2017 New Style SV-888 Weatherproof Silicone Sealant Wholesale to Thailand
Short Description:
Description SV-888 silicone weatherproof sealant is one component, neutral cure silicone sealant, designed for glass curtain wall, aluminum curtain wall and building exterior design, has excellent weathering properties, it can form durable and most building materials, waterproof and flexible interface. Key Features 1. 100% silicone 2. Medium modulus (25% movement capability) 3. UV resistance & weatherproof 4. Primerless adhesion to most building materials Basic Application 1.All ...
To be the stage of realizing dreams of our employees! To build a happier, more united and more professional team! To reach a mutual benefit of our customers, suppliers, the society and ourselves for 2017 New Style SV-888 Weatherproof Silicone Sealant Wholesale to Thailand, Inspired by the rapid developing market of the fast food and beverage consumables all over the world , We are looking forward to working with partners /clients to make success together .
Description
SV-888 silicone weatherproof sealant is one component, neutral cure silicone sealant, designed for glass curtain wall, aluminum curtain wall and building exterior design, has excellent weathering properties, it can form durable and most building materials, waterproof and flexible interface.
Key Features
1. 100% silicone
2. Medium modulus (25% movement capability)
3. UV resistance & weatherproof
4. Primerless adhesion to most building materials
Basic Application
1.All kinds of glass curtain wall weatherproof seal
2.For metal (aluminum) curtain wall, enamel curtain wall weatherproof seal
3.Joint sealing of concrete and metal
4.Roof joint seal
Technical data sheet
Test standard | Test project | Unit | value |
Before curing——25℃,50%R.H. | |||
GB13477 | Flow, sagging or vertical flow | mm | 0 |
GB13477 | Operating time | min | 10 |
GB13477 | surface drying time(25℃,50%R.H.) | min | 20 |
Deep curing | mm/day | 1-2 | |
Sealant curing speed and operating time will have different with different temperatures and temperature, high temperature and high humidity can make sealant curing speed faster, rather low temperature and low humidity are slower.21 days after curing——25℃,50%R.H. | |||
GB13477 | Durometer Hardness | Shore A | 28 |
GB13477 | The ultimate tensile strength | Mpa | 0.65 |
Temperature stability | ℃ | -50~+150 | |
GB13477 | Movement capability | % | 25 |
Certification
GB/T 22083-G-35;ASTM C920
Color
Black, white, grey
Package
300ml in cartridge * 24 per box, 590ml in sausage *20 per box
Shelf life
12 months
Note
If you want the TDS or MSDS or other details, please contact with our sales person.
BEST T.P.S. is liquid vulcanized rubber.
It is inserted into the tyre through the valve, (no downtimes for application)
Inserted only ONCE in the lifetime of the tyre, (no need to change, no matter how many years the tyre is operational on the machine)
Remains liquid for all years and creates an air-proof layer inside the tyre, covering the ENTIRE internal area. This layer does not permit air to escape.
Sealing air leakages from very difficult areas like:
the O-ring in split type rims
the bead (bead leakages are not to be confused with O-ring leakages, as the O-ring is almost 5 to 10 cm away from the bead)
Seals ALL pores. Pores are very often found in low cost tyres
Creates patches on the tread area, if the tyre is punctured.
Finally but certainly most importantly, BEST T.P.S. is the UNIQUE solution to save leakages from separation (bulges or bubbles) of the tyre layers.
A polymer (/ˈpɒlɨmər/) (poly-, “many” + -mer, “parts”) is a large molecule, or macromolecule, composed of many repeated subunits. Because of their broad range of properties, both synthetic and natural polymers play an essential and ubiquitous role in everyday life. Polymers range from familiar synthetic plastics such as polystyrene to natural biopolymers such as DNA and proteins that are fundamental to biological structure and function. Polymers, both natural and synthetic, are created via polymerization of many small molecules, known as monomers. Their consequently large molecular mass relative to small molecule compounds produces unique physical properties, including toughness, viscoelasticity, and a tendency to form glasses and semicrystalline structures rather than crystals.
The term “polymer” derives from the ancient Greek word πολύς (polus, meaning “many, much”) and μέρος (meros, meaning “parts”), and refers to a molecule whose structure is composed of multiple repeating units, from which originates a characteristic of high relative molecular mass and attendant properties. The units composing polymers derive, actually or conceptually, from molecules of low relative molecular mass. The term was coined in 1833 by Jöns Jacob Berzelius, though with a definition distinct from the modern IUPAC definition. The modern concept of polymers as covalently bonded macromolecular structures was proposed in 1920 by Hermann Staudinger, who spent the next decade finding experimental evidence for this hypothesis.
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