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How to choose titanium dioxide?
2023 / 03 / 11
How to choose titanium dioxide? First, the color Color is an important technical indicator for marking pigments. Titanium dioxide is known as "the king of white pigments", and the color index of titanium dioxide is whiteness. Even titanium dioxide with the same chemical composition will have different colors due to differences in process routes, raw materials, equipment, and technical levels. Although the color light depends on the chemical composition, the more important and often decisive factor is its color. Particle shape, size, particle size distribution, crystal form, impurity content, etc. Second, the hiding power The optical nature of opacity results from the difference in the refractive index of the pigment and the medium in which it exists. The refractive index of rutile type titanium dioxide is 2.71, and that of anatase type is 2.55, which is the white pigment with the highest hiding power. The covering effect is mainly due to the scattering caused by titanium dioxide, or the absorption caused by the presence of colored substances, or when the intensity of incident light is reduced due to the above two reasons, the covering phenomenon occurs. Therefore, the main reason for determining the hiding power of titanium dioxide is not only the chemical composition and crystal form, but also the particle shape, particle size and particle size distribution of titanium dioxide. Third, coloring power Tinting strength is an important characteristic index of titanium dioxide, which is the ability of the mixture to display its own pigment after mixing titanium dioxide with another pigment. That is to say, for a white pigment, after it is mixed with a dark pigment, the lighter the color of the mixture, the stronger its tinting power (color reduction power). Fourth, oil absorption Oil absorption is also one of the important pigment properties of titaniu
2023 / 03 / 11
A smoldering cigarette could turn an apartment without flame retardant protection into an inferno in less than 3 minutes. However, if the chair, bedding, or carpet where the cigarette lay, had flame retardant, the fire might never have started. And if a fire did start, the flame retardants would have reduced the heat and spread of the fire, taking 10-15 minutes to be deadly. Flame retardants provide time: time to leave in safety. It's been proven many times that flame retardants save lives. Here are a couple excerpts from the video below asking "Do Flame Retardants Work?" produced by American Chemistry. "There's plenty of evidence that flame retardants work. There have been numerous studies that have concluded that when you put the right amount of the right type of flame retardant with the right material, they make a massive difference in terms of heat release, which is the principal property of a fire. A study at the National Bureau of Standards comparing products treated with flame retardants, against those that were not treated, found a significant increase in the amount of time for escape and rescue." - Marco Hirshler, President & Technical Director, GBH International "A recent Air France flight that crashed, off the runway in Paris, 353 people aboard. the plane was completely destroyed by fire, but all 353 passengers were able to get off unhurt, because the interior of the plane was heavily flame retarded, which gave them time for escape."
Flame Retardants: Preventing Fires and Protecting Consumers
2023 / 03 / 11
As consumer products continue to evolve and improve, from lighter and faster computers to energy-saving building materials and construction methods to more fuel-efficient cars, fire safety technology allows these products to comply with domestic safety standards and laws. Flame retardants are materials that can be used in products, made from plastics, textiles, foams or wood, to reduce the chances of a fire starting and to delay the spread of fire once it starts. Flame retardant compounds help mitigate fire danger - Increase plastic`s ignition resistance - Reduce the speed of flame spread - Reduce heat release - Reduce smoke & fume generation Novista Group produce flame retardant APP (ammonium polyphosphate), MCA (melamine cyanurate)and DBDPE (Decabromodiphenyl Ethane), good quality and favorable price. REACH and RoHS certificated. Novista Group supplies equivalent of FP-2100JC, FP-2200S, FP-2500S, Exolit OP1230, OP930, OP1312, OP1314 to global market.
