Self-centering vise
A self-centering vise having reduced vertical size capable of exerting on workpieces a force exceeding 2000 kg. The vise comprises a body, two or more jaws constrained to the body and actuators of the jaws. The jaws can be moved close to and away from a workpiece gripping axis. Each actuator comprises a thrust element susceptible to displacements by a pressurized fluid. Each jaw comprises two guides inclined and symmetrical with respect to the displacement direction of the same jaw, and the thrust element of each actuator comprises two walls inclined and symmetrical with respect to the displacement direction of the same thrust element. Each actuator exerts its thrust simultaneously on two jaws, by slidingly engaging the guides of two jaws with its own inclined walls, according to a configuration that can be defined double inverted wedge configuration.
1 . A self-centering vise comprising a body, two or more jaws constrained to the body and actuators of the jaws,
wherein the jaws are movable with respect to the body, on a lying plane of the jaws, close to and away from a workpiece gripping axis, to clamp a workpiece on said workpiece gripping axis and to release the workpiece, in response to the stresses imparted by said actuators, and;
characterized in that
each actuator comprises a thrust element susceptible to displacements parallel to the lying plane of the jaws in response to the stresses imparted by a fluid fed to the vise, and
each jaw comprises two guides inclined and symmetrical with respect to a displacement direction of the jaw, and
said thrust element comprises two walls inclined and symmetrical with respect to a displacement direction of the same thrust element, and
each actuator exerts its own thrust simultaneously on two of the jaws by slidingly engaging the guides of the two jaws with its own inclined walls.
2 . The vise according to claim 1 , wherein the displacement direction of the jaw is transverse to the displacement direction of the corresponding thrust elements, and at most is orthogonal with only two of the jaws.
3 . The vise according to claim 1 , wherein the actuators are hydraulic or pneumatic and each comprise a cylinder obtained in the body of the vise, a piston movable in the cylinder, wherein the thrust element is outside the cylinder and is fixed to the piston to move together therewith, and the piston is susceptible to forward and backward movements depending on whether a pressurized fluid is fed into the cylinder upstream or downstream of the piston.
4 . The vise according to claim 3 , comprising a shaft connecting the piston to the inclined walls, wherein said shaft is slidingly and sealingly inserted through a corresponding seat of the body, and wherein the shaft is offset from the piston.
5 . The vise according to claim 4 , wherein the cylinder is included between an upper wall and a lower wall of the body, and delivering passages to deliver a pressurized fluid are obtained in either of the upper wall and the lower wall, in distal relation with respect to the shafts of the actuators.
6 . The vise according to claim 3 , wherein the angle between the inclined walls of the actuators is included in the range 20°-60°, and corresponds to the angle between the guides of each jaw.
7 . The vise according to claim 1 , wherein the inclined walls slidingly inserted into the corresponding guides of the jaws achieve an inclined-plane coupling.
8 . The vise according to claim 1 , comprising the two jaws opposite each other with respect to the workpiece gripping axis and translatable along a first direction, or first axis of displacement, and the two actuators opposite each other with respect to the workpiece gripping axis, wherein the thrust elements of the actuators move along a second direction, or second axis of displacement, orthogonal to the first direction, or first axis of displacement, according to a configuration defined double inverted wedge configuration.
9 . The vise according to claim 8 , wherein the angle between the inclined walls of the actuators is 30°.
10 . The vise according to claim 1 , comprising three of the jaws arranged around the workpiece gripping axis, with a 120° configuration, and three of the actuators arranged around the workpiece gripping axis, with a 120° configuration, wherein each actuator is interposed between two of the adjacent jaws.
11 . The vise according to claim 1 , comprising a roller bearing interposed between the body of the vise and each jaw, wherein the rollers define the lying plane of the jaws.
12 . The vise according to claim 11 , wherein the roller bearings comprise an elastic element, and wherein the elastic element is elastically deformable between a deformed configuration, at which the elastic element is squeezed between the rollers and the body of the vise, when the jaws are closed, and an undeformed configuration, when the jaws are open.
13 . The vise according to claim 12 , wherein the elastic element is positioned radially more inwardly of the rollers with respect to the workpiece gripping axis.
14 . Use of the vise according to claim 12 , wherein in a numerically controlled machine tool, for clamping and holding the workpiece on the workpiece gripping axis, wherein the actuators are activated to push the jaws, which simultaneously move to close on the workpiece, thus causing the elastic element to deform, and to loosen the grip of the jaws on the workpiece, as much as needed to return the elastic element to the undeformed configuration, while still holding the workpiece.