IP Library Granted Patent US 10,843,203
Granted Patent B2
US 10,843,203 · App. 15/459,793 · Granted Nov 24, 2020

Viscous food product grinding and dispensing system

Inventors: Scott Johnson (Little Rock, AR); Shaji Kulangara Veettil (Little Rock, AR); John Calow (North Little Rock, AR); Vaishakh Rajan (Bangalore, IN); John Clayton Odom (Benton, AR); Ronald Brundick (Roland, AR); Ashok Dyavarasegowda (Bangalore, IN); Pranav Bhat (Bangalore, IN)
Assignee: Trade Fixtures, LLC
B02C19/22A23N15/00B02C7/06B02C7/175B02C18/14B02C18/143B02C23/02B65D47/0823B65D83/06F16K15/147
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Quick Facts
Patent No.
US 10,843,203
App. No.
15/459,793
Granted
Nov 24, 2020
Kind
B2
Abstract

A viscous food product dispensing system having a transport section for receiving a particulate food product from a bin, an auger for processing and conveying the received particulate food product from the transport section into an outlet adapter via one or more flutes, a milling device housed in the outlet adapter, and a discharge nozzle in the outlet adapter that pinches off the viscous food product created by the milling device. The auger has a unique design that allows it to engage and break whole nuts.

Claims (92)

1. A viscous food product dispensing system comprising:

a transport section having a sleeve and a chute inlet for receiving a particulate food product;

the particulate food product including at least one whole nut;

an auger for processing and conveying the received particulate food product from the transport section into an outlet adapter;

the auger being disposed in a portion of the sleeve;

an interior surface of the sleeve having one or more longitudinal recesses disposed along a portion thereof;

the auger having a right-angled over-center cutout aligned with the chute inlet;

the right-angled over-center cutout adapted to engage and break the at least one whole nut thereby creating a processed nut, the processed nut forming at least a part of the particulate food product;

the outlet adapter comprising:

a discharge cover enclosing a milling device;

the milling device being adapted to further process the particulate food product into a pressurized flow of viscous food paste that is discharged through a nozzle, the nozzle being disposed through the discharge cover;

the milling device further comprising:

opposing grinding members;

the opposing grinding members being axially adjustable, relative to each other, so as to grind the particulate food product to varying textures;

the auger and milling device being mechanically driven by an electric motor;

the nozzle being covered by a spout whereby the particulate food product is environmentally protected;

the discharge cover having an annular sidewall portion;

the nozzle coupled at a proximal end to an aperture in the annular sidewall portion of the discharge cover;

the nozzle including a mounting flange at a proximal end thereof configured to engage a curved interior surface of the annular sidewall portion;

the electric motor comprising a variable frequency driven (VFD) motor;

the VFD motor being controllable according to customizable torque/speed profiles;

a valve formed in the nozzle, the valve including an opening at a proximal end thereof configured to receive the viscous food paste;

the valve including a pair of opposing flap walls joined by a pair of opposing side walls, the flap walls and side walls together forming a downwardly-tapered interior passage;

the valve including a sheath portion and a flexible portion,

the sheath portion being located on the side walls and on an upper portion of the flap walls;

an outlet disposed in the flexible portion of the valve, the outlet being configured to flex to an open position under force from the pressurized flow of viscous food paste as it flows through the interior passage;

the outlet being configured to return to a closed position upon a reduction of the pressurized flow of viscous food paste;

the outlet, when subjected to a product processing pressure exceeding a valve threshold pressure, expands from a closed state to an enlarged open state, and returns to the closed state when the processing pressure is below the valve threshold pressure.

2. A viscous food product dispensing system comprising:

a transport section having a sleeve and a chute inlet for receiving a particulate food product;

the particulate food product including at least one whole nut;

an auger for processing and conveying the received particulate food product from the transport section into an outlet adapter through the sleeve, the auger being mechanically driven by an electric motor;

the outlet adapter comprising:

a discharge cover enclosing a milling device, the milling device being mechanically driven by the electric motor; and

a nozzle being disposed through the discharge covert, the nozzle coupled at a proximal end to an aperture in the discharge cover, and the nozzle including a curved mounting flange at a proximal end thereof configured to engage an interior surface of the discharge cover.

3. The system of claim 2 further comprising:

the auger having a right-angled over-center cutout aligned with the chute inlet;

the right-angled over-center cutout adapted to engage and break the at least one whole nut.

4. The system of claim 3 further comprising:

the milling device comprising:

opposing grinding members;

the opposing grinding members being axially adjustable, relative to each other, by manually-operable texture alignment screws, so as to grind the particulate food product to varying textures.

5. The system of claim 3 further comprising:

the electric motor comprising a variable frequency driven (VFD), 3 phase motor.

6. The system of claim 5 further comprising:

the VFD motor being controllable according to user-selectable and customizable torque/speed profiles.

7. The system of claim 5 further comprising:

the electric motor comprising a 60 Hz, 110 Volt, 1.5 hp motor.

8. The system of claim 3 further comprising:

a second right-angled over-center cutout being disposed substantially 180 degrees out of phase with the right-angled over-center cutout.

