[0001] The invention refers to a machine that assembles automatically or semi-automatically
by method of welding the formed shapes from iron rod (stirrups) with straightened
ones, thus creating the concrete reinforcement, which is essential for the construction
of buildings.
It has the ability to assemble different types of concrete reinforcement of various
shapes and sizes which may be either of closed or opened type, such as straightened
iron rods with square, rectangular, polygon, multi-sectional etc shapes, known as
stirrups.
[0002] Until today, the common technique for the assembling of concrete reinforcement was
that of forming the iron rods into various shapes (stirrups), their setting in definite
-between them- distances and then tying them by use of wire or by manual welding at
the points where they intersect with the straightened iron rods, creating the concrete
reinforcement.
This way of assembling and constructing concrete reinforcement leads to the requirement
of considerable time and to small production.
Another way of concrete reinforcement assembly concerns an invention of our conception,
Patent No: 980100509, regarding Automatic Assembling Machine of Shaped Iron Concrete
Rods with Straightened ones. It concerns a machine that functions entirely automatically
via computer, yet with a different structure and design than those described at the
present invention.
[0003] The
Concrete Reinforcement Assembling Machinery consists of an immovable metal frame upon which all those mechanisms and components
that compose it are installed.
On the frame is adjusted the rotating feeder of the machine with formed shapes (stirrups)
and bears with the adjustable guides for the straightened iron rod and the movable
base with the adjustable guides for the installation of the formed shapes. The movable
base has the ability of ascent-descent of the entire system as well as of its adjustment
according to the size of the concrete reinforcement to be assembled. In addition,
the movable base -in case of automatic function- bears with a mechanism for the automatic
propulsion of the shape (stirrup) at the assembling point. A corresponding variety
of adjustment exists at the guides for the straightened iron rod.
The concrete reinforcement assembly is achieved via the two mobile columns adjusted
on to glide-guides having the ability of a free opening-closing as well as of a forward-backward
movement; in addition, the upper part of every column can move independently (opening-closing).
On the upper and lower part of every column, the system of holding-welding and propulsion
of the concrete reinforcement, which has the ability to ascend-descend and to adjust
depending on the size and the kind of the concrete reinforcement, is adjusted.
During assembling phase and upon then, the assembled concrete reinforcement is based
on a corresponding bench.
[0004] The advantage of this invention is that for the assembling of the concrete reinforcement
(main or auxiliary) either the automatic or the semi-automatic procedure is followed
by use of minimum mechanisms and components that achieve the result.
[0005] It has the ability to accept all the gathered -to-be-assembled- formed shapes of
closed or opened type (square, circular, polygon, multi-sectional etc of different
sizes) in a rotating feeder and in a -self-contained from the assembling- space, which
one by one are propelled for either automatic or manual assembly.
The rotating feeder bears two or more positions for the installation of the formed
shapes, decreasing significantly the time intermediating from the completion of an
assembly and the re-start process of a new one.
Via the guides for the iron rod, the straightened rods are propelled simultaneously
with the propulsion of the assembled concrete reinforcement.
The system of holding-welding and propulsion of the concrete reinforcement assembles
the concrete reinforcement thus fulfilling the assembling procedure (welding) in less
time compared to the previous technique, with high quality productive results and
small concrete reinforcement construction cost, while the method contributes considerably
to the standardization by way of the similar concrete reinforcement construction.
The invention can be well comprehended by right of the following figures:
On sheet 1 (figure 1) is shown the sector coming from sheet 5 and 6 of the Concrete Reinforcement Assembling Machinery, at a phase that a simple rectangular shape is assembled with straightened iron rods
for the construction of auxiliary concrete reinforcement.
On sheet 2 (figure 2) is shown the sector coming from sheet 5 and 6 at the phase where
a complex shape is assembled for the construction of auxiliary concrete reinforcement,
which demands a dissimilar opening of the upper part of the assembling columns.
On sheet 3 (figure 3) is shown the sector coming from sheet 5 and 6 at the phase where
a rectangular shape as well as a corresponding continuous inner shape (core) is assembled
with straightened iron rods for the construction of auxiliary concrete reinforcement.
On sheet 4 (figure 4) is shown the sector coming from sheet 5 and 6 at the phase where
an open broken shape is assembled with straightened iron rods for the construction
of main concrete reinforcement.
On sheet 5 (figure 5) is shown the side view of the invention at the phase of an automatic
assembly.
On sheet 6 (figure 6) is shown the side view of the invention at the phase of a semi-automatic
assembly (manual propulsion of the formed shape).
On sheet 7 (figure 7) is shown in top view the Concrete Reinforcement Assembling Machinery with the feeder being at a rotation phase for the new feeding of the machine with
formed shapes.
On sheet 8 (figure 8) is indicatively shown in side view and in enlargement a system
of holding-welding and propulsion of the concrete reinforcement at an assembling phase.
On sheet 8 (figure 9) is shown in top view and in enlargement the system of holding-welding
and propulsion of the concrete reinforcement at an assembling phase.
