Metal strips straightening machine
09757781 ยท 2017-09-12
Inventors
Cpc classification
B21D3/00
PERFORMING OPERATIONS; TRANSPORTING
B21D43/006
PERFORMING OPERATIONS; TRANSPORTING
B21D1/00
PERFORMING OPERATIONS; TRANSPORTING
B21D37/14
PERFORMING OPERATIONS; TRANSPORTING
International classification
B21D1/00
PERFORMING OPERATIONS; TRANSPORTING
B21D43/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention is directed to an improved metal strips straightener, including an infeed device and a pressure frame. The infeed device has one or more leveling rollers, and the pressure frame has a roller frame. The roller frame has one or more roller blocks to bring a metal strip into a upward full encirclement wrap. Each roller block is attached with a camshaft, where each camshaft is connected to a motorized drive system. Rotation of the camshafts actuates the roller blocks to move the metal strips, applying pressure on the metal strips during the passing through of the roller blocks. A closing cylinder is attached to one end of a roller block, where the closing cylinder has a convex contact surface. Multiple roller blocks are connected to each adjacent roller blocks via their connected closing cylinders.
Claims
1. A straightening machine for straightening a metal strip, comprising: a pressure frame; a first feeding device having a leveling roller, wherein the first feeding device is attached to infeed side of the frame; a second feeding device having a leveling roller, wherein the second feeding device is attached to an outfeed side of the frame; a plurality of roller blocks each having a leveling cassette attached on the upper side of each roller block, and a holster attached on the lower side of each roller block, wherein a camshaft with saw teeth goes through a center of each holster; wherein each leveling cassette has one or more closing cylinders each with a convex contact surface facing the metal strip, wherein each leveling cassette has a slot that faces a slide of a corresponding holster, wherein each roller block comprises a leveling gap control located in between the leveling cassette and the holster; and a motorized drive system, attached to the leveling roller of the first feeding device, to the leveling roller of the second feeding device, and to at least one camshaft of at least one roller block, wherein the roller blocks are arranged in a series located between the first feeding device and the second feeding device; wherein the first feeding device is attached to the roller blocks at one end of the series; wherein the second feeding device is attached to the roller blocks at an opposite end of the series; wherein each roller block is connected to one or more adjacent roller blocks by connecting the closing cylinder in each roller block, wherein the convex contact surfaces of the connected closing cylinders creates a passage for the metal strip, wherein the motorized drive system drives the roller blocks into rotation, thereby moving the metal strip by friction to move toward direction of the outfeed side of the pressure frame through the center of the passage created by the convex contact surfaces, wherein the motorized system actuates the roller blocks by rotating the camshaft to move the metal strip through the passage created by the convex contact surfaces, alternating the roller blocks between a leveling position and a retracted position, thereby asserting pressure on the metal strip while at the leveling position, and releasing pressure while at the retracted position.
2. The device of claim 1, wherein the leveling gap control includes: a hole located on the holster in parallel with axes to the slide; and a bolt support with the slot located on the leveling cassette, wherein: an adjusting screw is connected to the hole by going through the slot.
3. The device of claim 2, wherein the slot is a U-shaped slot, and the adjusting screw is held in position by two outer knurled rings rigidly connected to both ends of the screw.
4. The device of claim 1, wherein the holster provides a hole to connect with a support roller, wherein the support roller is positioned in parallel to the camshaft by going through the hole, held in position with a bearing.
5. The device of claim 1, wherein four roller blocks are connected to position surrounding the metal strip, whereby each roller block is located at exactly a 90-degrees angle next to each adjacent roller blocks.
6. The device of claim 1, wherein the motorized drive system uses a belt transmission to connect with the camshaft, whereas the camshaft is connected to the leveling roller of the first device via a chain drive.
7. The device of claim 1, wherein the pressure frame includes a bearing block for support of the camshaft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(11) Before the present invention is described in further detail, it is to be understood that the invention is not limited to the particular embodiments described, as such may, of course, vary. It is also to be understood that the terminology used herein is for the purpose of describing particular embodiments only, and is not intended to be limiting, since the scope of the present invention will be limited only by the appended claims.
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(14) While a sprocket 213 is used in the preferred embodiment, other alternatives have also been contemplated, including using a belt drive, and also using a gear drive, to achieve the same result of driving the movement of the metal strip 5.
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(16) Bevel gears have been contemplated to use in the preferred embodiment, so that the shafts intersect and the shapes of the tooth-bearing surfaces are conical, and mounted apart at a 90-degrees angle. This is illustrated in
(17) Furthermore, a camshaft housing 112 is connected to the roller frame 11 for the support of the camshaft 13.
(18) The roller block 12 includes a leveling cassette 121 and a holster 122. The leveling cassette 121 is located close to the metal strip 5, and the cassette 121 has one or more closing cylinders facing the metal strip 5. The closing cylinder provides a convex contact surface 124 correspond to the shape of the metal strip 5. The holster 122 is connected to the other opposite end of the leveling cassette 121. There is a slide 1221 on the holster 122, and a slot on the leveling cassette 121, wherein the holster 122 and the cassette 121 are assembled to position the slide 1221 and slot to face each other to form a tunnel for the pass through of the camshaft 13.
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(20) The holster 122 also has a adjusting housing 126 for the purpose of providing a maximum limit of range of movement for the adjusting screw 125. The adjusting housing 126 is located on the top of the holster 122, and is also used for the purpose to prevent the adjusting screw 125 from falling out of the holster 122.
(21) For the purpose of stabilizing the roller blocks 12 during operation, in order to maintain balance and to reduce vibration, a support roller 1222 is installed onto the holster 122 in a position parallel to that of the camshaft 13 as shown in
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(25) As seen in