News

  • Post time: Jan-27-2024

    Gypsum based self-leveing compound advantages and applications Gypsum-based self-leveling compounds offer several advantages and find diverse applications in the construction industry. Here are some key advantages and common applications: Advantages: Self-Leveling Properties: Gypsum-based compo...Read more »

  • Post time: Jan-27-2024

    What is SMF Melamine water reducing agent? Superplasticizers (SMF): Function: Superplasticizers are a type of water-reducing agent used in concrete and mortar mixes. They are also known as high-range water reducers. Purpose: The primary function is to improve the workability of the concrete mix ...Read more »

  • Post time: Jan-27-2024

    What Is Gypsum Based Self-Leveling Compound Mortar? Gypsum-based self-leveling compound mortar is a type of flooring underlayment that is used to create smooth and level surfaces in preparation for the installation of floor coverings such as tiles, vinyl, carpet, or hardwood. This mor...Read more »

  • Post time: Jan-27-2024

    Cement-based Self-leveling Mortar Construction Technology Cement-based self-leveling mortar is commonly used in construction for achieving flat and level surfaces. Here is a step-by-step guide to the construction technology involved in the application of cement-based self-leveling mortar: 1. Surf...Read more »

  • Post time: Jan-27-2024

    Cement-based Self-leveling Mortar Additives Cement-based self-leveling mortars often require various additives to improve their performance and tailor them to specific application needs. These additives can enhance properties such as workability, flow, setting time, adhesion, and durability. Here...Read more »

  • Post time: Jan-27-2024

    Low viscosity hydroxypropyl methylcellulose for self-leveling mortar Low viscosity Hydroxypropyl Methyl Cellulose (HPMC) is a common additive in self-leveling mortar formulations, offering several advantages that contribute to the overall performance of the mortar. Here are the key considerations...Read more »

  • Post time: Jan-27-2024

    For self-leveling mortar, HPMC MP400 low viscosity hydroxypropyl methylcellulose, low viscosity and high The use of Hydroxypropyl Methyl Cellulose (HPMC), specifically the low viscosity grade like HPMC MP400, in self-leveling mortar offers several advantages due to its unique properties. Here are...Read more »

  • Post time: Jan-27-2024

    10000 viscosity cellulose ether Hydroxypropyl Methyl Cellulose HPMC common applications Hydroxypropyl Methyl Cellulose (HPMC) with a viscosity of 10000 mPa·s is considered to be in the medium to high viscosity range. HPMC of this viscosity is versatile and finds applications in various industries...Read more »

  • Post time: Jan-27-2024

    How to match cellulose ether Hydroxypropyl Methyl Cellulose HPMC by viscosity? Matching Hydroxypropyl Methyl Cellulose (HPMC) by viscosity involves selecting a product with a viscosity level that aligns with the desired properties and performance characteristics for a specific application. Viscos...Read more »

  • Post time: Jan-27-2024

    How to identify the quality of HPMC? Identifying the quality of Hydroxypropyl Methyl Cellulose (HPMC) involves considering several key factors. HPMC is used in various industries, including construction, pharmaceuticals, food, and cosmetics, and its quality can impact the performance of the end ...Read more »

  • Post time: Jan-27-2024

    Hydroxypropyl methyl cellulose for EIFS and Masonry Mortar Hydroxypropyl Methyl Cellulose (HPMC) is commonly used in Exterior Insulation and Finish Systems (EIFS) and masonry mortar due to its versatile properties. EIFS and masonry mortar are essential components in the construction industry, and...Read more »

  • Post time: Jan-27-2024

    The Use of Water Reducers, Retarders, and Superplasticizers Water reducers, retarders, and superplasticizers are chemical admixtures used in concrete mixtures to enhance specific properties and improve the performance of the concrete during its fresh and hardened states. Each of these admixtures ...Read more »