IP Library › Granted Patent US 11,446,696
Granted Patent B2
US 11,446,696 · App. 16/964,412 · Granted Sep 20, 2022

Discharge device and liquid supply method

Inventors: Ryota Suzuki (Tokyo, JP); Naoya Saito (Tokyo, JP)
Assignee: THREEBOND CO., LTD.
B05C5/02B05C11/1026
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,446,696
App. No.
16/964,412
Granted
Sep 20, 2022
Kind
B2
Abstract

Technical Problem Provide is a discharge device capable of easily controlling an operation of a plunger at the time of supplying a viscous material to a cylinder and a liquid supply method capable of forming a desired overlap portion. Solution to Problem The discharge device 10 includes the supply valve 40 which controls the supply of the viscous material M to the cylinder 30 , the plunger 50 which applies a pressure to the viscous material supplied to the cylinder, the ball screw 60 which is movable in the same direction as the back-and-forth direction of the plunger, and the motor 120 which is connected to the ball screw through the power transmission mechanism 110 , wherein the plunger and the ball screw are not connected.

Claims (37)

1. A discharge device which discharges a viscous material from a nozzle communicating with a cylinder by pressurizing the viscous material supplied to the cylinder, the device comprising:

a supply valve which controls a supply of the viscous material to the cylinder;

a plunger which applies a pressure to the viscous material supplied to the cylinder;

a ball screw which is movable in a same direction as a back-and-forth direction of the plunger;

a motor which is connected to the ball screw through a power transmission mechanism; and

a pressure sensor which is arranged in the cylinder and detects a pressure of the viscous material supplied into the cylinder,

wherein the discharge device performs correcting an internal pressure by raising the ball screw, while the supply valve is closed, to drop the internal pressure of the cylinder to a desired value after the viscous material is supplied to the cylinder,

the pressure sensor monitors the internal pressure of the cylinder after the discharge device performs correcting the internal pressure, and

the plunger and the ball screw are not connected.

2. The discharge device according to claim 1 , wherein

the supply valve opens to supply the viscous material to the cylinder in a state where the ball screw starts moving toward a predetermined position.

3. The discharge device according to claim 2 , wherein

the movement of the ball screw and the supply of the viscous material are performed in parallel.

4. The discharge device according to claim 1 , comprising:

a photoelectric sensor which detects whether or not the viscous material is filled in the cylinder to a maximum extent.

5. The discharge device according to claim 1 , comprising:

a forward position detection sensor which detects whether or not the ball screw reaches to a forward position which is positioned in the plunger side by a predetermined distance; and

a backward position detection sensor which detects whether or not the ball screw reaches to a back ward position which is positioned by a predetermined distance from the plunger,

wherein the backward position detection sensor detects a position of an upper end of the ball screw for detecting a distance where the ball screw retreats with respect to the plunger,

the discharge device confirms whether or not a lower end of the ball screw reaches a predetermined position at which the filling amount of the viscous material in the cylinder is maximum by detecting the position of the upper end of the ball screw, and

the supply valve opens to supply the viscous material to the cylinder when the lower end of the ball screw reaches the predetermined position.

6. The discharge device according to claim 1 , comprising:

a discharge valve which controls the discharge of the viscous material through the nozzle.

7. A liquid supply method for supplying a viscous material to a discharge device for discharging the viscous material, wherein

the discharge device includes:

a supply valve which controls a supply of the viscous material to a cylinder;

a plunger which applies a pressure to the viscous material supplied to the cylinder;

a ball screw which is movable in a same direction as a back-and-forth direction of the plunger;

a motor which is connected to the ball screw through a power transmission mechanism; and

a pressure sensor which is arranged in the cylinder and detects a pressure of the viscous material supplied into the cylinder,

the plunger and the ball screw are not connected, and

the method comprises:

supplying the viscous material by opening the supply valve in a state where the ball screw starts moving;

correcting an internal pressure by raising the ball screw, while the supply valve is closed, to drop the internal pressure of the cylinder to a desired value after the viscous material is supplied to the cylinder; and

monitoring the internal pressure of the cylinder after correcting the internal pressure.

8. The liquid supply method according to claim 7 , comprising:

detecting whether or not the viscous material is filled in the cylinder to a maximum extent by a photoelectric sensor included in the discharge device.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE RECEIVING PARTY'S ADDRESS PREVIOUSLY RECORDED AT REEL: 053296 FRAME: 0980. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Sep 1, 2020
From: SUZUKI, RYOTA; SAITO, NAOYA
To: THREEBOND CO., LTD.
Reel/Frame 053654/0601 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2020
From: SUZUKI, RYOTA; SAITO, NAOYA
To: THREEBOND CO., LTD.
Reel/Frame 053296/0980 →
Priority Claims (1)
JP JP2018-017331 · Feb 2, 2018 · national
Continuity (1)
Related Publication 20210046502A1 · Feb 18, 2021
Cited By (2)
US 12,440,865 US 12,734,547