2023 / 03 / 11
Three components must be present in order for a fire to occur: oxygen (or an oxidizing agent), heat and fuel. This is often represented by the "fire triangle" or "combustion triangle." The fire tetrahedron represents the addition of a component, the chemical chain reaction, to the three already present in the fire triangle. After the fire ignites, an exothermic chain reaction keeps the fire going until something is introduced into the fire that blocks it. Water is one of the most common choices of fire suppressants. But in some cases, water will not suppress the fire, and may even make it worse. Flame retardant chemicals were developed to block the other elements that were part of the "fire triangle." Flame retardant chemicals may block the oxygen (foams), hydrated flame retardant chemicals release water (aluminum trihydrate and magnesium hydroxide) and halogenated flame retardant chemicals (bromine and chlorine) remove free radicals and create a barrier of inert gas that suppresses the chemical reaction creating the fire. Most items will release flammable gases when they burn, which are a catalyst for the fire. The fire is aided with the oxygen in the air. Some materials, like wood, do not produce gases when they burn. Instead, they produce a "char" as the result of smoldering, and often times can extinguish themselves. Natural charring has been adopted in some flame retardants, allowing them to create a char on the product that is burning. Much like the wood that stops burning from the char, these materials will self-extinguish when the char forms and smothers the fire.
2023 / 03 / 11
Titanium dioxide is divided into two types: rutile type and anatase type. According to international practice, the rutile type is represented by the first letter R of its English Rutile, which is called R type; the anatase type is represented by the first letter A of its English Anatase, and is called A type. The rutile type and anatase type without post-treatment are called R1 and A1 types, respectively; the post-treated rutile type and anatase type are called R2, R3, and A2 types, respectively. The anatase titanium dioxide used for plastics is called AP type; the anatase titanium dioxide used for chemical fibers is called AH type. Application of titanium dioxide Titanium dioxide is not only used as a colorant in the rubber industry, but also has the functions of reinforcement, anti-aging and filling. Adding titanium dioxide to white and colored rubber products, under sunlight, it is resistant to sunlight, does not crack, does not change color, has high elongation and acid and alkali resistance. Titanium dioxide for rubber is mainly used in automobile tires, rubber shoes, rubber flooring, gloves, sports equipment, etc., and generally anatase is the main type. However, for the production of automobile tires, a certain amount of rutile products are often added to enhance the anti-ozone and anti-ultraviolet capabilities. Titanium dioxide is also widely used in cosmetics. Because titanium dioxide is non-toxic and far superior to lead white, almost all kinds of fragrance powder use titanium dioxide to replace lead white and zinc white.
2023 / 03 / 04
CPVC compound is a type of plastic material that is used in the manufacturing of pipes and other plumbing fixtures. It is made up of a blend of polyvinyl chloride (PVC) and chlorinated polyvinyl chloride (CPVC). CPVC is more resistant to heat than regular PVC, making it ideal for hot water applications. It is also more resistant to chemicals, making it a popular choice for industrial applications. PVC Impact Modifier PVC Additives PVC Processing Aid Acrylic Impact Modifier Acrylic Processing Aid PVC Heat Stabilizer PVC Lubricant CPVC Compound CPVC Additives
2023 / 03 / 04
The China CPVC compound market is expected to witness a significant growth over the forecast period. It is projected to grow at a CAGR of 8.4% from 2020 to 2025.The growth of the CPVC compound market in China is mainly driven by the increasing demand for CPVC compounds from various end-use industries such as construction, automotive, and electrical & electronics. The increasing demand for CPVC compounds from these industries is attributed to their excellent properties such as high temperature and chemical resistance, low thermal expansion, and flame retardancy. Moreover, the growing investments in the construction sector, the increasing demand for electric vehicles, and the increasing demand for electrical & electronics products are some of the other factors driving the growth of the CPVC compound market in China.In terms of region, the market is segmented into East China, South China, and North China. East China is expected to be the largest market for CPVC compounds in China, due to the presence of major end-use industries such as construction, automotive, and electrical & electronics. Moreover, the presence of major CPVC compound manufacturers in East China is also driving the growth of the market in this region.The major players operating in the China CPVC compound
Do flame retardants actually stop the spread of fires?
