Apparatus and method for dispensing a mixture of a gas and a fluid material
US-9038921-B2 · May 26, 2015 · US
US10058825B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10058825-B2 |
| Application number | US-201514966119-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 11, 2015 |
| Priority date | Dec 12, 2014 |
| Publication date | Aug 28, 2018 |
| Grant date | Aug 28, 2018 |
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Official abstract text for this publication.
Foam dispensing systems and methods are disclosed. Such systems and methods may include a foamed material dispenser, a dynamic mixer having a gas input, a process material input, and a foamed material output. The foamed material output may be in fluid communication with the foamed material dispenser. A pump having an output may be in fluid communication with the process material input of the dynamic mixer, and a gas injection valve may be in fluid communication with the gas input of the dynamic mixer. A gas pressure regulator may be coupled between the pressurized gas supply and the gas injection valve, and a gas injection cycle timer may be operatively connected to the gas injection valve, the gas injection cycle timer causing the gas injection valve to pulse open and closed to send pulses of pressurized gas into the dynamic mixer through the gas input.
Opening claim text (preview).
What is claimed is: 1. A foam dispensing system, comprising: a foamed material dispenser; a dynamic mixer having a gas input, a process material input and a foamed material output, the foamed material output coupled in fluid communication with the foamed material dispenser; a pump having an output coupled in fluid communication with the process material input of the dynamic mixer for supplying process material to the dynamic mixer; a pressurized gas supply; a gas injection valve coupled in fluid communication with the gas input of the dynamic mixer; a gas pressure regulator coupled between the pressurized gas supply and the gas injection valve; and, a gas injection cycle timer operatively connected to the gas injection valve, the gas injection cycle timer causing the gas injection valve to pulse open and closed to send pulses of pressurized gas into the dynamic mixer through the gas input; a first check valve located proximate the process material input interposed between the pump and the dynamic mixer and configured to prevent process material in the dynamic mixer from exiting through the process material input; and a second check valve located proximate the foamed material output interposed between the dynamic mixer and the foamed material dispenser and configured to prevent foamed material from re-entering the dynamic mixer through the foamed material output after the foamed material has exited the foamed material output. 2. The system of claim 1 , further comprising: a process material pressure regulator coupled between the pump output and the process material input. 3. The system of claim 1 , wherein a rate at which the gas injection valve is pulsed open and closed is manually set using the gas injection cycle timer. 4. The system of claim 1 , further comprising: a process material flow meter coupled between the pump output and the process material input of the dynamic mixer, the flow meter further operatively coupled with the gas injection cycle timer and causing a cycle rate at which the gas injection valve is pulsed open and closed to automatically vary in accordance with a variance in the process material flow detected by the process material flow meter. 5. The system of claim 4 , further comprising: a process material pressure regulator coupled between the pump output and the process material flow meter. 6. A foam dispensing system, comprising: a foamed material dispenser; a dynamic mixer having a gas input, a process material input and a foamed material output, the foamed material output coupled in fluid communication with the foamed material dispenser; a pump having an output coupled in fluid communication with the process material input of the dynamic mixer for supplying process material to the dynamic mixer; a process material pressure regulator coupled between the pump output and the process material input; a process material flow meter coupled between the pump output and the process material input of the dynamic mixer; a pressurized gas supply; a mass flow controller coupled in fluid communication with the gas input of the dynamic mixer and controlling the mass of the pressurized gas flowing into the gas input from the pressurized gas supply; a gas pressure regulator coupled between the pressurized gas supply and the mass flow controller; a first check valve located proximate the process material input interposed between the pump and the dynamic mixer and configured to prevent process material in the dynamic mixer from exiting through the process material input; and a second check valve located proximate the foamed material output interposed between the dynamic mixer and the foamed material dispenser and configured to prevent foamed material from re-entering the dynamic mixer through the foamed material output after the foamed material has exited the foamed material output; and a process controller operatively coupled to the mass flow controller and the process material flow meter, the process controller operative to process signals from the process material flow meter indicative of a flow rate of process material to the process material input and adjust the mass flow controller to produce a desired density reduction of the process material in the dynamic mixer. 7. The system of claim 6 , further comprising: a first pressure transducer positioned downstream of the gas pressure regulator and operating to detect the pressure of the gas between the gas pressure regulator and the mass flow controller; and a second pressure transducer positioned downstream of the process material flow meter and operating to detect the pressure of the process material between the process material flow meter and the process material input of the dynamic mixer, the first and second pressure transducers further being operatively coupled to the process controller, wherein the process controller compares pressure readings taken by the first and second pressure transducers for ensuring that the gas and process material pressures are within an operational range. 8. A foam dispensing system, comprising: a foamed material dispenser; a dynamic mixer having a gas input, a process material input and a foamed material output, the foamed material output coupled in fluid communication with the foamed material dispenser; a pump having an output coupled in fluid communication with the process material input of the dynamic mixer for supplying process material to the dynamic mixer; a pressurized gas supply; a gas injection valve coupled in fluid communication with the gas input of the dynamic mixer; a gas pressure regulator coupled between the pressurized gas supply and the gas injection valve; a first check valve located proximate the process material input interposed between the pump and the dynamic mixer and configured to prevent process material in the dynamic mixer from exiting through the process material input; and a second check valve located proximate the foamed material output interposed between the dynamic mixer and the foamed material dispenser and configured to prevent foamed material from re-entering the dynamic mixer through the foamed material output after the foamed material has exited the foamed material output. 9. The system of claim 8 , further comprising: a process material pressure regulator coupled between the pump output and the process material input.
with rotatable stirrer, e.g. using an intermeshing rotor-stator system (B29B7/7423 takes precedence) · CPC title
Methodical aspects · CPC title
Operations & Transport · mapped topic
Operations & Transport · mapped topic
Operations & Transport · mapped topic
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