This invention relates to hydroforming a tube and, more particularly, to forming a tube with an article attached thereto.
Hydroforming is well known for its ability to form an integral hollow beam with a complex shape, something which would otherwise have to be fabricated from several pieces and/or bent to shape. Typically, a round tubular blank is inserted between a pair of dies which have an internal cavity in the form of the desired exterior shape of the final part. Then the ends of the tube are plugged and the interior chamber of the tubular blank is pressurized, generally with water or hydraulic fluid, to force it into the shape of the die cavity. The completed part is then de-pressurized and removed.
The hydroformed part often, in its final application, requires that one or more articles be attached to it. For example, hydroformed components are used in making subframe assemblies in automobiles, such as shown in
Referring to U.S. Pat. No. 5,845,382 to Schultz et al., it is known in the manufacturing of a seat frame assembly to position a hollow cylindrical part in a die and circumferentially around a tube to be hydroformed prior to hydroforming, and then hydroforming the tube to expand it outwardly to integrally engage the outer cylindrical to effectively lock the pieces together. While this technique does limit the requirement for additional assembly and welding steps, its application is limited to situations where the article to be circumferentially attached surrounds the hydroformed part.
Accordingly, there is a need for an improved method and apparatus for attaching an article to a hydroformed tube which can decrease process costs and time, as well as increase the accuracy and repeatability with which mass produced parts are fabricated.
In one aspect, the present invention provides an apparatus for hydroforming at least one tubular blank comprising a closeable die having at least one cavity therein for confining at least one tubular blank, the die being adapted to receive at least one article and position the at least one article substantially in contact with the at least one tubular blank at at least one contact point, and pressurizing means for internally pressurizing the at least one tubular blank to a desired pressure, the closeable die being adapted to permit access to the at least one contact point while the die is in a closed condition so that the at least one article may be attached to the at least one tubular blank when the die is closed.
In a second aspect, the present invention provides an apparatus for hydroforming at least one tubular blank comprising a die having at least one cavity therein for confining at least one tubular blank, the die adapted to receive at least one article for attachment to the at least one tubular blank, pressurizing means for internally pressurizing the at least one tubular member to a desired pressure, and attachment means for attaching the at least one article to the at least one tubular blank, wherein the die and the attachment means are adapted to permit the at least one article to be attached to the at least one tubular blank when the at least one blank is disposed in the at least one cavity.
In a third aspect, the present invention provides a method for hydroforming at least one tubular member comprising the steps of placing at least one tubular blank in at least one cavity defined in a die, the at least one cavity having an internal surface corresponding to a desired configuration of a final tubular member, the at least one tubular blank having an internal chamber and a wall, placing at least one article in the die, confining the at least one tubular blank and the at least one article in the die, sealing the internal chamber, pressurizing the internal chamber so as to cause the at least one blank to conform to the internal surface of the at least one cavity to create the at least one tubular member, contacting the at least one article with the wall of the at least one tubular member, and attaching the at least one article to the wall of the at least one tubular member.
For a better understanding of the present invention, and to show more clearly how it may be carried into effect, reference will now be made by way of example to the accompanying drawings.
The drawings show articles made according to a preferred embodiment of the present invention, in which:
Hydroforming presses and dies are well known in the art and thus it is necessary only to describe such equipment briefly here. Referring to
In use, a tubular blank (not shown) is positioned in cavity 18 in die half 12 and articles 26 are placed in recesses 24. Locating pins 28 are positioned to hold articles 26 in position against slide 16. Die halves 12 and 14 are closed and the tubular blank (not shown) is pressurized to cause tubular member 22 to be formed against internal surface 20 of cavity 18 and against articles 26. The closing pressure of die halves 12 and 14 may also form articles 26, as desired, and the shape of tubular member 22 may conform locally around articles 26, thereby permitting tubular member 22 to receive articles 26 so as to provide a close fit between them.
After hydroforming, a laser weld is provided through passages 30 to tack weld articles 26 to tubular member 22. The internal pressure in tubular member 22 is released and die halves 12 and 14 are opened to yield the assembled part which may then be further processed (if required) to strengthen the connection between articles 26 and tubular member 22.
Referring again to
While the above description constitutes the preferred embodiment, it will be appreciated that the present invention is susceptible to modification and change without departing from the fair meaning of the accompanying claims.
For example, referring to
Also, the means by which the articles are attached to the tubular member in the die is not critical to the present invention, and laser welding need not necessarily be used. Other types of welding, or an adhesive, or other temporary or permanent fastening means may be employed, such as chemical bonding agents like glue, other mechanical means such as riveting, brazing or soldering. Still other fastening means may be employed.
Further, attachment need not be done while the dies are closed, but may be done after the dies are opened. Attachment may be done while hydroforming pressure is maintained in tubular member 22, or the pressure may be varied or may be released altogether.
The present invention may be employed with any known hydroforming technique and may be used with low-pressure hydroforming and with high-pressure hydroforming techniques. It will be understood that the particular means of hydroforming tubular member 22 is not important to the present invention and, further, that the tubular member need not be formed at all in the cavity, but rather its initial shape may be maintained. Non-cylindrical blank may also be used.
Still other modifications may be apparent to those skilled in the art but these are not intended to depart from the scope of the appended claims. It will be understood in the claims that the step of pressurizing the internal chamber of the blank may be performed either before or after the step of confining the blank in the die cavity.
This application is a divisional of application Ser. No. 09/739,346, filed on Dec. 19, 2000.
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5644829 | Mason et al. | Jul 1997 | A |
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5839777 | Vlahovic | Nov 1998 | A |
5845382 | Schultz et al. | Dec 1998 | A |
5862877 | Horton et al. | Jan 1999 | A |
5879099 | Thoms | Mar 1999 | A |
6065211 | Birkert | May 2000 | A |
6070445 | Holierhoek | Jun 2000 | A |
6092287 | Thoms | Jul 2000 | A |
6098437 | Kocer et al. | Aug 2000 | A |
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Number | Date | Country | |
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20030051327 A1 | Mar 2003 | US |
Number | Date | Country | |
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Parent | 09739346 | Dec 2000 | US |
Child | 10279724 | US |