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Title:
PRODUCTION AND MOLDING SYSTEM OF ELEMENTS OF CEMENT MATRIX, REINFORCED WITH GLASS FIBER
Document Type and Number:
WIPO Patent Application WO/1997/047446
Kind Code:
A1
Abstract:
The present invention refers to the production and molding system of tridimensional elements of cement matrix, reinforced with glass fiber, in order to achieve tridimensional elements (4, 5, 6) using a combination of special materials, a structure combined with glass fiber (1) (mesh type) with a mixture of cement base paste with polymers (3) and reinforced with a resistant alcali glass fiber (2). The invented system permits an easy mechanical production of tridimensional elements (4, 5, 6) either moulded or sprayed (projected), for small thickness (from 6 to 20 mm). The tridimensional elements thus produced can be used either separately or in multi-layer elements connecting the mono-layer elements through non-rigid links (8). The created space between the two mono-layer elements (7) will be filled in with Perlite type of material, in order to promote the thermal insulation of the wall thus built.

Inventors:
MELI GIANCARLO (IT)
VIEIRA ALBERTO TOMAS (PT)
Application Number:
PCT/PT1996/000010
Publication Date:
December 18, 1997
Filing Date:
November 29, 1996
Export Citation:
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Assignee:
MELI GIANCARLO (IT)
VIEIRA ALBERTO TOMAS (PT)
International Classes:
B28B1/52; B28B23/00; E04B1/76; (IPC1-7): B28B23/02; B28B1/52
Domestic Patent References:
WO1993020995A11993-10-28
Foreign References:
LU85372A11986-01-29
FR2375405A11978-07-21
DE2702066A11977-07-28
BE849564A1977-04-15
FR920616A1947-04-14
Other References:
PATENT ABSTRACTS OF JAPAN vol. 018, no. 274 (M - 1611) 25 May 1994 (1994-05-25)
PATENT ABSTRACTS OF JAPAN vol. 018, no. 671 (M - 1726) 19 December 1994 (1994-12-19)
DATABASE WPI Section Ch Week 8807, Derwent World Patents Index; Class A93, AN 88-045752, XP002035549
DATABASE WPI Section PQ Week 8905, Derwent World Patents Index; Class Q44, AN 89-037800, XP002035550
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Claims:
CLAIMS
1. I Production and molding system of tridimensional elements of cement matrix, reinforced with glass fiber, characterized by permiting to produce and guarantee the full cooperation between the composite formwork, moulded with defuse structural fiber (2) and combined fiber (1) (mesh type) with an added cement matrix (3). II Production and molding system of tridimensional elements of cement matrix reinforced with glass fiber, as per Claim I, characterized by allowing an easy mechanical production of tridimensional elements (4,5,6) moulded or sprayed, for small thickness (6 to 20 mm). Ill Production and molding system of tridimensional elements of cement matrix, reinforced with glass fiber, as per Claim I, characterized by allowing to control and adjust the stress resistance generated m the tridimensional elements (4,5,6) due to the dimensional variation arising from the rectraction, thermal variation and mechanical action. IV Production and molding system of tridimensional elements of cement matrix, reinforced with glass fiber, as per Claim I, characterized by allowing to control and to reduce the deforming arising from actions described under Claim III in a pre determined tolerance system, specially in the connecting zone of the elements (9) and in the critical and characteristic zones as well. V Production and molding system of tridimensional elements of cement matrix, reinforced with glass fiber, as per Claim I, characterized by permiting the resolution of the technological problem related to the formation of tridimensional elements of small thickness either in a monolayer or multilayer (sandwich) VI Production and molding system of tridimensional elements of cement matrix, reinforced with glass fiber, as per Claim I, characterized by allowing the union of the multilayer (sandwich) elements through an efficient but not rigid binding (8) on surfaces, using an expensive agglutinant material. VII Production and molding system of tridimensional elements of cement matrix, reinforced with glass fiber, as per Claim 1 , characterized by allowing to produce complete tridimensional elements either manually operated or using several methods of mechanization in order to be fully robotized (robot guided by a CADCAM system).
Description:
DESCRIPTION

"PRODUCTION AND MOLDING SYSTEM OF ELEMENTS OF CEMENT MATRIX, REINFORCED WITH GLASS FIBER "

The present invention patent refers to a production and molding system of tridimensional elements of cement reinforced with glass fiber.

The execution of the elements (4,5,6) is carried out using a combined structure added with glass fiber (1) (mesh type) together with a mixture of a cimenticious paste added with polymers (3) and reinforced with a resistant alcali glass fiber (2).

The existing technology presently permits the construction of panels for building facades only and the execution of bidimensional parts such as cornices, and other small elements used in the adorning of facades.

The existing technology consists in spreading horizontally over a mould a cement base paste added with polymers and reinforced with a resistant alcali glass fiber.

This technology permits to produce bi-dimensional elements.

This invention is based on the construction of tridimensional elements (4.5,6) moulding the elements in a vertical and horizontal position with cement paste added with polymers (3) and reinforced with a resistant alcali glass fiber (2), having for such used a combined structure with glass fiber (1) (mesh type).

The system uses tridimensional highly accurate metallic moulds where the structure

will be combined with glass fiber (1) and subsequently projecting over this structure the cement paste added with polymers (3) reinforced with a resistant alcali glass fiber (2).

In a first stage action, the combined structure with glass fiber (1) (mesh type) has the purpose of fixing up the cimenticious paste added with polymeers (3) and reinforced with a resistant alcali glass fiber while this one does not reach the resistance characteristics.

As soon as the cimenticious paste reinforced with glass fiber reaches the setting stage an homogeneous composite is formed.

The invented system permits the easy mechanical execuction of the tridimensional elements (4,5,6) either moulded or projected, for small thickness (from 6 to 20 mm) and allows to control and adjust the stress resistance generated in the tridimensional elements, due to the dimensional variation as a result of rectraction, thermal variation and mechanical action.

The tridimensional elements (4,5,6) thus produced can either be used separately or in multilayers (sandwich) elements binding the two mono-layer elements through non rigid links (8) using for such an expansive agglutinant material between the two layers.

This material (8) has the particularity of hardening the two mono-layer parts allowing hence a certain flexibility between them.

The space created between the two mono layer parts will be filled up with Parlayed type material (7) which will promote the thermal insulation of the wall thus built.