IP Library › Granted Patent US 10,010,893
Granted Patent B2
US 10,010,893 · App. 14/915,968 · Granted Jul 3, 2018

Nozzle and liquid material discharge device provided with said nozzle

Inventor: Kazumasa Ikushima (Mitaka, JP)
Assignee: MUSASHI ENGINEERING, INC.
B05B1/28B05B1/083B05B15/50B05C11/1034B05C5/02
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Quick Facts
Patent No.
US 10,010,893
App. No.
14/915,968
Granted
Jul 3, 2018
Kind
B2
Abstract

A nozzle capable of removing a surplus liquid material, which is adhered to outer surfaces of the nozzle and which affects a discharge operation, without undergoing a special process, and a liquid material discharge device provided with the nozzle. The nozzle ( 1 ) includes a body ( 2 ) having a liquid inflow space, and a discharge tube ( 4 ) communicating with the liquid inflow space and extending downwards from the body ( 2 ). A liquid removing member ( 16 ) is disposed at a lower end of the body ( 2 ) in a state laterally surrounding the discharge tube ( 4 ), and the liquid removing member ( 16 ) includes a groove-like space ( 15 ) that is formed between adjacent to of plural surrounding surfaces ( 10 ), and that generates capillary force acting in a direction laterally away from the discharge tube ( 4 ).

Claims (37)

1. A nozzle for discharging a liquid material, the nozzle comprising a body having a liquid inflow space, and a discharge tube communicating with the liquid inflow space and extending downwards from the body,

wherein a liquid removing member is disposed at a lower end of the body in a state laterally surrounding the discharge tube,

the liquid removing member includes a plurality of surrounding surfaces that surround a lateral surface of the discharge tube, and a groove that is formed adjacent to the plurality of surrounding surfaces, and that generates capillary force acting in a direction laterally away from the discharge tube and holds the liquid material removed from outer surfaces of the discharge tube,

the groove is constituted by a pair of guide surfaces that are disposed in an opposing relation and a flat outer surface of the body which is orthogonal to the pair of guide surfaces and formed to extend perpendicular to a body axis passing a center of the discharge tube, a distance between the pair of guide surfaces being larger than an outer diameter of the discharge tube,

the discharge tube is cylindrical and has an annular flat distal end surface, and

the surrounding surfaces generate capillary force acting on the liquid, which climbs along the lateral surface of the discharge tube, in a direction towards a base of the discharge tube in cooperation with the lateral surface of the discharge tube.

2. The nozzle for discharging the liquid material according to claim 1 , wherein the distance between the pair of guide surfaces is not more than 3 times the outer diameter of the discharge tube.

3. The nozzle for discharging the liquid material according to claim 2 , wherein the nozzle includes two grooves that are disposed to lie on one straight line with the discharge tube positioned at a middle therebetween.

4. The nozzle for discharging the liquid material according to claim 2 , wherein a length of the discharge tube is larger than a height of each of the plurality of surrounding surfaces and the guide surfaces.

5. A liquid material discharge device of air type comprising:

the nozzle for discharging the liquid material according to claim 4 ;

a syringe storing the liquid material and having a distal end to which the nozzle for discharging the liquid material is fitted, and

an air supply tube through which pressurized gas is supplied to the syringe,

wherein the length of the discharge tube is 1.2 to 1.5 times the height of the liquid removing member.

6. The nozzle for discharging the liquid material according to claim 1 , wherein a distance between each of the plurality of surrounding surfaces and the lateral surface of the discharge tube is 1 to 3 times the outer diameter of the discharge tube.

7. The nozzle for discharging the liquid material according to claim 6 , wherein a length of the discharge tube is several times an inner diameter of the discharge tube, and the capillary force acting in the direction towards the base of the discharge tube is generated until the liquid climbing along the lateral surface of the discharge tube reaches the base of the discharge tube.

8. The nozzle for discharging the liquid material according to claim 7 , wherein the distance between the pair of guide surfaces and the distance between each of the plurality of surrounding surfaces and the lateral surface of the discharge tube are each 2000 μm or less.

9. The nozzle for discharging the liquid material according to claim 6 , wherein the distance between the pair of guide surfaces and the distance between each of the plurality of surrounding surfaces and the lateral surface of the discharge tube are each 2000 μm or less.

10. The nozzle for discharging the liquid material according to claim 1 , wherein a space defined by the plurality of surrounding surfaces and surrounding the lateral surface of the discharge tube is a cylindrical space.

11. The nozzle for discharging the liquid material according to claim 1 , wherein the groove is constituted as a plurality of grooves.

12. The nozzle for discharging the liquid material according to claim 11 , wherein the plurality of grooves spaces are arranged in a state radially extending from the discharge tube at evenly distributed intervals therebetween.

13. The nozzle for discharging the liquid material according to claim 1 , wherein a length of the discharge tube is larger than a height of each of the plurality of surrounding surfaces and the guide surfaces.

14. A liquid material discharge device of air type comprising:

the nozzle for discharging the liquid material according to claim 13 ;

a syringe storing the liquid material and having a distal end to which the nozzle for discharging the liquid material is fitted, and

an air supply tube through which pressurized gas is supplied to the syringe,

wherein the length of the discharge tube is 1.2 to 1.5 times the height of the liquid removing member.

15. A liquid material discharge device comprising the nozzle for discharging the liquid material according to claim 1 , and a plunger for applying inertial force to the liquid material.

16. The liquid material discharge device according to claim 15 , further comprising a vacuum mechanism and a suction device,

wherein the vacuum mechanism includes a block-like member provided with a through-hole having an inner side opening positioned near the liquid removing member, and

an outer side opening of the through-hole in the block-like member is connected to the suction device.

17. The liquid material discharge device according to claim 16 , further comprising a liquid amount detection mechanism and a liquid amount detection device,

wherein the liquid amount detection mechanism includes a sensor inserted in a through-hole of the block-like member,

the sensor being connected to the liquid amount detection device.

18. The liquid material discharge device according to claim 15 , further comprising a liquid amount detection mechanism and a liquid amount detection device,

wherein the liquid amount detection mechanism includes a block-like member that surrounds the nozzle for discharging the liquid material, a sensor hole formed in the block-like member and having an opening positioned near the liquid removing member, and a sensor inserted in the sensor hole,

the sensor being connected to the liquid amount detection device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2016
From: IKUSHIMA, KAZUMASA
To: MUSASHI ENGINEERING, INC.
Reel/Frame 037871/0079 →
Priority Claims (1)
JP 2013-185828 · Sep 9, 2013 · national
Continuity (1)
Related Publication 20160199868A1 · Jul 14, 2016
Cited By (1)
US 12,643,703