Tests and Services – Stazione Sperimentale del Vetro
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STAZIONE SPERIMENTALE DEL VETRO
Via Briati, 10 -30141 Murano -Venezia Italy
Architectural Glass Department Via delle Industrie, 13 Marghera (Venezia) Italy
SINAL Accreditation Nr 0073
Tests and services
Stazione Sperimentale del Vetro is a Laboratory accredited by SINAL (Sistema Nazionale per l'Accreditamento di
Laboratori). SINAL operating in compliance with UNI CEI EN ISO/IEC 17025 standard recognizes competence and
impartiality to testing laboratories in performing the accredited tests by means of periodic technical assessment visits. Tests
accredited by SINAL are marked ◙ and are reported in the site www.sinal.it.
This Price List refers to the tests and services performed by the Institute Departments, namely:
Chemical and Environmental Department: characterisation of glass and raw materials, durability tests, environmental
sampling and measurements;
Physical Department: physical and optical properties testing;
Architectural Glass Department: tests on architectural glazing according to present standards and marks;
Energy, Furnaces and Thermophysical Tests Department: experimental meltings, tests for mechanical strength resistance,
thermal conducibility, electrical conductivity, viscosity;
Documentation and other Services.
Prices will be reduced by one third on average for subscriber glass companies.
Samples shall be sent to the test laboratory together with a letter indicating the type of test requested, in a packaging
suitable to preserve their characteristics.
Whenever possible, a part of the sample will be kept as a verification sample for three months after the test execution date.
After this period samples will be disposed, unless differently requested by the customer. At the Architectural Glass
Department verification samples are kept only when they fail the test.
Issued Test Reports only refer to the examined samples, and in no case are to be considered as an implicit approval of the
tested product. The relevant registered documents will be kept for at least ten years. For tests requiring a sample collection,
it is understood that it is carried out under the customer’s responsibility, unless different agreements are specified. Any
complaints concerning performed tests should be forwarded to the Secretariat of Stazione Sperimentale del Vetro.
Murano- Tel.: +39 - 041- 2737011 - Fax: +39 - 041- 2737048;
Marghera- Tel.: +39 - 041- 5383108, 5383112 - Fax: +39 – 041 5090669
E-Mail: [email protected] - www.spevetro.it
Partita IVA IT00430620278 Codice Fiscale IT00430620278
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Chemical and Environmental Department
Chemical analyses of glass and raw materials
Analyses are performed by wet chemistry; every single element is determined by using the most
appropriate technique, depending on the kind of element, its concentration and the particular matrix.
Examples of the most common methods used for the determination of the main components and trace
elements are given in the following table.
Components
Silica (SiO2)
Alumina (Al2O3)
Iron oxide (Fe2O3)
Titanium Oxide (TiO2)
Zirconium Oxide (ZrO2)
Calcium Oxide (CaO)
Magnesium Oxide (MgO)
Sodium Oxide (Na2O)
Potassium oxide (K2O)
Boron oxide (B2O3)
Trace elements (Pb, Cd, Ba, Sr)
Colouring elements (Co, Ni, Mn, Cu, Cr)
Total sulphur
As, Se, Sb, Hg
Chlorine/Fluorine
Measurements to be performed on hydrolytic/acid
extracts
Method
Grav. + Colorim./ICP
Complex/AAS/ICP
Complex/AAS/ICP
Colorim/ICP
Colorim/ICP
Complex/AAS/ICP
AAS/ICP
AAS
AAS
Pot.tit./ICP
AAS/ICP
AAS/ICP/Colorim.
Combustion method
HG-AAS/ICP
Pot. titr. /IC
GFAAS/ICP/Colorim.
Legend:
Colorim.
Grav.
AAS
ICP-OES
Pot. titr.
