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Application:
1. Due to its rheological and optical properties, Lithopone offers technical and economic advantages wherever organic and inorganic resin systems need to be relatively highly pigmented for specific applications. Lithopone has therefore traditionally been used in putties, mastics, jointing and sealing compounds, primers, undercoats and marking paints. In powder coatings it is possible to replace TiO2 partially, very economically.

2. The low Mohs' hardness of Lithopone leads to low abrasiveness in comparison with TiO2.

3. Lithopone 30 % (= 30% zinc sulfide share) is proven to be of particular use as a TiO2 Substitute in thermoplastic masterbatches. Even at very high pigment loadings it disperses easily. A masterbatch containing 50 % TiO2 and 25 % Lithopone 30 % DS has the same hiding power as one containing 60 %TiO2. Cost savings are strongly related to the price ratio of Lithopone and TiO2 and the price of for example polyethylene or polypropylene.

4. The Lithopone batch has a much higher extrusion rate too. Furthermore the impact strength of many thermoplastics such as PP and ABS can be noticeably improved by using Lithopone as a TiO2 substitute. Generally spoken, Lithopone can be used at loadings up to 80 % by weight without causing polymer breakdown

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TiO2 has been well accepted in the food industry and can be found as the E171 additive in various food products, mainly for whitening and texture. It is present in some cottage and Mozzarella cheeses, horseradish cream and sauces, lemon curd, and in low-fat products such as skimmed milk and ice-cream. Even if the product is labelled as containing E171, no information is usually given about the quantity, particle size and particle structure. FDA claims that TiO2 may be safely used as a colour additive for colouring foods in quantities up to 1 % by weight of the food. Interestingly, TiO2 is frequently declared as a “natural colouring agent” and is therefore well accepted by consumers.

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  • PVC gypsum boards are typically composed of a gypsum core encased with a layer of PVC on both sides. This unique composition provides the boards with several desirable properties. The gypsum offers fire resistance, sound insulation, and thermal performance, making it an ideal choice for partitions, ceilings, and wall coverings. The PVC layer, on the other hand, enhances the board's durability, moisture resistance, and ease of maintenance, significantly prolonging its lifespan. This combination results in a lightweight, robust material that suits diverse environments.


  • Laminated gypsum is primarily used in the construction and renovation of residential and commercial buildings. It serves as a primary material for interior walls and ceilings, offering a smooth and finished appearance. The material is exceptionally popular in the creation of partitions, allowing for flexible space management in offices, schools, and hospitals.


  • - Drill
  • 2. Fire Resistance Gypsum has inherent fire-resistant properties, making laminated gypsum board an excellent choice for fire-rated walls and ceilings. The mineral composition can slow down the spread of flames, giving occupants valuable time to evacuate in case of a fire.


  • (5) The expansion of perlite with fire protection and heat insulation is added to effectively reduce the cost of cooling and heating, which meets the needs of people in the new era for energy saving and consumption reduction.

  • Residential spaces also benefit from drop ceiling tees. Homeowners are increasingly utilizing suspended ceilings in basements, kitchens, and even living rooms to achieve a modern look while maintaining access to essential systems. The ability to incorporate ambient lighting and ventilation into the design further enhances the appeal of drop ceilings in homes.


  • 5. Easy Installation These access hatches are generally straightforward to install, which is another advantage for contractors and builders. They can be added during the initial construction phase or retrofitted into existing structures without extensive modifications, making them a flexible option for various projects.


  • The suspended ceiling T grid system is primarily composed of main runners, cross tees, and wall angles. The main runners, installed parallel to each other, form the backbone of the ceiling grid. Cross tees are inserted perpendicularly between the main runners, creating a modular grid pattern. Wall angles are mounted along the perimeter of the room to provide support and a finished edge.


  • In terms of maintenance, regular cleaning is essential to keep a grid ceiling looking its best. Dust and grime can accumulate on the tiles, leading to discoloration and a decrease in aesthetic appeal. It's important to follow the manufacturer's recommendations for cleaning to avoid damaging the tiles. Typically, dusting or gently wiping down the tiles with a damp cloth can suffice for regular upkeep.


  • In conclusion, fiberglass ceiling grids represent a significant advancement in building materials, offering numerous benefits that make them suitable for a variety of environments. Their durability, lightweight construction, moisture resistance, and aesthetic flexibility position them as an ideal choice for modern construction projects. As the industry continues to prioritize sustainability and efficiency, the use of fiberglass in ceiling grids signifies a move towards innovative solutions that meet the evolving needs of architects, builders, and end-users. Embracing such advancements not only enhances the functionality of spaces but also contributes to healthier and more aesthetically pleasing living and working environments. Whether in a residential, commercial, or institutional setting, fiberglass ceiling grids are sure to leave a positive impact.


  • The Importance of Metal Wall and Ceiling Access Panels