Abstract:
In a method for tracking and for verifying the integrity of consignments of goods with a transport container which has a data logger for recording status data of the transport container and optionally a seal, the transport container being sent from a place of origin to a destination as part of a transport order, it is provided that at least a first digital image of the seal, of the transport container and/or of the goods arranged in the transport container is created at the place of origin and at the destination and that the digital images are compared by means of a comparison algorithm of a data processing unit in order to determine the extent to which the images match and in order to output as a result of the comparison algorithm whether the consignment of goods has remained intact or not.
Abstract:
In a transport container for transporting temperature-sensitive transport goods, there is a chamber for receiving the transport goods and a shell enclosing the chamber. The shell has at least one first latent heat storage element wherein the heat storage element is arranged in a heat exchanging relationship with the chamber. The at least one first latent heat storage element includes a carrier material which is dimensionally stable at use temperature, and a phase change material distributed within the mass of the carrier material, so that the at least one first latent heat storage element is dimensionally stable in a temperature range both below and above the melting point of the phase change material. The at least one first latent heat storage element is designed as a casting part which surrounds the chamber in one piece, seen in cross section, at least over half the circumference.
Abstract:
In a transport container for transporting temperature-sensitive transport goods, comprising a chamber for receiving the transport goods and a casing which surrounds the chamber and is equipped with a door device, the door device comprises at least one door leaf for closing a door opening of the casing, wherein at least one inner circumferential seal is provided between the at least one door leaf and the door opening and at least one outer circumferential seal is provided between the at least one door leaf and the door opening. The inner and outer seals each comprise at least one sealing element that can be displaced by a pressure difference and that, when a predetermined pressure difference is exceeded, opens an air passage from the outside to the inside or vice versa, wherein a buffer space delimited by the inner and outer seals is arranged and that a temperature control element is provided to cool the buffer space.
Abstract:
A transport container for transporting temperature-sensitive transport goods includes an interior for receiving the transport goods and an enclosure enclosing the interior and provided with a heat insulation, wherein at least one latent heat accumulator and at least one active temperature-control element are provided for controlling the temperature in the interior. The enclosure is preferably a multilayer enclosure, wherein a heat insulation, a latent heat accumulator, and optionally an active temperature-control element, are configured as mutually separate, superimposed layers of the enclosure.
Abstract:
A honeycomb structure element including an at least partially closed honeycomb structure, which is formed by joining at least two structured layers having honeycomb cells that are open on one side. A method for manufacturing a honeycomb structure element including forming an at least partially closed honeycomb structure by joining at least two structured layers having honeycomb cells that are pen on one side.
Abstract:
A data logger for acquiring and recording sensor data associated with a transport container includes a first sensor, a memory for the storage of sensor data acquired by the first sensor, a radio-frequency module for wirelessly transmitting the sensor data, a battery, a second sensor for sensing a transport mode of the transport container, and an energy management circuitry that is connected with the second sensor and with the radio-frequency module. The energy management circuitry is configured to switch between a plurality of operation modes including a default operation mode in which the radio-frequency module sends sensor data according to a defined time pattern that is independent of a transport mode. The operation modes further include at least one transport operation mode in which the radio-frequency module sends sensor data according to a time pattern that is dependent on the transport mode sensed by the second sensor.
Abstract:
An insulation-time determining device for a thermally insulated container with a latent heat accumulator includes energy-calculating equipment for calculating the amount of thermal energy stored in the latent heat accumulator from at least one status parameter of the thermally insulated container or the interior thereof as well as display equipment for displaying the calculated amount of stored thermal energy or a value correlated therewith. The insulation-time determining device also includes insulation-time calculating equipment to calculate a maximum insulation time provided with a safety correction factor of the thermally insulated container from the calculated amount of stored thermal energy or a value correlated therewith and a specified external temperature progression outside the thermally insulated container, during which maximum insulation time a specified temperature range is neither fallen below nor exceeded in the interior of the thermally insulated container.
Abstract:
An insulating element for thermally insulating spaces, including closed cells, in which a first and a second group of closed cells are formed by first or second recesses in a first or second flat element and the first and the second flat elements form first or second connection regions between recesses adjacent to the edges of the openings, to which respectively a flat covering element closing the openings of a plurality of first recesses is bonded on a front side of the flat element. The second recesses are arranged between the first recesses on a rear side of the first flat element and the first recesses are arranged between the second recesses on a rear side of the second flat element such that the space remaining of the first and second recesses between the first and the second flat elements amounts to less than 50% of the space enclosed by the first and second recesses.
Abstract:
A transport container for transporting temperature-sensitive transport goods, including an interior for receiving the transport goods, is definable by an enclosure made up of several layers including at least one latent heat accumulator layer or at least one latent heat accumulator element, at least one energy distribution layer made of a highly heat-conductive material disposed on a side facing away from the interior, and/or on the side facing the interior, of the at least one latent heat accumulator layer and/or the at least one latent heat accumulator element.
Abstract:
In a packaging for pharmaceutical products, comprising a primary packaging for receiving a dose or several doses of a pharmaceutical product, and a secondary packaging designed as a cardboard box, in which the primary packaging is received, the primary packaging is arranged in an insulation shell having a latent heat storage material and the insulation shell is held in the secondary packaging at a distance on all sides to form an insulation gap.