Wg. Yao et al., ANALYTICAL STUDY ON FLOW AND DISTRIBUTIVE MIXING OF A NEW-TYPE PIN MIXING SECTION FOR SCREW EXTRUDER, International polymer processing, 11(3), 1996, pp. 222-227
A new type of pin to be installed in mixing section of screw extruder
is proposed based on the results of numerical calculation of flow fiel
d and local mixing efficiency. Two problems presented in general pin m
ixing section, i.e., the lack of randomization in mixing mechanism and
the formation of dead spots, can be solved through diagonally-channel
ing pins from top to bottom. From the results of numerical analysis of
local mixing efficiency it is known that in the cross-section of stan
dard screw (in this study called ''cavity'') there are only small regi
ons with high mixing efficiency which is mainly near the two upper cor
ners of the cavity. If two pins are put into the cavity, large high mi
xing efficiency regions occur in the scope from cavity top to about 1/
3 flight height. But, in the case of inserting two holed pins into the
cavity, high mixing efficiency regions are distributed in nearly all
over the cavity. It is impossible to get such useful information by ex
periments. Even though the calculation was confined in cross-section o
f pin mixing section, it has directive significance in designing the p
ractical pin mixing section in the light of theory of distributive mix
ing.