FRAMEWORK AND SYSTEM OF INTERCONNECTED FRAMEWORKS
20210310245 · 2021-10-07
Assignee
Inventors
Cpc classification
E04C2003/0495
FIXED CONSTRUCTIONS
E04C2003/0486
FIXED CONSTRUCTIONS
E04C2003/0491
FIXED CONSTRUCTIONS
International classification
Abstract
A framework includes at least three posts, and at least three connecting ribs between the posts. First ends of the posts define a first plane, and second ends of the posts, that are opposite to the first ends thereof, define a second plane. At least one of the posts is adjustable to define, in combination with a further post of the at least three posts and two connecting ribs between the adjustable post and the further post, an adjustable trapezium that is configured to set a relative orientation between the first plane and the second plane and to thereby set an orientation of an adjoining framework. A system in which a plurality of said frameworks are interconnected.
Claims
1-31. (canceled)
32. A framework defining a building block for defining, in assembly with at least one adjoining framework, a supporting structure, said framework comprising: at least three posts; and at least three connecting ribs between the at least three posts; wherein first ends of the posts define a first plane; and wherein second ends of the posts, that are opposite to the first ends thereof, define a second plane; wherein at least one of the posts is length adjustable, wherein the at least one of the posts that is length adjustable defines, in combination with a further post of the at least three posts and two connecting ribs between the post that is length adjustable and the further post, an adjustable trapezium having a single length adjustable side defined by the post that is length adjustable; and wherein said adjustable trapezium is configured to set a relative orientation between the first plane and the second plane and to thereby set an orientation of the adjoining framework relative to the framework.
33. The framework of claim 32, further comprising at least one hinge between at least one connecting rib and at least one post; and wherein at least one post comprises two hinges, wherein each hinge is configured to connect said post to a respective connecting rib.
34. The framework of claim 32, wherein at least one connecting rib at least one of: comprises two hinges, wherein each hinge is configured to connect said connecting rib to a respective post; and is length adjustable.
35. The framework of claim 32, comprising one or more than one connector that is configured to connect said framework to an adjoining framework; and wherein at least one of: a plurality of connectors is arranged uniformly distributed on a circle; and the connector is arranged or arrangeable at or near an end of a post.
36. The framework of claim 32, wherein the at least one post that is length adjustable comprises a drive configured to adjust the length of said post.
37. The framework of claim 34, wherein the at least one connecting rib that is length adjustable comprises a drive configured to adjust the length of said connecting rib.
38. The framework of claim 32, wherein: the framework is collapsible into a collapsed state; and at least one post comprises two parts that are engageable and disengageable.
39. The framework of claim 32, wherein at least one connecting rib comprises two rib parts that are at least one of: moveable relative to each other; and engageable and disengageable.
40. The framework of claim 34, wherein the at least one connecting rib that is length adjustable comprises the two rib parts that are moveable relative to each other.
41. The framework of claim 32, wherein three posts define a triangular cross section.
42. The framework of claim 32, wherein: at least one hinge between the post and the connecting rib defines an offset; wherein at least one further hinge between the post and the connecting rib defines a further offset that is different from the offset defined by the at least one hinge; and wherein the hinge that defines the offset and the further hinge that defines the further offset are more preferably arranged at opposing ends of a post.
43. The framework of claim 42, wherein the at least three posts comprise at least four posts, and wherein at least two posts are length adjustable; and wherein the four posts define a rectangular cross section or a square cross section.
44. The framework of claim 41, further comprising at least one connector configured to connect said framework to an adjoining framework; and wherein at least one of: a plurality of connectors is arranged uniformly distributed on a circle; and the connector is arranged or arrangeable at or near an end of a post; wherein the framework is collapsible into a collapsed state; wherein at least one post comprises two parts that are engageable and disengageable; and wherein, in a collapsed state of the framework, connectors on opposite sides of the framework are directed in opposite directions.
45. The framework of claim 32, wherein the framework defines at least a portion of a supporting structure for mounting at least one stage apparatus.
46. A system comprising a plurality of the frameworks of claim 32 interconnected; the system further comprising a controller that is configured to control the drive of at least one framework to thereby adjust the shape of said system via said framework; wherein the controller is configured to at least one of: control the drive of at least one post that is length adjustable; and control the drive of at least one connecting rib that is length adjustable.
