IP Library Granted Patent US 9,707,359
Granted Patent B2
US 9,707,359 · App. 13/882,312 · Granted Jul 18, 2017

Powder spraying device

Inventor: Tomohiko Kubo (Osaka, JP)
Assignee: NIPRO CORPORATION
A61M13/00A61M11/06A61M15/0006A61M15/0008A61M2202/064A61M2205/8218
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Quick Facts
Patent No.
US 9,707,359
App. No.
13/882,312
Granted
Jul 18, 2017
Kind
B2
Abstract

The invention is configured so that pressurized gas from a pressurized gas supply source passes through a pressurized gas channel provided in a main body of a powder spraying device and is sprayed out. A powder container containing powder such as medical agents is provided on the main body. The powder within the powder container is supplied to the pressurized gas channel and is sprayed together with the pressurized gas. An eccentric rotor with a center of gravity deviated from a center of rotation is provided in the main body. When spraying the powder together with the pressurized gas, vibrations are applied to the main body and the powder container by a rotation of the eccentric rotor. The powder can be thereby mixed more evenly with the pressurized gas.

Claims (24)

1. A powder spraying device comprising:

a main body thereof;

a powder container attached to the main body that contains powder;

a pressurized gas channel provided in the main body to which the powder within the powder container is supplied;

a pressurized gas supply source that supplies pressurized gas to the pressurized gas channel, the powder within the powder container being supplied to the pressurized gas supplied to the pressurized gas channel from the pressurized gas supply source to be sprayed out together with the pressurized gas;

a support member attached to the main body, wherein

the support member is attached with the powder container,

the support member is further formed with an inlet port and an outlet port that constitute the pressurized gas channel,

the inlet port and the outlet port are communicated with each other by a channel, and

a communication channel communicated into the powder container is formed in the channel to allow the powder within the powder container to be supplied from the communication channel to the channel that communicates between the inlet port and the outlet port;

a constricted portion with a Venturi effect formed in the channel that communicates between the inlet port and the outlet port,

wherein the communication channel is communicated with the constricted portion; and

an eccentric rotor with a center of gravity deviated from a center of rotation is provided in the main body in a rotatable manner, and a rotation drive means is provided that rotates the eccentric rotor to apply vibrations to the main body and the powder container by a rotation of the eccentric rotor when the powder is sprayed out together with the pressurized gas.

2. The powder spraying device according to claim 1 , wherein an introduction channel is forked out from the channel on an upstream side of the constricted portion to communicate with an inside of the powder container so as to introduce part of the pressurized gas into the powder container.

3. The powder spraying device according to claim 1 , wherein the inlet port and the outlet port are communicated with an inside of the powder container via an inlet channel and an outlet channel, respectively, and the pressurized gas from the inlet port supplied into the powder container via the inlet channel flows to the outlet port via the outlet channel together with the powder.

4. A powder spraying device comprising:

a main body thereof;

a powder container attached to the main body that contains powder;

a pressurized gas channel provided in the main body to which the powder within the powder container is supplied;

a pressurized gas supply source that supplies pressurized gas to the pressurized gas channel, the powder within the powder container being supplied to the pressurized gas supplied to the pressurized gas channel from the pressurized gas supply source to be sprayed out together with the pressurized gas;

an eccentric rotor with a center of gravity deviated from a center of rotation is provided in the main body in a rotatable manner, and a rotation drive means is provided that rotates the eccentric rotor to apply vibrations to the main body and the powder container by a rotation of the eccentric rotor when the powder is sprayed out together with the pressurized gas; and

fins formed along an outer periphery of the eccentric rotor,

wherein the rotation drive means includes an additional pressurized gas channel that rotates the eccentric rotor by spraying the pressurized gas onto the fins of the eccentric rotor.

5. The powder spraying device according to claim 4 , further comprising a switching valve provided on the main body, wherein the pressurized gas channel to which the powder within the powder container is supplied and the additional pressurized gas channel that rotates the eccentric rotor are communicated with the pressurized gas supply source via the switching valve.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2013
From: KUBO, TOMOHIKO
To: NIPRO CORPORATION
Reel/Frame 030314/0216 →
Priority Claims (1)
JP 2011-006074 · Jan 14, 2011 · national
Continuity (1)
Related Publication 20130218072A1 · Aug 22, 2013