TRANSPORTATION ASSEMBLY AND INTERFACE DEVICE
20230347689 · 2023-11-02
Inventors
Cpc classification
B60B33/0002
PERFORMING OPERATIONS; TRANSPORTING
B62B2301/08
PERFORMING OPERATIONS; TRANSPORTING
B62B2301/25
PERFORMING OPERATIONS; TRANSPORTING
B62B3/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60B33/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A transportation assembly for transportation of an object on a surface comprises at least four rolling devices, a transportation body and at least one interface element for each rolling device. The interface element is adapted for connecting the rolling device to the transportation body. The interface element for mounting or integration of a rolling device to/into an object comprises an upper part and a lower part, where the upper part and the lower part comprise complimentary shaped guiding means.
Claims
1-14. (canceled)
15. A transportation assembly for transportation of an object on a surface, the transportation assembly comprising at least four rolling devices, a transportation body and at least one interface element for each rolling device, where the interface element is adapted for connecting the rolling device to the transportation body, and where the interface element comprises an upper part and a lower part which comprise complimentary shaped guiding means and where the lower part of the interface element comprises rolling device fastening means for connecting to the rolling device and the upper part comprises object fastening means for connecting to the object.
16. Transportation assembly according to claim 15, further comprising at least one height element adapted to be arranged between the rolling device and the transportation body.
17. Transportation assembly according to claim 15, where the transportation body comprises elongated profiles having two ends, where each end comprises attachment means adapted to be connected to the interface element.
18. Transportation assembly according to claim 17, where the transportation body comprises corner elements adapted to be connected to the ends of the elongated profiles.
19. Transportation assembly according to claim 18, where the interface element and the corner elements comprise complimentary shaped guiding means.
20. Transportation assembly according to claim 15, where the rolling device comprises a cylinder with an opening at one end thereof and a piston that is arranged reciprocally movably in the cylinder such that the piston can be moved between an upper position in the cylinder and a lower position in the cylinder, which piston comprises a rolling element that is arranged at a first end portion of the piston facing the cylinder opening and that rolls on a surface when the device is to be moved, which rolling device further comprises an actuator system for moving the piston between the upper position and the lower position in the cylinder.
21. Transportation assembly according to claim 20, where the rolling device comprises Mecanum wheels.
22. Transportation assembly according to claim 15, where the guiding means have a tapered form.
23. The transportation assembly according to claim 15, wherein the rolling device is controlled externally by employing a control device and communicating wireless with the rolling device.
24. The transportation assembly according to claim 23, wherein the control device is arranged within a housing of the corner element.
25. Interface element for mounting or integration of a rolling device to/into an object comprising: an upper part and a lower part, where the upper part and the lower part comprise complimentary shaped guiding means, and where the complimentary shaped guiding means comprises a protruding guiding part and a complimentary shaped guiding recess and wherein the lower part of the interface element comprises a rolling device fastening means for connecting to the rolling device and the upper part comprises object fastening means for connecting to the object.
26. Interface element according to claim 24, where the upper part comprises object fastening means for connecting to the object, and the lower part comprises rolling device fastening means for connecting to the rolling device.
27. Interface element according to claim 24, where the protruding guiding part has inwards slanted side faces, such that the cross section of the protruding parts are smaller at the far end than at the base.
28. Interface element according to claim 24, further comprising locking means for locking the upper part to the lower part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The invention will now be described in more detail by reference to the accompanying figures.
[0026]
[0027]
[0028]
[0029]
[0030]
[0031] The transportation body 12 comprises in this example elongated profiles 14, 15, each having two ends, where each end comprises attachment means 16 adapted to be connected to the interface element.
[0032] In this embodiment the attachment means 16 are corner elements adapted to be connected to the ends of the elongated profiles. The corner elements will be described in more detail below.
[0033] The elongated profiles 14, 15 and the corner elements 16 form together a frame, which in this embodiment is the transportation body which can support the object to be transported during transportation.
