The invention pertains to a device for suspending a rail, and particularly to a device for suspending a travel rail of an overhead conveyor or a hoisting machine.
From the prospectus (March 2000 edition) entitled “Crane Construction Kit KBK classic and KBK ergo” of the firm Demag Cranes & Components GmbH, Wetter, Germany, there is known a crane construction kit system with C-shaped and I-shaped rails which are open at the bottom, by which one can implement different kinds of constructions, such as monorail telphers, single and double-beam overhead cranes. In each case, the rails are suspended from support structures, other rails, or traversing gears which run into other rails. These suspension systems consist essentially of a rod-like tension element, suspended from the aforesaid support structures, other rails or traversing gears, having at the lower end a steel ball head, which engages with a mating ball cup with plastic slide shells. The ball cup is fastened by a fixing device to the rail being suspended. This ball and socket bearing of the suspension system ensures that the rails align themselves and thus come into a state of equilibrium, i.e., no significant bending load occurs in the tension element.
In a suspension system of C-shaped rails open at the bottom, with a web broadening out toward the top and arranged at the top side of the rail, preferably a Y-shaped or T-shaped web, the fixing device includes two identical fixing parts. These fixing parts are formed as sheet metal parts such that, after being fitted together and held by screws, the broadening web of the rail is clamped in the lower region and the ball cup is accommodated in the upper region, while the tension element is passed through an opening.
This type of suspension system has been popular for many years and may be easily installed on any given portion of a rail, since the fixing parts are fitted together and tightened together by the screws to clamp against the rail.
Also known from the firm of Demag Cranes & Components GmbH, Wetter, Germany, is another suspension system for a C-shaped crane rail open at the bottom, with a web arranged on the top side of the rail and opening upward in a Y-shape. This suspension includes a tension element and a single-piece fixing device. The tension element has a tension rod and a lug, which is secured by its bore to a bolt, which runs in the lengthwise direction of the rail and is mounted in the fixing device. Thus, the tension element can swivel transversely to the rail. The tension element is rigid in and against the lengthwise direction of the rail. The staple-shaped fixing device can be shoved onto the web of the rail from one end and can be fastened by a screw at the desired suspension point on the rail. The screw is led through a bore in the web.
European patent application EP 0 860 394 A2 describes the fastening of a tension element with a ball head in a mating ball cup by a fixing device on a Y-shaped web of a rail. The fixing device may be one-piece. The ball head of the tension element is led from above through the appropriately dimensioned opening of the fixing device and then the two-piece ball cup will likewise be introduced through this opening from the side. Whether the fixing device is secured by further means to the Y-shaped web of the rail is not specified.
German patent application DE-A 51 096 288 shows a fixing device for suspending a rail from an I-shaped beam. This C-shaped fixing device, open on top, has two opposite and swiveling gripping arms which, after the fixing device is arranged underneath the web of the rail, are swiveled by their hook-like ends into a fixing position on the top side of the web. The gripping arms are each fixed by a screw in the fixing position. In particular, this type of fixing is distinguished by the ability to adjust the fixing system with regard to the I-shaped rail. Even in the fixing position of the gripping arms there is sufficient lateral play to adjust the screws and move the fixing device itself sideways in relation to the rail. This document does not take up the subject of preventing a collapse in connection with a failure of the screws.
Moreover, there is known from German patent DE 197 53 169 C2 a device for suspending a rail, especially a hollow rail open at the bottom, for an overhead crane. Here, the rail is also characterized by a Y-shaped web arranged on top, being enclosed by a C-shaped fixing device, which is suspended via a ball head and a tension element from an I-shaped rail. The fixing device between the ball head and the Y-shaped web is in two pieces and is joined together by two screws extending transversely to the rail and arranged one behind the other, looking in the lengthwise direction of the rail. Thus, the ball head is grasped by the two parts of the fixing device. A failure of the screws would result in a loosening of the fixing parts, thus releasing the ball head of the tension element.