On sheet 8 (figure 10) is shown in top view and in enlargement the system of holding-welding
and propulsion of the concrete reinforcement during the completion of the assembling
and the transfer of the whole system backwards, so as the next phase of assembling
to follow.
On sheet 9 is shown a series of indicative shapes that the Concrete Reinforcement Assembling Machinery can assemble and regard the auxiliary concrete reinforcement.
On sheet 10 is shown a series of indicative shapes that the Concrete Reinforcement Assembling Machinery can assemble and regard the main concrete reinforcement.
On sheets 11, 12 and 13 are indicatively shown 3 types of assembled concrete reinforcement
in a three-dimensional view.
DETAILED DESCRIPTION
[0006] The
Concrete Reinforcement Assembling Machinery consists of an immovable metal frame (1) upon which all those mechanisms and components
that compose it are installed.
[0007] On the frame (1) is adjusted the rotating feeder of the machine with the formed shapes
(stirrups) (2) which bears the adjustable guides of the straightened iron rod (3)
and the movable base (4) with the adjustable guides (5) for the installation of the
formed shapes (6).
The guides can regulate either manually or mechanically as well, while the movable
base (4) moves at an upper-lower position via electro-motor or other kind of motor
(7) as well as via bolt-system (8).
The feeder (2) rotates manually or mechanically and fastens at the position desired
for the feeding of the machine by way of the mechanism (9).
In case the feeding is done in automatic mode (sheet 5, figure 5) at the upper part
of the column of the feeder, the mechanism for the automatic propulsion of the formed
shape (6) is adjusted, which consists of the propulsive piston (10) and the hook for
the holding of shape (11) that functions via pistons (12) and (13).
While the machine carries out the feeding phase, which demands the rotation of the
feeder, the mechanism for propulsion of the formed shape ascends to the upper point
of the column by way of piston (14). The upper part is undependable of the column
and does not rotate together with the rest part. After the feeder completes its rotation,
the propulsion mechanism comes back to the initial position for the automatic process.
As regards the semi-automatic function (figure 6, sheet 6) the above-mentioned mechanism
does not exist and the feeding of the machine with formed shapes is executed manually.
[0008] The assembling phase is performed by two mobile assembling columns (15 and 21) which
are adjusted on to glide-guides (16) and the whole system of both two columns slides
forwards-backwards on to the glide-guides (17).
The sliding (opening-closing) of the two columns (15) is done by use of two motors
(18) that give the ability to the columns to move independently one of the other.
The front-rear movement of the assembling columns is done via motor (19) and via rack
system or other system (20).
At each column (15), its upper part (21) opens and closes freely, by sliding on prisms
with the aid of a motor with bolt (22).
At the lower and upper part of every column (15 and 21) the holding-welding and propulsion
systems of concrete reinforcement are adjusted.
The holding-welding and propulsion of concrete reinforcement system (sheet 8, figures
8-9 and 10) consists of the hook (23) for the holding of the straightened iron rod
(24), which executes an opening-closing movement via piston (25) and the clamp (26)
which carries out the holding or non-holding of the formed shape (6) via the piston
(27). The welding is realized at the selected time by the electro-welding head (28)
that is adjusted to the system.
The entire system moves forwards-backwards via piston (29) by shutting in or by releasing
the already formed concrete reinforcement and it has the ability to ascend-descend
via motor (30) and bolt (31).
These movements enable the
Concrete Reinforcement Assembling Machinery to accomplish a great number of actions having as aim the adjustment of its mechanisms
at the size and welding positions of the concrete reinforcement to be assembled. All
actions, commands and programming are executed by use of a control panel, placed in
such a position that is accessible to the operator.
The -ready for placement- concrete reinforcement (main or auxiliary) is based on a
corresponding bench (32) the size of which is adjusted, according to the corresponding
regulations, at the sizes of the concrete reinforcements being assembled.
DESCRIPTION OF AUTOMATIC OPERATION
[0009] The automatic function of the
Concrete Reinforcement Assembling Machinery (sheet 5, figure 5) is simple, since it does not consist of complicated and inaccessible
mechanisms and it is provided with a handy and legible control panel.
After the selection of the formed shape (6) (size, shape, and cross-section) is done,
the selected quantity is put on the adjustable guides (5) which are at the rotating
feeder (2). Following, the length and the size of the cross-section of the straightened
iron rods (24) is selected and they are passed through the corresponding guides (3)
by optioning the position accordingly, whether it regards the main concrete reinforcement
assembly (angular position) or auxiliary concrete reinforcement (at a straightened
part of the shape) and the bench (32) is regulated at the size of the concrete reinforcement
assembled.
All mobile parts of the machinery are regulated by the control panel, for their adjustment
at the size of the concrete reinforcement to be assembled, as well as the forward-backward
movement of the columns that will be of such a distance as the one there is between
the assembled shapes (step) of concrete reinforcement.
Also, the periods of time and the commands for propulsion and for assembly are programmed.
