Abstract:
This invention concerns a fat continuous phase confectionery material which is highly aerated and the method for producing it. The material has a very low density below 0.2 g/cm 3 and at least equal to 0.1 g/cm 3 with an improved soft texture and sensory properties. In the process, nitrogen or equivalent gas is incorporated into the confectionery material at an elevated pressure, the confectionery material deposited at a reduced pressure and then further expanded by reducing the pressure still further as the confectionery material cools.
Abstract translation:本发明涉及高度充气的脂肪连续相糖果材料及其生产方法。 该材料具有低于0.2g / cm 3的非常低的密度,并且至少等于0.1g / cm 3,具有改进的柔软质感和感官特性。 在此过程中,将氮气或等效气体在高压下并入糖果材料中,糖果材料以减压的方式沉积,然后通过在糖果材料冷却时进一步降低压力进一步膨胀。
Abstract:
A coupling system couples together first and second conduits (1) in end to end relationship. The system includes a first formation (6) mounted adjacent an end (4) of a first conduit (1), a second formation (5) mounted adjacent an end (3) of the second conduit (1) and a coupling means (7) engageable with both the first and second formations (5, 6) to couple the ends (3, 4) of the first and second conduits (1) together. The coupling means (7) is adapted to disengage from at least one of the first and second formations (5, 6) if a misalignment of the axes of the first and second conduits (1) exceeds a predetermined amount. A non-metallic conduit (1) comprising electrical conducting means (8) extending between the inner side wall of the conduit (1) and the outer side wall of the conduit (1).
Abstract:
The invention is relating to a method and a device for determining the angle between facets (6, 7, 9) of a transparent object (1) that is defined by these facets (7, 7, 9), whereby a so-called incident light beam (15) of a light source (22) enters the object (1) according to a determined orientation such that this light beam is reflected internally on a facet (6) that has to be measured ad leaves the object (1) in the form of a so-called outgoing light beam (20), whereby the orientation of this outgoing light beam (20) is measured and the orientation of said facet (6) to be measured is calculated on basis of the orientation of the incident light beam (15) and of the outgoing light beam (20) and of the refraction of these light beams (15, 20) at the surface of the object (1).
Abstract:
A process for the electrodeposition of lithium which comprises plating onto a primary cathode in a bath of lithium ions in solution with an organic solvent, and using a supplementary cathode to neutralise by-products detrimental to the process. The supplementary cathode is aluminium and may be used in the same bath or a connected bath. Lithium chloride and lithium hexafluoroarsenate provide the lithium ions. Additionally, a bath may comprise a solution of lithium ions in dimethyl sulphoxide as the organic solvent.
Abstract:
A coupling system couples together first and second conduits (1) in end to end relationship. The system includes a first formation (6) mounted adjacent an end (4) of a first conduit (1), a second formation (5) mounted adjacent an end (3) of the second conduit (1) and a coupling means (7) engageable with both the first and second formations (5, 6) to couple the ends (3, 4) of the first and second conduits (1) together. The coupling means (7) is adapted to disengage from at least one of the first and second formations (5, 6) if a misalignment of the axes of the first and second conduits (1) exceeds a predetermined amount.