Device for holding a pressure cylinder
11242956 ยท 2022-02-08
Inventors
Cpc classification
F17C13/083
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2205/0188
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2270/0105
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2270/0168
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2201/056
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2270/0186
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B2/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F17C2201/058
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The invention relates to a device (10) for holding a pressure cylinder, the device (10) having a frame element (12), a cylinder space (14) for receiving a pressure cylinder and at least one band element (16) for securing a pressure cylinder in the cylinder space (14), the band element (16) being connected to the frame element (12), wherein at least one damping element (20) is connected to the band element (16), the damping element (20) being arranged between the cylinder space (14) and the frame element (12). In this way, the invention provides an improved device (10) for holding pressure cylinders, the device (10) preventing oscillations from being transmitted into the cylinder space (14).
Claims
1. A device for holding a pressure cylinder, the device (10) having a frame element (12), a cylinder space (14) for receiving a pressure cylinder and at least one band element (16) for securing a pressure cylinder in the cylinder space (14), the at least one band element (16) being connected to the frame element (12), wherein at least one damping element (20) is connected to the at least one band element (16), the at least one damping element (20) being arranged between the cylinder space (14) and the frame element (12), wherein the frame element (12) has at least one fastening piece (22) for fastening of the at least one band element (16), the at least one fastening piece (22) comprising at least two mutually spaced-apart tunnels (24) through which the at least one band element (16) is to be led, the at least one band element (16) extending through both of the at least two mutually spaced-apart tunnels (24).
2. The device as claimed in claim 1, wherein at least part of the at least one damping element (20) is arranged between the at least two mutually space-apart tunnels (24) of the at least one fastening piece (22).
3. The device as claimed in claim 1, wherein the at least one damping element (20) is arranged between the at least one band element (16) and the frame element (12).
4. The device as claimed in claim 1, wherein the at least one damping element (20) has a band tunnel (26) through which the at least one band element (16) is to be led, the at least one band element (16) extending through the band tunnel (26).
5. The device as claimed in claim 1, wherein the frame element (12) has at least one rib element (28) which extends at least partially around the cylinder space (14) and the at least one band element (16).
6. The device as claimed in claim 1, wherein the device (10) has a further damping element (30), the further damping element (30) having a further band tunnel (32) through which the at least one band element (16) is to be led, the further damping element (30) being arranged on the at least one band element (16) such that it can be moved along the at least one band element (16), and the at least one band element (16) extending through the further band tunnel (32).
7. The device as claimed in claim 6, wherein the frame element (12) has at least one rib element (28) which extends at least partially around the cylinder space (14) and the at least one band element (16), and further wherein at least part of the further damping element (30) is arranged between the at least one band element (16) and the at least one rib element (28).
8. The device as claimed in claim 1, wherein the at least one damping element (20) is a rubber buffer.
9. The device as claimed in claim 1, wherein the at least one band element (16) is a strap.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further features, details and advantages of the invention become apparent from the phrasing of the claims and from the following description of exemplary embodiments with reference to the drawings. In the figures:
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DETAILED DESCRIPTION OF THE INVENTION
(7) The device for holding a pressure cylinder is referenced in its entirety in
(8) The device 10 comprises a frame element 12 which forms a holding frame for the entire device 10. A cylinder space 14 of the device 10 is defined on the frame element 12, said space being configured for receiving a pressure cylinder. For reasons of clarity, the cylinder space 14 is illustrated merely in
(9) The further components of the device 10 are fastened to the frame element 12. In this case, the device 10 further has a band element 16 for securing a pressure cylinder in the cylinder space 14. In this case, an inner side 18 of the band element 16 points toward the cylinder space 14. The band element 16 is connected to the frame element 12 and can be configured, for example, as a strap. A pressure cylinder which is arranged in the cylinder space 14 is connected to the frame element 12 by means of the band element 16. To this end, the band element 16 has a closing element 34, with which the band element 16 can be closed.
(10) The device 10 further comprises a damping element 20. The damping element 20 is arranged between the cylinder space 14 and the frame element 12 and is connected to the band element 16. Vibrations or oscillations which are transmitted from the outside onto the frame element 12 are reduced, or shielded completely, between the frame element 12 and the cylinder space 14 by the damping element 20.
(11) The frame element 12 can in this case be arranged such that the cylinder space 14 is arranged above the frame element 12. A pressure cylinder which is arranged in the cylinder space 14 therefore rests on the damping element 20 and has no direct contact with the frame element 12 as a result.
