Polypropylene injection molding products have been widely used in the fields of packaging, transportation, home appliances, automobiles, offices, daily consumption, and medical products.
The use of high fluidity polypropylene (PP) can make injection products easy to form and process, and reduce injection defects and scrap rates. In the process of product processing and production, the processing temperature, injection pressure, clamping force, etc. can be reduced, thereby reducing energy consumption, shortening the molding cycle of the product, and increasing the output of the product. In addition, due to the improved fluidity of the resin, thin-walled products can be produced and the use of raw materials can be reduced.
High fluidity copolymerized PP has high flow rate and good physical properties, which can make the design of large thin-walled injection products with complex structures feasible; during the production process, the processing cycle can be shortened, and the processing temperature and injection pressure can be reduced. It has the advantages of good processing performance, easy mold filling and less product warping and deformation.
With the improvement of resin fluidity, its processing temperature is greatly reduced, and the reduction of temperature can reduce energy consumption for users. The improvement of fluidity can reduce the molding temperature, reduce the cooling time, significantly reduce the molding cycle of the product, and increase the product output. This advantage is the most attractive aspect for the wide application of high fluidity copolymerized PP. Usually the cooling time is reduced by 30%, the entire molding cycle is shortened by 10%, and the molding cycle of high fluidity copolymerized PP with a melt flow rate of 65g/10min is reduced by 27% compared with the molding cycle of 35g/10min, which greatly improves the product output.
High-flow PP application: washing machine tank, base, cover, instrument board, balance ring, turnover box, electric fan, etc.
performance item |
test condition [status] |
Test Methods |
Test Data |
data unit |
|
Basic performance |
The melt flow rate |
|
ASTM D-1238 |
30 |
g/10min |
Shrinkage |
|
|
14/14 |
1/1000 |
|
density |
|
ASTM D-1505 |
0.9 |
g/cm3 |
|
Mechanical behavior |
Izod impact strength |
23℃ |
ASTM D-256 |
6.3 |
kgfcm/cm |
gap,-20℃ |
ASTM D-256 |
3.5 |
kgfcm/cm |
||
Bending strength |
|
ASTM D-790 |
13300 |
kg/cm2 |
|
yield strength |
|
ASTM D-638 |
270 |
kg/cm2 |
|
elongation at break |
|
ASTM D-638 |
60 |
% |
|
hardness |
|
ASTM D-785 |
90 |
R |
|
Breaking strength |
|
ASTM D-638 |
200 |
kg/cm2 |
Application range:
Name: Jerry Meng
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Email:jerry@fulltrustplastic.com
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