Patent classifications
B65D2501/0036
RECLOSABLE PLASTIC BOTTLE WITH WAIST AND STRENGTHENING RIB(S)
The present disclosure is directed to a bottle made of polyethylene terephthalate (PET) and having a circular cross-section. The bottle has a sidewall spanning between a neck finish and a base. The sidewall includes a shoulder portion and a panel portion, with the lower end of the shoulder portion and the upper end of the panel portion each sloping inward to create a waist. One or more circumferential ribs are positioned within the waist, and preferably at the trough of the waist. The one or more circumferential ribs are designed and configured to increase the hoop strength of the bottle, the vacuum stability of the bottle, or both.
METHOD OF HANDLING A PLASTIC CONTAINER HAVING A MOVEABLE BASE
Method for processing hot-filled plastic containers are provided. In some embodiments, the method may include hot-filling a plastic container, sealing the container, and conveying the sealed container, each with an inner annular wall and a push-up portion in a first position. In some embodiments, the method may further include creating a vacuum pressure in the hot-filled and sealed container and repositioning the push-up portion from the first position to a second position under a mechanical force.
Container apparatus
A container has a container body extending along a longitudinal axis from a bottom end to a top end. The container body may define an internal cavity for holding a substance. The container body may include one or more shoulders, such as a first and/or second shoulder (e.g., axial shoulder). The shoulders may be located at the top end of the container. The container may include a neck located (e.g., nesting) between the first and second axial shoulder. The neck may be configured to accept a closure device. The neck may have an inner surface that defines a passageway into the internal cavity. The container may include one or more impact absorbing regions, such as a first axial impact absorbing region. The first axial impact absorbing region may be configured to absorb an axial force applied to the first axial shoulder and/or the second axial shoulder.
Container with vacuum resistant ribs
Container having a body portion with sidewall defining outer perimeter and hollow interior. The body portion includes a plurality of continuous ribs extending about the outer perimeter of the sidewall, each rib having alternating horizontal segments and branched segments. Each branched segment includes a top branch and bottom branch joined at either end to define a bounded area therebetween. The plurality of continuous ribs includes at least a first continuous rib and second continuous rib spaced vertically from the first continuous rib. A midpoint of each branched segment of the first continuous rib is aligned along a vertical axis with a midpoint of a corresponding horizontal segment of the second continuous rib, and a midpoint of each horizontal segment of the first continuous rib is aligned along a vertical axis with a midpoint of a corresponding branched segment of the second continuous rib.
MATERIAL CONTAINER WITH HOLLOW HANDLE
A container includes an elongate hollow main portion to store a printing material and includes an openable end and an opposite closed end. The opposite closed end is at least partially defined by an end wall and by a hollow handle portion. The hollow handle portion is in fluid communication with an interior of the main portion.
VACUUM ABSORBING BASES FOR HOT-FILL CONTAINERS
A polymeric container including an upper portion defining an opening to an interior volume of the container. A base is movable to accommodate vacuum forces generated within the container, thereby decreasing the volume of the container. A substantially cylindrical sidewall extends between the upper portion and the base. A rigid, central pushup portion of the base is at an axial center of the base. A central longitudinal axis of the container extends through a center of the central pushup portion. A flexible diaphragm of the base extends outward from the central pushup portion.
THERMOPLASTIC MATERIAL CONTAINER
A container (1) made of thermoplastic material, defining an axis (X) and having a petaloid type bottom (2), the bottom (2) comprising: —a central area (3); —a plurality of first convex surfaces (4) towards the outside of the container, which extend from the central area (3); —a plurality of feet (5), arranged alternately with the first convex surfaces (4), and projecting outwards with respect to the first convex surfaces (4); —an annular rib (6), which is coaxial to the axis (X); wherein the first convex surfaces (4) belong to the same spherical surface having the center (C) arranged on the axis (X).
Lightweight container base
A container defining a longitudinal axis and a transverse direction that is transverse with respect to the longitudinal axis. The container includes a finish and a sidewall portion extending from the finish. A plurality of ribs are defined by the sidewall. A base portion extends from the sidewall portion and encloses the sidewall portion to form a volume therein for retaining a commodity. The base portion has a contact surface for supporting the container. A plurality of straps extend radially along the base portion away from the longitudinal axis in the transverse direction, each one of the straps defines a strap surface that is closer to the finish than the contact surface. The plurality of ribs and the base portion are configured to place the container in a state of hydraulic charge-up when top load is applied to the container after the container is filled.
CONTAINER SYSTEM AND METHOD OF MANUFACTURE
A plastic, hot-fillable container is provided. The container comprises a blow molded body including a neck and a base having a center portion and a plurality of spaced apart radial segments. At least a portion of each segment is tapered from an outer side to an inner side thereof. Container systems and methods of manufacturing containers are disclosed.
CONTAINER SYSTEM AND METHOD OF MANUFACTURE
A plastic, hot-fillable container is provided. The container comprises a blow molded body defining a longitudinal axis. The body including a base and a neck having at least one rib disposed about at least a portion of a circumference of the neck and transverse to the axis, and at least one angled thread. The at least one rib defining a cross section having a first portion and a second angled portion. Container systems and methods of manufacturing containers are disclosed.