Modular molding
A tubing including an overmold is connected to a fitting by welding the overmold to the fitting. Methods for doing the same are also provided. Also provided are methods for forming an overmold on a tubing or on a tubing and fitting assembly.
1. A method of attaching a tubing to a fitting comprising:
forming an overmold over an end of the tubing, said overmold having a first section surrounding an end portion of said tubing and a second section extending from said first section and extending beyond said end portion of said tubing in a direction opposite said tubing; and
welding said second section of the overmold to an end of the fitting allowing for fluid flow through said tubing and fitting, wherein said second section defines an inner surface for contacting said fluid flow;
forming another overmold over another tubing end; and
welding said another overmold to another end of said fitting allowing for flow through said tubing, said fitting and said another tubing.
2. The method of claim 1 , wherein the overmold is made from at least one of a thermoplastic elastomer or a polypropylene, the fitting is made from at least one of a polypropylene or polyethylene, and the tubing is made from a thermoplastic elastomer.
3. The method of claim 1 , wherein the overmold first section has an inner surface having a first diameter, and wherein the inner surface defined by the overmold second section has a second diameter proximate to the overmold first section smaller than the first diameter.
4. The method of claim 3 , wherein the tubing comprises an inner surface having a diameter for contacting said fluid flow, and wherein said tubing inner surface diameter is equal to the second diameter.
5. A method of attaching a tubing to a fitting comprising:
forming an overmold over an end of the tubing, said overmold having a first section surrounding an end portion of said tubing and a second section extending from said first section and extending beyond said end portion of said tubing in a direction opposite said tubing; and
welding said second section of the overmold to an end of the fitting allowing for fluid flow through said tubing and fitting, wherein said second section defines an inner surface for contacting said fluid flow, wherein said fitting end comprises a fitting distal-most end surface and wherein said second section comprises a distal-most second section end surface, wherein welding comprises axially abutting said distal-most second section end surface to said fitting distal-most end surface.
6. The method of claim 5 , wherein forming said overmold comprises forming said overmold second section inner surface to have a first portion having a first diameter and a second portion extending from the first portion to the second section end surface having a second diameter greater than the first diameter.
7. The method of claim 6 , wherein said fitting comprises an inner surface for contacting said fluid flow, said inner surface having a first portion having a first diameter, and a second portion extending from the fitting inner surface first portion to the fitting end surface and having a second diameter greater than the fitting inner surface first diameter.
8. The method of claim 7 , wherein welding comprises filling at least a portion of said second portion of said overmold and said fitting with molten material molten during said welding.
9. The method of claim 7 , wherein the tubing comprises an inner surface having a diameter for contacting said fluid flow, wherein said tubing inner surface diameter is the same as the overmold second section inner surface first diameter and said fitting inner surface first diameter.
10. The method of claim 5 , wherein the overmold is made from at least one of a thermoplastic elastomer or a polypropylene, the fitting is made from at least one of a polypropylene or polyethylene, and the tubing is made from a thermoplastic elastomer.
11. The method of claim 5 , wherein the first section comprises an inner surface having a first diameter and the second section comprises an inner surface having a second diameter smaller than the first diameter.
12. The method of claim 11 , wherein the tubing comprises an inner surface having a diameter for contacting said fluid flow, and wherein said tubing inner surface diameter is equal to the second diameter.
13. A method of attaching a tubing to a fitting comprising:
forming an overmold over an end of the tubing, said overmold having a first section surrounding an end portion of said tubing and a second section extending from said first section and extending beyond said end portion of said tubing in a direction opposite said tubing; and
welding said second section of the overmold to an end of the fitting allowing for fluid flow through said tubing and fitting, wherein said second section defines an inner surface for contacting said fluid flow, wherein the fitting end comprises a recess and wherein the overmold comprises a projection extending transversely from an annular surface of the overmold, wherein the method comprises inserting the projection into the recess prior to welding.
14. The method of claim 13 , wherein the recess comprises a first shallower portion and a second deeper portion extending radially outward from the first shallower portion, wherein inserting the projection, comprises inserting the projection to abut the first shallower portion.
15. The method of claim 13 , wherein the overmold is made from at least one of a thermoplastic elastomer or a polypropylene, the fitting is made from at least one of a polypropylene or polyethylene, and the tubing is made from a thermoplastic elastomer.
16. The method of claim 13 , wherein the overmold first section has an inner surface having a first diameter, and wherein the inner surface defined by the overmold second section has a second diameter proximate to the first section smaller than the overmold first diameter.
17. The method of claim 16 , wherein the tubing comprises an inner surface having a diameter for contacting said fluid flow, and wherein said tubing inner surface diameter is equal to the second diameter.