Description
[0020] In the following description preferred embodiments of the present invention are further elucidated with reference to the drawing, in which:
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[0043] The framework 1, 101, 201, 301 according to the invention comprises at least two post 2, 102, at least two connecting ribs 3, 103 between the posts 2, 102, and wherein at least one of the posts 2, 102 is length adjustable.
[0044] Such a framework 1, 101, 201, 301 is shown in four embodiments. A first embodiment having a triangular cross section is shown in
[0045] Framework 1, 101, 201, 301 comprises at least one hinge 4, 104, 204, 304 between at least one connecting rib 3, 103, 203, 403 and at least one post 2, 102, 202, 302. Having a hinge 4, 104, 204, 304 allows the connecting rib 3, 103, 203, 303 to be connected at any location to the at least one post 2, 102, 202, 302 that is length adjustable, i.e. the adjustable length may be arranged between two connecting ribs 3, 103, 203, 303 that are connected to said length adjustable post 2, 102, 202, 302.
[0046] In the shown embodiments, at least one connecting rib 3, 103, 203, 303 comprises two hinges 4, 104, 204, 304 wherein each hinge 4, 104, 204, 304 is configured to connect said connecting rib 3, 103, 203, 303 to a respective post 2, 102, 202, 302.
[0047] At least one post 2, 102, 202, 302 comprises two hinges 4, 104, 204, 304 wherein each hinge 4, 104, 204, 304 is configured to connect said post 2, 102, 202, 302 to a respective connecting rib 3, 103, 203, 303.
[0048] If the posts 2, 102, 202, 302 extend substantially parallel relative to each other, multiple frameworks 1, 101, 202, 302 may be easily connected. It is noted here that fixed posts 2, 102, 202, 302 may be exactly parallel relative to each other, but that the length adjustable post may only be exactly parallel at a specific length thereof, e.g. when the length thereof is identical to the length of the other posts 2, 102, 202, 302. However, when the length of the length adjustable post 2, 102, 202, 302 is adjusted, it will slightly rotate and result in an orientation that is not parallel anymore to the other posts 2, 102, 202, 302 and thus defines a trapezium shape. The framework 1, 101, 201, 301 may comprise one or more than one connector 5, 105, 205, 305 that is configured to connect said framework 1, 101, 201, 301 to an adjoining framework 1, 101, 201, 301. Preferably, a plurality of connectors 5, 105, 205, 305 are arranged uniformly distributed on a circle, which may be an imaginary circle. This allows adjoining frameworks 1, 101, 201, 301 to be coupled in a variety of relative orientations, as will be explained below for a triangular framework 1, 201 defining an equilateral triangle in cross section, and a rectangular framework 101 defining a square cross section. The connector 5, 105, 305, 405 may be arranged or arrangeable at or near an end of a post 2, 102, 202, 302.
[0049] The framework 1, 101, 201, 301 may be collapsible into a collapsed state (
[0050] At least one post 2, 102, 202, 302 which is preferably the post 2, 102, 202, 302 that is length adjustable, comprises two parts 2a, 2b; 102a, 102b; 202a, 202b; 302a, 302b that are moveable relative to each other, and for the first and second embodiment preferably engageable and disengageable relative to each other.
[0051] The shown frameworks 1, 101, 201, 301 comprise at least three posts 2, 102, 202, 302 thereby providing a robust framework 1, 101, 201, 301. Now, first the framework 1 according to the first embodiment as shown in
[0052] In
[0053] Each framework 1 may be given a desired shape (
[0054] Please note that the opposite ends 6, 7 may be connected freely to one of the opposite ends 6, 7 of a further framework 1, thereby providing improved form freedom and design capabilities. In
[0055] Any shape wherein connectors 5 are arranged uniformly distributed on a(n imaginary) circle may allow adjoining frameworks 1 to be coupled in a variety of relative orientations. For example, a triangular framework 1 defining an equilateral triangle in cross section allows connecting frameworks to be arranged in three positions relative to each other, i.e. having a relative rotation of 120° along the longitudinal axes thereof, wherein the longitudinal axes extend parallel to the posts 2. Due to the post 2 being length adjustable, the system 8 may define three-dimensional shapes.