The embodiments of the present invention provide a device for suspending a rail, such as a travel rail of an overhead conveyor or hoisting machine, which provides for enhanced safety against collapse.
According to the invention, a device for suspending a rail, such as a travel rail of an overhead conveyor or hoisting machine, from a traversing gear or supporting structure includes a tension element, which carries the rail by one end via a fixing device. The fixing device grasps a support element of the rail. The support element widens and extends at least partly in the lengthwise direction of the rail. Enhanced safety against collapse is achieved in that the fixing device includes two fixing parts, which are connected by means of a bolt running in the lengthwise direction of the rail. The fixing regions of the fixing parts swivel toward each other from an open position into a fixing position, and the support element of the rail rests against the bearing surfaces of the fixing parts, even in the open position, and when a fastening means connecting the fixing parts is released. As compared to the prior art, the fastening means serves only to secure the fixing device in the lengthwise direction of the rail. The fixing device, which is in the form of gripping arms, is secured to the support element of the rail because of its construction, without the fastening means, and not because of the otherwise customary clamping screws that hold together fixing parts of a fixing device. A bearing surface is arranged on a first fixing part and a mating surface is arranged on a second fixing part. This configuration restricts a further opening of the fixing parts when the fixing device is in the open position. In order to distribute the limiting forces more evenly over the fixing device, one bearing surface and one mating surface are arranged on each of the fixing parts.
Because of the frictional connection of the screws to the web, the fixing device is prevented from sliding along the rail, without weakening the web.
In another embodiment, the fixing device, in an open position, can be shoved onto the support element only in the lengthwise direction of the rail. Thus, the fixing device is not simply put together from two pieces at the site of the desired fastening, as is the case with the prior art. This ensures that the fixing device will not open and the rail will not be dropped if the otherwise customary clamping screws fail.
Optionally, the support element of the rail is configured as a Y-shaped or a T-shaped web running in the lengthwise direction of the rail and arranged on top of the rail. The web should be especially well grasped by the fixing device.
In order to hold the support element of the rail in the fixing device without danger of dropping, a lengthwise opening is arranged in the lengthwise direction of the rail, which narrows to a gap region in the direction of the rail being suspended, which region is narrower than a widening region of the support element of the rail, and in which the support element is held.
In order to carry the rail safely, the fixing device has bearing surfaces in the region of the lengthwise opening, on which the support element rests.
In another embodiment, the fixing device comprises two fixing parts, which are connected in the manner of pliers by means of a bolt running in the lengthwise direction of the rail and which can swivel toward each other from the open position into the fixing position by their fixing regions. The fixing parts are held in the fixing position by fastening means in the form of screws. In the fixing position, the fixing regions of the fixing parts are pretensioned against the sides of the support element, in the lengthwise direction of the rail.
The fabrication of the fixing device is facilitated in that the fixing parts are identical.
The area of application of the suspension system is enlarged in that the fixing device is joined to the tension element.
These and other objects, advantages, purposes and features of the present invention will become apparent upon review of the following specification in conjunction with the drawings.
In
These suspensions 1 have pivoting bearings and thus have a pendulum type design, which ensures that rail 2 and travel rails 3 automatically orient themselves and thus come into a state of equilibrium, i.e., there is no significant bending load in the suspension 1, or in particular in the tension element 6 arranged in the suspension (see
Thus, it is possible to grab the hoisting machine at the load or a suspended switch and move it along the rail 2 and the travel rail 3 without a special drive unit. When moving along the travel rail 3, it often happens due to the flow of force off center—and depending on the particular position of the hoisting machine on the rail—that rail 2 and the hoisting machine will become slanted relative to a position perpendicular to the travel rails 3. This slanted position is around 20 to 30 degrees. Normally, such a slanting would result in a seizing of rail 2 or traversing gears 4 on the travel rail 3. But, as previously mentioned, because the suspensions 1 are of a pendulum type, when travel rails 3 become crooked, their mutual spacing is simply reduced. Traversing gears 4 can continue to travel unhindered in the travel rails 3. Here, pendulum suspension 1 means that a turning about a vertical axis and also a lateral tilting are enabled.
