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Zinc stearate, calcium stearate, sodium silicate, AOS、AES、Amorphous boron powder; Nanometer silicon powder, High purity graphite powder; Boron nitride; Boron carbide; Titanium diboride; Silicon hexaboride; Aluminum diboride; Nitinol powder; Molybdenum disulfide; Zinc sulfide; Ferric oxide; Manganese sesquioxide; Manganese dioxide; Spherical alumina; Spherical quartz powder; Titanium carbide; Chromium carbide; Tantalum carbide; Molybdenum carbide; Aluminum nitride; Silicon nitride; Titanium nitride; Molybdenum disilicide; Titanium disilicide; Zirconium disilicide; etc.


What are nanomaterials?

In nanotechnology, a particle is defined as a small object that behaves as a whole in terms of its transport and properties. It is further classified according to size: fine particles are between 100-2500 nm in diameter, while ultra-fine particles are between 1-100 nm in diameter. Similar to ultrafine particles, nanoparticles range in size from 1 to 100 nanometers, although size limits can be limited to a two-dimensional range. Nanoparticles may or may not exhibit size-dependent properties that differ significantly from those observed in fine particles or bulk materials.


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Distribution of Air Pores in foam concrete

What is Foaming agent?The foaming agent is an indispensable component in the preparation of foam concrete by using prefabricated foams. This study used four types of foaming agents to prepare foam concrete. Effect of the foaming agent on the properti...…

Production of Titanium Boride

What is Titanium Boride?Titanium Boride is a new ceramic material. And it has excellent physical and chemical performance. Such as high melting point (2980 centigrade), high hardness (34 GPa), and density is 4.52 g/cm3. It could stand wear and tear a...…

Biaxial Shear Deformation of Boron carbide

What is Boron carbide?To improve the flexibility of B4C, we use our model for the origin of brittleness to propose a laminated composite structure of B4C–B6O. We use QM to examine the shear deformation along various possible slip systems to understan...…

Improved Ductility of Boron Carbide by Microalloying with Boron Suboxide

What is Boron carbide?Boron carbide (B4C) is the third hardest material in nature, but applications are hindered by its brittle failure under impact. We found that this brittle failure of B4C arises from amorphous shear band formation due to the deco...…

A comparative hardness study of AlB2

What is aluminum boride?The structure of aluminum boride is similar to that of intermetallic compounds, and its structure mainly depends on the crystal structure of aluminum metal and boron rather than their valence relationship. Aluminum borides are...…

The Sophistication of Ceramic Science Through Silicon Nitride Studies

What is Silicon nitride?Silicon nitride offers high wear resistance, strength, rigidity, extremely high abrasion resistance, and good friction characteristics combined with high resistance to temperature and corrosion, making it ideal as a ceramic ro...…

Silicon Nitride in Silicon Photonics

What is Silicon nitride?Silicon nitride (Si3N4) is biocompatible and stable in vivo, and these properties, when combined with its superior mechanical properties, make Si3N4 an attractive ceramic implant material in some healthcare applications, parti...…

Structural components made of Silicon nitride

What is Silicon nitride?The basis of silicon nitride ceramics is silicon extracted from pure quartz sand (SiO2). Silicon nitride is then usually formed through a reaction of pure silicon with nitrogen at around 1,200 °C / 2,192 °F. Ceramic components...…

There is limited literature on the topic of recycling FeMn or SiMn furnace fines for manganese recovery

What is Manganese dioxide?Manganese dioxide (MnO2) occurs naturally as the mineral pyrolusite, about 62–63% of manganese. The most important use of MnO2 is in primary Leclanché (carbon–zinc) and alkaline batteries. This material is used to obtain the...…

Aluminium Boron alloys are produced commercially

What is Aluminum Boride?About Aluminum Boride: They are stable to nonoxidizing acids but break down into oxidising solid agents and alkalis. Borides are used in semiconductors, superconductors, diamagnetic, paramagnetic, ferromagnetic, anti-ferromagn...…

How is Ti6Al4V manufactured

What is Ti6Al4V?Product Description. Ti-6Al-4V is a titanium alloy with high specific strength and excellent corrosion resistance. It is one of the most commonly used titanium alloys. High tensile strength and lightweight/low density: The military, a...…

How nanoparticles are made |

Nanomaterials and nanoparticles have many applications across many fields of study. Today they can be found in various products as well as technologies. Most nanoproducts manufactured on an industrial scale are nanoparticles; however they may also re...…

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