IP Library › Granted Patent US 10,722,914
Granted Patent B1
US 10,722,914 · App. 16/144,086 · Granted Jul 28, 2020

Material dispense tips and methods for forming the same

Inventor: Jeffrey P. Fugere (Hampton Falls, NH)
Assignee: DL Technology, LLC.
B05C11/1034B05B1/02B05B7/0466B05B15/65B05C17/00503B05C17/00516B29C65/485B29K2063/00B29K2881/00B29L2031/7544
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Quick Facts
Patent No.
US 10,722,914
App. No.
16/144,086
Granted
Jul 28, 2020
Kind
B1
Abstract

A dispense tip constructed and arranged to communicate with a material dispensing pump comprises an elongated neck and a molded base having a first portion and a second portion opposite the first portion. The neck extends from the first portion of the base. The second portion is constructed and arranged to abut an outlet surface of the pump. An outermost region of the second portion of the base includes a compressible fluid-tight surface that compliantly conforms to the outlet surface when the dispense tip is mounted to the pump.

Claims (24)

1. A dispense tip constructed and arranged to communicate with a material dispensing pump, comprising:

an elongated neck; and

a molded base, the neck extending from the base, an outermost region of the base including a compressible fluid-tight surface that compliantly conforms to an outlet surface of the pump when the dispense tip is mounted to the pump, wherein the compressible fluid-tight surface is at an interface region between the base and the pump to reduce or eliminate leaking of dispensing material from the interface region or leaching of solvents from the material during a dispensing operation that would otherwise occur.

2. The dispense tip of claim 1 , further comprising a retaining device that applies a force to hold an interfacing surface of the compressible fluid-tight surface against an interfacing surface of the pump.

3. The dispense tip of claim 2 , wherein the retaining device holds the dispense tip against the outlet surface of the pump, and applies a force against the base that is sufficient to compress the base against the outlet surface such that the outermost region of the base of the base is deformable relative to the outlet surface to form a fluid-tight seal at the interface region.

4. The dispense tip of claim 1 , wherein the interface region between the base and the pump includes a threaded interface.

5. The dispense tip of claim 4 , wherein the base includes an inlet that includes a Luer™ fitting that communicates with an outlet of the pump.

6. The dispense tip of claim 1 , wherein the fluid-tight interface is formed regardless of the presence of imperfections at the outlet surface of the pump or the molded base.

7. The dispense tip of claim 6 , wherein the imperfections include a combination of protrusions and voids at the fluid-tight surface of the base.

8. The dispense tip of claim 1 , wherein the dispense tip communicates with a fixed-z dispensing pump, wherein the base is constructed and arranged for compatibility with the fixed-z dispensing pump, and longitudinal positions of the dispense tip and pump are fixed relative to each other.

9. The dispense tip of claim 1 , wherein the dispense tip communicates with floating-z dispensing pump, wherein the base is constructed and arranged for compatibility with the floating-z dispensing pump, and wherein longitudinal positions of the dispense tip and pump translate in a longitudinal direction relative to each other.

10. A material dispensing system, comprising:

a material dispensing pump comprising an inlet that receives a source of material and an outlet, wherein the material dispensing pump outputs the material from the inlet to the outlet; and

a dispense tip compliantly conforming to a surface of the outlet of the material dispensing pump, the dispense tip comprising:

an elongated neck; and

a molded base, the neck extending from the base, an outermost region of the base including a compressible fluid-tight surface that compliantly conforms to an outlet surface of the pump when the dispense tip is mounted to the pump, wherein the compressible fluid-tight surface is at an interface region between the base and the pump to reduce or eliminate leaking of dispensing material from the interface region or leaching of solvents from the material during a dispensing operation that would otherwise occur.

11. The material dispensing system of claim 10 , further comprising a retaining device that applies a force to hold an interfacing surface of the compressible fluid-tight surface against an interfacing surface of the pump.

12. The material dispensing system of claim 11 , wherein the retaining device holds the dispense tip against the outlet surface of the pump, and applies a force against the base that is sufficient to compress the base against the outlet surface such that the outermost region of the base of the base is deformable relative to the outlet surface to form a fluid-tight seal at the interface region.

13. The material dispensing system of claim 10 , wherein the interface region between the base and the pump includes a threaded interface.

14. The material dispensing system of claim 13 , wherein the base includes an inlet that includes a Luer™ fitting that communicates with an outlet of the pump.

15. The material dispensing system of claim 10 , wherein the fluid-tight interface is formed regardless of the presence of imperfections at the outlet surface of the pump or the molded base.

16. The material dispensing system of claim 15 , wherein the imperfections include a combination of protrusions and voids at the fluid-tight surface of the base.

17. The material dispensing system of claim 10 , wherein the dispense tip communicates with a fixed-z dispensing pump, wherein the base is constructed and arranged for compatibility with the fixed-z dispensing pump, and longitudinal positions of the dispense tip and pump are fixed relative to each other.

18. The material dispensing system of claim 10 , wherein the dispense tip communicates with floating-z dispensing pump, wherein the base is constructed and arranged for compatibility with the floating-z dispensing pump, and wherein longitudinal positions of the dispense tip and pump translate in a longitudinal direction relative to each other.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2018
From: FUGERE, JEFFREY P.
To: DL TECHNOLOGY, LLC.
Reel/Frame 046995/0291 →
Continuity (5)
Continuation 15042388 · Feb 12, 2016
Continuation 14287714 · May 27, 2014
Continuation 12647911 · Dec 28, 2009
Provisional Application 61251497 · Oct 14, 2009
Provisional Application 61174742 · May 1, 2009
Cited By (2)
US 12,303,929 US 12,338,821