9. The system of claim 2 further comprising:

the nozzle being covered by a spout whereby the particulate food product is environmentally protected.

10. The system of claim 2 further comprising:

a valve formed in the nozzle, the valve including an opening at a proximal end thereof configured to receive the viscous food paste;

the valve including a pair of opposing flap walls joined by a pair of opposing side walls, the flap walls and side walls together forming a downwardly-tapered interior passage;

the valve including a sheath portion and a flexible portion,

the sheath portion being located on the side walls and on an upper portion of the flap walls;

an outlet disposed in the flexible portion of the valve, the outlet being configured to flex to an open position under force from the pressurized flow of viscous food paste as it flows through the interior passage;

the outlet being configured to return to a closed position upon a reduction of the pressurized flow of viscous food paste.

11. The system of claim 10 further comprising:

the opening being ovoid.

12. The system of claim 10 further comprising:

the outlet, when subjected to a product processing pressure exceeding a valve threshold pressure, expands from a closed state to an enlarged open state, and returns to the closed state when the processing pressure is below the valve threshold pressure.

13. The system of claim 2 further comprising:

the nozzle being made of food grade rubber having a durometer of between Shore 60A and Shore 90A.

14. The system of claim 2 further comprising:

an interior surface of the sleeve having one or more longitudinal recesses disposed along a portion thereof.

15. A viscous food product dispensing system comprising:

a transport section having a sleeve and a chute inlet for receiving a particulate food product;

the particulate food product including at least one whole nut;

an auger for processing and conveying the received particulate food product from the transport section into an outlet adapter through the sleeve, the auger being mechanically driven by an electric motor;

the outlet adapter comprising:

a discharge cover enclosing a milling device, the milling device being mechanically driven by the electric motor, and the discharge cover having a generally cylindrical shape with an annular sidewall;

a nozzle being disposed through the discharge cover, the nozzle coupled at a proximal end to an aperture in the annular sidewall of the discharge cover, and the nozzle including a mounting flange at a proximal end thereof configured to engage a curved interior surface of the annular sidewall.

16. A viscous food product dispensing system comprising:

a transport section having a sleeve and a chute inlet for receiving a particulate food product;

the particulate food product including at least one whole nut;

an auger for processing and conveying the received particulate food product from the transport section into an outlet adapter through the sleeve, the auger being mechanically driven by an electric motor;

the outlet adapter comprising:

a discharge cover enclosing a milling device, the milling device being mechanically driven by the electric motor; and

a nozzle being disposed through the discharge cover, the nozzle coupled at a proximal end to an aperture in the discharge cover, and the nozzle including a curved mounting flange at a proximal end thereof configured to engage an interior surface of the discharge cover;

a valve formed in the nozzle, the valve including an opening at a proximal end thereof configured to receive the viscous food paste;

the valve including a pair of opposing flap walls joined by a pair of opposing side walls, the flap walls and side walls together forming a downwardly-tapered interior passage;

the valve including a sheath portion and a flexible portion, the sheath portion being located on the side walls and on an upper portion of the flap walls;

an outlet disposed in the flexible portion of the valve, the outlet being configured to flex to an open position under force from the pressurized flow of viscous food paste as it flows through the interior passage, the outlet in the open position having a shape of an elongated slit having a bulbous middle portion, and the outlet being configured to return to a closed position upon a reduction of the pressurized flow of viscous food paste.

17. A viscous food product dispensing system comprising:

a transport section having a sleeve and a chute inlet for receiving a particulate food product;

the particulate food product including at least one whole nut;

an auger for processing and conveying the received particulate food product from the transport section into an outlet adapter through the sleeve, the auger being mechanically driven by an electric motor;

the outlet adapter comprising:

a discharge cover enclosing a milling device, the milling device being mechanically driven by the electric motor, and the discharge cover having an annular sidewall portion;

a nozzle being disposed through the discharge cover, the nozzle coupled at a proximal end to an aperture in the annular sidewall portion of the discharge cover, and the nozzle including a mounting flange at a proximal end thereof configured to engage a curved interior surface of the annular sidewall portion.

Assignments (2)
MERGER Recorded Aug 26, 2025
From: TRADE FIXTURES, LLC
To: RETAIL SPACE SOLUTIONS LLC
Reel/Frame 072121/0214 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2017
From: JOHNSON, SCOTT; ODOM, JOHN CLAYTON; BRUNDICK, RONALD; VEETTIL, SHAJI KULANGARA; CALOW, JOHN; RAJAN, VAISHAKH; DYAVARASEGOWDA, ASHOK; BHAT, PRANAV
To: TRADE FIXTURES, LLC
Reel/Frame 042688/0133 →
Priority Claims (1)
IN 201611009273 · Mar 17, 2016 · national
Continuity (4)
Continuation In Part 29577721 · Sep 15, 2016
Provisional Application 62453759 · Feb 2, 2017
Provisional Application 62431222 · Dec 7, 2016
Related Publication 20170267441A1 · Sep 21, 2017
Cited By (1)
US 1,074,924