The present invention relates to a method and system for obtaining metal strips characterized by having at least two different thicknesses along its width. The method combines manufacturing processes such as stretch forming, rolling, flattening and localized heating in order to vary the metal strips thickness at specific areas. Particularly, the present method refers to efficiently and effectively achieve a thickness reduction in particular areas of a metal strip.
Lighter structural components have become increasingly important in the transportation industry. Higher standards and regulations have demanded structural components manufacturers to increase their competencies in the use of alternative methods and materials which can achieve significant weight reduction without sacrificing safety and performance. Specifically in the manufacture of chassis frames components, such as side rails, steel has proven to be the material with better saving performance based on its cost implications.
Some of the most innovative and competitive solutions in the industry have been related to the thickness variation of steel. Thickness variation allows the structural component manufacturing companies to design components tailored according to the load and strength needs, making easier to comply with weight and cost industry requirements.
One current solution in the prior art to obtain strips with varying thicknesses is through tailor-welded blanks. Tailor-welded blanks have been manufactured by first creating two separate blanks of the sheet metal materials having different characteristics, and then butting the edges of the two sheets together and welding the adjoining edges of the sheets to create a permanent attachment. In this way, a blank assembly is created that is comprised of two different sheet materials having different characteristics. The main disadvantage that these blanks for some later manufacturing processes is that subsequent bending imparts concentrated stress zones over the welds that could affect the final component characteristics. Additionally, the welding precision required for the attachment of tailor-welded blanks have cost implications, since an inaccurate welding operation could have severe performance implications for the final component.
Furthermore, another manufacturing process found in the prior art to achieve variable thickness profiles refers to a strip profile rolling process that achieves a variable thickness profile in a steel strip by shifting material from the center of the strip to its edges. This shifting is accomplished arranging rolling elements in a diagonal progressive arrangement, generating a pressure front from the center to the edges of the material. A disadvantage of this process is that each rolling step can only reduce thickness in a small percentage of the total thickness, therefore, significant number of rollers are required to achieve considerably high thickness reductions, as the ones needed in the commercial vehicle industry.
Some other attempts have been made to achieve variable thickness in steel materials, but none has been found suitable the amount of weight reduction required the manufacturing of steel side rails for the transportation industry.
Therefore, there is an identified need for a strip comprising a gage variation along its width through the entire length of a commercial vehicle side rail component. Subsequently, there is a need for a strip forming system which is able to reduce efficiently the thickness of the strips in the least amount of rolling steps.
It is therefore an object of the present invention to provide a method for processing metallic strips to form a variable thickness profile which could be used in the manufacturing of commercial vehicle's side rails.
The present invention is also directed to provide a system which enables cost-effective manufacturing of variable thickness steel strips compared to the methods found in the prior art.
The embodiments of the invention comprise a combination of features and advantages that substantially improve the rolling methods and systems for reducing the thickness of a metal strip. These and various other features and advantages of the invention will be readily apparent to those skilled in the art upon reading the following detailed description of the preferred embodiments of the invention and with reference to the attached drawings.
For a detailed description of the preferred embodiments of the invention, reference will be made to the attached drawings in which:
Various embodiments of the invention are described with reference to the attached drawings wherein like reference numerals are used for like parts throughout the various views. The drawing figures are not necessarily to scale. Certain features of the invention may be shown exaggerated in scale or in somewhat schematic form. Likewise, some details of conventional elements may not be shown for the sake of clarity and conciseness.
The preferred embodiments of the invention refer to a method and system for varying the gage of a strip. The invention is susceptible to embodiments of different forms. Specific embodiments of the invention are shown in the drawings, and will be further described, with the understanding that the specification will be considered as an exemplification of the principles of the invention and it is not intended to limit the invention to that as illustrated and described herein. It will be fully recognized that the different teachings of the embodiments discussed below may be employed separately or in any suitable combination so as to produce the desired results.
The process may repeat until the desired thickness in the desired section of the strip is achieved. Additionally, heating means may be placed repeatedly through the process in order to guarantee that the section to be deformed complies with the required temperature to achieve such deformation.
Finally, as shown in detail in
While the preferred embodiments have been shown and described, someone skilled in the art may make modifications thereto without departing from the scope or teachings herein. The embodiments described herein are merely exemplary and are not limiting. There are many possible variations and modifications of the systems and methods which are within the scope of the invention. For example, the number of stretch forming and straightening rolls, pressures and temperatures, among other parameters, may be varied. Consequently, the scope of protection is not limited to the embodiments herein described, but is only limited by the following claims, the scope of which shall include all equivalents of the subject matter of the claims.
Filing Document | Filing Date | Country | Kind |
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PCT/IB15/59371 | 12/4/2015 | WO | 00 |
Number | Date | Country | |
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62087670 | Dec 2014 | US |