GFAAS
HG AAS
Complex
IC
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Colorimetry
Gravimetry
Atomic Absorption Spectrometry
Inductively Coupled Plasma Optical Emission Spectrometry
Potentiometric Titration
Graphite Furnace Atomic Absorption Spectrometry
Hydride Generation Atomic Absorption Spectrometry
Complexometric Titration
Ionic chromatography
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TESTS
Chemical analysis of glass
- Soda-lime glass (flat and container glass)
- Borosilicate glass
- Lead glass
- Enamels, frits
◙ - Lead crystal glass characteristics: Pb determination according to our method LAC/MI/95-01 rev. 5
2008
◙ - Lead crystal glass characteristics. Composition: Pb, Ba, Zn, K according to our method LAC/MI/9501 rev. 5 2008
Chemical analysis of raw materials
- Silica sands
- Clay, feldspar, feldspar sand, kaolin, nepheline
- As2O3, Sb2O3 , selenium metal, cobalt oxide
- Sodium, potassium, strontium carbonate
- Marble, dolomite
- Borax, boric acid
- Barium carbonate
- Calcium sulphate
- Sodium sulphate
- Chromite
- Coal
- Iron oxide
- Slag
- Sodium nitrate
- Pyrite
- Fluorspar CaF2
- Other raw materials
Chemical analysis of refractory materials
- AZS, Zirconia sand, zirconium silicate
- Silica Refractories, Alumina-silica refractories
Elemental analysis
- Chlorides, fluorides, sulphides
- Soluble silica in traces (Molybdenum blue)
- Ferrous iron, Hexavalent Chromium
- COD
- Carbon/Sulphide – Elemental analyzer, Combustion method
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TESTS
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Tests in compliance with Standards and Legislations
Alkali resistance ISO 695:1991
Acid resistance, DIN 12116:2001
Hydrolytic resistance of powder glass at 98°C, ISO 719:1985
Hydrolytic resistance of powder glass at 121°C, ISO 720:1985
Hydrolytic resistance of the inner surface. Titration method according to ISO 4802-1 1988
Hydrolytic resistance of the inner surface by flame spectrometric measurements (NA, K, Ca)
according to ISO 4802-2: 1988
Hydrolytic resistance of glass containers. Surface test FU XI:2002 par. 3.2. pag. 357-362
Hydrolytic resistance of glass. Surface test EP ed VI 2008 par 3.2.1.
Hydrolytic resistance of glass. Surface test USP ed- 31 NF 26 2008, containers- glass
Hydrolytic resistance of glass. Powder test ed. VI 2008 par. 3.2.1.
Hydrolytic resistance of glass. Powder test USP ed- 31 NF 26 2008, containers- glass
Hydrolytic resistance of glass. Arsenic migration, surface test EP ed VI 2008 par 3.2.1.
Hydrolytic resistance of glass. Arsenic migration, surface test. USP ed- 31 NF 26 2008, containersglass
Determination of heavy metals in glass packaging according to our Method "LAC/MI/07-02 rev.2
2008" (Hg), UNI 10938 (2001) (Pb, Cd), UNI 11079 (2003) (Cr6+)
Pb determination in glass according to UNI 10938 (2001)
Cd determination in glass according to UNI 10938 (2001)
Pb/Cd determination in glass according to UNI 10938 (2001)
Determination of hexavalent chromium in glass according to UNI 11079 (2003)
Hg determination according to our Method "LAC/MI/07-02 rev. 2 2008"
Pb/Cd migration in acetic acid from glassware ISO 7086-1/2 2000
Pb/Cd migration from ceramic ware ISO 6486- 1/2 1999
Pb/Cd migration from ceramic ware according to Dir 84/500/EEC 15/10/84 + DM 04/04/1985 GU
n.98 26/04/1985+ Dir 2005/31/CE 29/4/2005+ DM 01/02/2007 GU n. 66 20/3/2007
Pb/Cd migration from ceramic ware according to ASTM C738-94 (2006)
Pb/Cd extrated from the lip and rim area of decorated glass and ceramicware according to ASTM C
927-80(2004)
Total migration in glass containers in contact with food, DM 21/3/1973 SO GU n° 104 20/4/73 + DM
n°220 26/04/1993 SO n° 64 GU n° 162 13/07/1993+ DM n° 735 28/10/1994 GU n° 2/1/1995 + REG
CE n° 1935/2004 27/10/2004
Determination of lead extracted by acetic acid in glass containers in contact with food, DM 21/3/1973
SO GU n° 104 20/4/73 + DM n°220 26/04/1993 SO n° 64 GU n° 162 13/07/1993+ DM n° 735
