IP Library › Granted Patent US 10,100,960
Granted Patent B2
US 10,100,960 · App. 15/024,609 · Granted Oct 16, 2018

High-pressure-standable pipe connector and high-pressure-standable connector

Inventor: Kunio Inaba (Kanagawa, JP)
F16L33/224
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Quick Facts
Patent No.
US 10,100,960
App. No.
15/024,609
Granted
Oct 16, 2018
Kind
B2
Abstract

Provided is a pipe connector having high resistance to pullout force and having high durability. The outer diameter of a nipple ( 20 ) is substantially uniform when viewed in the lengthwise direction. The end part of a hose ( 24 ) is placed over the nipple ( 20 ). A spring ( 32 ) is wound around the outer circumference of the hose ( 24 ) such that no gap occurs between adjacent wires. The shaft part of a connector main body ( 14 ) supports the nipple ( 20 ). A fastening nut ( 26 ) has an internally threaded part ( 28 ) which meshes with an externally threaded part ( 16 ) provided on the connector main body ( 14 ), and encloses the end part of the hose ( 24 ) together with the connector main body ( 14 ). The spring ( 32 ) is compressed by tightening the threaded part of the fastening nut ( 26 ). The end part of the tightly wound spring ( 32 ) rotates and the outer diameter thereof is reduced, thereby generating high fastening force. Thereafter the fastened state is maintained by frictional force.

Claims (24)

1. A high-pressure-standable pipe connector comprising:

a nipple to be inserted in an end portion of a hose;

a spring wound around an outer circumference of the end portion of the hose so as not to leave a gap between adjacent wires;

a main body supporting the nipple on a shaft;

a fastening nut surrounding the end portion of the hose together with the main body, and formed with a threaded part to be meshed with a threaded part formed on the main body;

a pressing sleeve configured to compress the spring toward the main body with a fastening operation of the threaded part formed on the fastening nut,

wherein at least one of the main body and the pressing sleeve is formed with an opening to contact and receive an end of the spring, and a taper hole getting narrower, and

wherein a winding direction of the spring is set to be coincident with a rotational direction of the threaded part of the fastening nut.

2. The high-pressure-standable pipe connector according to claim 1 , wherein an outer diameter of an inserted part of the nipple to be inserted in the hose is uniform when viewed in a longitudinal direction.

3. The high-pressure-standable pipe connector according to claim 1 , wherein the inserted part has a larger outer diameter part and a smaller outer diameter part, a difference of a maximum outer diameter and a minimum outer diameter being equal to or less than a size of an outer diameter of the wire of the spring.

4. The high-pressure-standable pipe connector according to claim 2 , wherein a first end portion of the spring contacts the main body and a second end portion of the spring contacts the pressing nut.

5. The high-pressure-standable pipe connector according to claim 2 , wherein the taper hole has a depth to house a winding width of the spring which is increased when an inner diameter of the spring is reduced.

6. The high-pressure-standable pipe connector according to claim 1 , wherein the pressing sleeve and the fastening nut are integrated.

7. The high-pressure-standable pipe connector according to claim 1 , wherein the main body and the nipple are integrated.

8. A high-pressure-standable connector comprising:

a spring wound around an outer circumference of a cylindrical or columnar body, which is uniform when viewed in a longitudinal direction, so as not to leave a gap between adjacent wires;

a main body to be fixed to the cylindrical or columnar body;

a fastening nut connected to the main body through threaded parts which meshes with each other to compresses the spring toward the main body with a tightening force generated by a fastening operation of the threaded parts,

wherein at least one of the main body and the pressing sleeve is formed with an opening to contact and receive an end of the spring, and a taper hole getting narrower, and

wherein a winding direction of the spring is set to be coincident with a rotational direction of the threaded parts.

9. The high-pressure-standable connector according to claim 8 , wherein a first end portion of the spring contacts the main body and a second end portion of the spring contacts the pressing nut.

10. The high-pressure-standable connector according to claim 8 , wherein the taper hole has a depth to house a winding width of the spring which is increased when an inner diameter of the spring is reduced.

11. The high-pressure-standable pipe connector according to claim 3 , wherein a first end portion of the spring contacts the main body and a second end portion of the spring contacts the pressing nut.

12. The high-pressure-standable pipe connector according to claim 3 , wherein the taper hole has a depth to house a winding width of the spring which is increased when an inner diameter of the spring is reduced.

Priority Claims (1)
JP 2013-261292 · Dec 18, 2013 · national
Continuity (1)
Related Publication 20160281893A1 · Sep 29, 2016