Abstract:
Individual portions of ice cream are dispensed from a bulk container. A motor drives a lead screw, to expand a scissor linkage and drive a dispensing head against the bulk container. Pressure applied to the container causes it to collapse and discharge ice cream from an outlet. The lead screw is orthogonal with the movement of the dispensing head and the axis of collapse of the container. The container, motor and lead screw are carried on a drawer which is slidably mounted in a refrigerated housing. Pressure is monitored to regulate operation of the motor. An encoder controls the motor for a specific portion size.
Abstract:
In one aspect, the present invention is directed to a tube-dispenser comprising: a piston, deployed inside the tube of the dispenser, for pushing the substance stored inside the dispenser towards the outlet of the dispenser; and a no-return mechanism for preventing the piston from falling back. According to one embodiment of the invention, the no-return mechanism is entirely deployed inside the tube. In one embodiment of the invention, the no-return mechanism comprises: a ribbed surface deployed along the interior wall of the tube; and at least one dowel attached to the piston correspondingly to the ribbed surface. In one embodiment of the invention, the ribbed surface comprises cogs. Preferably the cogs are of sawtooth form. The ribbed surface may also be a track along the tube, thereby enabling utilizing more dispensed substance than in the case where the ribbed surface is on the entire wall.
Abstract:
A container for storing and dispensing a liquid media. The container includes an end cap that is attached to a container body. The end cap includes at least one valve orifice disposed through the end cap. The at least one valve orifice includes a cut-out in the end cap and a flap attached to the end cap. The flap includes a preloaded hinge attached to the end cap. When the flap is in a first position, it is in contact with an edge adjacent the respective orifice cut-out. When pressure is exerted on the liquid media, the flap is displaced to a second position enabling flow of the liquid media through the cut-out.
Abstract:
A soft container capable of remarkably reducing an economic burden on equipment, comprising a tubular member (10) formed of a soft film, a bottom plate member (12) harder than the soft film fitted to the inside of the first end part of the tubular member (10) and fused airtight with each other, and a ring member (11) harder than the soft film fitted to the inside of the second end part of the tubular member (10) and fused airtight with each other, whereby the volume of the container after servicing can be remarkably reduced, easiness of handling of filled body can be improved, inexpensive, highly productive, and small metal molds can be adopted for forming the bottom plate member (12) and the ring member (11), and the bottom plate member and the ring member can be manufactured by the equipment other than that for the tubular member (10).
Abstract:
THIS invention relates to an applicator. More specifically, the invention relates to applicator for containing, dispensing and spreading fiowable content onto another object. Although the invention may be used in respect of any fiowable content, it is envisaged that the applicator will be used primarily in respect of edible spreads, i.e. butter, margarine, etc. The applicator includes a container for holding fiowable content and at least one flattened end on the container for in use spreading fiowable content dispensed from the container. The applicator further includes one or more dispensing apertures defined by the container for dispensing fiowable content therethrough, wherein the one or more dispensing apertures are located at or near the flattened end of the container, and further wherein the one or more dispensing apertures span, or are spaced relative to one another, along the width of the flattened end.
Abstract:
The invention relates to a feed tank for use in a high-pressure system, said feed tank having a hollow space (3) for accommodating food items, a wall (1) and a temperature-control device (5). The invention further relates to a method for the simultaneous high-pressure and temperature treatment in a high-pressure tank.
Abstract:
Individual portions of ice cream are dispensed from a bulk container. A motor drives a lead screw, to expand a scissor linkage and drive a dispensing head against the bulk container. Pressure applied to the container causes it to collapse and discharge ice cream from an outlet. The lead screw is orthogonal with the movement of the dispensing head and the axis of collapse of the container. The container, motor and lead screw are carried on a drawer which is slidably mounted in a refrigerated housing. Pressure is monitored to regulate operation of the motor. An encoder controls the motor for a specific portion size.
Abstract:
Individual portions of ice cream are dispensed from a bulk container. A motor drives a lead screw, to expand a scissor linkage and drive a dispensing head against the bulk container. Pressure applied to the container causes it to collapse and discharge ice cream from an outlet. The lead screw is orthogonal with the movement of the dispensing head and the axis of collapse of the container. The container, motor and lead screw are carried on a drawer which is slidably mounted in a refrigerated housing. Pressure is monitored to regulate operation of the motor. An encoder controls the motor for a specific portion size.
Abstract:
본 발명은 치약 또는 연고나 화장품 등의 점성물질을 수용하는 튜브용기에 관한 것으로서, 상기 점성물질을 수용하며 선단부에 상기 점성물질을 인출하는 인출구가 형성되어 있는 튜브용기본체와; 상기 튜브용기본체 내에 수용되며, 누름 조작시 상기 인출구측으로 이동하면서 상기 점성물질을 가압하고, 누름 해제시 이동 정지하는 인출피스톤을 포함하는 것을 특징으로 한다. 이에 의해, 점성물질을 편리하게 항상 일정량을 인출시킬 수 있으며, 최종적으로 튜브용기 내에 점성물질이 남지 않고 모두 인출될 수 있는 점성물질 인출피스톤을 갖는 튜브용기가 제공된다. 또한, 튜브용기의 디자인을 다양화 할 수 있는 점성물질 인출피스톤을 갖는 튜브용기가 제공된다.