Abstract:
The invention relates to a collapsible superstructure (30), a frame system (20), a lid (40) and a load handling system in the form of a pallet (10) with other components thereon. The superstructure (30) comprises a downward-extending protrusion in the corner portions (33a-d) for forming a step which is arranged to interact with an edge of a downward-extending recess of the pallet (10) on which the superstructure (30) is intended to be placed. When the superstructure (30) is in a partly raised upright position on the pallet (10), each corner portion (33a-d) can be pushed outward so that the protrusion can drop down into each recess of the pallet (10). The collapsible sides (32a-b) comprise respective lower locking portions arranged to interact with a locking portion of the pallet (10) in such a way that, when the superstructure (30) is in a partly raised upright position on the pallet (10), the locking portion of the superstructure (30) can pass an edge of the locking portion of the pallet (10) in an outward movement (L) and thereby enable the superstructure (30) to place itself in a fully raised position.
Abstract:
A container (10) for holding product (5) therein during shipment and being returned for reuse has a movable door assembly (66), frame (12), tracks (86) supported by opposite sides of the frame (12), and a plurality of support member assemblies (100) extending between the tracks (86). Each support member assembly (100) comprises end members (102) and a tubular support (104), the end members (102) being movable in the tracks (86). The support member assemblies (100) support dunnage (144) for supporting products for storage or shipment.
Abstract:
The present invention discloses a pallet comprising a plurality of elongate base members (102) being spaced apart from one another at its long edges with a plurality of block structures (108) arranged one by one within and along the long edges of each base member (102) that the base member (102) carries a plurality of paired slits (106) and each slit (106) cuts into every block structure (108) at a predetermined length; and a plurality elongate deck units (101) perpendicularly disposed on top of the base members that each deck unit is defined by a first construct (103), with an n-shaped cross-sectional profile, sandwiched in between a pair of second constructs (104), with an inverted L-shaped cross-sectional profile, and each deck unit (101) has a conjoined horizontal flat surface and a pair of downwardly extending portions (105) formed by the contiguous first (103) and second constructs (104); wherein the paired vertical extending portions (105) of each deck unit (101) are slotted into the aligned paired slits (106) of each block structure (108) to link all the base members (102) with the deck units (101) together while the horizontal flat surface serves as a work surface.
Abstract:
Die vorliegende Erfindung betrifft einen Palettencontainer (10) zur Lagerung und zum Transport von insbesondere gefährlichen flüssigen Füllgütern, mit einem austauschbaren dünnwandigen Innenbehälter (16) aus thermoplastischem Kunststoff zur Aufnahme des Füllgutes, mit einem den Innenbehälter (16) als Stützmantel dicht umschließenden Rohrgitterrahmen (14) aus miteinander verschweißten vertikalen und horizontalen Rohrstäben, der am oberen Außenrand einer gabelstapler-geeigneten Bodenpalette (12) befestigt ist, wobei die rechteckförmige Bodenpalette (12) ein flaches Palettenoberdeck bestehend aus einer dünnen Metall-Blechplatte (18) als Auflage für den eingestellten Innenbehälter (16) und einem Palettenunterbau mit vier Eckfüßen (24) und vier dazwischen angeordneten Mittelfüßen (26) aus thermoplastischem Kunststoff und einen rechteckförmigen, bodenseitig horizontal umlaufenden Stahlrohr-Basisring (34) aufweist, wobei die Bodenpalette (12) mit Mitteln zur Ableitung elektrischer Ladungen versehen ist, die konstruktiv derart gestaltet sind, dass der Palettenunterbau einen oberen Rohrrahmen mit vier einzelnen gleichlangen Rohrstücken (32) aufweist, die diagonal direkt unterhalb der Metallplatte (18) verlaufen und mit ihren Enden derart an jeweils zwei benachbarten Mittelfüßen (26) befestigt sind, dass unterhalb der Bodenplatte ein rautenförmiger Tragrahmen ausgebildet ist, auf dem die Metallplatte (18) aufgespannt ist, wobei die vier einzelnen Rohrstücke (32) über entsprechende Verschraubungen (48) elektrisch leitend mit dem bodenseitigen Stahlrohr-Basisring (34) verbunden sind, so dass der erfindungsgemäße Palettencontainer auf einfache und elegante Weise gegen jegliche Art elektrischer Aufladung geschützt ist.
Abstract:
본 발명은 화물적재용 조립식 알루미늄 팔렛에 관한 것으로, 그 목적은 화물적재용 팔렛을 팔렛 상판부와 팔렛 하판부로 조립하고, 상기 팔렛 상판부와 팔렛 하판부를 볼트조립 또는 끼움조립에 의해 일체화하여, 조립성, 운반성 및 보관성을 향상시킬 수 있는 화물적재용 조립식 알루미늄 팔렛을 제공하는 것이다. 본 발명은 화물을 적재 및 운반하는 조립식 알루미늄 팔렛을, 화물이 적재되는 팔렛 상판부와, 상기 팔렛 상판부에 이격되어 바닥면에 지지되는 팔렛 하판부로 분리형성하고, 상기 팔렛 상판부와 팔렛 하판부의 모서리부위를 볼트체결 또는 끼움체결하여 일체화하도록 되어 있다.
Abstract:
Eine Palette für Transportgut (15) umfasst einen Palettenkörper (2), an dem mindestens ein Gegenstand mit einem Befestigungsmittel festlegbar ist. An dem Palettenkörper (2) ist mindestens eine Ecksäule (3) und/oder Platte (7) und/oder Seitenwandung und/oder ein Boden (9) anordenbar bzw. der Palettenkörper (2) ist zumindest fußseitig aus einem umfangsseitigen Rohrrahmen (16) gebildet, dessen längs- und/oder stirnseitige Rahmenteile (17) teleskopierbar sind.
Abstract:
A weldless aluminum pallet has slats that interlock with outside and inside stringers to form the pallet without need for permanent attachment points. Grooves in the stringers receive a projection on each slat, holding the slat in place. Preferably, a single projection extends along the length of the slat body. The projection is shaped to cooperate with the groove such that the slat attaches perpendicularly to the stringers. The groove is shaped to retain the slat's projection by friction fit, creating an interlocking joint. The front and rear slats on each face may be fastened to the stringers by screws or other removable fasteners. Pure aluminum or an aluminum alloy may be used, and the material may be tempered using known tempering techniques. The preferred material is 100% recycled 6005-T6 aluminum alloy. The parts are preferably extruded but alternatively may be molded or otherwise die cast.