28/10/1994 GU n° 2/1/1995 + REG CE n° 1935/2004 27/10/2004
Waste elution test (various standards)
Dishwasher resistance test UNI EN 12875-1:2005 + UNI EN 12875-2:2002
Dishwasher resistance of ceramic ware rapid test, UNI EN 12875-4:2006
Tests according to other standards and regulations, on request
◙ Analysis sodium carbonate: total alkalinity, loss on heating, moisture according to ASTM E359-00
(2005) sez. 8-15 + sez 16-23 +sez. 24-30 + sez 31-35 (excluding all other)
◙ Marble, dolomite: determination of calcium carbonate, magnesium carbonate and total carbon content
according to ASTM C25-06 sez. 31 + sez. 35 (excluding all other)
◙ Carbon, graphite: total carbon determination according to ASTM D5373-08
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Leaching tests for glass wastes: Antimony, Arsenic, Cadmium, Chromium, Molybdenum, Nickel,
Lead, Copper, Selenium, Zinc according UNI EN 12457-2:2004+ UNI EN ISO 15586:2004; Barium
according to UNI EN 12457-2:2004 + EPA 7000 B 2007; Mercury according to UNI EN 124572:2004+ UNI EN 1483:2008; Fluorine, Chlorine, Sulphate according UNI EN 12457-2:2004 + UNI
EN ISO 10304-1:2009
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Chemical and Environmental Department
Environmental analyses
TESTS
Glass furnace emission analysis
◙ Determination of waste gas flow and velocity through a Pitot tube UNI 10169:2001
◙ Determination of dust concentration in the waste gas flow by the gravimetric method, UNI EN
13284-1 2003.
Determination of water vapour content in waste gases, UNI EN 14790:2006
Determination of waste gas temperature, UNI 10169:2001
◙ Determination of NO, NOx in waste gas flow, UNI 10878:2000
Determination of carbon monoxide in waste gas flow
Determination of carbon dioxide in waste gas flow according to US-EPA 3A-ALT004
Determination of oxygen in waste gas flow according to UNI EN 14789:2006
Determination of SOx in waste gas flow according to UNI EN 14791:2006
◙ Determination of fluorine inorganic compounds emissions (gas and vapours) in waste gas flow, DM
25/8/2000, G.U. n. 223 23/9/2000 Encl. 2
◙ Determination of chlorine inorganic compounds emissions (gas and vapours) in waste gas flow, DM
25/8/2000, G.U. n. 223 23/9/2000 Encl. 2
Determination of fluorine inorganic compounds emissions (gas and vapours) in waste gas flow
according to ISO 15713:2006
◙ Work environment. Determination of inhalable dust fraction, MU 1998:2005
◙ Work environment. Determination of respirable dust fraction, MU 2010:2006
ASTM D6522 - 00(2005) Standard test method for determination of nitrogen oxides, carbon
monoxide, and oxygen concentrations in emissions from natural gas-fired reciprocating engines,
combustion turbines, boilers, and process heaters using portable analyzers
Tests according to other standards and regulations, on request
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Physical Department
Physical Tests
TESTS
Devitrification curve of soda-lime glass
Devitrification curve of other kinds of glass
Defect analysis by optical microscope
X-ray diffraction
X-ray fluorescence on glass, refractories, raw materials, frits, up to 12 elements
Any other element
X-ray fluorescence: a single element
Microprobe
Mineralogical analysis
Polariscope qualitative/quantitative stress analysis
Ring section stress quantitative analysis
◙ Determination of crystalline silica (quartz) deposited on a membrane filter according to internal
method LPF/MI 00-01 rev 4 2007
◙ Environment: airborne asbestos fibres deposited on a membrane filter. Analysis and counting by
electronic microscope (SEM+EDS) DM 05/09/1994 SO n. 129 GU n° 220 20/09/1994
Sample preparation for fluorescence analysis
Sample preparation for microprobe analysis
Standard density (glass)
Apparent density (refractories)
º UNI EN 572-9:2005 Glass in building - Basic soda lime silicate glass products. Determination of the
chemical composition by X-ray fluorescence up to 12 elements.