2023 / 03 / 04
To answer that question, let`s use flame retardant furniture as an example. The number of upholstered furniture fires in the home environment dropped by 84 percent from 1980, the first year that data were available, to 2009, according to NFPA. While several factors have contributed to that sharp decline, the timeframe coincides with the use of flame retardants to meet flammability standards imposed in California in 1976. In the absence of a national requirement, the California standards were broadly followed by the US furniture industry over the following 20 years. Similar findings have been reported in the United Kingdom where flammability standards also are in place for furniture. Despite this substantial progress, upholstered furniture remains a significant contributor to home fire deaths, according to NFPA. During the period from 2005 to 2009, while upholstered furniture was the item first ignited in 2 percent of reported home fires, these fires resulted in 19 percent of the home fire deaths. Looking at U.S. home fires that originated with upholstered furniture between 2005 and 2009, the NFPA reports, [Together, candles, matches and lighters were involved in 21 percent of the fires and 12 percent of th
Several advantages of flame retardant masterbatch
2023 / 03 / 04
Because of the flame retardant efficiency, environmental protection, efficiency, convenience and so on, the flame retardant masterbatch has become an effective substitute for the traditional flame retardant and has been widely used in the various aspects of plastic granulation, extrusion, injection molding and other aspects. The effective flame retardant masterbatch is also known as the flame retardant masterbatch for modified plastics plant. The following advantages of using functional flame retardant masterbatch in modification plant. 1. Reduce cost With the progress of science and technology, the continuous development of carrier plastics and equipment, high concentration, high dispersion and high compatibility are possible. A small amount of carrier is no longer the main cause affecting the flame retardancy. Thus, the ideal condition of the exchange of flame retardant and powdery flame retardant is realized, and the flame retardant effect is not constant, and the flame retardancy efficiency is improved. Together with the organic combination of the fire-retardant masterbatch, the cost is reduced by the collective purchase, and the cost advantage of the flame retardant masterbatch is guaranteed, so that the cost can be effectively reduced after the customer is used. 2. improve efficiency The use of flame-retardant masterbatch makes the material more convenient, shorten the time, improve the working efficiency, and improve the mixi
four principles of halogen-free flame retardants
2023 / 03 / 04
Halogen free flame retardants have low smoke emission and no toxic or corrosive gases. Halogen free flame retardant additives are mainly phosphorus compounds and metal hydroxides. These two compounds do not volatilize and do not produce corrosive gases when burning. They are known as nuisance free flame retardants. The following is a brief introduction to the flame retardant principle of halogen free flame retardants. 1. endothermic action: any burning heat released in a shorter time is limited. If a portion of the heat released from the fire source is absorbed in a shorter time, the flame temperature will decrease, radiating to the burning surface and acting on the heat of cracking the combustible molecules that have been vaporized into free radicals, and the combustion reaction will be reduced. To a certain degree of inhibition. Under the high temperature conditions, the flame retardant has a strong endothermic reaction, absorbs some of the heat released from the combustion, reduces the temperature of the combustible surface, effectively inhibits the formation of combustible gas and prevents the spread of the combustion. The flame retardant mechanism of Al (OH) 3 flame retardant is to increase the heat capacity of the polymer, so that it absorbs more heat before it reaches the thermal decomposition temperature, thus improving its flame retardancy. These flame retardants give full play to their characteristics of absorbing large amounts of heat when combined with water vapor and improve their own flame retardancy. 2. coverage: after adding flame retardant in combustible materials, the flame retardant can form glass or stable foam cover layer at high temperature, isolate oxygen, heat insulation, prevent ox
2023 / 03 / 04
CPVC Compound is a type of plastic that is used in a wide variety of applications. It is a thermoplastic, which means it can be easily melted and formed into different shapes. CPVC compound is made from a combination of chlorinated polyvinyl chloride and other additives. This type of plastic is highly durable, corrosion resistant, and is able to withstand high temperatures. It is often used in plumbing, electrical, and industrial applications.CPVC compound is a great choice for a variety of applications. It is often used in the manufacture of pipes and fittings, as it is able to resist corrosion and high temperatures. It is also used in the electrical industry, as it is a great insulator and is able to withstand extreme temperatures. In addition, CPVC compound is often used in the production of medical equipment, as it is non-toxic and does not leach any harmful chemicals.CPVC compound is also used in the production of many consumer products. It is often used in the manufacture of shower curtains, as it is able to resist mildew and mold growth. It is also used in the production of food packaging and containers, as it is able to resist chemicals and other contaminants.CPVC compound is easy to work with and can be molded into almost any shape. It is also relatively inexpensive and is available in a wide variety of colors. This type of plastic is also very durable and can withstand extreme temperatures.Overall, CPVC compound is a great choice for a variety of applications. It is durable, corrosion resistant, and able to withstand high temperatures. It is also relatively inexpensive and is available in a wide variety of colors. If you are looking for a durable and reliable plastic for your project, then CPVC compound is definitely worth considering.
