Abstract:
A pressure vessel (1) with a separable outer jacket (3) is disclosed. The outer jacket (3) is enclosed at one end by a lid (17) which is arranged to be inserted into the open end of the jacket (3). When inserted into the outer jacket (3), the lid (17) can be rotated between a release position from which the lid (17) can be removed from the outer jacket (3) and a locked position in which the lid (17) cannot be removed from the jacket (3). Once in the locked position the lid (17) can be fixed in place by attaching a retaining ring (19) to the pressure vessel (1). The retaining ring (19) comprises a circular band (67) and a plurality of tabs (69) which act to block channels (51) on the exterior of the lid (19) through which protrusions (57) on the interior of the outer jacket (3) pass when the lid (17) is attached to the jacket (3) preventing the lid (17) from being rotated back to the release position and removed from the jacket (3) whilst the retaining ring is in place.
Abstract:
A vaporiser for liquefied gas has an inlet (2) leading into a chamber (4, 5, 6) having a base and an outlet leading from the chamber. The inlet has a cross- sectional area smaller than that of the chamber and the outlet is disposed at a position spaced above the base of the chamber. The inlet may also be disposed above the base of the chamber and the outlet may be disposed above the inlet. A flow control means (8, 12) may be provided to regulate the flow of liquid gas into the chamber through the inlet. The vaporiser is particularly intended for vaporising liquid carbon dioxide since any solid carbon dioxide which is formed can fall to the base of the chamber, preventing it from blocking the outlet.
Abstract:
A safety device for containing fuel comprises a container having a fuel containing space. A fuel tube is provided within the fuel containing space. The fuel tube is a hallow tube-shaped and has a top connection orifice and a bottom connection orifice, wherein an upper transmitting opening and a lower transmitting opening are formed in a wall of the fuel tube respectively. Furthermore, the fuel containing space contains fuel mixture which is essentially mixed by a gas fuel and petroleum ether, and wherein the fuel mixture flows through the fuel supplying tube, and the flow of the fuel mixture is maintained stable by the regulation of the upper transmitting opening and lower transmitting opening.
Abstract:
The invention relates to a safety device for containers loaded by gas pressure. Said safety device (1) for containers pressurized with gas, in particular for safeguarding the gas side of the working chamber of hydropneumatic apparatuses, such as hydraulic accumulators, comprising a relief apparatus (2) for reducing an elevated gas pressure in the particular container (3), caused by the influence of heat. is characterized in that the relief apparatus (2) is a component (4) that is loaded under the influence of a shear force or compressive force, the shape change of said component under the influence of heat on the safety device (1) in a space (5) closed to the outside occurring in such a way that a fluid-conducting connection (6) from the inside of the container (3) to the outside in the direction of the surroundings is enabled.
Abstract:
The present invention relates to a gas storage (110)for storing a gaseous medium. The gas storage (110) comprises a membrane (101) which is mounted to the gas storage (110) for at least partially enveloping a storage volume (Vi) of the gas storage (110) and wherein the membrane (101) is made of a flexible material such that the shape of the membrane (101) is adaptable to a filling level of gas in the storage volume (Vi). The membrane (101) comprises a reflection portion (102) for reflecting radar beams. The gas storage (110) further comprises a radar level measurement system for determining the filling level of gas in a storage volume (Vi) of the gas storage (110)by emitting radar beams in the direction to the membrane (101) and for detecting radar beams reflected by the reflection portion(102) of the membrane (101).
Abstract:
L'invention porte sur un récipient de conditionnement de mélanges NO/N 2 , telle une bouteille de gaz, comprenant un corps principal (1) comprenant un volume interne (7) ayant une contenance comprise entre 2 et 30 litres et contenant un mélange NO/N 2 à une pression supérieure à la pression atmosphérique, le corps principal (1) étant formé d'un alliage d'aluminium, caractérisé en ce que le corps principal (1) est formé d'un alliage d'aluminium comprenant de l'aluminium et une proportion massique de Cr entre 0,05 et 0,80%, de Cu entre 1 et 3%, de Pb d'au plus 100 ppm, de Zn entre 5 et 8%, et de Mg entre 1 et 3%. L'invention porte aussi sur un mélange gazeux NO/N 2 pour une utilisation pour traiter ou pour prévenir une vasoconstriction pulmonaire ou une hypertension pulmonaire chez l'adulte, l'enfant ou le nouveau né, dans lequel le mélange NO/N 2 est administré par inhalation, ledit mélange gazeux NO/N 2 étant délivré par un récipient selon l'invention au sein duquel il est conditionné.
Abstract translation:该容器具有一本体(1)包括(7),其具有2和30升之间的电容和在高于大气压的压力下含有一氧化氮(NO)/氮气(N 2)的混合物中的内部体积。 主体由铝合金的主要具有在每至多100份的0:05和0.80%的,铜的1%和3%之间(Cu)的,铅(Pb)之间的铝和重量chromuim(Cr)构成的比例FORMED 万,1和3%之间,其中,所述铝含量为85和93之间重量百分比的锌的5%和8%之间(Zn)和镁(Mg)。 因此独立权利要求中包括了以下内容:一种用于在包装容器(2)安装NO / N 2混合物的包装(1)的方法,用于分配NO 2 / N 2混合物(3)一种用于治疗或防止肺血管收缩或肺的方法 高血压的成人,儿童或新生儿。