º UNI EN 572-9:2005 Glass in building - Basic soda lime silicate glass products.
Sample preparation by X-ray fluorescence
Tests according to other standards and regulations, on request
º Tests carried out in compliance with the Government authorization to operate as a Testing Laboratory within the
European Directive 89/106 – Notified Body n. 1694
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Physical Department
Optical Tests
TESTS
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Spectral transmittance
- UV (200-380 nm)
- VIS (380-760 nm)
-NIR (760-2500 nm)
- IR (2500-50000 nm)
- Colour measurement (Transmission curve VIS + calculation) CIE Publication 15: 2004
Spectral Reflectance
- UV (200-380 nm)
- VIS (380-760 nm)
- NIR (760-2500 nm)
- IR (2500-50000 nm)
Luminous parameters (illuminant A) with a 0,5 m diameter integrating sphere
- Light transmittance
- Light reflectance
- Angular transmittance measurement
- Angular reflectance measurement
- Luminous transmission under diffuse irradiation
- Luminous reflection under diffuse irradiation
- Emissivity according to UNI EN 12898: 2002, (IR Reflectance+parameter calculation)
Spectrophotometric FeO
Spectrophotometric FeO and Sulphides
Refractive index (for each wavelength: 486, 589, 656, 706 nm)
Dispersion curve in the visible range
Abbe's number
Refractive index at a different wavelength in the visible range (using the evaluation of the visible
dispersion curve)
Light transmittance and light reflectance calculation according to UNI 7499: 1975 + UNI 8034:
1979
Normal emissivity. Thermal transmission coefficient calculation according to EN 673:1997 (A1
2000 - A2 2002)
Determination of luminous and solar properties according to EN 410:1998, UNI EN 410:2000
UNI EN 12150-2:2005 - Thermally toughened soda lime silicate safety glass: spectral
transmittance UV (200-380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000
nm)
UNI EN 12150-2:2005 – Thermally toughened soda lime silicate safety glass: spectral reflectance
UV (200-380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000 nm)
UNI EN 12150-2:2005 - Thermally toughened soda lime silicate safety glass: normal emissivity
according to UNI EN 12898:2002
UNI EN 12150-2:2005 - Thermally toughened soda lime silicate safety glass: luminous and solar
properties according to UNI EN 410:2000 and thermal properties according to EN 673:1997
(A1:2000-A2:2002)
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º UNI EN 572-9:2005 - Glass in building - Basic soda lime silicate glass products
spectral trasmittance UV (200-380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) o IR (250050000 nm)
º UNI EN 572-9:2005 - Glass in building - Basic soda lime silicate glass products
spectral reflectance UV (200-380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (250050000 nm)
◙ UNI EN 572-9:2005 - Glass in building - Basic soda lime silicate glass products: normal emissivity
º according to according to UNI EN 12898:2002
◙ UNI EN 572-9:2005 Glass in building - Basic soda lime silicate glass products: luminous and solar
º properties according to UNI EN 410:2000 and thermal properties according to EN 673:1997
(A1:2000-A2:2002)
º UNI EN 14449:2005 – Laminated glass and laminated safety glass. Spectral trasmittance UV (200380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000 nm)
º UNI EN 14449:2005 – Laminated glass and laminated safety glass. Spectral reflectance UV (200380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000 nm)
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UNI EN 14449:2005 – Laminated glass and laminated safety glass. Emissivity according to UNI
EN 12898:2002
UNI EN 14449:2005 - Laminated glass and laminated safety glass: luminous and solar properties
according to UNI EN 410:2000 and thermal properties according to EN 673:1997 (A1:2000A2:2002)
UNI EN 1863-2:2005 – Heat strengthened soda lime silicate glass spectral trasmittance UV (200380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000 nm)
UNI EN 1863-2:2005 – Heat strengthened soda lime silicate glass spectral reflectance UV (200380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000 nm)
UNI EN 1863-2:2005 - Heat strengthened soda lime silicate glass: normal emissivity according to
UNI EN 12898:2002
UNI EN 1863-2:2005 - Heat strengthened soda lime silicate glass: luminous, solar properties
according to UNI EN 410:2000 and thermal properties according to EN 673:1997 (A1:2000A2:2002)
