Method for casting hollow core slabs
A method for producing hollow-core slabs substantially with a horizontal slipforming process, the concrete mix to be cast being fed in said method through a limited cross section to form a product with a desired form, whereby the areal weight of the hollow-core slab to be cast is changed by changing the width of the hollow core of the hollow-core slab and/or by casting a part of the hollow-cores to be solid.
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The present invention relates to a method for casting hollow core slabs with a slipforming process. More precisely, the invention relates to casting of hollow core slabs having a substantially standard height with a desired areal weight by means of the extruder slipforming technique.
In the extruder slipforming technique, the mass to be cast, like the concrete mix in general, is extruded by means of feed screws through a mold or nozzles, and the casting apparatus proceeds driven by the reacting force of the feed screws. The ready-cast product remains on the casting bed. The hollow cores of the product to be cast are formed by means of hollow core mandrels of desired shape following the feed screws, the concrete mix being extruded over the mandrels.
The hollow-core slabs cast with extruder technique are traditionally manufactured with cross-sections standardized by the equipment suppliers. In these standard slabs the height of the slab is increased, whereas the number of the hollow cores and the number of the mandrels, respectively, decreases. Normally the standard slabs have hollow cores with constant sizes, whereby also the areal weight of the slab is constant. The building systems using hollow-core slabs have been designed based on the height of these standard slabs. The most essential objects of use of hollow-core slabs in the building industry are the intermediate floors of buildings.
Soundproofing requirements, especially related to the impact sound, have increased the need of using more massive hollow-core slabs in the buildings. This has led to a need of using higher hollow core slabs in order to achieve the required massiveness of the slab. The use of higher slabs, however, has the effect, that higher wall elements must be used with these slabs. All such manufacturing sizes differing from the standard building systems considerably increase the construction costs of buildings.
In the present invention, the height of the hollow-core slabs to be produced corresponds to the standard heights defined for the hollow-core slabs to be produced, in other words, the slab heights typified by the constructor. The required areal weights of the slabs are adjusted to fulfill the requirements by changing the width of the hollow cores of the hollow-core slab.
More precisely, the method according to the invention is characterized by what is stated in the characterizing part of Claim 1.
The invention will be described by way of example in more detail in the following with reference to the enclosed drawings, wherein
By means of the solution according to the example of
With the method according to the invention, as described above, hollow-core slabs having with the same slab height different areal weights can be produced by changing the width of the hollow core of the hollow-core slab or by casting a part of the hollow cores of the hollow-core slabs solid. In this way, the constructors can be supplied with slabs suitable for different types of sound isolation solutions without drawbacks characteristic of the solutions of prior art.
In the method according to the present invention, the height of all hollow cores of the weight series meant for one and the same slab height is substantially constant.
Among others, the following advantages can be reached by the method according to the invention:
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- for changing the areal weight of the hollow-core slabs to be cast having the same height, only the hollow-core forming elements of the slipforming apparatus need to be changed,
- the sound insulation of the hollow-core slabs to be cast can be efficiently and profitably increased,
- the fire endurance of the hollow-core slabs to be cast can be improved, because the reinforcement strands can be positioned higher from the bottom of the slab, when the hollow-cores are narrower than usually, and
- existing building systems don't need to be changed, because the hollow-core slabs with standard heights can be used.
The method according to the invention is not limited to the extruder slipforming technique only, but it can also be applied to other slipforming techniques like for example slipformer-techique or casting implemented with fixed casting units.
Claims
1. A method for producing hollow-core slabs substantially with a horizontal slipforming process, the concrete mix to be cast being fed in said method through a limited cross section to form a product with a desired form, wherein the areal weight of the hollow-core slab to be cast is changed by changing the width of the hollow core of the hollow-core slab and/or by casting a part of the hollow-cores to be solid.
2. A method according to claim 1, wherein the height of the hollow core of the product to be cast is kept substantially constant.
3. A method according to claim 1, wherein the width of the hollow core is changed by changing the hollow-core forming element of the casting apparatus to be used.
4. A method according to claim 1, wherein the casting of a hollow core to be solid is provided by removing the hollow-core forming element from the casting apparatus to be used.
5. A method according to claim 1, wherein the width of at least one of the hollow cores of a hollow-core slab to be cast differs from the width of the rest of the hollow-cores.
6. A method according to claim 2, wherein the width of the hollow core is changed by changing the hollow-core forming element of the casting apparatus to be used.
7. A method according to claim 2, wherein the casting of a hollow core to be solid is provided by removing the hollow-core forming element from the casting apparatus to be used.
8. A method according to claim 3, wherein the casting of a hollow core to be solid is provided by removing the hollow-core forming element from the casting apparatus to be used.
9. A method according to claim 6, wherein the casting of a hollow core to be solid is provided by removing the hollow-core forming element from the casting apparatus to be used.
10. A method according to claim 2, wherein the width of at least one of the hollow cores of a hollow-core slab to be cast differs from the width of the rest of the hollow-cores.
11. A method according to claim 3, wherein the width of at least one of the hollow cores of a hollow-core slab to be cast differs from the width of the rest of the hollow-cores.
12. A method according to claim 4, wherein the width of at least one of the hollow cores of a hollow-core slab to be cast differs from the width of the rest of the hollow-cores.
13. A method according to claim 6, wherein the width of at least one of the hollow cores of a hollow-core slab to be cast differs from the width of the rest of the hollow-cores.
14. A method according to claim 7, wherein the width of at least one of the hollow cores of a hollow-core slab to be cast differs from the width of the rest of the hollow-cores.
15. A method according to claim 8, wherein the width of at least one of the hollow cores of a hollow-core slab to be cast differs from the width of the rest of the hollow-cores.
16. A method according to claim 9, wherein the width of at least one of the hollow cores of a hollow-core slab to be cast differs from the width of the rest of the hollow-cores.
Type: Application
Filed: Oct 11, 2006
Publication Date: May 17, 2007
Applicant: Elematic Oy Ab (Toijala)
Inventor: Aimo Seppanen (Saaksmaki)
Application Number: 11/545,548
International Classification: E04H 1/00 (20060101);