The present invention concerns a support structure that is adapted to be mounted on the frame of a vehicle to support an object. The present invention also relates to a method for providing a support structure that is suitable to be mounted on any one of a plurality of vehicle frames of different thickness or on any part of a vehicle frame of non-uniform thickness.
A vehicle frame usually includes a pair of longitudinal side rails and a plurality of cross members extending laterally between the side rails to connect them together. Various support structures are attached to the vehicle frame so as to mount components, such as body and engine parts, thereon, or to hang components, such as drive train and suspension system components, therefrom. For example, a vehicle frame is usually provided with spring hangers for supporting the leaf springs of the vehicle's suspension system. Leaf springs are connected between the wheel axles of the vehicle and its frame to absorb the energy of sudden impulses, vibrations or shocks conveyed from the road surface when the vehicle is in motion. Spring hangers are usually mounted on the outside of a vehicle frame, i.e. the side of a vehicle frame that is the first to be subjected to a force having a component acting inwardly with respect to the vehicle in the event of a collision, since space on the inside of a vehicle frame is limited due to the presence of other vehicle components.
Many large vehicles, such as heavy goods vehicles, comprise front underrun protection (FUP) devices that are used to prevent smaller vehicles, such as passenger cars, from being pushed under them in the event of a collision due to the difference in height between the bumpers of small and large vehicles. An FUP device reduces the collision force exerted on the passenger compartment of the smaller vehicle since the force will primarily be absorbed by the front part of the small vehicle instead of by its passenger compartment.
An FUP device is typically adapted immediately inside or behind a traditional bumper at the front of the vehicle. It usually comprises a rigid force-absorbing beam that is connected to a spring hanger by means of a connecting component, such as a fork, shaft or tube. In the event of a collision, the force acting on the FUP device is transmitted via the connecting components to the spring hanger. A vehicle's spring hangers and the joints attaching the spring hangers to the vehicle's frame can therefore be subjected to considerable shearing forces when the vehicle collides with an object. A high number of joints are therefore provided between the spring hangers and the vehicle frame, by riveting or clamping for example, to secure the spring hanger to the vehicle frame. Due to the high number of joints required and because of the limited space available around a vehicle frame, the installation, repair, maintenance or replacement of spring hangers and/or the means joining them to a vehicle frame can be complex, time consuming and costly.
Furthermore, vehicle frames come in a variety of different thicknesses and sizes and even a single vehicle frame can have a non-uniform thickness. The means that secure spring hangers to vehicle frames consequently have to be manufactured in different sizes to suit frames of different thicknesses and sizes.
It is desirable to provide an improved support structure that is adapted to be mounted on the frame of a vehicle to support an object.
According to an aspect of the present invention, a two-part support structure is provided that comprises an object-supporting part, such as a spring hanger, that is adapted to be mounted on a first side of the vehicle frame and a mating part, such as a bracket, that is adapted to be mounted on a second side of said vehicle frame. Either the object-supporting part or the mating part or both comprise at least one pin, i.e. a feature that protrudes from a mating surface of the object-supporting part and/or mating part, such as a rod, spike or stud. Said at least one pin is adapted to pass through at least one opening in the vehicle frame and abut against said mating part and/or object-supporting part. Said at least one pin is adapted to accommodate any one of a plurality of vehicle frames of different thickness or any part of a vehicle frame of non-uniform thickness between the object-supporting part and the mating part.
According to an embodiment of the invention said at least one pin is adapted to accommodate a vehicle frame having a thickness between 5 mm and 15 mm between the object-supporting part and the mating part. Said at least one pin may for example be arranged to accommodate a vehicle frame having a thickness up to a predetermined thickness, such as 10.5 mm. The support structure may therefore be mounted on any one of a plurality of vehicle frames of different thicknesses or on any part of a single vehicle frame of non-uniform thickness whose thickness is equal to, or less than said predetermined thickness.
According to another embodiment of the invention the object-supporting part is adapted to be mounted on an inner side of a vehicle frame i.e. on a side that, in the event of a collision, is not the first side of that vehicle frame to be subjected to a force having a component acting inwardly with respect to the vehicle. When the support structure is mounted on a vehicle frame, said at least one pin is located substantially or completely within the support structure. Said at least one pin is thereby protecting the regular joint from shearing forces resulting from a collision, which means that the number of joints attaching the support structure to the vehicle frame can be reduced.