UNI EN 1279-5:2009 - Insulating glass units: spectral trasmittance UV (200-380 nm) or VIS (380780 nm) or NIR (780-2500 nm) or IR (2500-50000 nm)
UNI EN 1279-5:2009 - Insulating glass units: spectral reflectance UV (200-380 nm) or VIS (380780 nm) or NIR (780-2500 nm) or IR (2500-50000 nm)
UNI EN 1279-5:2009 - Insulating glass units: normal emissivity according to UNI EN 12898:2002
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◙ UNI EN 1279-5:2009 - Insulating glass units: luminous and solar properties according to UNI EN
º 410:2000 and thermal properties according to EN 673:1997 (A1:2000-A2:2002)
º UNI EN 12337-2:2005 - Chemically strengthened soda lime silicate glass:
spectral trasmittance UV (200-380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (250050000 nm)
º UNI EN 12337-2:2005 - Chemically strengthened soda lime silicate glass: spectral reflectance UV
(200-380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000 nm)
◙ UNI EN 12337-2:2005 - Chemically strengthened soda lime silicate glass: normal emissivity
º according to UNI EN 12898:2002
◙ UNI EN 12337-2:2005 - Chemically strengthened soda lime silicate glass: luminous and solar
º properties according to UNI EN 410:2000 and thermal properties according to EN 673:1997
(A1:2000-A2:2002)
º UNI EN 14179-2: 2005 - Heat soaked thermally toughened soda lime silicate safety glass: spectral
transmittance UV (200-380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000
nm)
º UNI EN 14179-2: 2005 - Heat soaked thermally toughened soda lime silicate safety glass: spectral
reflectance UV (200-380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000 nm)
◙ UNI EN 14179-2: 2005 - Heat soaked thermally toughened soda lime silicate safety glass: normal
º emissivity according to UNI EN 12898:2002
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◙ UNI EN 14179-2: 2005 - Heat soaked thermally toughened soda lime silicate safety glass:
º luminous and solar properties according to UNI EN 410:2000 and thermal properties according to
EN 673:1997 (A1:2000-A2:2002)
º UNI EN 1096-4:2005 - Coated glass: spectral transmittance UV (200-380 nm) or VIS (380-780
nm) or NIR (780-2500 nm) or IR (2500-50000 nm). Eeach sample
º UNI EN 1096-4:2005 - Coated glass spectral reflectance UV (200-380 nm) or VIS (380-780 nm)
or NIR (780-2500 nm) or IR (2500-50000 nm)
◙ UNI EN 1096-4:2005 - Coated glass: normal emissivity according to UNI EN 12898:2002
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◙ UNI EN 1096-4:2005 - Coated glass: luminous and solar properties according to UNI EN
º 410:2000 and thermal properties according to EN 673:1997 (A1:2000-A2:2002)
º UNI EN 14321-2:2006 - Thermally toughened alkaline earth silicate safety glass: spectral
transmittance UV (200-380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000
nm)
º UNI EN 14321-2:2006 - Thermally toughened alkaline earth silicate safety glass: spectral
reflectance UV (200-380 nm) or VIS (380-780 nm) or NIR (780-2500 nm) or IR (2500-50000 nm).
◙ UNI EN 14321-2:2006 - Thermally toughened alkaline earth silicate safety glass: normal
º emissivity according UNI EN 12898:2002
◙ UNI EN 14321-2:2006 - Thermally toughened alkaline earth silicate safety glass: luminous and
º solar properties according to UNI EN 410:2000 and thermal properties according to EN 673:1997
(A1:2000-A2:2002)
Sample preparation if necessary
Coating meter
Containers: investigations into problems of hot and cold end coatings; hydrolytic alteration;
particles; inner and outer surface contamination; capping and corking; labelling and lubrication;
content alteration and foaming; acid etching and painting
Flat glass and glazing: investigations into problems of hydrolytic alteration; surface contamination;
gluing, painting and decoration; coating alteration and contamination; organic microcomponents
release
Glass in general: investigations into water in glass, surface contamination, hydrolytic alteration,
lubrication and decoration; sealing, painting and decorating
Tests according to other standards and regulations, on request
º Tests carried out in compliance with the Government authorization to operate as a Testing Laboratory within the European
Directive 89/106 – Notified Body n. 1694
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Architectural Glass Department
TESTS
In compliance with Italian, European and International standards:
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UNI EN ISO 12543-4:2000 p. 4 – Glass in building laminated glass and laminatet safety glass.