Why is Calcium Stearate So Significant in PVC? -3
2023 / 02 / 25
Why Choose NOVISTA for Calcium Stearate? NOVISTA has been one leading exporter of integrated PVC & different polymer additives. We have a strong manufacturing and deep research base in PVC additives, including PVC impact modifiers, processing aids, Lubricants, stabilizers... And we can offer you customized PVC additives and CPVC compounds in high quantity as and when required by the customers. Conclusion Above, we have explained the various characteristics and applications of calcium stearate, including Calcium Stearate Uses in PVC. In case you still have any queries regarding calcium stearate PVC Stabilizer, feel free to contact us.
Why is Calcium Stearate So Significant in PVC? -2
2023 / 02 / 25
Calcium Stearate Uses in PVC The chief uses of Calcium Stearate in PVC include the following: Calcium Stearate curtails friction between PVC grains during refining when used as an internal lubricant. It is generally used in melt-processed or plasticized PVC. It is crucial as an external lubricant in rigid PVC, particularly in the absence of plasticizers. Apart from these, calcium stearate has several other vital applications in various industries, which are listed in the section below. Calcium Stearate Applications The different applications of Calcium Stearate are listed below:
why are flame retardants still necessary?
2023 / 02 / 25
According to the National Fire Protection Association (NFPA), the number of reported fires in the United States decreased by seven percent from 2008 to 2009. In addition, between 1977 and 2009, civilian fire deaths declined from 7,395 to 3,010 respectively. Flame retardants have played a key role in reducing the incidence of fire. Unfortunately, despite the perceptions of some that fires are no longer a cause for concern, fire dangers continue to exist. The NFPA reported that in 2009: 1,348,500 fires were reported in the United States These fires caused 3,010 civilian deaths and 17,050 civilian injuries. All fires caused $12.5 billion in property damage. A fire department responded to a fire every 23 seconds. One civilian fire injury was reported every 31 minutes. One civilian fire death occurred every two hours and 55 minutes. Flame retardants have proven to work and continue to be an important component in the overall effort to address the dangerous consequences of fire, prevent fire-related injuries and protect lives. The use of flame retardants in
flame retardant necessity for Polyurethane (PU) Products
2023 / 02 / 25
1.What are polyurethane products? Polyurethanes refer to a wide range of products that include flexible foams used in furniture and automobiles, rigid foams used as building insulation, durable coatings, adhesives and sealants, and even certain items of apparel. 2.Can polyurethane products burn? As with other common organic materials, polyurethane foam products are combustible when exposed to a sufficient ignition source. For that reason, to maximize their safety many polyurethane products are flame retarded or protected by a barrier that can delay ignition, retard combustion, reduce surface burning, or otherwise protect the material from fires. 3.Do polyurethane products emit smoke when burning? Yes. Like any material in a fire, the amount of smoke generated is dependent on a number of factors, including the amount and type of burning material, the amount of oxygen available, and the temperature of the fire. 4.Do polyurethane products produce a unique toxicity risk in fires? No. While a range of airborne chemicals may be emitted during fire events involving polyurethane products, all combustible materials produce toxic smoke when burned, including wood. In terms of hazard, carbon monoxide (CO) is typically the most abundant toxicant in fires under
Three Surprising Benefits of Using Flame Retardant at your House
2023 / 02 / 25
Flame retardants are products in a home that contain chemicals to decrease or eliminate their flammability, and they work in three different ways to inhibit or minimize the severity of a fire. A flame retardant will decrease the presence of oxygen as well as gasses located close to items that are burning. It will inhibit a material`s ability to ignite. Flame retardants also provide a layer of fire resistant material on a product. 1. Fire Prevention Flame retardants are able to provide a number of consumers products with an essential layer of fire protection. According to FireTect, flame retardants are able to stop fires from starting as well as limit their spread and decrease the amount of damage resulting from a fire. Some are designed to work on their own and others act as a synergist. This means they can increase the fire protective abilities of other types of flame retardants. Product manufacturers use a variety of flame retardants. The materials are very different in their chemical composition and physical nature. Various flame retardants react in different ways with fire. This is why so much care is taken to carefully match a flame retardant to the correct material. They all interact at various stages of a fire`s cycle. A home today contains a number electronic devices such as computers, televisions, microwaves and more. This has resulted in high amounts of composite and plastic materials available in a home. It has significantly increased the fire hazard po
