Abstract:
A kaleidoscopic cup includes an outer cup, an inner cup, a turning base, a waterproof gasket and plural decorative members. The inner cup is placed in the outer cup, having a multi-sided body in a lower portion, and the sides of the multi-sided body are specially treated with mirror reflection to make its inner surface reflective. The inner cup has an annular insert groove in a bottom of an upper section on the multi-sided body. The waterproof gasket is placed between the outer cup and the turning base, and the decorative members are deposited on the recess of the turning base and that of the inner cup. Then the reflective inner surfaces of the multi-sides body of the inner cup reflect the images of the decorative members to give a kaleidoscopic visual effect to a person looking at the cup.
Abstract:
A container and method of forming intimately bonded plastic components including a lower base with a closed bottom and an upstanding peripheral wall, and an upwardly extending ring telescopically engaged with the base and extending from a lower edge at an intermediate height on said base wall to an upper edge vertically spaced above the base wall to define three distinct zones along the height of the container.
Abstract:
A container adapted to heat and dispense material comprises a container (1) which defines a first compartment (3) adapted, in use, to be filled with the material requiring heating, such as epilatory wax, and a second compartment (9) adjacent to the first compartment and separated therefrom by a dividing wall (8). The container (1) has an inlet to the second compartment (9) in the outer wall thereof which is closeable by a plug or stopper (10). In use, the second compartment (9) is filled with a heated liquid, such as warm water, to heat the material in the first compartment (3), so that it can be applied to a site through an applicator (12).
Abstract:
A can end includes a peripheral cover hook a chuck wall dependent from the interior of the cover hook, an outwardly concave annular reinforcing bead extending radially inwards from the chuck wall, and a central panel supported by an inner portion of the reinforcing bead, characterized in that, the chuck wall is inclined to an axis perpendicular to the exterior of the central panel at an angle between 20° and 60°, and the concave cross-sectional radius of the reinforcing bead is less than 0.75 mm.
Abstract:
The invention relates to a method of preparing material to be further subjected to a heat and/or compaction treatment. The method comprises the step of—introducing the material in a plastic recipient (20) having an inner layer and an outer layer. The inner layer has a melting point lower than the temperature reached during the heat treatment, whereas the outer layer has a melting point higher than the temperature reached during the heat treatment.—closing the plastic recipient in such a way that the inner layer is not appearing at the outer surface of the closed recipient. The invention further relates to a method of disinfecting or sterilizing material.
Abstract:
A heat insulating container is described, including an outer glass container and an inner glass container housed therein with a gap formed in-between as a heat insulating layer. A radiant heat preventive film containing a metal oxide is disposed on at least one of the external surface of the inner container or the internal surface of the outer container, wherein the radiant heat preventive film has a reflectivity of 35% or higher with a wavelength of 15 μm. When the thickness of the radiant heat preventive film is 3000 Å, the Hall mobility “x” (cm2/V·s) and the carrier concentration “y” (cm−3) of the same satisfy the following formulae: y≧−5×1020x+2×1021 and y≧−6×1018x+3×1020. When the thickness of the radiant heat preventive film is 5000 Å, x and y satisfy the following formulae: y≧−5×1020x+3×1021 and y≧−6×1018x+7×1020. Such radiant heat preventive films can have high reflectivity.
Abstract translation:描述了一种隔热容器,其包括外玻璃容器和容纳在其中的内玻璃容器,其间形成有作为隔热层的间隙。 包含金属氧化物的防辐射膜设置在内容器的外表面或外容器的内表面中的至少一个上,其中防辐射膜的反射率为35%以上,波长为 15妈妈 当防辐射膜的厚度为3000时,霍尔迁移率“x”(cm 2 / Vs / Vs)和载流子浓度“y”(cm -3) )满足以下公式:y> = - 5×10 20 x + 2×10 21和y> = - 6×10 18 x + 3×10 6 20。 当防辐射膜的厚度为5000时,x和y满足以下公式:y> = - 5×10 20 x + 3×10 21,y> = - 6×10 8 x + 7×10 20。 这种防辐射膜可以具有高反射率。
Abstract:
A pressure vessel for holding a pressurized fluid such as compressed natural gas ("CNG") includes two end cells and zero or more interior cells. The cell geometry ensures that the cells meet one another at tangential circular surfaces, thereby reducing the tendency of adjacent cells to peel apart. A web secured about the cells includes two sheets that are tangent to the cells. Unused volumes between the cells and the web contain wedges of foam or rubber. A valve provides fluid communication between the interior of the pressure vessel and a pressurized fluid line. The filled weight of one pressure vessel does not exceed the filled weight of a conventional gasoline tank that occupies substantially the same space as the pressure vessel. The pressure vessel may be configured with exterior recesses for engaging conventional gasoline tank straps.
Abstract:
A multiple wall tank for the storage of liquids is manufactured from a rigid inner tank having at least one aperture by applying a layer of a synthetic resin material to the inner tank exterior surface around the aperture, providing a spacing means to provide for substantially free passage of liquids along at least a portion of the inner tank, applying over the layer of synthetic resin and the inner tank an outer sheath of a thermoplastic synthetic resin material, and bonding the outer sheath to the resin material layer surrounding and proximal to the aperture to form a substantially liquid-impervious seal around the aperture.
Abstract:
For a pressurized container for dispensing a fluent material, and particularly an aerosol container, the cover or lid is domed, but is of sufficiently thin material that it might distort under elevated pressure in the container. To inhibit such distortion, one or both of the side walls of the cover recess, which is toward the periphery of the installed cover, are reinforced against deforming or stretching out of the container. In one embodiment, the radially inner wall of the recess engages the radially outer wall of the recess so that outward distortion of the dome of the cover is resisted by the stiffness of both engaged walls of the recess, strengthening the thin material domed cover against deformation under pressure in the container. Specifically, there may be annular ribs or other engageable deformations on walls of the recess that engage and thereby provide interference against the radially outer wall moving up out of the container upon the dome attempting to deform outwardly. In another embodiment, the radially outer and/or inner recess walls are stiffened by being corrugated. In still a further embodiment, the recess walls are partially angled and engage each other in the event deformation commences, and thereby effectively become a double wall construction resisting deformation.
Abstract:
A top cover for an aerosol container comprises a seamable cover which is relatively thin walled with an outer periphery adapted for attachment to an aerosol container body, and a central opening defined by an inner periphery, the cover has a generally rounded dome shaped and the seamable cover is free of a countersunk recess in the vicinity of the periphery.