Ageing tests: high temperature resistance
UNI EN ISO 12543-4:2000 p. 5 – Ageing tests: high humidity resistance
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UNI EN ISO 12543-4:2000 p. 6 – UV ageing test: solar radiation test + UNI EN 410:2000
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UNI EN 356:2002 p. 6.2 – Glass in building - Security glazing - Testing and classification of
resistance against manual attack. Impact test hammer/axe
UNI EN 356:2002 p. 6.1 – Glass in building - Security glazing - Testing and classification of
resistance against manual attack. Hard body drop test
UNI EN 12600:2004 – Glass in building. Pendulum test. Impact test method and classification for flat
glass.
UNI EN 1279-4:2004 p. 5.1 Glass in building. Insulating glass units. Adhesion test: glass-sealant-glass
UNI EN 1279-3:2004 Glass in building. Insulating glass units. Gas leakage (Li) after ageing
UNI EN 1279-2:2004 Glass in building. Insulating glass units. Ageing tests Initial and final moisture
content and penetration index
UNI EN 1279-6:2004 Annex B.4 Glass in building. Insulating glass units. Ageing tests (short test). Initial
and final moisture content and penetration index
UNI EN 1288-3:2001 - Glass in building – 4 point bending strength test
ASTM C 1279-05 – Surface compressive stress
UNI EN 12150-1:2001 p. 8 – Thermally toughened soda lime silicate safety glass. Fragmentation test.
UNI EN 12150-2:2005 - Glass in building - Thermally toughened soda lime silicate safety glass.
Fragmentation test according to UNI EN 12150-1:2001 p. 8
UNI EN 12150-2:2005 - Glass in building - Thermally toughened soda lime silicate safety glass. 4
point Bending strength test according to UNI EN 1288-3:2001
UNI EN 12150-2:2005 - Glass in building - Thermally toughened soda lime silicate safety glass.
Pendulum test according to UNI EN 12600:2004
UNI EN 12150-2: 2005 - Glass in building - Thermally toughened soda lime silicate safety glass.
Surface compressive stress measurement according to ASTM C 1279-05
UNI EN 12150-2:2005 - Glass in building – Thermally toughened soda lime silicate safety glass. –
Impact test hammer/axe according to UNI EN 356:2002 p. 6.2
UNI EN 12150-2:2005 - Glass in building – Thermally toughened soda lime silicate safety glass.
