IP Library Granted Patent US 10,385,883
Granted Patent B2
US 10,385,883 · App. 14/783,313 · Granted Aug 20, 2019

Vibrating ram arrangement, and method for operating the vibrating ram arrangement

Inventor: Jochen Spohr (Borken, DE)
Assignee: THYSSENKRUPP INFRASTRUCTURE GMBH
F15B13/0401B06B1/02E02D7/18F15B11/08F15B2211/20523F15B2211/20546F15B2211/255F15B2211/405
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Quick Facts
Patent No.
US 10,385,883
App. No.
14/783,313
Granted
Aug 20, 2019
Kind
B2
Abstract

The invention relates to a vibrating ram arrangement comprising a hydraulic assembly, a vibrator which is connected to the hydraulic assembly via hydraulic tubes, and a controller which is paired with the hydraulic assembly. The hydraulic assembly has a hydraulic pump which is driven by an internal combustion engine, and the vibrator has imbalances and an adjustable hydraulic engine for driving the imbalances. A hydraulic fluid is conducted through the hydraulic assembly, the hydraulic tubes, and the hydraulic engine in a circuit. A frequency sensor for determining the frequency of the vibrator is connected to the controller, and the controller is designed to control a volumetric flow rate conducted through the circuit dependent on the signal of the frequency sensor. According to the invention, the vibrator has a device, which is independent of the controller, for automatically adjusting a displacement volume of the hydraulic engine dependent on a pressure within the circuit.

Claims (29)

1. A vibrating ram assembly, comprising:

a hydraulic assembly having both of a hydraulic pump configured to pump hydraulic fluid therefrom, and an internal combustion engine operatively coupled to said hydraulic pump and configured to drive said pump;

a vibrator spatially separated from the hydraulic assembly and having at least one rotatably mounted imbalance mass configured to create vibratory motion, and at least one adjustable hydraulic motor operatively coupled to said at least one imbalance mass and configured to drive said imbalance mass by a variable displacement volume of hydraulic fluid pumped through said hydraulic motor;

a plurality of hydraulic hoses coupled at a first end to said hydraulic assembly and at a second end to said vibrator and configured to hydraulically connect said hydraulic assembly to said vibrator to create a hydraulic circuit through which hydraulic fluid may be pumped from said hydraulic assembly, through said hydraulic hoses, and through said at least one hydraulic motor of said vibrator to drive said imbalance mass;

a frequency sensor in operative communication with said vibrator and configured to determine a vibrational frequency thereof;

a controller in operative communication with both of said frequency sensor and said hydraulic assembly, and configured to control a flow volume through said hydraulic circuit based on a signal received from said frequency sensor; and

a displacement volume adjustment device in fluid communication with said hydraulic circuit and disposed on and coupled to said vibrator and configured to automatically adjust a displacement volume of the hydraulic motor responsive to pressure within the hydraulic circuit.

2. The vibrating ram assembly of claim 1 , wherein said displacement volume adjustment device is hydraulically connected to a hydraulic feed line of said hydraulic motor.

3. The vibrating ram assembly of claim 1 , wherein said displacement volume adjustment device includes a hydraulic actuator that is hydraulically connected to the hydraulic circuit.

4. The vibrating ram assembly of claim 1 , wherein the displacement volume of said hydraulic motor may be incrementally adjusted.

5. The vibrating ram assembly of claim 1 , wherein said controller is configured to compensate for changes in the frequency of the vibrator, by a change in a rotational speed of said internal combustion engine.

6. The vibrating ram assembly of claim 1 , wherein said hydraulic pump of said hydraulic assembly has a variable displacement volume.

7. A method for operating a vibrating ram assembly, comprising:

providing a vibrating ram assembly as described in claim 1 ;

when the vibrator has a low power requirement, operating both the hydraulic motor of the vibrator at a first displacement volume (V 1 ), and the internal combustion engine of the hydraulic assembly at a first rotational speed (D 1 ), to define a first operating mode in which the hydraulic circuit is at a first pressure (p 1 );

when the vibrator has an increased power requirement above the low power requirement, increasing the pressure in the hydraulic circuit to a second pressure (p 2 ) higher than the first pressure (p 1 );

by the displacement volume adjustment device, increasing the displacement volume of the vibrator's hydraulic motor to a second displacement volume (V 2 ) above the first displacement volume (V 1 ), so as to increase an operating torque of the hydraulic motor;

increasing the rotational speed of the internal combustion engine to a second rotational speed (D 2 ).

8. The method for operating a vibrating ram assembly of claim 7 , further comprising:

determining, by the frequency sensor, the vibratory frequency of the vibrator;

setting the value of the increased second rotational speed (D 2 ) of the internal combustion engine based on the determined frequency of the vibrator; and

adjusting, by the controller, the rotational speed of the internal combustion engine so as to maintain the frequency of the vibrator at one of a constant frequency or within a predefined frequency range.

9. The method of claim 7 comprising adjusting the displacement volume of the hydraulic motor incrementally.

10. The method of claim 7 wherein increasing the displacement volume of the vibrator's hydraulic motor is performed responsive only to increasing the pressure in the hydraulic circuit.

11. The vibrating ram assembly of claim 1 wherein the displacement volume adjustment device is spaced apart from the controller.

12. The vibrating ram assembly of claim 1 wherein the displacement volume adjustment device is disposed directly on the at least one adjustable hydraulic motor of the vibrator.

13. The vibrating ram assembly of claim 3 wherein the hydraulic actuator is configured as a pressure cell.

14. The vibrating ram assembly of claim 1 wherein the displacement volume adjustment device is hydraulically connected to a hydraulic feed line of the at least one hydraulic motor, wherein the displacement volume adjustment device includes a hydraulic actuator that is hydraulically connected to the hydraulic circuit, wherein a change in pressure at the hydraulic feed line is converted by the hydraulic actuator into a mechanical reciprocating movement with which the at least one hydraulic motor is adjusted directly.

15. The vibrating ram assembly of claim 1 , wherein the displacement volume adjustment device is responsive only to pressure within the hydraulic circuit.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2022
From: THYSSENKRUPP INFRASTRUCTURE GMBH
To: TERRA INFRASTRUCTURE GMBH
Reel/Frame 060420/0904 →
MERGER Recorded Mar 6, 2019
From: THYSSENKRUPP TIEFBAUTECHNIK GMBH
To: THYSSENKRUPP BAUTECHNIK GMBH
Reel/Frame 048520/0936 →
MERGER AND CHANGE OF NAME Recorded Mar 6, 2019
From: THYSSENKRUPP BAUTECHNIK GMBH; THYSSENKRUPP BAUSERVICE GMBH
To: THYSSENKRUPP INFRASTRUCTURE GMBH
Reel/Frame 048521/0240 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2015
From: SPOHR, JOCHEN
To: THYSSENKRUPP TIEFBAUTECHNIK GMBH
Reel/Frame 036922/0959 →
Priority Claims (1)
DE 10 2013 103 722 · Apr 12, 2013 · national
Continuity (1)
Related Publication 20160061227A1 · Mar 3, 2016