As shown in
Fixing parts 9a, 9b have limited angular mobility around the bolt 7 and form a kind of pincer mechanism to restrain the rail 2. However, a special feature of fixing parts 9a, 9b is that their angular mobility is limited such that even in the open position, the ends 2b of the web 2a cannot slip down from the lengthwise opening 12 of the fixing device 9. Thus, ends 2b of web 2a are firmly restrained.
In the first embodiment, fixing device 9 of suspension 1, including its fixing parts 9a and 9b, has an intermediate space 16 open at the top, running transversely and horizontally when viewed in the lengthwise direction of the rail 2. Intermediate space 16 is bound by a U-shaped fixing device 9, including its web-like suspension regions 9c. On the inner sides 9e of suspension regions 9c of the fixing device 9, which face each other, flat conical projections 9f are arranged. Bores 13 of the suspension regions 9c of the fixing device 9 for the bolt 7 are continued centrally in these projections 9f. Because of the projections 9f, intermediate space 16 is narrowed and resting surfaces are created for the pivoting bearing 8.
Moreover, intermediate space 16 divides the pivoting connection of the two fixing parts 9a, 9b into a first and a second hinge-like pivot region. Each of these pivot regions has an arm 9g of the fixing region 9d of the particular fixing part 9a, 9b. Each of the arms 9g receives a portion of the bore 13 for the bolt 7, roughly down the center in the lengthwise direction of the rail 2. The arrangement of arms 9g, bolt 7 and bore 13 is comparable to a multiple-section bolt connection.
To accomplish the aforementioned limiting of the angular mobility of the fixing parts 9a and 9b, bearing surfaces 17 are formed on one fixing part 9a and mating surfaces 18 on the other fixing part 9b. The mating surfaces 18 are arranged on the lower sides of the free ends of the arms 9g and are basically oriented horizontally. Bearing surfaces 17 are situated at the side next to the beginning of the arm 9g on the fixing part 9a, 9b, which is opposite the free end. Thus, they lie opposite each other in relation to the bolt 7.
In the open position of fixing parts 9a and 9b, bearing surfaces 17 and mating surfaces 18, which are arranged like the clamping jaws of pliers in relation to each other, come to bear against each other. In the fixing position, the bearing surfaces 17 are separated from the mating surfaces 18 by a gap 19. However, the bearing surfaces 17 and the mating surfaces 18 do not prevent a closing movement, i.e., a bearing against the web 2a between the gripping levers.
To be able to secure fixing device 9 at a desired position in the lengthwise direction after it is shoved onto the web 2a or put together around the web 2a, two screws 14 are provided. Screws 14 pass through the fixing parts 9a, 9b at such a height that they do not interfere with the web 2a and that they cross through the opening region 12b of the lengthwise opening 12 beneath arms 9g. By means of screws 14, fixing parts 9a, 9b can be moved about the bolt 7 and swiveled from the open position to the fixing position against each other, until the ends of the gripping arm regions 9d come to bear against the web 2a. It should be stressed once more that this clamping serves mainly to secure the fixing device 9 in the lengthwise direction of the rail 2 and has basically no fixing or supporting function.
