinguishing); polyamide drops ignite cotton; V-1: the average burning time is less than 25 seconds, the maximum burning time is less than 30 seconds (self-extinguishing) ; The drop did not ignite the cotton; V-0: the average burning time was less than 5 seconds, and the maximum burning time was less than 10 seconds (self-extinguishing); the cotton was not ignited.
[0057] - GWFT: At 960°C, the ability to extinguish a flame due to the a...
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Abstract
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