(12) The device 10 can in this case have more than one damping element 20. In this case, each damping element 20 can be assigned to a respective band element 16, such that each band element 16 of the device 10 has a damping element 20 which is arranged between the cylinder space 14 and the frame element 12.
(13) The band element 16 can be connected to the frame element 12 by means of a fastening piece 22. Fastening piece 22 is in this case fixedly connected to the frame element 12. The fastening piece 22 further has at least two mutually spaced-apart tunnels 24 through which the band element 16 is to be led. The band element 16 extends through both tunnels 24.
(14) The band element 16 is further mounted in the two tunnels 24 in a movable manner. The band element 16 can thus be displaced in the direction of extent thereof through the tunnels 24.
(15) The damping element 20 is arranged between the two tunnels 24. In this case, the damping element 20 is held between the two tunnels 24 by the band element 16. The band element 16 can further hold the damping element 20 between the band element 16 and the fastening piece 22.
(16) In this case, the damping element 20 can have a band tunnel 26 through which the band element 16 is to be led. The band element 16 extends in this case through the band tunnel 26, such that the damping element 20 extends, at the position thereof, around the band element 16. The damping element 20 is thus arranged between the band element 16 and the fastening piece 22, and also between the cylinder space 14 and the band element 16.
(17) In that case, a pressure cylinder which is arranged in the cylinder space 14 therefore rests merely on the damping element 20 and also has no contact with that part of the band element 16 which is arranged between the cylinder space 14 and the frame element 12. Any oscillations or vibrations which emanate from the frame element 12 are therefore absorbed and reduced, or shielded completely, by the damping element 20.
(18) The device 10 further has at least one rib element 28 which extends from the frame element 12 at least partially around the cylinder space 14. The rib element 28 is used to protect the pressure cylinder arranged in the cylinder space 14 against damage as a result of objects falling onto the device 10.
(19) In the exemplary embodiment according to
(20) In this case, the device 10 can have a further damping element 30 which has a further band tunnel 32 through which the band element 16 is to be led. The band element 16 is in this case arranged in the further band tunnel 32 and extends through the further band tunnel 32. Therefore, the further damping element 30, like the damping element 20, extends around the band element 16. The band element 16 is further mounted in the band tunnel 32 in a movable manner and can move along the direction of extent of the band element 16 in the band tunnel 32.
(21) A further damping element 30 can be provided for each band element 16, such that at least one further damping element 30 is assigned to each band element 16.
(22) Owing to the movable mounting in relation to the band element 16, the further damping element 30 can be arranged at least partially between the cylinder space 14 and the rib element 28. Vibrations and oscillations which are transmitted from the frame element 12 onto the rib element 28 are therefore reduced, or shielded completely, by further damping element 30. Said vibrations and oscillations therefore reach the cylinder space 14 and the pressure cylinder arranged therein merely in an attenuated form, if at all.
(23) The damping element 20 and the further damping element 30 can be configured as rubber buffers. A pressure cylinder which is arranged in the cylinder space 14 is thus shielded by the rubber buffers from oscillations and vibrations which are transmitted from the holding frame 12 and/or the elements 24.
(24) The device 10 further comprises a support element 38 which can support a pressure cylinder which is arranged in the cylinder space 14. The support element 38 extends away from the frame element 12 in a direction perpendicular to a direction of extent of the band element 16. In this case, a bottom of the pressure cylinder is arranged on the support element 38. The support element 38 is further used to protect the bottom of the pressure cylinder against damage as a result of other objects which are arranged outside of the device 10.
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(26) It should be noted in this case that the further damping element 30 in
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(35) The invention is not restricted to one of the above-described embodiments, but can be modified in many ways. In addition to the use in conventional water, land or air vehicles serving for patient transport, such as helicopters, ambulances or boats and ships, the device according to the invention can for example also be used particularly well in conjunction with wheelchairs and the like.
(36) All of the features and advantages, including structural details, spatial arrangements and method steps, arising from the claims, the description and the drawing may be essential to the invention, both individually and in a wide variety of combinations.
LIST OF REFERENCE SIGNS
(37) 10 Device 12 Frame element 14 Cylinder space 16 Band element 18 Inner side 20 Damping element 22 Fastening piece 24 Tunnel 26 Band tunnel 28 Rib element 30 Further damping element 32 Band tunnel 34 Closing element 36 Protective element 38 Support element 40 Bore 42 Rectilinear element 44 Bead 46 Foot 48 Fastening element 50 Opening