This invention relates to jigs and jigging devices. In particular this invention relates to jigging devices which may be regarded as internal and permanent compared to known jigging arrangements.
The invention also relates to a novel method of jigging.
Jigs and jigging devices are generally well known and widely used in manufacture. Typically, a jig will have various reference surfaces and/or points to permit accurate alignment of parts or tools. It is common to jig parts during many manufacturing processes, so that the parts are held in correct juxtaposition during such processes as punching, riveting, welding, gluing or curing. Jigs are regarded as an essential part of the manufacturing process and represent a significant part of the cost of manufacture as well as demanding logistical consideration during production.
Most jigging processes are carried out using jigs which are external to the object being formed. Such prior art jigging processes often require clamps, temporary braces or profiles of the final form of the object.
Some of the problems presented by prior art jigging can be described, by way of example, in connection with the manufacture of steel-framed vehicles. In the manufacture of such vehicles, in this example the frame is tubular and panels for the vehicle are glued to the frame. During the adhesion process, it is necessary to adjust one panel relative to another and to hold the panels in the correct position while the adhesive cures. In the past, this has been achieved by the use of external clamps, etc. There are drawbacks with the use of clamps, however. For example, clamps must be carefully removed and returned to the panel assembly station, complicating production line issues, Often, damage is caused to the panels due to the pressure required to hold the parts together. Clamps do not contribute to the final assembly strength. In addition, their presence precludes painting and access to other production line issues, such as cabling.
In many instances, it is not possible to progress the vehicle along an assembly line until the adhesive has cured. This results in inefficiency in the manufacturing process, with a costly time delay and/or the need for multiple adhesive stations.
It is an aim of the present invention to provide a jigging device and a method of jigging which, at least in some embodiments, can allow parts to be positioned using internal, not external, means. It is a further aim of this invention, in some embodiments, to enable automated and programmed tolerance control during the pre-assembly process. It is a further aim to provide jigging which need not be removed, so that assembly line procedures can continue uninterrupted.
Accordingly, this invention provides a jigging device for maintaining a first element in spatial relationship to a second element, the device including a first fastening means for connection to the first element and a second fastening means for connection to the second element, at least one of the first and second fastening means including adjustment means for adjusting the spatial relationship between the first and second elements, characterized in that the first fastening means has a portion adapted for receipt in a portion of the second fastening means, the device also including locking means adapted to assume a position in which the first fastening means is locked to the second fastening means, the locking means in the locked position being located within the portion of the first fastening means received within the portion of the second fastening means and adapted to press the received portion of the first fastening means outwardly against the receiving portion of the second fastening means.
The invention also includes a jigging method for maintaining a first element in spatial relationship to a second element, the method including the steps of:
Preferably, step (5) is followed by step (6) in which the first element is connected to the second element via adhesion, welding or a similar manufacturing process.
It is to be understood that in the jigging method of the invention, the steps can be carried out in an order different from that set out above. By way of example, step (2) can be carried out after step (3).
The first element and the second element can be chosen from a wide variety of options. By way of example, in the manufacture of framed vehicles, the first element may be part of a tubular frame for the vehicle, while the second element may be a panel. Using the jigging device or method of the invention, the panel may be adjusted in any desired spatial relationship to the frame. For example, the panel may be adjusted to be closer to or further away from the frame. The panel may be adjusted so as to be closer to or further away from an adjacent panel.
The first and second fastening means and the adjustment means may similarly be chosen from a wide variety of options, as can the locking means. While it is to be understood that the first and second fastening means, the adjustment means and/or the locking means may be manipulated manually or presented in a relatively unsophisticated form, it is preferred that the locking means, at least, can be activated, to be locked or unlocked, remotely. In this regard, the contents of international patent application No. PCT/AU99/00185 are imported herein by reference. This specification discloses various forms of locking means and remote activation for such locking means and adjustment means.
It is an option with the jigging device and method of the invention that the adjustment means may be associated more with one fastening means than the other. It is a further option that a first adjustment means is associated with the first fastening means and a second adjustment means is associated with the second fastening means, enhancing the ways in which the spatial relationship can be changed.
Using the jigging device and method of the invention, it is possible to adjust one element such as a panel in an exact spatial relationship with a second element such as a steel frame, release the first element from the second element and relocate the same panel or a substitute panel (if the first panel is damaged) in the exactly required location on the frame. Further, it is possible, after the respective elements have been located in the correct position, to remove one of the elements, apply adhesive and replace that element, once again in the exact required location. In this embodiment, the jigging device of the invention will hold the first element in the correct location with respect to the second element while the adhesive cures.
