Abstract:
Method for coating a glass syringe body for a hypodermic pre-filled glass syringe, wherein at least one emulsion and/or one solution containing at least one layer-forming substance is applied to at least one inner surface of the hypodermic pre-filled glass syringe, which defines an axial direction, wherein at least a partial surface of the inner surface in a syringe cone of the pre-filled glass syringe is subsequently exposed to a plasma, wherein a negative pressure source is arranged in relation to the syringe cone in the axial direction opposite the atmospheric-pressure plasma source, wherein a negative pressure of less than atmospheric pressure is provided by means of the negative pressure source.
Abstract:
The invention relates to a plug for placing on a connection element (1) of a medical syringe, which is connectable to the connection element (1), the plug (2) comprising a through-duct (3) and being formed free of further connectivity or connection elements.
Abstract:
The invention relates to a method for connecting a first component, in particular a lancing means, to a second component, in particular a syringe body, in order to produce a product for medical or cosmetic purposes, by means of adhesion, having the following steps: (a) providing the first and the second component; (b) tempering at least one first contact surface of the first component and/or at least one second contact surface of the second component to a temperature T1; and (c) applying an adhesive to at least one portion of the first contact surface and/or to at least one portion of the second contact surface, wherein the adhesive is at a temperature T2, wherein temperatures T1 and T2 differ only by a tolerance deviation, wherein the tolerance deviation is at most 10° C.
Abstract:
A plastic component is provided that leads to an initial friction reduction with a friction partner. At least part of the surface of the plastic component, which interacts with a surface of a friction partner, is provided with a plurality of structures. The structures are composed of at least one structure type. Between two adjacent structure types, a distance is formed in the range of 10 microns to 1 mm. A width of the structure types is in the range of 10 microns to 100 microns. A height or depth of the structure types is in the range from 1 micron to 100 microns.
Abstract:
A device for producing plastics parts having at least one rod-shaped metal insert, and comprising first and second mold half elements. At least one of the mold half elements is movable along a closure direction (Z). The mold half elements together can form a closed cavity for molding a plastics part, the insert projecting at least in portions into the cavity in order to be overmolded with plastics material, and being substantially arranged between the two mold half elements in a dividing plane which comprises a longitudinal direction (X) and a width direction (Y). At least one of the mold half elements has at least one fixing means wherein the insert can be fixed in the width direction. A positioning means can be arranged at a proximal end of the insert, allowing the insert to be moved along the longitudinal direction (X) into an injection position.
Abstract:
A component for a syringe is disclosed. The component has formed a structure which has a friction-reducing effect due to its shape in the syringe. The component can be, for example, a cylinder, a piston or a seal for the syringe. The structure comprises, for example, elevations or depressions which have a linear, punctiform, elliptical or polygonal design. Also disclosed is a syringe which has at least one such component. The use of a component with a friction-reducing structure makes it unnecessary to use an additional friction-reducing coating, for example silicone, which can lead to undesirable effects on the medicament to be administered with the syringe.
Abstract:
An injection mould having a cavity for receiving a plastics melt and having a temperature-control system. The cavity comprises a plate-shaped first part and a plurality of hollow cylindrical second parts arranged next to one another perpendicularly to the first part. The temperature-control system comprises temperature-control channels divided into channel portions for transporting a temperature-control medium and a first and a second temperature-control medium connection, with at least one first channel portion arranged in parallel with the first part. Second channel portions are connected by a first end to the first channel portion and by a second end to a first end of a third channel portion. Third channel portions are connected by a second end to a fourth channel portion. One of the second channel portions and the connected third channel portion are surrounded at least in part by one of the second parts of the cavity.
Abstract:
The invention relates to a grid element for an inhaler which can be arranged in an air duct between a mouthpiece and a capsule chamber of the inhaler, it being possible for turbulence to be generated by means of the grid element in an airflow passing through the air duct. The grid element is characterised in that it comprises a preferably planar grid-type portion having a grid front side which points towards the capsule chamber and a grid rear side, at least one protruding element being arranged on the grid front side, by means of which a capsule that can be arranged in the capsule chamber can be loosely supported.
Abstract:
The invention relates to a plug for placing on a connection element (1) of a medical syringe, which is connectable to the connection element (1), the plug (2) comprising a through-duct (3) and being formed free of further connectivity or connection elements.
Abstract:
The invention relates to a lancing device (1) for obtaining bodily fluid samples, comprising a base body (3), on one longitudinal-face end (6) of which a removable cap (12) is arranged which has a positioning face (8) with an outlet opening (7), a lancet magazine (4) for receiving at least one lancet (5), which is held replaceably in the base body (3), a drive device (14) for moving a lancet (5) arranged in the lancet magazine (4) back and forth in the direction of the longitudinal axis (2), said lancet being positioned therein in such a way that the tip thereof can exit the outlet opening (7) during the movement back and forth, wherein the lancet magazine (4) has a locking element (30) and the cap (12) has an unlocking element (31) formed to engage in the locking element (30).