Machine integrated positioning system
US-12076829-B2 · Sep 3, 2024 · US
US9623463B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9623463-B2 |
| Application number | US-201314434540-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 4, 2013 |
| Priority date | Oct 17, 2012 |
| Publication date | Apr 18, 2017 |
| Grant date | Apr 18, 2017 |
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Official abstract text for this publication.
The pump discharge volume of a bi-directional piston pump is set to a reference pump discharge volume Qa in condition where the actuation state of lift cylinders is a no-load state, and is set to a small-discharge pump discharge volume Qb smaller than the reference pump discharge volume Qa in condition where the actuation state of the lift cylinders is a high-load state. Qb·Pb which is the product of the pump discharge volume Qb and a pump discharge pressure Pb of the bi-directional piston pump in condition where the actuation state of the lift cylinders is the high-load state is set to be equal to or less than or approximately equal to a Qa·Pa which is the product of the pump discharge volume Qa and a pump discharge pressure Pa of the bi-directional piston pump in condition where the actuation state of the lift cylinders is the no-load state.
Opening claim text (preview).
The invention claimed is: 1. A hydraulic press brake configured to bend a plate-shaped workpiece by clamping the workpiece with a punch and a die, comprising: a lower table which is provided to a lower part of a body frame and on which the die is detachably held; an upper table which is provided to an upper part of the body frame in such a way as to face the lower table in a vertical direction and is capable of being raised and lowered relative to the lower table, and on which the punch is detachably held; a lift cylinder including a tubular cylinder body and a piston provided inside the cylinder body in such a way as to divide an inside of the cylinder body into a pair of hydraulic chambers and to be capable of being raised and lowered relative to the cylinder body, the lift cylinder including the cylinder body and the piston to raise and lower the upper table relative to the lower table; a piston pump including a pump rotary shaft, a rotary motor configured to rotate the pump rotary shaft, and an inclined plate being pivotally movable relative to the pump rotary shaft and configured to vary a pump discharge volume of the piston pump through the pivotal movement, the piston pump being configured to supply pressure oil to the hydraulic chambers of the lift cylinder, wherein the pump discharge volume of the piston pump is set to a reference pump discharge volume in a case where an actuation state of the lift cylinder is a no-load state, and is set to a small-discharge pump discharge volume smaller than the reference pump discharge volume to lower a torque of the rotary motor of the piston pump in a case where the actuation state of the lift cylinder is a high-load state, the piston pump including a pilot chamber configured to pivotally move the inclined plate, and is configured such that the inclined plate pivotally moves from a reference inclination position corresponding to the reference pump discharge volume to a small-discharge inclination position corresponding to the small-discharge pump discharge volume when a pilot pressure is applied to the pilot chamber; and a sensor configured to detect that the punch is positioned at an immediately-before-contact position that is proximate a contact surface of the workpiece or a contact position in which the punch contacts the contact surface of the workpiece, and the pilot pressure is applied to the pilot chamber when the sensor detects that the punch is positioned to the immediately-before-contact position or contacts the workpiece. 2. The hydraulic press brake according to claim 1 , wherein a product of the pump discharge volume and a pump discharge pressure of the piston pump in the case where the actuation state of the lift cylinder is the high-load state is set to be equal to or less than a product of the pump discharge volume and a pump discharge pressure of the piston pump in the case where the actuation state of the lift cylinder is the no-load state. 3. The hydraulic press brake according to claim 1 , wherein the piston pump is a bi-directional piston pump, and the rotary motor is a control motor capable of rotating in a forward direction and a reverse direction. 4. The hydraulic press brake according claim 1 , wherein the piston pump is a uni-directional piston pump. 5. The hydraulic press brake according to claim 1 , wherein a product of the pump discharge volume and a pump discharge pressure of the piston pump in the case where the actuation state of the lift cylinder is the high-load state is set to be approximately equal to a product of the pump discharge volume and a pump discharge pressure of the piston pump in the case where the actuation state of the lift cylinder is the no-load state.
controlling the degree of pressure applied by the ram during the pressing stroke · CPC title
Directional control by means of the pressure source · CPC title
on press brakes without making use of clamping means · CPC title
Combined control, e.g. control of speed and force for providing a high speed approach stroke with low force followed by a low speed working stroke with high force, e.g. for a hydraulic press · CPC title
with pilot circuit, e.g. for controlling a swash plate · CPC title
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