[0034]
[0035] The corner element 40 is part of the transportation body and comprises or is connected to the interface element. The corner element 40 comprises a housing 47, an interface element 46 and connecting means for receiving and securely connecting to the attachment means 42, 43, 45 of the elongated profiles 41, 44. The connecting means are complimentary shaped with the attachment means of the elongated profiles 41, 44, or other elements comprised in the transportation body.
[0036] The rolling devices 11 comprise each a rolling element or wheel 21. The rolling device 11 as shown in
[0037] In the example in
[0038] The rolling device may further comprise a cylinder 22 with an opening at one end and a piston 23 that is arranged reciprocally movably in the cylinder 22 such that the piston can be moved between an upper position in the cylinder and a lower position in the cylinder. The piston comprises or is connected to the rolling element 21 that is arranged at a first end portion of the piston facing the cylinder opening.
[0039] The rolling device 21 further comprises an actuator system for moving the piston between the upper position and the lower position in the cylinder. In this way, the rolling element may be moved between the upper position and the lower position in order to lift or lower the transportation assembly. In the lifted position, the transportation assembly can use the rolling elements 21 to move, while it may be adapted to have a stable position in the lowered position. There may also be positions between the upper and lower position, in order to move the transportation assembly in position under an object to be moved.
[0040] The rolling element 21 may be arranged in a set position located at the end of the housing, typically the lower end of the housing when in installed position as connected to the device to be moved. In an alternative version the roller element may be movably arranged in the housing between an upper and lower position. The upper, retracted position is a passive stationary position where the wheel element is retracted in the rolling device, and the lower position is an extracted active position for moving the rolling device along a surface.
[0041] Various devices for controlling the rolling element 21 or any other rolling element used in the rolling devices of any embodiment of the invention may be arranged in the housing. There may for example be arranged a wireless receiver and a control device in the housing. The wireless receiver and the control device can be signally connected to each other, and the receiver is arranged for receiving wireless control signals. The rolling device 11 can be arranged with position means for acquiring the position of rolling device 11 relative to its surroundings. The position means can be connected to the control device.
[0042] There are different ways of detecting and acquiring the position of the rolling device 11. One example is determining the position from an external device such as a camera or by using Lidar for measuring the distance from a reference point to the rolling device 11. Another example is to use an RFID chip connected to the rolling device 11 or to the device to be moved. Yet another way is by using ultrasound transmitter or a Bluetooth transmitter connected to the rolling device 11 for determining the position of the rolling device 11. Accurate position can then be found by means of triangulation.
[0043] The position can then be transmitted to the position means of the rolling device 11. These are all well-known methods and will not be described further here.
[0044] An example of the interface element 13 is illustrated in
[0045] The interface element 13 comprises in this example an upper part 31 and a lower part 32 which comprise complimentary shaped guiding means. 33, 34. This means that the guiding means 33, 35 are shaped such that one protruding guiding part 34 can be inserted into a complimentary shaped guiding recess 33. The complimentary shaped guiding means ensures that the upper and lower parts 31, 32, are correctly positioned when joined, and kept in the correct position during use.
[0046] The guiding means 33, 34 may have a tapered form to facilitate the correct positioning.
[0047] The interface element 13 further comprise locking elements 35 which locks the upper and lower parts 31, 32 together. In the example of
[0048] The transportation assembly illustrated in
[0049] In other embodiments, interface elements are adapted to connect the rolling devices to the object to be transported. The object to be transported is in this example itself the transportation body.
[0050] In this latter embodiment, the lower part of the interface element may comprise a rolling device fastening means for connecting to the rolling device, and the upper part of the interface element comprises object fastening means for connecting to the object. The interface elements may be adapted to any possible object to be moved, and provides thus great flexibility of use. The object fastening means can be manufactured by additive manufacturing such as 3D printing, to be specifically adapted to the relevant object. The object fastening means may also be integrated in the object or into a dedicated transportation body.
[0051]