Hard body drop test according to UNI EN 356:2002 p. 6.1
UNI EN 572-9:2005 Glass in building - Basic soda lime silicate glass products. Impact test
hammer/axe according to UNI EN 356:2002 p. 6.2
UNI EN 572-9:2005 Glass in building - Basic soda lime silicate glass products. Hard body drop test
to UNI EN 356:2002 p. 6.1
UNI EN 572-9:2005 Glass in building - Basic soda lime silicate glass products. Mechanical
resistance. Pendulum test according to UNI EN 12600:2004
UNI EN 14449:2005 - Laminated glass and laminated safety glass – high temperature ageing test
according to UNI EN ISO 12543-4:2000 p. 4
UNI EN 14449:2005 - Laminated glass and laminated safety glass – high humidity ageing test
according to UNI EN ISO 12543-4:2000 p. 5:
UNI EN 14449:2005 - Laminated glass and laminated safety glass. UV ageing test for solar
irradiation in accordance with UNI EN ISO 12543-4:2000 p. 6 + UNI EN 410:2000
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UNI EN 14449:2005 - Laminated glass and laminated safety glass. Pendulum test according to UNI
EN 12600:2004
UNI EN 14449:2005 - Laminated glass and laminated safety glass. Impact test hammer/axe according
to UNI EN 356
UNI EN 14449:2005 - Laminated glass and laminated safety glass. Hard body drop test according to
UNI EN 356
UNI EN 1863-1:2002 p. 8 - Heat strengthened soda lime silicate glass. Fragmentation test
UNI EN 1863-2:2005 - Heat strengthened soda lime silicate glass. Fragmentation test according to
UNI EN 1863-1:2002 p. 8
UNI EN 1863-2:2005 - Heat strengthened soda lime silicate glass. Four points bending strength
according to UNI EN 1288-3:2001
UNI EN 1863-2:2005 - Heat strengthened soda lime silicate glass: measurement of surface stresses
according to ASTM C 1279-05
UNI EN 1863-2:2005 – Heat strengthened soda lime silicate glass - Laminated glass and laminated
safety glass. Impact test hammer/axe according to UNI EN 356:2002 p. 6.2
UNI EN 1863-2:2005 – Heat strengthened soda lime silicate glass - Laminated glass and laminated
safety glass. Hard body drop test according to UNI EN 356:2002 p. 6.1
UNI EN 1863-2:2005 – Heat strengthened soda lime silicate glass – Glass in building. Mechanical
resistance. Pendulum test according to UNI EN 12600:2004
UNI EN 1279-5:2009 – Insulating glass units: ageing tests, initial and final water adsorption and
penetration index in accordance to UNI EN 1279-2:2004
Insulating glass units: initial tests for gas concentration in accordance with UNI EN 1279-3:2004
UNI EN 1279-5:2009 – Insulating glass units: ageing tests. Measurements of gas concentration and
gas leakage rate according to UNI EN 1279-3:2004
UNI EN 1279-5:2009 - Insulating glass units: glass – sealant – glass adhesion test according to UNI
EN 1279-4:2004 p. 5.1
Insulating glass units: Moisture vapour transmission rate (MVTR) on sealing materials according to
UNI EN 1279-4:2004
Insulating glass units. Gas permeation test on sealing materials according to UNI EN 1279-4:2004
Insulating glass units. Fogging test according to UNI EN 1279-6:2004
Insulating glass units: volatile content according to UNI EN 1279-6:2004
UNI EN 12337-2:2005 – Chemically strengthened soda lime silicate glass: four point bending
strength test according to UNI EN 1288-3:2001
UNI EN 14179-2:2005 - Heat soaked thermally toughened soda lime silicate safety glass:
fragmentation test according to UNI EN 14179-1:2005
UNI EN 14179-2:2005 - Heat soaked thermally toughened soda lime silicate safety glass: four point
bending strength test according to UNI EN 1288-3:2001
UNI EN 14179-2:2005 - Heat soaked thermally toughened soda lime silicate safety glass: Pendulum
test level 3-1(C)X in accordance with UNI EN 12600:2004
UNI EN 14179-2: 2005 - Heat soaked thermally toughened soda lime silicate safety glass:
measurement of surface stresses according to ASTM C 1279:2000
UNI EN 14179-2:2005 - Heat soaked thermally toughened soda lime silicate safety glass.