How Flame Retardants Are Used in Building and Construction
2023 / 02 / 18
Flame retardants are used in building materials and products to meet important fire safety standards and codes. Flame retardants stop or slow the spread of fire and provide critical escape time should a fire start, which is especially important for the most vulnerable populations. Learn more how flame retardants work. In research results released in May 2011, the National Fire Protection Association found the populations at highest risk for home fire-related deaths were children under the age of five and seniors over the age of 65. Specifically, flame retardants are used to raise the threshold temperature at which a material ignites, reduce the rate at which materials burn, and minimize the spread of flames. Three major categories of building materials that require the fire-protective benefits of flame retardants include cables and electrical wires, insulation and structural elements. Cables and Electrical Wiring Today`s modern structures contain a large volume of electrical wires and cables to power EEE from phones and computers to heating systems and elevators. Electrical and communications equipment that feeds into various rooms of a building is usually bundled together and can run vertically from floor to floor behind the walls of a structure, potentially increasing the fire risks from short circuits and other electrical malfunctions. If one wire is the cause of a fire, for example, it potentially affects all of those in proximity.
What are the protective benefits of flame retardants?
2023 / 02 / 18
Flame retardants play a unique role in fire prevention and fire safety. They not only prevent fires from starting, but if a fire does occur, they slow down the spread of the fire and improve the opportunity for safe escape. Their role in delaying flashover, for example, is especially critical to escaping the deadly consequences of fire. Flashover occurs when every flammable object in a room bursts into flames at the same time as a result of a combination of intense heat and the release of flammable gases. This can occur in just a few minutes, and flame retardants` function in slowing this process down can be the difference between life and death. The benefits of flame retardants are well documented in studies and in real life examples. The August 2005 fiery crash of a passenger jet in Toronto, Canada, in which all 309 people aboard survived, is one example. On August 5, 2005, the Washington Post reported, [The fire-retardant material now required in aircraft cabins may have helped slow the spread of flames and smoke, enabling all crew members and passengers to escape." The plane was subject to [new regulations requiring fire-retardant treatment of seat cushions, carpet and other materials-" In September 2009, at a conference on flame retardants and firefighter health, the Materials Flammability Group of
How Flame Retardants Are Used in Transportation
2023 / 02 / 18
A wide variety of plastics, textiles and composite materials are used extensively in the mechanical, structural and decorative parts of today`s transport, including airplanes, trains and cars. These materials are: (i) highly adaptable to new designs; (ii) lighter weight, making them more energy efficient; (iii) less labor intensive; and (iv) more cost effective. Flame retardants are often used to ensure these materials can meet flammability standards. To make materials fire-resistant, flame retardants act to help stop or slow the spread of fire. They can be used alone, or in combination with other flame retardants that act as synergists to enhance fire retardant properties. If a fire does start, flame retardant solutions work in different ways to help stop or minimize its effects. Learn more about how flame retardants work. Different classes of flame retardants work to reduce the threat of fire hazards in different ways, and must be matched to the specific material being used and the performance specifications of the final product. There is no one-size-fits-all solution when essential fire-protection benefits must be balanced with ensuring optimal performance. Today, travel is safer than ever before, regardless of the mode of transportation. Thousands of people take to the highways, railways and air daily, and they do so with
Acrylic Processing Aids in china
2023 / 02 / 17
Asia-Pacific is projected to be the largest Acrylic Processing Aid Market between 2020 and 2025. The dominance of this region in the global market is attributed to rising demand from developing countries such as Taiwan, India, and China for infrastructure development, which is one of the major drivers of the market. The increased consumption of acrylic processing aid for fabricating the plastic materials in the region has led to the expansion of plastic manufacturing plants. The per capita consumption of plastics is estimated to rise significantly between 2020 and 2025. The Acrylic Processing Aid Market in Asia-Pacific is projected to register the highest CAGR in terms of value, between the forecasted period.The key market players profiled in the report include Mitsubishi Chemical Corporation (Japan), Arkema SA (France), AkdenizChemson (Turkey), The Down Chemical Company (US), Kaneka Corporation (Japan), and Novista Group (China).
