Speed-controlled auto brushing of rules
12145237 ยท 2024-11-19
Assignee
Inventors
Cpc classification
B24B27/033
PERFORMING OPERATIONS; TRANSPORTING
B24B29/06
PERFORMING OPERATIONS; TRANSPORTING
B24B7/12
PERFORMING OPERATIONS; TRANSPORTING
International classification
B24B7/12
PERFORMING OPERATIONS; TRANSPORTING
B24B27/033
PERFORMING OPERATIONS; TRANSPORTING
B24B29/00
PERFORMING OPERATIONS; TRANSPORTING
B24B29/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Method and system, including: a strip of metallic material used by a bender to produce the 3-D signage; a sanding unit coupled to the bender and configured to sand away any dirt, oil, or other undesirable material attaching to the strip of metallic material; and a controller configured to make a measurement of how fast the strip of metallic material is feeding into the bender, and to control an operating speed of the sanding unit based on the measurement.
Claims
1. A sanding and brushing system for a strip of metallic material used by a bender to produce a 3-D signage, the sanding and brushing system coupled to a bender, the sanding and brushing system comprising: a sanding unit including sanding material to sand away any dirt, oil, or other undesirable material attached to the strip of metallic material used by the bender to produce the 3-D signage; a controller for 1) measuring the feed speed of the strip of metallic material when the strip of metallic material is fed into the bender, and 2) to control a spin speed of the sanding material of the sanding unit based on the feed speed measurement; and a brushing unit configured to remove any extracted material due to sanding of the strip of metallic material by the sanding unit.
2. The system of claim 1, further comprising: a pressing unit configured to receive and press a roll of metallic material to produce the strip of metallic material that is flat enough for the sanding unit.
3. The system of claim 1, wherein the spin speed of the sanding material comprises a spin speed of the brushing unit.
4. The system of claim 1, wherein the brushing unit comprises at least one of spinning brush, laterally-moving brush, and vertically-moving brush.
5. The system of claim 4, wherein the controller is also configured to control an operating speed of the brushing unit.
6. The system of claim 5, wherein the operating speed of the brushing unit comprises at least one of spin, lateral, and vertical movement speed of the at least one of spinning brush, laterally-moving brush, and vertically-moving brush.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The details of the present disclosure, both as to its structure and operation, may be gleaned in part by study of the accompanying drawings.
(2)
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DETAILED DESCRIPTION
(7) The detailed description set forth below, in connection with the accompanying drawings, is intended as a description of various embodiments and is not intended to represent the only embodiments in which the disclosure may be practiced. The detailed description includes specific details for the purpose of providing a thorough understanding of the embodiments. In some instances, well-known structures and components are shown in simplified form for brevity of description. As used herein, like reference numerals refer to like features throughout the written description.
(8) Prior to bending the rule to form the letter box, the rule needs to be processed. For example, the rule should be processed to remove any dust or stain as well as oil on the surface. In some cases, the roll of metallic material (often for thick material) is coated with oil to provide a smooth surface for the strip of rule as it is unspooled from the roll.
(9)
(10) For example, a pressing unit 120 is configured to press the roll 110 of metallic material into a straight strip of rule. A sanding unit 130 is configured to sand away any dirt, oil, and/or other undesirable material on the strip of rule to provide a smooth strip of rule for the bender 150. A brushing unit 140 is configured to remove any extracted material due to the sanding of the strip of rule. The bender 150 then bends the processed strip of rule into a desired shape to produce the 3-D signage 160.
(11) In operation, the bender 150 receives the strip of material feeding into it and constantly adjusts the feeding speed to bend the material into a desired shape. In the process, the strip of material may even go backwards or stay almost stationary to measure and bend the strip of material. However, when the units 120, 130, 140 are coupled to the bender 150 (to process the strip of material prior to bending), the movement of the bender 150 stopping, slowing, or moving backwards may cause several different problems for the strip of material. For example, when the bender 150 is stopped to measure a particular distance between points on the strip of material, the sanding unit 130 and/or the brushing unit 140 may continue to sand and brush the same spot over and over again, which may cause streaks and/or spots on the strip of material. Similar streaks and/or spots may show when the bender 150 causes the strip of material to go backwards during the bending operation.
(12)
(13)
(14) For example, a pressing unit 320 is configured to press the roll 310 of metallic material into a straight strip of rule. A sanding unit 330 is configured to sand away any dirt, oil, and/or other undesirable material on the strip of rule to provide a smooth strip of rule for the bender 350. A brushing unit 340 is configured to remove any extracted material due to the sanding of the strip of rule. The bender 350 then bends the processed strip of rule into a desired shape to produce the 3-D signage 360.
(15) In operation when the units 320, 330, 340 are coupled to the bender 350 (to process the strip of material prior to bending), the bender 350 receives the strip of material feeding into it and constantly adjusts the feeding speed to bend the material into a desired shape. In the process, the strip of material may even go backwards or stay almost stationary to measure and bend the strip of material.
(16) However, in the illustrated implementation of
(17) In one implementation, the sanding unit 330 includes at least one of spinning sander, laterally-moving sander, and vertically-moving sander. In one implementation, the operating speed of the sanding unit 330 includes a spin speed of the sanding material in the sanding unit. In one implementation, the brushing unit 340 includes at least one of spinning brush, laterally-moving brush, and vertically-moving brush. In one implementation, the operating speed of the brushing unit includes at least one of spin, lateral, and vertical movement speed of the at least one of spinning brush, laterally-moving brush, and vertically-moving brush.
(18)
(19) As before, the pressing unit 420 is configured to press the roll 410 of metallic material into a straight strip of rule. The sanding unit 430 is configured to sand away any dirt, oil, and/or other undesirable material on the strip of rule to provide an evenly smooth (i.e., free of streaks and spots) strip of rule for the bender. The brushing unit 440 is configured to remove any extracted material due to the sanding of the strip of rule. The extracted material is then sent to the bender to bend the processed strip of rule into a desired shape to produce the 3-D signage.
(20) The system 400 also includes a sensor/controller 442 which senses/measures how fast the strip of material is feeding (i.e., the speed at which the strip of material is moving in and out) into the bender. In one implementation, the sensed measurement is then fed back to the sanding unit 430 to control the spin speed of the sanding unit 430 in accordance with the sensed measurement. In another implementation, the sensed measurement is also fed back to the brushing unit 440 to control the spin speed of the brushing unit 440 in accordance with the sensed measurement as well. Accordingly, the 3-D signage produced by the bender may provide an evenly smooth surface.
(21)
(22) The above descriptions of the disclosed embodiments are provided to enable any person skilled in the art to make or use the disclosure. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles described herein can be applied to other embodiments without departing from the spirit or scope of the disclosure. For example, although the examples shown in the illustrated figures include only the strips of metallic material, other shapes and materials such as rectangular pieces and non-metallic material may be used. Thus, it will be understood that the description and drawings presented herein represent embodiments of the disclosure and are therefore representative of the subject matter which is broadly contemplated by the present disclosure. It will be further understood that the scope of the present disclosure fully encompasses other embodiments that may become obvious to those skilled in the art and that the scope of the present disclosure is accordingly limited by nothing other than the appended claims.
(23) Accordingly, the foregoing embodiments are merely presented as examples and are not to be construed as limiting the present disclosure. The present teachings can be readily applied to other types of apparatus and/or devices. The description of the present disclosure is intended to be illustrative, and not to limit the scope of the claims. Many alternatives, modifications, and variations will be apparent to those skilled in the art.