- Impact test hammer/axe according to UNI EN 356:2002 p. 6.2
UNI EN 14179-2:2005 - Heat soaked thermally toughened soda lime silicate safety glass.- Hard body
drop test according to UNI EN 356:2002 p. 6.1
HST calibration in accordance with EN 14179-1/2: (travelling expenses reimbursement) per day
HST Report and documentation
UNI EN 1096-4:2005 – Coated glass durability tests according to UNI EN 1096/2:2002 class B-S
UNI EN 1096-4:2005 - Coated glass durability tests according to UNI EN 1096/3:2002 class C-D
UNI EN 1096-4:2005 - Coated glass – Laminated glass and laminated safety. Impact test hammer/axe
according to UNI EN 356:2002 p. 6.2
UNI EN 1096-4:2005 - Coated glass – Laminated glass and laminated safety. Hard body drop test
according to to UNI EN 356:2002 p. 6.1
UNI EN 1096-4:2005 - Glass in building - Coated glass. Mechanical resistance. Pendulum test
according to UNI EN 12600:2004
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UNI EN 14321-2:2006 Thermally toughened alkaline earth silicate safety glass. Fragmentation test in
accordance with UNI EN 14321-1:2005 p. 8
UNI EN 14321-2:2006 - Thermally toughened alkaline earth silicate safety glass. Four point bending
strength according to UNI EN 1288-3:2001
UNI EN 14321-2:2005 - Thermally toughened alkaline earth silicate safety glass. Pendulum test
according to UNI EN 12600:2004
UNI EN 14321-2:2006 Thermally toughened alkaline earth silicate safety glass. Impact test
hammer/axe according to UNI EN 356:2002 p. 6.2
UNI EN 14321-2:2006 - Thermally toughened alkaline earth silicate safety glass. Hard body drop test
according to UNI EN 356:2002 p. 6.1
UNI EN 14321-2:2006 - Thermally toughened alkaline earth silicate safety glass. Fragmentation test
in accordance with measurement of surface stresses according to ASTM C 1279:2000
UNI EN 1036:2001 Mirror durability
ISO 614: 1989 – Punch method test
Italian Railway specifications – Tempered glass n. 306931 esp 02, 1997 (Document revision in
progress)
Italian Railway specifications – Laminated glass n. 306931 esp 02, 1997 (Document revision in
progress)
Italian Railway specifications - Vibration tests
UNI EN 13022-2:2006; ETAG 2:2001 – Glass in building. Structural sealant glazing. UV resistance
test on sealants
Product defect inspection, professional advice, expert reports
Glass tests in compliance with different specifications
UNI Mark in compliance with UNI EN 1279-2:2004
UNI Mark in compliance with UNI EN 1279-3:2004
UNI Mark, each additional line or model with gas, following years
UNI Mark on laminated and thermally laminated glass (toughened or tempered). Tests and initial
assessment
Pre-Audit assessments
Tests according to other standards and regulations on request
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Tests carried out in compliance with the Government authorization to operate as a Testing Laboratory within European
Directive 89/106 – Nofied Body n. 1694
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Energy, Furnaces and Thermophysical Tests Department
TESTS
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Analysis of gas bubbles by mass spectrometry (complete analysis)
Thermogravimetric analysis up to 1450°C
Differential thermal analysis up to 1450°C
Differential scanning calorimetry up to 1450°C
Expansion coefficient (*), ISO 7991:1987, UNI 7460: 1975
Measurement of viscosity at working temperature (*) from ~100 to 105 Pas, ASTM C965-96(2007),
ISO 7884/2:1987
Softening point 107,6 dPa.s (*), ASTM C 338-93 (2008), ISO 7884/6 1987
Viscosity measurement: annealing and strain point 1013 and 1014,5 dPa.s, (*), ASTM C 336 1971
(2005)
Dilatometric transformation temperature (*) ISO 7884/8:1987(E)
Expansion curve up to 1500°C (*)
Electrical conductivity up to 1550°C
Thermal conductivity (*)
Specific heat up to 1400°C
Annealing and re-melting cycles
Instron rupture
Internal pressure strength of bottles, UNI EN ISO 7458:2004 B Method, ASTM C 147-86 (2005) B
Method
Internal pressure strength according to UNI EN ISO 7458:2004 B Method and mechanical strength of
bottles, ASTM C147-86 (2005) B Method,
Fracture analysis
Tempering analysis
Impact strength of glass containers according to UNI 9302:1988
Thermal shock resistance , ASTM C 149-86 (2005)
Thermal shock resistance, UNI 9303:1988
Thermal shock resistance, UNI EN ISO 7459:2004
Thermal shock resistance with lehr
Finite elements
High temperature density
Vickers or Knoop microindentation
Tests according to other standards and regulations, on request
(*) Melting, annealing and sample preparation rates are included. Prices will be proportionally reduced if samples are previously
prepared by customers.
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Library and other Services
SERVICES
Photocopy service
Literature searches
Translations
Professional advices and Technical interventions
Training courses
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Architectural Glass Department - Stazione Sperimentale del Vetro