The invention relates to a block kit comprising a number of substantially prismatic concrete blocks and to a method for producing said blocks.
The construction of brickwork using prismatic blocks arranged one on top of another, in which mortar or adhesive is used for to fix the items together, is known. Irrespective of the fact aligning the blocks and maintaining said alignment presents numerous difficulties, the insertion of the mortar or glue between the items to be joined is also complex and time-consuming. Finally, possible adjustments of the blocks relative to each other for an exact, defined alignment are made more complex.
The invention aims to produce a block kit in which the blocks in the brickwork can be automatically aligned with one another and can be securely fixed together with or without binding mortar or glue.
According to the invention, this task is achieved by the measures stated in the characterising part of claim 1. When constructing brickwork it is possible to produce reciprocal alignment with concurrent dovetailing by means of the depressions and projections on the stacked concrete blocks interlocking, thus enabling building activities to be carried out by also inexperienced persons via the use of said block kit. Moreover, by means of the depressions and projections, robust brickwork, such as walls, retaining walls or similar, may be achieved equally with or without binding agents such as mortar and glue, etc. The interconnection of the neighbouring concrete blocks, achieved by the interaction of the projections and depressions, is advantageously assisted by the force of gravity in the concrete blocks.
According to the embodiment of the concrete brick set, it is envisaged that the projection be made using a cross-sectionally pyramidal stump-shaped appendage moulded longitudinally along the block, having oblique side faces, the free ends of which extend towards each other. According to the preferred embodiment of the projections, the heights of same being substantially 2-6 mm depending on the respective block heights and stress requirements, walls with safe interconnections at intervals may be built using also dry construction methods.
In addition, it is envisaged that the depression be made using a cross-sectionally pyramidal stump-shaped groove or similar, moulded longitudinally along the concrete block, the oblique faces of which are extended towards each other and the inside of the concrete block, in conformity with the cant of the oblique faces and the design of the projection.
In a further embodiment of the block set, it is envisaged that the concrete blocks show a deliberate inward-facing longitudinal curved recess at the attached depression. The curved recesses contribute to minimising the weight of the concrete blocks and form a type of recessed grip, which, as adjustment aids, facilitate the handling of the concrete block. It is understood that the inner depth of the curved recesses can be varyingly shaped independent of the respective heights of the respective concrete blocks e.g. 1:1.8, 1:2.1 and 1:3.4 relative to the base wall spanned by the recesses.
A concrete block having only a depression on the underside along with the subsequent curved recess is envisaged to act as a capping stone, its other side being presenting a smooth top surface so as to achieve an even two-sided finish to the brickwork for retaining walls and similar, in particular. The capping stone can be flushly joined and fixed to the upper side of the other concrete blocks without projections, as with tongue and groove joints.
Finally, it is also envisaged that the concrete blocks be produced, with lengths of 40, 35, 30, 25, 20 and 15 cm, in particular, and with heights of 40, 30, 20, 18 and 12 mm in particular. The concrete blocks thus allow a plurality of intercombination possibilities, by which the brickwork of the various design claims can be adapted.
According to a method for producing the concrete block for the block set, which uses a moulding tool, it is envisaged that the moulding tools be substantially cup-shaped in design, that the cross-section and inner measurements of the moulding tool determine the height and the width of the concrete blocks and also the projections and depressions and that the inner depth of the moulding tool defines the length of the concrete block. The concrete blocks produced via a procedural step are available for their brickwork lengths after the concrete block has been removed from the moulding tool simply by inclining it by 90°, the arbitrary depths of the moulding tool corresponding to the various lengths.
Further procedural steps are also given wherein the moulding tool is designed for same-sized combined moulding of rows of concrete blocks or packets of concrete blocks, or similar, for a predetermined number of concrete blocks. It is understood that the moulding tools for the respective individual concrete blocks can also be implemented.
According to further procedures it is envisaged that several rows of concrete blocks or packets of concrete blocks be simultaneously produced adjacently and together in the same moulding tool, thus allowing a space and time-saving production of the block kits and the concrete blocks of same to be achieved. In order to make individual concrete blocks available in the simultaneous and combined moulding of rows of concrete blocks, packets of concrete blocks and similar, separation grooves are envisaged on the side faces and/or on the upper faces thereof at the regular intervals, the width of an individual concrete block, and it is envisaged that the blocks of stone be separated from each other by means of force effected in the separation grooves, by the percussive effect, for example.
The figures given in the embodiment examples show how the invention can be achieved. These comprise:
In
In
FIGS. 12 to 14 show a brickwork corner joint 17. In corner joint 17, a first floor-level layer is envisaged with concrete blocks 18, 19 and 20, into which concrete block 19 is to be interlocked using depressions 3 and projections 2. The corner joint can be built upwards by introducing a second layer of interlocked concrete blocks 18, 19′ and 20, as per
It is understood that concrete blocks of different lengths can be produced by varying the inner depth of the moulding tool 15.
Finally, the rows of concrete blocks 13′ and the concrete block packets 13 can present several blocks with and without projections 2, in combination respectively. The last blocks can be used as capping stones.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP02/03330 | 3/25/2002 | WO | 6/10/2005 |