This application is a broadening Reissue of U.S. Pat. No. 9,521,984, filed on Jul. 4, 2013, and issued on Dec. 20, 2016, the entirety of which is incorporated by reference herein.
The object of the present invention, as the heading of the invention establishes, is an x-ray device with telescopic column, used to make x-rays that can reach any point in space, in any angle and/or direction, also having a design capable of adopting a configuration that facilitates moving the equipment.
The mobile x-ray device comprises a chassis that supports the entire assembly, a telescopic column that comprises a fixed portion jointed to the chassis, the fixed portion having at least one telescopic portion, the device also comprising a telescopic arm that moves along at least one telescopic portion and that supports an x-ray emitter at its end.
The present invention is characterised by the special configuration and design of each and every one of the elements forming part of the equipment, and particularly by the fact that both the column and the arm that supports the x-ray emitter are extendable telescopically, allowing any point in space to be reached, in addition to adopting a compact configuration that facilitates movement and having a balancing mechanism of all movements, of the telescopic arm along the mobile portion and of the telescopic column's extension and retraction.
Therefore, the present invention relates to the field of mobile devices for making x-rays.
The state of the art is familiar with mobile devices for making x-rays, such as the one disclosed in patent document US 20110249807, having a chassis on which a telescopic column is disposed and associated to a telescopic arm that has an x-ray emitter at its end.
The device has means for mechanically balancing the vertical movements that take place, the movement of extension and retraction of the mobile portion of the column and the movement of the telescopic arm along the mobile portion of the column.
The means used in balancing the two movements are counterweights and/or motorised brake systems, which are costly and complex means, depend on having a power supply, and require continuous maintenance.
Consequently, the object of the present invention is to develop a mobile x-ray device that has a telescopic column and a telescopic arm that has an x-ray emitter assembled on its end, wherein the balancing means of the vertical movements are simplified, thereby developing a mobile x-ray device such as the one described herein whose essence is reflected in claim one.
The object of the present invention is a mobile x-ray device with a telescopic column on which there is a telescopic arm assembled that has an x-ray emitter assembled at its end, the mobile device having on the telescopic column means for balancing the vertical movement of the assembly.
The mobile x-ray device is made up of the following parts:
Thanks to the combination of the extendable characteristics of the telescopic column and the telescopic arm, the achievement is on the one hand to reach any part in space where an x-ray is to be made, while on the other hand, adopting a compact configuration, in such a way that during movement, the telescopic column itself does not represent an obstacle in the field of vision ahead of the mobile device.
Both the chassis and the telescopic arm incorporate a parking lock so that the emitter is locked during transport for increased safety.
This configuration for transport provides a field of vision free of obstacles for the operator driving the equipment.
The arm-head assembly can be moved from the lower position of the mobile column in its retracted position (minimum height position) to the upper position of the mobile column in its extended position (maximum height position).
In addition, all the movements of the column are manual and are mechanically balanced, making it possible to position the arm-head assembly at any height between the maximum and minimum height positions.
The movements of the elements assembled on the chassis of the mobile x-ray device include:
Of all these movements there are two that are made in a vertical direction and that need to be balanced: that of the arm-head assembly over the mobile portion of the column and that of extension and retraction of the telescopic column.
In the state of the art this problem is usually resolved by means of counterweights and/or motorised brake systems. In the present invention, thanks to all the movements described above being manual and mechanically balanced correct and continuous functioning of the balancing system is ensured, in contrast to balancing systems based on electrical means, which require maintenance and have a higher risk of failure.
The mechanical balancing mechanism provided to the invention is divided into two parts:
The second balancing mechanism can be modified to admit further vertical telescopic portions by merely adding one new variable radius pulley and one new recovery pulley for each new portion of telescopic column.
The compact telescopic arm comprises various portions, a base portion joined to the column and at least one other portion which slides horizontally with respect to the base portion.
To complement the description being made and with a view to contributing towards a better understanding of the characteristics of the invention, according to a preferred example of a practical embodiment thereof, a set of drawings is attached as an integral part of said description, which by way of illustration and not limitation, represent the following.
In
In the light of the drawings what follows is a description of a preferred mode of embodiment of the proposed invention.
In
The telescopic arm (3) comprises a base portion (7) and at least one other horizontally mobile portion. In a possible mode of embodiment, said telescopic arm comprises:
In
In
The first balancing mechanism comprises:
The fixed column houses the elements mentioned above: the spring (11), the block and tackle (12) and the variable radius pulley (13).
The fixed portion (5) of the telescopic column (2) is fixed to the frame of the chassis and can rotate on it. The rotation mechanism incorporates an orifice concentric with the column that allows passage of the system's electrical cables that run from the chassis (1) to the telescopic column (2) and whose final destination is any device between said orifice and up to the head assembly (4).
In a possible mode of embodiment of the block and tackle (12), it is possible to achieve with only two axes the coaxial alignment of the upper pulleys (12.2) and the variable radius pulley (13) on the one hand with the lower pulleys (12.1) on the other, although this does not exclude other possible block and tackle configurations that can perform the same function.
The system represented in
The second balancing mechanism comprises:
This second balancing mechanism is housed in the mobile portion (6), therefore housing the recovery pulley (15), and the two-radii pulley (14). Furthermore, it has the linear guides (16) between the mobile portion (6) and the fixed portion (5), and the linear guides (17) between the mobile portion (6) and the telescopic arm (3).
The second balancing mechanism can be modified to admit further portions, as many as the mobile portions of the telescopic column (2), by merely adding a new two-radii pulley and a recovery pulley for each new portion of mobile column.
In this
In
On the fixed portion (5) of the telescopic column (2) front bearings (18) and lateral bearings (19) are disposed on either side, which allow the movement of the mobile portion (6) with respect to the fixed portion (5), without heaving or pitching.
A base plate (20) can also be observed for the movement of the telescopic arm (3) wherein the base portion (7) is shown. Said base plate (20) has at both its upper end and its lower end and on both sides front bearings (21) and other lateral bearings (22) which allow perfect guiding without heaving or pitching of the telescopic arm (3) in its vertical movement along the mobile portion (6) to which it is associated.
In
Also the mechanical balancing mechanism has safety means, which in a possible mode of embodiment comprise:
Having sufficiently described the nature of the present invention, in addition to a way of putting it into practice, it is stated that, within its essence, it may be put into practice in other modes of embodiment which differ in detail to the one portrayed by way of an example, and to which the protection sought hereby will likewise extend, on condition that its fundamental principle is not altered, changed or modified.
| Filing Document | Filing Date | Country | Kind |
|---|---|---|---|
| PCT/ES2013/070473 | 7/4/2013 | WO | 00 |
| Publishing Document | Publishing Date | Country | Kind |
|---|---|---|---|
| WO2015/001144 | 1/8/2015 | WO | A |
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| Number | Date | Country |
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| WO2015001144 | Aug 2015 | WO |
| Entry |
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| International Preliminary Report on Patentability for International Application No. PCT/ES2013/070473 dated Jan. 5, 2016. |
| International Search report/Written Opinion for International Application No. PCT/ES2013/070473 dated Mar. 26, 2014. |
| Number | Date | Country | |
|---|---|---|---|
| Parent | 14401168 | Jul 2013 | US |
| Child | 15833939 | US |