Dynamic Helical Mixer and Mixing Apparatus Using Same
A dynamic helical mixer and a mixing head apparatus using that mixer are disclosed. Highly efficient mixing of two or more component reactive systems that have drastically different viscosities and ratios can be achieved because the mixer provides high shear in a mixing apparatus with a very small hold-up volume in the mixing head. The mixing head utilizes a hydraulic motor to transfer power to the dynamic helical mixer.
1 . A mixing apparatus, comprising:
a mixing head having a hydraulic motor and a substantially cylindrical mixer having helical mixing elements extending therefrom, wherein the substantially cylindrical mixer is configured to rotate under power from the hydraulic motor within a mixing chamber to mix and propel fluids of two different viscosities through the mixing chamber.
2 . The mixing apparatus of claim 1 , wherein the mixing head further comprises a shaft connecting the hydraulic motor and the mixer and at least one bearing to stabilize rotation of the shaft.
3 . The mixing apparatus of claim 2 , wherein there are two bearings to stabilize rotation of the shaft.
4 . The mixing apparatus of claim 3 , wherein the two bearings are anchored in different planes on a frame.
5 . The mixing apparatus of claim 1 , wherein the mixing head and mixing chamber combine to form a non-electrical, portable mixing apparatus.
6 . The mixing apparatus of claim 1 , wherein the mixer rotates at from about 200 revolutions per minute to about 5000 revolutions per minute.
7 . The mixing apparatus of claim 1 , wherein the mixing apparatus can operate a pressure ranging from about 500 to about 2000 pounds per square inch.
8 . The mixing apparatus of claim 1 , wherein the output from the mixing apparatus ranges from about 10 pounds per minute to about 50 pounds per minute.
9 . The mixing apparatus of claim 1 , wherein the two different viscosities have a ratio ranging from about 1:1 to about 3,000:1.
10 . A method of using a mixing apparatus, comprising the steps of:
(a) powering a dynamic helical mixer in a chamber via a shaft connected to a hydraulic motor;
(b) delivering two fluids of different viscosities into the chamber; and
(c) mixing the two fluids using the dynamic helical mixer.
11 . The method of claim 10 , wherein the two different viscosities have a ratio ranging from about 1:1 to about 3,000:1.
12 . A method of making a composite from two or more fluids having different viscosities, comprising the steps of:
(a) powering a dynamic helical mixer in a chamber via a shaft connected to a hydraulic motor;
(b) delivering the two or more fluids of different viscosities into the chamber; and
(c) mixing the two or more fluids using the dynamic helical mixer at a high shear rate.
13 . The method of claim 12 , wherein the two different viscosities have a ratio ranging from about 1:1 to about 3,000:1.
14 . A composite made from two fluids having different viscosities using the apparatus of claim 1 .
15 . The composite of claim 14 , wherein the two different viscosities have a ratio ranging from about 1:1 to about 3,000:1.
16 . The composite of claim 14 , wherein the two fluids are components that react after mixing to produce a polyurethane compound.
17 . A two-part polyurethane product made from the composite of claim 16 .
18 . A polyurethane product comprising at least two reactive components, wherein the viscosity ratio of the two reactive components is greater than 10:1.
19 . The polyurethane product of claim 18 , wherein the viscosity ratio is greater than 100:1.
20 . The polyurethane product of claim 18 , wherein the viscosity ratio is greater than 1000:1.