[0002] It is known from the descriptions of utility model No. 69881 for the transport of
goods body (bodywork) placed on a driving surface, which is a cuboidal structure composed
of vertical columns and horizontal slats connected with each other, horizontal floor
and roof, and vertical side walls - front and rear ones. In the known body, the horizontal
floor is connected to the two vertical rear columns between which the rear wall is
mounted and two vertical front columns between which the front wall is mounted. The
horizontal roof slats are attached to the rear and front columns and are also to the
roof.
[0004] The ultra-light swap body according to the invention is equipped with four support
units in the corners of the floor, located on the outside of the floor, made up of
longitudinal and transverse floor profiles, and two longitudinals arranged parallel
to the longer edges of the floor. Supporting units are support legs mounted at right
angles on a sleeve placed rotationally in the leg body, the leg body and sleeve are
placed in the support structure fixed to the profiles forming the floor and to the
longitudinals. The support units have a strut that connects the support leg to the
support structure. The longitudinalss have the shape of an I-bar in the cross-section.
The body is also equipped with protecting longitudinal profiles of a cross-section
similar to an inverted Y with oval and trapezoidal holes in the leg which are permanently
fixed to the longer horizontal edges of the floor.
[0005] Equipping the known body with four support units allows the body, once the legs of
the body have been placed in the place intended for leaving the load, to be raised
on the driving surface by means of known lifting systems. Moreover, the support assembly
is equipped with struts connecting the support leg to the support structure to prevent
the leg from accidentally turning during loading or unloading. The design of the support
assembly allows for a safe transfer of the load from the loaded goods to the ground,
ensuring at the same time the clearance between the body and the driving surface,
allowing its exit in the case of unloading or entry in the case of loading. The use
of two longitudinals provides protection of the body floor against deformation after
it is placed on the legs. Whereas, equipping the body is with protective longitudinal
profiles with oval and trapezoidal openings for attaching tensioning straps to the
tarpaulin protecting the load, after they have been secured to the floor so that their
upper part protrudes approximately 35 mm above the floor surface providing additional
lateral protection of the transported load. The construction of the ultra-light swap
body allows to obtain the internal width of the body in the range from 2500 mm to
2504 mm, while maintaining the permissible external width of 2550 mm. The body is
designed for customers who drive transport light but bulky items. The body curb weight
does not exceed 2 tons and the load capacity 5 tons.
[0006] The object of the invention has been shown as a sample in the drawing in which in
fig. 1 the body is shown in an axonometric view from below in fig. 2 the view of the
support assembly, fig. 3 longitudinal section of the protecting profile, fig. 4 transverse
section of the protecting profile, fig. 5 longitudinal section of the crossbar, fig.
6 transverse section of the crossbar.
[0007] The ultra-light swap body placed on a driving surface is a cuboidal structure composed
of vertical columns and horizontal slats connected with each other, horizontal floor
and roof, and vertical side walls, front and rear ones. The horizontal floor is connected
to two vertical rear columns between which the rear wall is mounted and two vertical
front columns between which the front wall is mounted. The horizontal roof slats are
attached to the rear and front columns and are also attached to the roof. The body
has four support units
(1) located on the outside of the floor made of longitudinal and transverse profiles
and located in the corners of the floor. The support units
(1) form the support legs
(4) mounted at right angles to the sleeve
(5) located rotationally in the leg body
(6) allowing the leg
(1) to be rotated. The leg body
(6) and sleeve
(5) of the support unit are located in the supporting structure
(7) attached to the profiles forming the floor and to the longitudinals
(2) attached to the floor parallel to its longer edges. In addition, the support unit
has a strut
(8) which connects the support leg
(4) to the support structure
(7) so as to prevent the leg from accidental turn
(4). Attached to the outside of the floor, the two longitudinal longitudinals
(2) are I-bar-shaped and prevent the floor from deformation when placed on the legs
(4). The body is also equipped with protecting longitudinal profiles
(3) permanently fixed to the longer horizontal edges of the floor with a cross-section
similar to an inverted Y with oval and trapezoidal holes in the leg where the tarpaulin
tensioning straps are to be placed in order to protect the load. The longitudinal
profiles
(3) reinforce the body structure and their upper part protrudes about 35 mm above the
floor surface, thus providing additional lateral protection of the transported load.