Accordingly, the size and the height of opening region 12b of the lengthwise opening 12 is configured such that screws 14 have sufficient room to cross the lengthwise opening 12 beneath bolt 7 and above web 2a. However, the height of the lengthwise opening 12 is not enough to shove fixing device 9 in the assembled condition from one end of rail 2 onto its web 2a in the lengthwise direction of the rail 2, which runs essentially horizontally. Such a movement is prevented because cylindrical connection sleeves 2c are arranged on web 2a in the upper opening of the web 2a, at the start and end of rail 2. Connection sleeves 2c serve to join the abutted ends of two rails 2. Additional connection sleeves 2c are located at the C-shaped lower ends of rail 2 (see
Thus, fixing device 9 must be assembled at the desired suspension point on the rail 2. Two fixing parts 9a, 9b are joined together without bolt 7 and screws 14 at the desired suspension point on rail 2 so that bores 13 are aligned and the web 2a of rail 2 is grasped by the fixing regions 9d of the fixing device 9. Then, bolt 7 is inserted into bore 13 from one side, in the lengthwise direction of rail 2, so that it passes through the part of bore 13 of the first two arms 9g of the fixing parts 9a, 9b. Tension element 6, including pivoting bearing 8, is then inserted into the intermediate space 16 and lined up with bore 13. Bolt 7 is shoved further through pivoting bearing 8, and the remainder of bore 13 into the two second arms 9g of the fixing parts 9a, 9b until the head 7c of bolt 7 comes to rest against fixing device 9. At the other side, the other end 7a of bolt 7 sticks out from bore 13. To secure bolt 7 in bore 13, a circumferential groove 7d is provided at the end 7a of the bolt 7 that is sticking out, into which a snap ring 20 is inserted from the side and comes to bear against the other end of fixing device 9.
In an alternative embodiment of fixing device 9 (not shown), the height of opening region 12b and the size of gap region 12a in the open position, or the spacing of the arm-like fixing regions 9d, are configured such that the fixing device 9 can be shoved onto the web 2a of the rail 2 from one end in the lengthwise direction of the rail 2, which runs essentially horizontally. The lengthwise opening 12, especially its opening region 12b, starting from the gap region 12a, is then provided with a sufficient height to allow the web 2a, as well as the connection sleeves 2c, to pass.
In the above-described sample embodiments, tension element 6 is connected to fixing device 9 by means of a pivoting bearing 8. It is also possible to fasten tension element 6 by its lower bore 11 directly to fixing device 9 by means of bolt 7. A knife-edge bearing can be provided in the bore 11, as described above.
Also, the aforementioned sample embodiment describes the preferred use of suspension 1 with single-beam overhead cranes, namely, between rail 2 and travel rail 3. This new suspension 1 is also suitable for suspending the travel rails 3 from suitable support structures or other rails 2. Rail 2 may also be I-shaped.
Changes and modifications in the specifically described embodiments can be carried out without departing from the principles of the invention which is intended to be limited only by the scope of the appended claims, as interpreted according to the principles of patent law including the doctrine of equivalents.
Number | Date | Country | Kind |
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10 2005 047 206 | Oct 2005 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
1660927 | Larsen | Feb 1928 | A |
2156827 | Wehr | May 1939 | A |
2421447 | Watkins | Jun 1947 | A |
3596864 | Stephens | Aug 1971 | A |
3940173 | Ulbing | Feb 1976 | A |
4116134 | Troth | Sep 1978 | A |
4309052 | Drayton | Jan 1982 | A |
5292163 | Matsuyama | Mar 1994 | A |
5598785 | Zaguroli, Jr. | Feb 1997 | A |
5957057 | Nakamura et al. | Sep 1999 | A |
6058849 | Ostholt et al. | May 2000 | A |
6138574 | Zaguroli, Jr. | Oct 2000 | A |
6196133 | Fitzler et al. | Mar 2001 | B1 |
7503263 | Birkigt et al. | Mar 2009 | B2 |
20040238473 | McKay | Dec 2004 | A1 |
20080230503 | Birkigt | Sep 2008 | A1 |
Number | Date | Country |
---|---|---|
A 1 096 288 | Dec 1960 | DE |
197 53 169 | Jun 1999 | DE |
0 860 394 | Feb 1998 | EP |
Number | Date | Country | |
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20070186800 A1 | Aug 2007 | US |