Shear system of extrusion press
09789524 ยท 2017-10-17
Assignee
Inventors
Cpc classification
International classification
Abstract
A shearing device for an extrusion press is adapted for cutting off from each other an extruded product and a discard which is the residue of a billet, the shearing device being configured so that the configuration thereof is simplified to reduce costs required for maintenance and production and so that the gap between the shear blade and an end surface of a die is automatically adjusted to improve the shearing accuracy, thereby providing a satisfactory cut surface. A shear cylinder (21) is mounted in a downward facing position to a frame (16) provided on the side of an end platen (11) which faces a container (10). A shear guide (18) is mounted to the frame (16) in a tiltable manner, the shear guide (18) having a shear blade (24) which is provided at the lower end thereof and guiding a shear slide (23). A tilt cylinder (19) for the shear guide (18) is mounted to the frame (16), the tilt cylinder (19) being capable of keeping the gap between the front face of a die stack (12) and the shear blade (24) constant by pressing the shear guide (18) against a horseshoe (26). The piston rod (22) of the shear cylinder (21) is mounted to the shear slide (23) so as to be capable of tilting and sliding.
Claims
1. A shear system of an extrusion press, said shear system being adapted to cut an extruded product from a discard which is a remainder of a billet and comprising: a first fastener for a die stack that pushes and fastens the die stack in a cutting direction of the discard; and a second fastener for the die stack that pushes and fastens the die stack in an extrusion direction of the billet, wherein a shear cylinder which faces downward is attached to a frame fixed to a container side of an end platen, a shear guide that guides a shear slide is attached to the frame to be able to tilt, the shear slide provided with a shear blade at a bottom end part, a tilt-use cylinder for the shear guide is mounted to the frame, said tilt-use cylinder adapted to pull the shear guide against a horseshoe to hold constant a clearance between a front surface of the die stack and the shear blade, and a piston rod of the shear cylinder is connected to the shear slide via a pin mounted on the piston rod and a slide piece pivotable on the pin and slidably engaged with the shear slide in a slide hole such that the shear slide is able to tilt and slide with respect to the piston rod.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
DESCRIPTION OF EMBODIMENTS
(5)
(6) At an upper container side of the end platen 11 which holds the die stack 12 at its front surface side, a shear frame 16 is attached. At the top end part of the shear frame 16, a shear cylinder 21 for discard cutting-use is attached. At part of the shear frame 16, a shear guide 18 is attached by a shaft 17 to be able to turn in the extrusion and counter extrusion directions. Reference numeral 22 is a piston rod. At the lower front end part of the piston rod 22, a shear slide 23 is connected so as to be able to slide inside the shear guide 18. Reference numeral 24 is a shear blade which cuts off the discard, while 25 is a shim which adjusts the clearance between the cutting surface of the die stack 12 and the shear blade 24. Reference numeral 10 is a container in which a billet is inserted.
(7) The die stack 12 is housed in the die block 13. By pushing a die cassette which is configured by the die stack 12 and the die block 13 in the platen direction, the pressure ring 15 and the horseshoe 26 restrict movement in the horizontal direction. Due to the above mechanism, the die stack 12 is fastened to the end platen 11 through the horizontal direction arm 27 by the die stack horizontal fastening cylinder 28.
(8) Further, by pushing by a vertical die clamp 29 at the same time, the die stack 12 can also be fastened in the vertical direction. The vertical die clamp 29 operates by a die stack vertical fastening cylinder 30.
(9) The die stack 12 is set thicker than the die block 13, whereby even if thermal expansion of the die stack 12 etc. causes the thickness to fluctuate, it is possible to constantly firmly fasten the die stack 12 to the front surface of the end platen 11.
(10) As shown in
(11) Due to this fastening action, the relative positions of the horseshoe 26 and the shear surface side of the die stack 12 can be kept constant at all times. Even while cutting off the discard after extrusion, due to this pressing action in the horizontal direction and pressing action in the vertical direction, the die stack 12 can be maintained at the same position at all times without moving.
(12) The shear blade 24 which cuts off the discard is attached to the front end of the shear slide 23. This shear slide 23 is housed in the shear guide 18. The shear slide 23 is configured to swing about the shaft 17 and move up and down inside the shear guide 18.