[0056] The frameworks 1 may be connected and disconnected (
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[0058] At least one hinge 4′ between the post 2 and the connecting rib 3 defines an offset 14, and at least one further hinge 4″ between the post 2 and the connecting rib 3 defines a further offset 15 that is different from the offset 14 defined by the at least one hinge 4′. The hinge 4′ that defines the offset 14 and the further hinge 4″ that defines the further offset 15 are arranged at opposite ends of the post 2. Because the offset 14 and offset 15 differ in length, the framework 1 may be very compact in collapsed state (
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[0061] At least one connecting rib 103, which is preferably the connecting rib 103 that is length adjustable, comprises two parts 103a, 103b that are moveable relative to each other. In the shown embodiment, part 103a and part 103b are slideable relative to each other, and may also be engaged and disengaged (
[0062] Just as for the triangular embodiment, some connecting ribs 103 only serve as reinforcement, and the number of such reinforcing connecting ribs 103 may be increased or decreased dependent on the required strength and rigidity. At both opposite ends 106, 107 of the framework 101, four connecting ribs 103 are arranged between four connectors 105 to form a rigid square, allowing multiple frameworks 101 to be easily connected to form a system 108 of interconnected frameworks 101 (
[0063] Although not explicitly shown, also for the second embodiment, the opposite ends 106, 107 may be connected freely to one of the opposite ends 106, 107 of a further framework 101, thereby providing improved form freedom and design capabilities, similar to the first embodiment described above.
[0064] Furthermore, a rectangular framework 101 defining a square cross section, allows connecting frameworks to be arranged in four positions relative to each other, i.e. having a relative rotation of 90° along the longitudinal axes thereof, wherein the longitudinal axes extend parallel to the posts 102. Due to at least two posts 102 being length adjustable, each framework 101 may be given a desired shape (
[0065] The second embodiment has the advantage that, in a collapsed state of the framework 101, connectors 105 on opposite sides 106, 107 of the framework 101 are directed in opposite directions (
[0066] A third embodiment, which is a further improvement of the first embodiment, is shown in
[0067] Because of the close resemblance and in order to avoid unnecessary repetition in the description, common features are given the same references number plus 200, i.e. framework 201 relates to framework 1, post 202 relates to post 2, etc. Unless explicitly stated otherwise, the features work the same. Relative to the first embodiment, material and weight are saved while functionality is maintained.
[0068] Due to the absence of three connecting ribs 3, the frameworks 201 are easier to connect with an adjacent framework 201, because the positions of the connectors 205 are relatively free to move into an engaging position, also avoiding stresses in the framework 201 that may be caused if the framework 201 is over-defined in a mechanical sense.
[0069] According to the third embodiment, frameworks 201 are normally connected with an end 206 connected to an end 207 of an adjacent framework 201. However, it is still possible to connect an end 206 of a framework 201 to an end 206 of an adjacent framework 201 by using a (not shown) intermediate adapter or a long length adjustable member, such as a turnbuckle. The intermediate adapter may cause the connected frameworks 201 to resemble a framework 1 according to the first embodiment.
[0070] According to the third embodiment shown in
[0071] Although many applications are possible, the framework 1, 101, 201, 301 is especially suitable to define at least a portion of a supporting structure for mounting at least one stage apparatus, such as a lamp and/or a speaker. The versatility offered by the framework 1, 101, 201, 301 offers many advantages for stage building, such as the freedom to design multiple shapes and easy storage and logistics during a (world) tour.
[0072] As mentioned before, a plurality of frameworks 1, 101, 201, 301 may be interconnected to define a system 8, 108, 208. In the first embodiment, at least one post 2 that is length adjustable comprises a drive 21 configured to adjust the length of said post 2. Although not explicitly shown, also the second embodiment may comprise a drive configured to adjust the length of said post 102. Alternatively, the second embodiment may comprise at least one connecting rib 103 that is length adjustable that comprises a (not shown) drive configured to adjust the length of said connecting rib 103. The system 8, 108, 208 may comprise a controller 22 that is configured to control the drive 21 of at least one framework 8 to thereby adjust the shape of said system 8, 108 via said framework 1, 101. Such a controller 22 is only shown for the first embodiment (
[0073] The fourth embodiment of
[0074] The framework 301 according to the fourth embodiment may be slightly adapted to improve transportability thereof. According to a first improvement, the connecting ribs 303 that are shown in the lower plane of
[0075] Although they show preferred embodiments of the invention, the above described embodiments are intended only to illustrate the invention and not to limit in any way the scope of the invention. Accordingly, it should be understood that where features mentioned in the appended claims are followed by reference signs, such signs are included solely for the purpose of enhancing the intelligibility of the claims and are in no way limiting on the scope of the claims. Furthermore, it is particularly noted that the skilled person can combine technical measures of the different embodiments. The scope of the invention is therefore defined solely by the following claims.