Hydrostatic drive
US-9482246-B2 · Nov 1, 2016 · US
US10288094B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10288094-B2 |
| Application number | US-201515501405-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 21, 2015 |
| Priority date | Aug 6, 2014 |
| Publication date | May 14, 2019 |
| Grant date | May 14, 2019 |
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A hydrostatic drive includes a diesel engine and a hydrostatic adjustable machine which supplies multiple consumers in normal operation as a pump. The machine has a pressure/flow regulator to which is communicated, according to the load-sensing principle, the highest load pressure of the consumers, in particular when the machine is operated as a pump. In order to realize a start/stop function of the diesel engine, a previously charged high-pressure reservoir supplies the hydrostatic machine, which then acts as a starter motor for the diesel engine. In order to switch from pump to starter motor, the hydro-machine is adjusted over zero. In order for this switch to take place quickly and reliably, the pressure/flow regulator is deactivated by means of a switching valve and the adjustment device is supplied with an adjustment pressure medium via the switching valve, which medium is taken from the high-pressure reservoir or from an auxiliary reservoir.
Opening claim text (preview).
The invention claimed is: 1. A hydrostatic drive for starting an internal combustion engine, comprising: a hydraulic machine with a swept volume, the hydraulic machine is (i) adjustable in the swept volume by a hydraulic adjustment device, (ii) operable as a pump and as a motor, and (iii) configured to drive the internal combustion engine in a mode as a motor; at least one high pressure accumulator from which the hydraulic machine is suppliable with pressure medium via a pump line when the hydraulic machine is being operated as a motor, the pump line running between a working connection of the hydraulic machine and the high pressure accumulator; and an accumulator shut off valve having a first position and a second position, the accumulator shut off valve is arranged in the pump line such that a fluidic connection from the high pressure accumulator to the hydraulic machine is open in the first position and is shut off in the second position, wherein the hydraulic machine is adjustable by the adjustment device from a positive swept volume and pump mode via a zero position, in which the swept volume is zero, to a negative swept volume and motor mode, and wherein, for an adjustment to a negative swept volume, the adjustment device is suppliable with pressure medium from a pressure medium source via a control valve independently of the working connection of the hydraulic machine. 2. The hydrostatic drive as claimed in claim 1 , wherein, for an adjustment to a negative swept volume, the adjustment device is suppliable with pressure medium from the high pressure accumulator via the control valve. 3. The hydrostatic drive as claimed in claim 1 , wherein the pressure medium source is the at least one high pressure accumulator, such that for an adjustment to a negative swept volume, the adjustment device is suppliable with pressure medium from the at least one high pressure accumulator accumulator via the control valve. 4. The hydrostatic drive as claimed in claim 1 , wherein, during an adjustment to a negative swept volume, the adjustment device is acted upon with actuating pressure via the control valve prior to supplying the working connection of the hydraulic machine with pressure medium from the high pressure accumulator when the hydraulic machine is adjusted to a negative swept volume. 5. The hydrostatic drive as claimed in claim 4 , wherein, during the adjustment to a negative swept volume, the working connection of the hydraulic machine supplied with pressure medium from the high pressure accumulator by bringing the accumulator shut off valve into its first position with a time delay. 6. The hydrostatic drive as claimed in claim 1 , wherein the control valve is a seat valve with an inlet that is fluidically connected to the pressure medium source, and with an actuating pressure outlet that is connected to an actuating pressure inlet of the adjustment device, and wherein the control valve has a first position in which the inlet is shut off in an at least approximately leakage-free manner, and a second position in which the inlet is fluidically connected to the actuating pressure outlet. 7. The hydrostatic drive as claimed in claim 1 , wherein the high pressure accumulator is superchargeable by the hydraulic machine in the mode as a pump. 8. The hydrostatic drive as claimed in claim 1 , wherein: for the mode as a pump, the hydraulic machine is assigned a hydraulic regulating device with an actuating pressure outlet, the control valve is a 3/2-way valve with a first inlet that is fluidically connected to the actuating pressure outlet of the hydraulic regulating device, with a second inlet that is fluidically connected to the pressure medium source, and with an outlet that is connected to an actuating pressure inlet of the adjustment device, and the control valve has a first position, in which the outlet is fluidically connected to the first inlet and the second inlet is shut off, and a second position in which the outlet is connected to the second inlet and the first inlet is shut off. 9. The hydrostatic drive as claimed in claim 8 , wherein the hydraulic regulating device is a load-sensing regulating valve which is acted upon by the pump pressure, with the effect of a pressure medium inflow to the actuating pressure chamber of the adjustment device, and is acted upon by a spring and a load sensing (LS) pressure, which is present at a load sensing (LS) connection of the hydraulic regulating device, with the effect of a pressure medium outflow from the actuating pressure chamber. 10. The hydrostatic drive as claimed in claim 9 , wherein an adjustable pressure limiting valve is connected to the LS connection between the latter and a nozzle. 11. The hydrostatic drive as claimed in claim 9 , wherein: in the mode as a pump, apart from the high pressure accumulator at least one further hydraulic consumer is suppliable with pressure medium by the hydraulic machine, the hydraulic machine operated as a pump is regulable depending on a highest load pressure of the at least one consumer, said load pressure being present in a common load sensing (LS) indicator line, for which purpose the LS indicator line is connected to the LS connection, and the pump line is also connectable to the LS indicator line or directly to the LS connection via a load sensing (LS) valve. 12. The hydrostatic drive as claimed in claim 11 , wherein the LS valve is a switching valve which, in a basic position pretensioned by a spring, shuts off the pump line to the LS indicator line or to the LS connection, and which, in a switching position, connects the pump line to the LS indicator line or to the LS connection. 13. The hydrostatic drive as claimed in claim 11 , wherein a first shuttle valve is arranged in the LS indicator line, at the first inlet of which shuttle valve the highest load pressure of the at least one consumer is present, and to the second inlet of which shuttle valve the LS valve is connected.
the engines being of reciprocating-piston type (of internal-combustion type F02N7/10) · CPC title
Shuttle valves · CPC title
Cross-Sectional Technologies · mapped topic
Accumulators · CPC title
Internal combustion engine · CPC title
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