The start command is given and the first shape (6) is propelled at the assembling
point via the propulsion mechanism (10), (11), (12) and (13) and then, the holding
of the straightened rod (24) by means of the hook (23) as well as the holding of the
shape (6) by means of the clamp (26) follow. At this phase, the electro-welding heads
(28) are activated, which weld the shape with the straightened rods, while, at the
same time, via the welding procedure, the columns (15 and 21) move forwards, carrying
away the assembled concrete reinforcement as far as the selected distance there is
between the shapes (step), thus decreasing the time demanded for each assembling phase.
With the completion of this motion, the hook (23) and the clamp (26) release the concrete
reinforcement, the holding-welding and propulsion systems of the concrete reinforcement
move backwards and the columns (15 and 21) return to the initial position.
From the propulsion mechanism (10), (11), (12) and (13), the next shape is propelled
to the assembling position, so that the commands for forward movement of the holding-welding
and propulsion systems, the stabilization of the shape to be assembled, the activation
of the electro-welding heads and the repetition procedure to follow.
The same operation steps are followed, whether we produce main concrete reinforcement
or auxiliary.
During the entire assembling process, the operator places the shapes to be assembled
at the rear part of the feeder (2), so as, with the fulfillment of the concrete reinforcement
assembling phases and without any waste of time, the feeder to rotate (sheet 7, figure
7) and via the mechanism (9) to fasten at the position desired for the beginning of
the subsequent assembly.
The -ready for placement- concrete reinforcement is removed from the machine either
manually or by use of an elevating vehicle, depending on its size and weight.
[0010] For the semi-automatic operation of the
Concrete Reinforcement Assembling Machinery, all the above-mentioned procedures are followed; the only difference regards the
feeding of the machine with the shapes (6) which is done manually (sheet 6, figure
6).
1. The Concrete Reinforcement Assembling Machinery is a machine that automatically or semi-automatically assembles by use of the welding
method the formed shapes of iron rods (stirrups) with straightened ones and creates
the main or auxiliary concrete reinforcement, which is essential for the construction
of buildings.
It consists of an immovable metal frame (1) upon which all those mechanisms and components
that compose it are installed.
At the frame (1) the rotating feeder of the machine (2) for the formed shapes (stirrups)
(6) and the straightened iron rods (24) is adjusted.
The assembling phase is realized by the two mobile assembling columns (15 and 21)
which are adjusted on to glide-guides (16) and the whole system of both two columns
slides forwards-backwards on to the glide-guides (17).
On the upper and lower part of each mobile column (15 and 21) the system for holding-welding
and propulsion of the concrete reinforcement is adjusted.
The assembled concrete reinforcement (main or auxiliary) is based on a corresponding
bench (32) the size of which is adjusted, according to the corresponding regulations,
at the sizes of the concrete reinforcements being assembled.
2. The Concrete Reinforcement Assembling Machinery, according to Claim 1, is characterized by the fact that the rotating feeder of the machine (2) for the formed shapes (stirrups)
(6) as well as for the straightened iron rods (24) bears the adjustable guides for
the straightened iron rod (3) and the movable base (4) with the adjustable guides
(5) for the placement of the formed shapes (6).
The guides regulate manually or mechanically, while the mobile base (4) moves at an
upper-lower position via electro-motor or other kind of motor (7) as well as via bolt-system
(8).
The feeder (2) rotates manually or mechanically and fastens at the position desired
for the feeding of the machine by way of the mechanism (9).
3. The Concrete Reinforcement Assembling Machinery, according to Claims 1 and 2, is characterized by the fact that the rotating feeder for the automatic feeding of the machine (2), at
the upper part of its column, the mechanism for automatic propulsion of the formed
shape (6) is adjusted, which consists of the propulsive piston (10) and the hook for
the holding of shape (11) that functions via pistons (12) and (13).
During the phase of a new feeding of the machine, which demands the rotation of the
feeder, the mechanism for propulsion of the formed shape ascends to the upper point
of the column by way of piston (14). The upper part does not rotate together with
the rest part. After completion of the rotation of the feeder, the propulsion mechanism
comes back to the initial position for the automatic process.
4. The Concrete Reinforcement Assembling Machinery, according to Claim 1 is characterized by the fact that the upper and lower part of each assembling column (15 and 21) has
the ability to move by opening and closing independently.
5. The Concrete Reinforcement Assembling Machinery, according to Claims 1 and 4 is characterized by the fact that at the upper and lower part of each assembling column (15 and 21) the
system for holding-welding and propulsion of the concrete reinforcement is adjusted.
It consists of the hook (23) for the holding of the straightened iron rod (24) which
executes an opening-closing movement, as well as of the clamp (26) that carries out
the holding or non-holding of the formed shape (6). The welding is realized by means
of the electro-welding head (28) that is adjusted at the system.
The entire system moves forward-backward by shutting in or by releasing the already
formed concrete reinforcement and upwards downwards for its adjustment depending on
the size and shape of the concrete reinforcement to be assembled.