(13) As shown in
(14)
(15) The shear cylinder 21 does not move even when the shear slide 23 swings due to the shear slide swinging cylinder 19 about the shaft 17. The hydraulic oil port can be connected by stationary piping, and therefore flexible hoses and other consumable members need not be connected.
(16) The present invention is configured to enable automatic adjustment of the position of the shear blade so as to enable the clearance between the die stack surface and the shear blade, which would otherwise change due to fluctuation of the thickness of the die stack, to be kept constant at all times. This is performed by making the shear guide swing and push against the die stack. The clearance between the die stack surface and the shear blade surface when hot is adjusted by the shim 25 between the shear blade and the shear slide. The shim 25 is adjusted between the back surface of the shear blade 25 and the shear slide 23 so that when the die stack 12 is in the hot state, that is, the thickness of the die stack 12 is maximum in state, the shear slide swinging cylinder 19 may be operated to make the shear guide 18 and the horseshoe 26 abut and make the clearance between the die stack front surface and the shear blade 24, for example, 0.3 to 0.5 mm with the shear slide 23 becoming vertical.
(17) In the shear action, a moment acts on the die stack surface making the shear blade 24 tilt to the die stack side, so the shear blade 24 acts on the die stack surface side at all times. At the start of the shearing action, the shear slide 23 is held by the action of the shear slide swinging cylinder 19.
(18) Next, the action of this system will be explained. First, after the extrusion work is ended, as shown in
(19) Due to this operation, the shear blade 24 can maintain the clearance from the front surface of the die stack constant at all times through the shear slide 23, shear guide 18, and horseshoe 26. Further, by adjusting the shim 25 between the shear blade 24 and the shear slide 23, it is possible to adjust the clearance between the die stack 12 and shear blade 24.
(20) While holding this state, the shear cylinder 21 is made to operate to make the shear blade 24 descend. Due to the shear blade 24, the discard is cut off from the product.
(21) The die stack 12 is fastened to the end platen 11 and die block 13 and tilt of the die stack 12 can be prevented, so when cutting off the discard, the shear blade 24 and the front surface of the die stack 12 can be kept parallel at all times and the cutting scraps can be made uniform in thickness.
(22) After cutting off the discard, the shear slide swinging cylinder 19 is made to act to make the shear guide 18 turn slightly and separate from the horseshoe 26 and the shear cylinder 21 is made to operate to make the shear slide 23 and shear blade 24 rise. At the rising limit, the shear slide swinging cylinder 19 is made to act to return the shear guide 18 to a vertical state and end the cutting step of the discard.
(23) This embodiment of the present invention is configured to make the front end of the shear guide 18 abut against the horseshoe 26 so as to maintain the clearance between the die stack 12 and the shear blade 24 constant, but the invention is not limited to this. For example, it may also be configured to make the front end of the shear guide 18 directly abut against the front surface of the die stack 12.
(24) As explained above, the shear system of the present invention is configured so that even if there is a change of thickness of the die stack or elastic deformation of the shear frame, the position of the shear blade automatically tracks this over the entire die stack end face by the automatic adjustment mechanism of the shear blade. It is possible to constantly maintain a fixed clearance between the die stack end face and the shear blade and the shear blade can be stabilized in sharpness. For this reason, uniform thickness of the cutting scraps of the discard can be achieved, entrainment of impurities in the extruded product and leakage of the billet material from the container surface and the die stack surface can be prevented, and the product yield is improved.
(25) The present invention is explained by reference to specific embodiments selected for the purpose of explanation, but it will be clear to a person skilled in the art that a large number of modifications are possible without departing from the basic idea and scope of the present invention.
REFERENCE SIGNS LIST
(26) 11 end platen
(27) 12 die stack
(28) 13 die block
(29) 14 guide member
(30) 16 shear frame
(31) 17 shaft
(32) 18 shear guide
(33) 19 shear slide swinging cylinder
(34) 21 shear cylinder
(35) 23 shear slide
(36) 24 shear blade
(37) 25 shim
(38) 26 horseshoe
(39) 27 horizontal direction arm
(40) 28 die stack horizontal fastening cylinder 28
(41) 29 vertical die clamp
(42) 30 die stack vertical fastening cylinder 30
(43) 31 pin
(44) 32 slide piece