2023 / 02 / 17
PVC foam board (PVC expandido, plastwoood) is generally divided into PVC co-extrusion board, PVC Celuka board, and PVC free-foam board. The above can be called PVC foam board, also known as the Sintra board and Andy board. Its main chemical composition is polyvinyl chloride (PVC). PVC foam board has the characteristics of anti-corrosion, moisture-proof, mold-proof, non-water absorption, drillable, sawable, planed, easy thermal forming, thermal bending processing, and so on. Therefore, it is often used in furniture, cabinet, bath cabinet, exhibition rack board, box cores, indoor and outdoor decoration, building materials, chemical industry and other fields, advertising signs, printing, silk screen printing, spray painting, computer lettering, electronic instrument product packaging, and other industries. PVC co-extruded foam board adopts the advanced production process of [co-extrusion by two extruders." The surface layer has no foam, a smooth surface, and high hardness. Product application: mainly used for craft grade carving products, such as various shoe cabinets, shoe racks, storage racks, screen partitions, etc. PVC Celuka foamed board is produced by the Celuka process, with a layer of hard skin on the surface, which is smooth, flat, high hardness, good mechanical properties, high product precision, small thickness error, and strict requirements on mold, formula, process and raw materials. Product application: it is mainly used for engraving. The board has good hardness and can be carved into various shapes without rough edges; At the same time, it is also widely used as the substrate material for PUR lamination of furniture cabinets. It is environmentally-friendly, formaldehyde-free, light, and easy to process. PVC free-foam board has a loose surface, no crust, and presents a fine concave-convex pitted textu
Why is Calcium Stearate So Significant in PVC? -1
2023 / 02 / 11
Calcium stearate is a white waxy powder referred to as calcium soap. It remains insoluble in most solvents and is biologically safe to use. Unlike wax, it does not get greasy even at increased temperatures because of its comparatively higher softening point. Calcium stearate has numerous uses across several industries. Besides being used as an anti-caking additive in cosmetics and pharmaceuticals, it serves as a waterproofing additive in construction. If we talk about calcium stearate uses in PVC, it serves as a lubricant and release agent in the plastics industry. Moreover, it is tremendously used as an acid scavenger.
Chlorinated Polyethylene (CPE) Characteristics
2023 / 02 / 11
Chlorinated Polyethylene (CPE) Characteristics and ApplicationAug - CPE can be used alone or mixed with PVC, polyethylene, polypropylene, polystyrene, ABS, and even polyurethane. CPE can be used as a Chlorinated polyethylene - is an inexpensive variation of polyethylene, where chlorine is substituted for some of the hydrogen atoms. can be used as a process aid in rigid PVC foam applications as a partial replacement for acrylics. CPE can also be used as an additive in injection Chlorinated-Polyethylene - Chlorinated Polyethylene can be used as special synthetic rubber. But, it is normally combined with other materials or used as a major/minor component in Chlorinated Polyethylene PVC Impact Modifier PVC Additives PVC Processing Aid Acrylic Impact Modifier Acrylic Processing Aid PVC Heat Stabilizer PVC Lubricant CPVC Compound CPVC Additives
flame retardants in transportation industry
2023 / 02 / 11
The world is a much smaller place today thanks to modern modes of transportation. Decisions about vacation destinations or business travel now go beyond cities and states and encompass countries around the world. Travel, whether by car, train or airplane, is faster, safer, more affordable and much more comfortable than ever before. These improvements are largely due to the technologically advanced materials developed over the last several decades. Many metal transportation components of old, for example, have been replaced with those made with plastic, making transport lighter and more fuel efficient. A variety of plastics materials (e.g., flexible plastics, foam), composite materials, new types of textiles and electronic components have given transportation engineers and manufacturers a wealth of options when it comes to transportation design, function and performance. These materials, however, which are now used in transportation products and components such as structural parts, electrical cables and wires, carpets and upholstery, must also meet flammability standards and requirements. Often, flame retardants are incorporated into these materials to help meet these standards. Notably, the right flame retardant solution
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