Spinner assembly for applying lining materials in pipes
A spinner apparatus for applying lining material to the interior of a pipe, the spinner apparatus having a cylindrical material accelerator coaxially positioned about a distribution manifold, the distribution manifold having a plurality of equally spaced, radially oriented slots extending from an axial chamber that receives lining material, wherein lining material is extruded through the slots onto the interior of the material accelerator and slung onto the pipe interior in an annular pattern. Movement of the spinner apparatus along the pipe produces a tubular lining member.
1. A spinner assembly adapted to expel lining material onto the interior surface of a tubular member, said spinner assembly comprising:
a rotating material accelerator comprising a tubular body having a plurality of apertures distributed circumferentially and axially on said tubular body;
a static distribution manifold disposed coaxially and concentrically within said rotating material accelerator, said static distribution manifold comprising a central axis, an inlet port disposed within a proximal tubular end, an axial chamber in communication with said inlet port; a plurality of radially extending slots in communication with said axial chamber and comprising slot openings, said plurality of radially extending slots being equally spaced circumferentially and adapted to extrude lining material through said slot openings onto the interior of said rotating material accelerator, said plurality of radially extending slots extending radially outward from said axial chamber such that said slot openings are disposed beyond said proximal tubular end in the radial direction; and
wherein said static distribution manifold is disposed within said rotating material accelerator such that the axial distribution of said plurality of apertures of said tubular body of said rotating material accelerator is such that said plurality of apertures is axially coextensive with and positioned radially outward from said slot openings.
2. The spinner assembly of claim 1 , wherein said plurality of radially extending slots are aligned substantially parallel to said central axis.
3. The spinner assembly of claim 2 , wherein said slot openings are aligned substantially parallel to said central axis.
4. The spinner assembly of claim 2 , each of said slot openings comprising a maximum longitudinal linear dimension, and wherein said maximum longitudinal linear dimension of each of said slot openings is aligned substantially parallel to said central axis.
5. The spinner assembly of claim 2 , said slot openings each having a cross-sectional area and said inlet port having a minimum cross-sectional area, wherein the minimum cross-sectional area of said inlet port is substantially equal to the total combined cross-sectional of said slot openings.
6. The spinner assembly of claim 5 , said inlet port further comprising a reducing transition structure.
7. The spinner assembly of claim 1 , said static distribution manifold further comprising a central axis and each of said plurality of radially extending slots further comprising a maximum longitudinal linear dimension, and wherein said maximum longitudinal linear dimension of each of said slots is aligned substantially parallel to said central axis.
8. The spinner assembly of claim 7 , said slot openings each having a cross-sectional area and said inlet port having a minimum cross-sectional area, wherein the minimum cross-sectional area of said inlet port is substantially equal to the total combined cross-sectional of said slot openings.
9. The spinner assembly of claim 8 , said inlet port further comprising a reducing transition structure.
10. The spinner assembly of claim 1 , said slot openings each having a cross-sectional area and said inlet port having a minimum cross-sectional area, wherein the minimum cross-sectional area of said inlet port is substantially equal to the total combined cross-sectional of said slot openings.
11. The spinner assembly of claim 10 , said inlet port further comprising a reducing transition structure.
12. The spinner assembly of claim 1 , said inlet port further comprising a reducing transition structure.
13. The spinner assembly of claim 1 , said static distribution manifold further comprising a proximal flange wall and a distal flange wall, wherein said plurality of radially extending slots are positioned between said proximal flange wall and said distal flange wall, and wherein said proximal flange wall and said distal flange wall extend beyond said proximal tubular end in the radial direction.
14. The spinner assembly of claim 13 , wherein said slot openings are positioned between said proximal flange wall and said distal flange wall.
15. A spinner assembly adapted to expel lining material onto the interior surface of a tubular member, said spinner assembly comprising:
a rotating material accelerator comprising a tubular body having a plurality of apertures distributed circumferentially and axially on said tubular body;
a static distribution manifold disposed coaxially and concentrically within said rotating material accelerator, said static distribution manifold comprising a plurality of radially extending slots, said plurality of radially extending slots being equally spaced circumferentially and adapted to extrude lining material onto the interior of said rotating material accelerator;
said static distribution manifold further comprising a central axis and slot openings, and wherein each of said slot openings comprise a maximum longitudinal linear dimension and wherein said maximum longitudinal linear dimension of each of said slot openings is aligned substantially parallel to said central axis;
said static distribution manifold further comprising an inlet port disposed within a proximal tubular end, an axial chamber in communication with said plurality of radially extending slots and an inlet port in communication with said axial chamber, said inlet port adapted to receive lining material;
said slot openings each having a cross-sectional area and said inlet port having a minimum cross-sectional area, wherein the minimum cross-sectional area of said inlet port is substantially equal to the total combined cross-sectional of said slot openings;
said plurality of radially extending slots extending radially outward from said axial chamber such that said slot openings are disposed beyond said proximal tubular end in the radial direction.
16. The spinner assembly of claim 15 , said inlet port further comprising a reducing transition structure.
17. The spinner assembly of claim 15 , wherein the sizing of said slot openings and the sizing of said inlet port is such that the flow of lining material into said inlet port is equal to the combined flow of lining material from all of said slot openings.
18. The spinner assembly of claim 15 , said static distribution manifold further comprising a proximal flange wall and a distal flange wall, wherein said plurality of radially extending slots and said slot openings are positioned between said proximal flange wall and said distal flange wall, and wherein said proximal flange wall and said distal flange wall extend beyond said proximal tubular end in the radial direction.
19. The spinner assembly of claim 15 , wherein said static distribution manifold is disposed within said rotating material accelerator such that the axial distribution of said plurality of apertures of said tubular body of said rotating material accelerator is such that said plurality of apertures is axially coextensive with and positioned radially outward from said slot openings.
20. The spinner assembly of claim 15 , wherein said slot openings are aligned substantially parallel to said central axis and wherein said plurality of apertures of said tubular body of said rotating material accelerator are positioned adjacent to said slot openings.