18. A tubing assembly comprising:
a first tubing comprising a first overmold formed over an end of the first tubing;
a fitting comprising a first end, wherein the first overmold is welded to the first end allowing for a fluid flow through said tubing to said fitting, wherein said first overmold comprises a first section surrounding an end portion of said tubing and a second section extending from said first section and extending beyond said end portion of said tubing in a direction opposite said tubing, and wherein said second section is welded to said first end of the fitting, and wherein said second section defines an inner surface for contacting said fluid flow; and
a second tubing comprising a second overmold formed over an end of the second tubing, wherein said fitting comprises a second end, wherein said second overmold is welded to said second end allowing for a flow through said tubing, said fitting and said second tubing.
19. The assembly of claim 18 , wherein an axial recess is defined in said first end and wherein the first overmold comprises an axial projection received in said recess.
20. The assembly of claim 18 , wherein the fitting is part of, or is coupled to, an encapsulated filter for providing fluid flow to such filter.
21. The assembly of claim 18 , wherein the fitting is part of, or is coupled to, a component of a fluid transfer assembly selected from the group of components consisting essentially of filters, sensing components, pressure gauges, and biocontainers.
22. The tubing assembly of claim 18 , wherein the overmold is made from at least one of a thermoplastic elastomer or a polypropylene, the fitting is made from at least one of a polypropylene or polyethylene, and the tubing is made from a thermoplastic elastomer.
23. A tubing assembly comprising:
a first tubing comprising a first overmold formed over an end of the first tubing; and
a fitting comprising a first end, wherein the first overmold is welded to the first end allowing for a fluid flow through said tubing to said fitting, wherein said first overmold comprises a first section surrounding an end portion of said tubing and a second section extending from said first section and extending beyond said end portion of said tubing in a direction opposite said tubing, and wherein said second section is welded to said first end of the fitting, and wherein said second section defines an inner surface for contacting said fluid flow, wherein an axial recess is defined in said first end and wherein the first overmold comprises an axial projection received in said recess, wherein the projection extends transversely from an annular surface surrounding the projection and wherein the recess comprises a first shallower portion and second deeper portion radially outward from the first shallower portion, and wherein the projection abuts the first shallower portion.
24. The assembly of claim 23 , wherein the first end of the fitting comprises an annular portion radially outward of the recess, wherein said recess is defined within said annular portion, wherein when said projection is abutting said recess first shallower portion, and said fitting first end annular portion is spaced apart from said annular surface of said overmold.
25. The assembly of claim 23 , wherein the fitting is part of, or is coupled to, an encapsulated filter for providing fluid flow to such filter.
26. The assembly of claim 23 , wherein the fitting is part of, or is coupled to, a component of a fluid transfer assembly selected from the group of components consisting essentially of filters, sensing components, pressure gauges, and biocontainers.
27. The tubing assembly of claim 23 , wherein the overmold is made from at least one of a thermoplastic elastomer or a polypropylene, the fitting is made from at least one of a polypropylene or polyethylene, and the tubing is made from a thermoplastic elastomer.
28. The tubing assembly of claim 23 , wherein the overmold first section has an inner surface having a first diameter, and wherein the inner surface defined by overmold the second section has a second diameter proximate to the overmold first section smaller than the first diameter.
29. The tubing assembly of claim 28 , wherein the tubing comprises an inner surface having a diameter for contacting said fluid flow, and wherein said tubing inner surface diameter is equal to the second diameter.
30. A method of attaching a tubing to a fitting comprising:
forming an overmold over an end of the tubing, said overmold having a first section surrounding an end portion of said tubing and a second section extending from said first section and extending beyond said end portion of said tubing in a direction opposite said tubing, said second section having an annular end surface; and
welding only said second section annular end surface of the overmold to an annular end surface of the fitting allowing for fluid flow through said tubing and fitting, wherein said second section defines an inner surface for contacting said fluid flow, wherein a tubing does not penetrate said fitting.
31. A tubing assembly comprising:
a tubing comprising a first overmold formed over an end of the first tubing, said overmold having an annular end surface; and
a fitting comprising a first end having an annular surface, wherein only the first overmold annular end surface is welded to the fitting first end annular surface allowing for a fluid flow through said tubing to said fitting, wherein said first overmold comprises a first section surrounding an end portion of said tubing and a second section extending from said first section and extending beyond said end portion of said tubing in a direction opposite said tubing, and wherein said second section is welded to said first end annular surface of the fitting, and wherein said second section defines an inner surface for contacting said fluid flow, wherein a tubing does not penetrate said fitting.