According to a further embodiment of the invention the vehicle comprises force-absorbing means, such as a front underrun protection (FUP) device or a rear underrun protection (RUP device), and said object-supporting part is adapted to be mounted on a side of said vehicle frame that is distant from the side of the vehicle frame that, in the event of a collision, is the first to be subjected to the force acting on the force-absorbing means. For example, the object-supporting part is adapted to be mounted on the side of a vehicle frame in the vicinity of the FUP device which is furthest away from the force-absorbing means. The object-supporting part is therefore not used for absorbing or reducing shocks directly and can therefore be made of a less robust material than known support structures.
According to another embodiment of the invention both the object-supporting part and the mating part comprise a number of pins, i.e. one or more, whereby said pins of the object-supporting part and the mating part are adapted to be positioned alternately along and/or across at least part of the vehicle frame so as to provide an interdigitated interlock between the object-supporting part and the mating part i.e. where the pins become interlocked like the fingers of folded hands. Such a configuration enables the support structure to withstand greater shear forces should it be subjected to such forces during a collision or when used for towing an object behind the vehicle on which it is mounted, for example. The length of said at least one pin is determined using the thickness of the thickest vehicle frame that is to be accommodated between the object-supporting part and the mating part.
According to a yet further embodiment of the invention the object-supporting part is a spring hanger that is adapted to support a spring, such as a leaf spring made out of a single strip or a plurality of individual leaves, or some other type of spring such as coil spring, spiral spring or cantilever spring, or some other suspension component.
The present invention also concerns a method for providing a support structure that is suitable to be mounted on a first side of any one of a plurality of vehicle frames of different thickness or on a first side of any part of a vehicle frame of nonuniform thickness. The method comprises the steps of providing said vehicle frame with at least one opening, providing an object-supporting part or a mating part or both with at least one pin that is adapted to pass through said at least one opening in the vehicle frame and abut against the corresponding mating part and/or object-supporting part that is mounted on a second side of the vehicle frame. Said at least one pin is adapted to accommodate any one of said plurality of vehicle frames of different thickness or any part of a vehicle frame of non-uniform thickness between the object-supporting part and the mating part. One of said parts, i.e. the object-supporting part or the mating part is secured to the vehicle frame and the other part is secured to the frame-secured part.
According to an embodiment of the invention said at least one pin is adapted to accommodate a vehicle frame having a thickness between 5 mm and 15 mm between the object-supporting part and the mating part when said parts are mounted.
According to an embodiment of the invention the method comprises the step of mounting the object-supporting part on the inside of a vehicle frame having a C-shaped profile. The vehicle frame can however be of any polygonal cross-section such as rectangular, square or even of any non-polygonal cross-section, such as circular or elliptical, in which case the expression “side of the vehicle frame” is intended to mean part of the surface of the vehicle frame. Furthermore the vehicle frame need not be of a uniform cross section.
The present invention also concerns a spring hanger that is adapted to be mounted on a first side of a frame of a vehicle to support a spring. The spring hanger comprises at least one pin that is adapted to pass through at least one opening in the vehicle frame and abut against a mating part that is mounted on a second side of the vehicle frame. According to an embodiment of the invention said at least one pin is adapted to be mounted on a vehicle frame having a thickness between 5 mm and 15 mm.
The present invention further concerns a vehicle that comprises a support structure or a spring hanger according to any of the embodiments of the invention. The invention is particularly, but not exclusively, intended for use in large, heavy or high vehicles such as heavy goods vehicles, trucks and buses.
The present invention will hereinafter be further explained by means of non-limiting examples with reference to the appended figures where;
In
The length of the pins 32 is adapted to be sufficient to enable the pins 32 to pass through a plurality of frames or frame parts of different thicknesses, t. Since the illustrated pins 32 are adapted to be suitable for mounting the spring-supporting part 28 on a vehicle frame that is thicker than the one shown in
Conventional vehicle frames are manufactured with a thickness of 6.0, 6.5, 7.0, 8.0 or 10.5 mm, so the pins 32 could be adapted to accommodate a vehicle frame with a thickness in the range of 5-15 mm, but suitably up to 10.5 mm thick in between the object-supporting part and the mating part so as to make it suitable for mounting on any one of said conventional vehicle frames. The universal support structure can be marked with the range of vehicle frame thicknesses on which it can be mounted, as shown in
The predetermined length of said at least one pin is chosen to be sufficient to accommodate a plurality of vehicle frames or vehicle frame parts of different thicknesses in between the object-supporting part and the mating part.
Number | Date | Country | Kind |
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0502835-2 | Dec 2005 | SE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/SE2006/001437 | 12/19/2006 | WO | 00 | 9/5/2008 |