IP Library › Granted Patent US 10,717,612
Granted Patent B2
US 10,717,612 · App. 16/218,543 · Granted Jul 21, 2020

System for conveying pasty material

Inventors: Sebastian Rickers (Oberhausen, DE); Stephan Mottyll (Herne, DE)
Assignee: SEEPEX GMBH
B65G53/08B65G33/08B65G33/265B65G53/48B65G53/525F04C2/1073F04C2/16F04C13/002F04C28/24B65G53/526
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Quick Facts
Patent No.
US 10,717,612
App. No.
16/218,543
Granted
Jul 21, 2020
Kind
B2
Abstract

A system for conveying pasty material through a conduit has an eccentric screw pump having a stator, a rotor that rotates in the stator, a housing with an intake port, and an output port connected to the conduit. A drive rotates the rotor and thereby draws the pasty material in through the intake port and expels the drawn-in material as a compressed-material strand into the conduit. A valve supplies gas pulses to the conduit at time intervals for separating the compressed-material strand into material plugs of limited length traveling through the conduit.

Claims (34)

1. A system for conveying pasty material through a conduit, the system comprising:

an eccentric screw pump having an elastic stator, a rotor that rotates in the stator, a housing with an intake port, and an output port connected to the conduit;

drive means for rotating the rotor and thereby drawing the pasty material in through the intake port and expelling the drawn-in material as a continuous compressed-material strand into the conduit; and

means including a valve for supplying compressed-air pulses to the conduit at time intervals for separating the compressed-material strand into spaced-apart material plugs of limited length and for pushing the spaced-apart material plugs with the compressed air through the conduit.

2. The conveying system defined in claim 1 , wherein the eccentric screw pump is a hopper pump having a feed hopper connected to the intake port, drive means having a coupling rod with conveying tools connected to the rotor.

3. The conveying system defined in claim 1 , wherein the conduit has a length of greater than 25 meters, the system further comprising:

storage connected to a downstream end of the conduit.

4. The conveying system defined in claim 1 , further comprising:

a controller connected to and controlling the valve.

5. The conveying system defined in claim 1 , further comprising:

a pressure sensor connected to the conduit and to the controller for opening and closing the valve as a function of pressure in the conduit measured by the pressure sensor.

6. The conveying system defined in claim 1 , further comprising:

a lubricant feeder connected to the conduit between the eccentric screw pump and the supplier of pressure medium for injecting a lubricant into the conduit upstream of where the compressed air is injected into the conduit.

7. The conveying system defined in claim 6 wherein the lubricant is injected into the conduit upstream of the valve and downstream of the pump.

8. The conveying system defined in claim 1 , wherein the eccentric screw pump is provided with a comminuter for the material being conveyed for comminuting whole fruits and vegetables in the material.

9. The conveying system defined in claim 1 , wherein the stator is longitudinally divisible for exchange of the rotor without removal of the housing.

10. The conveying system defined in claim 1 , wherein the rotor is removable from the pump without removing the housing.

11. A method of conveying pasty material through a conduit, the method comprising the steps of:

pumping the material with an eccentric screw pump into an upstream end of the conduit to form therein a continuous compressed-material strand moving downstream; and

injecting a pulse of compressed air into the conduit to subdivide the strand into a succession of spaced-apart material plugs of limited length and to push the spaced-apart material plugs with the compressed air downstream in the conduit.

12. The method defined in claim 11 , further comprising the step of:

monitoring a pressure in the conduit and injecting a one of the pulses of compressed air into the conduit when the monitored pressure exceeds a predetermined limit.

13. The method defined in claim 12 , wherein the limit is 5 bar.

14. The method defined in claim 12 , wherein a duration of each pulse is a function of the monitored pressure.

15. The method defined in claim 11 , further comprising the step of:

injecting a lubricant into the conduit generally at the upstream end thereof.

16. The method defined in claim 15 , wherein the lubricant is injected into the conduit upstream of where the compressed-air pulse is injected into the conduit.

17. A method of conveying pasty material through a conduit at least 25 m long, the method comprising the steps of:

pumping the material with an eccentric screw pump into an upstream end of the conduit to form therein a continuous compressed-material strand moving downstream; and

injecting a pulse of compressed air into the conduit at a pressure of at most 5 bar to subdivide the strand into a succession of spaced-apart material plugs of limited length that are pushed by the compressed air downstream in the conduit.

18. A system for conveying pasty material through a conduit at least 25 m long, the system comprising:

an eccentric screw pump having an elastic stator, a rotor that rotates in the stator, a housing with an intake port, and an output port connected to the conduit;

drive means for rotating the rotor and thereby drawing the pasty material in through the intake port and expelling the drawn-in material as a continuous compressed-material strand into the conduit; and

means including a valve for supplying compressed-air pulses at a pressure of at most 5 bar to the conduit at time intervals for separating the compressed-material strand into spaced-apart material plugs of limited length and for pushing the spaced-apart material plugs with the compressed air through the conduit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 28, 2018
From: RICKERS, SEBASTIAN
To: SEEPEX GMBH
Reel/Frame 047865/0373 →
Priority Claims (1)
DE 10 2018 106 228 · Mar 16, 2018 · national
Continuity (1)
Related Publication 20190283981A1 · Sep 19, 2019
Cited By (2)
US 12,522,450 US 12,680,544