Abstract: A radiation protection device comprising at least one metal-containing layer, the metal portion of the metal-containing layer being at least 50% by weight, the binder structure of the metal-containing layer having a Shore 00 hardness less than or equal to 100 and/or the binder structure of the metal-containing layer having a thickness less than or equal to 1.1 g/cm3. A method for manufacturing a radiation protection device of this type, the material of the metal-containing layer being applied by adhesion to a support and/or support material and/or fabric strip by powder coating and/or calendering and/or injection moulding and/or blow moulding and/or lamination.
Abstract: An X-ray protective garment for protecting a user against X-rays emitted by an X-ray source, wherein the X-ray protective garment comprises: a first X-ray protective garment with a first X-ray protective material having a first lead equivalent value; and a second X-ray protective garment with a second X-ray protective material having a second lead equivalent value. The second X-ray protective garment overlaps the first X-ray protective garment in a predetermined area. The first and second lead equivalent values in addition provide a predetermined protection against X-rays in the predetermined overlapping area.
Abstract: The present invention relates to a process of producing a boom part from a sheet metal blank, in particular a process of producing a boom part having a bearing seat, in which the starting material is merely formed by bending. Thus, the production process is simplified. In addition, the present invention relates to a process of producing a boom that is closed at both ends by joining two boom parts produced by means of the process of the present invention. Furthermore, the present invention comprises boom parts and booms which are produced by means of one of the processes according to the present invention.
Abstract: A radiation protection material (10) is arranged between at least two layers (21, 22) of at least one plastic-containing element in order to produce a radiation protection element. At least part of the gas present between the at least two layers (21, 22) is removed. The at least two layers (21, 22) are connected with each other.
Type:
Grant
Filed:
June 4, 2020
Date of Patent:
November 22, 2022
Assignee:
Mavig GmbH
Inventors:
Manfred Koestlmeier, Frank Klein, Felix Stangl
Abstract: The present invention relates to a device for locking a connection element to a tube as well as a system comprising the same. The device is configured such that the securing segment of its securing element is automatically engaged with a recess of the connection element when the connection element has reached its locking position within the tube. Thus, the connection element is locked in the tube. Furthermore, the present invention relates to a method for locking a connection element in a tube.
Abstract: A radiation protection material (10) is arranged between at least two layers (21, 22) of at least one plastic-containing element in order to produce a radiation protection element. At least part of the gas present between the at least two layers (21, 22) is removed. The at least two layers (21, 22) are connected with each other.
Type:
Application
Filed:
June 4, 2020
Publication date:
December 10, 2020
Applicant:
Mavig GmbH
Inventors:
Manfred KOESTLMEIER, Frank KLEIN, Felix STANGL
Abstract: The present invention relates to goggles, in particular radiation protection goggles, for receiving at least one radiation protection material which protects the eyes of a patient from radiation being harmful to the eyes, in particular ?-radiation and/or x-ray radiation and/or gamma radiation. The goggles comprise: two goggle frames, each having a continuously circumferential side wall structure completely enclosing an area around the respective eye of the patient, a length-adjustable connection element between the two goggle frames in the area of the patient's nose in order to change the distance between the two goggle frames relative to one another, and at least one length-adjustable holding element for fixing the two goggle frames at the patient's head. The side wall structures are configured for receiving at least one radiation protection material substantially completely around its circumference.
Abstract: The present invention relates to goggles, in particular radiation protection goggles, for receiving at least one radiation protection material which protects the eyes of a patient from radiation being harmful to the eyes, in particular ?-radiation and/or x-ray radiation and/or gamma radiation. The goggles comprise: two goggle frames, each having a continuously circumferential side wall structure completely enclosing an area around the respective eye of the patient, a length-adjustable connection element between the two goggle frames in the area of the patient's nose in order to change the distance between the two goggle frames relative to one another, and at least one length-adjustable holding element for fixing the two goggle frames at the patient's head. The side wall structures are configured for receiving at least one radiation protection material substantially completely around its circumference.
Abstract: The present invention relates to a radiation protection arrangement, in particular for attachment to a support rail, which is attached to a side of a treatment table, comprising: a holder on which a radiation protection drape is arranged, wherein the holder is attachable to the support rail and comprises a fastening means with which the holder can be fastened to the support rail. The fastening means is formed on a side of the holder and comprises at least one first bracket part and at least one second bracket part. The first and the second bracket parts each have an L-shaped profile with a first leg and a second leg, wherein the first and the second bracket parts are arranged such that the first legs are aligned in parallel and the second legs face each other. The first bracket part is arranged at an upper edge of the holder and the second bracket part is arranged at the lower edge of the holder.