The fastening means may be connected to the element in any desired way, including by using adhesive, by using a collar into which the fastening means can be fitted, by using double-sided tape (of suitable peel strength), by otherwise attaching the first fastening means to the element, or by moulding or forming the fastening means in or on the element.
The adjustment means may provide adjustment in any desired manner. By way of example, the adjustment means may have a series of serrations or a screw thread, in each case adapted to be received in a complementary shape. By way of further example, the adjustment means may have first and second parts, one being able to slide into the other to permit adjustment.
While the jigging device of the invention can incorporate locking means working along the same principle as the fastening and release systems of international patent application No. PCT/AU99/00185, it is a further option that the jigging device of the invention may be “intelligent”—namely, the jigging device may possess means which enables automated adjustment of the first element relative to the second element. By way of example, the intelligent means may be capable of sensing an undesirable gap between adjacent panels and of automatically activating the adjustment means to close the gap so that it falls within a preset tolerance. In this way, panels, etc, can become self-adjusting.
It is also to be understood that the jigging device and method of the invention can be used in different ways. The jigging device can be used to temporarily fasten one element to another, while enabling the accurate positioning of the elements. Once the correct position of the elements has been achieved, one element can be locked to the other by use of the jigging device of the invention. Optionally, the jigging device can permit disassembly of the elements while potentially maintaining the correct setting. On this basis, when the elements are assembled again, they immediately are located in the correct, predetermined, relative position.
The invention will now be described in relation to certain non-limiting embodiments illustrated in the attached drawings, in which:
FIGS. 1 to 3 illustrate, in cross-sectional view, a first embodiment of the jigging device and method of the invention;
FIGS. 4 to 9 illustrate in more detail and in magnified view some of the parts of the embodiment shown in FIGS. 1 to 3;
FIGS. 10 to 13 illustrate in cross-sectional view a second embodiment of the jigging device and method of the invention;
FIGS. 19 to 22 show in cross-sectional view a third embodiment of the jigging device and method of the invention;
FIGS. 1 to 3 show a first element (panel 10) being maintained in a spatial relationship with a second element (tubular steel frame 12).
As can be seen from
Adjustable capsule 18 is shown in more detail in FIGS. 4 to 8, while panel fastener 20 is shown in close-up view in
A top view of adjustable capsule 18, as shown in
With reference to
Panel fastener 20, shown in
To operate this first embodiment, fastener insert 14 is positioned within tubular steel frame 12, preferably by adhesion. Adjustable capsule 18 is placed within fastener insert 14, with locking pin 22 in the position shown in
Referring now to FIGS. 10 to 14, once again fastener insert 14 is shown inserted in tubular steel frame 12 (
As seen from
A top view of the second embodiment is shown in
The third embodiment is shown in FIGS. 19 to 28. This embodiment is similar to the previous embodiment and like parts will be labelled with like numbers. However, whereas the previous embodiment showed a double fastener via locking pins 48 in panel plate 46, the present embodiment has a single fastener with two locking pins.
As before, fastener insert 14 is positioned within tubular steel frame 12 as in
The detail of this embodiment can be seen from
It will be appreciated by one skilled in the art that various changes may be made to the embodiments described and that other modifications may be effected without departing from the spirit and scope of the invention. For example, it is within the scope of the invention to have the adjustment means on the fastening means attached to the panel rather than to the tubular steel frame, as illustrated. It is also within the scope of the invention to have adjustment means on both fastening means.
Industrial Applicability
The invention represents an important advance in jigging arrangements and is capable of making assembly line production far more accurate and efficient, while at the same time greatly reducing costs.
Number | Date | Country | Kind |
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PR 3851 | Mar 2001 | AU | national |
This application is a continuation of International Application No. PCT/AU02/00322, filed Mar. 20, 2002, which was published under PCT Article 21(2) in English and is incorporated herein by reference. International Application No. PCT/AU02/00322 claims priority from Australian Patent Application No. PR 3851, filed Mar. 20, 2001, which is also incorporated herein by reference.
Number | Date | Country | |
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Parent | PCT/AU02/00322 | Mar 2002 | US |
Child | 10663978 | Sep 2003 | US |