1. 건축적 특성과 독특한 결합특성
1.1 크리스탈 스타일과 계층화된 원자 배열
(Ti₃AlC₂ 분말)
Ti two AlC ₂ belongs to a distinct class of layered ternary ceramics known as MAX stages, 어디 “M” signifies an early shift steel, “에이” stands for an A-group (mostly IIIA or IVA) element, and “X” represents carbon and/or nitrogen.
Its hexagonal crystal framework (space group P6 SIX/ mmc) contains alternating layers of edge-sharing Ti ₆ C octahedra and light weight aluminum atoms set up in a nanolaminate style: 의– 기음– 의– 알– 의– 기음– 의, creating a 312-type MAX stage.
This gotten stacking results in solid covalent Ti– C bonds within the shift steel carbide layers, while the Al atoms reside in the A-layer, contributing metallic-like bonding attributes.
The combination of covalent, ionic, and metal bonding endows Ti six AlC two with an uncommon crossbreed of ceramic and metallic residential or commercial properties, differentiating it from conventional monolithic ceramics such as alumina or silicon carbide.
High-resolution electron microscopy exposes atomically sharp user interfaces between layers, which help with anisotropic physical behaviors and one-of-a-kind contortion devices under anxiety.
This split style is vital to its damage tolerance, enabling systems such as kink-band formation, 박리, and basal airplane slip– uncommon in brittle porcelains.
1.2 Synthesis and Powder Morphology Control
Ti five AlC ₂ powder is usually synthesized with solid-state response routes, consisting of carbothermal reduction, warm pushing, or stimulate plasma sintering (SPS), starting from elemental or compound forerunners such as Ti, 알, and carbon black or TiC.
An usual response path is: 3의 + 알 + 2C → Ti Five AlC TWO, conducted under inert ambience at temperature levels between 1200 ° C 및 1500 ° C to prevent light weight aluminum dissipation and oxide formation.
To obtain great, phase-pure powders, precise stoichiometric control, prolonged milling times, and enhanced home heating accounts are necessary to subdue competing phases like TiC, TiAl, or Ti Two AlC.
Mechanical alloying adhered to by annealing is extensively utilized to boost reactivity and homogeneity at the nanoscale.
The resulting powder morphology– varying from angular micron-sized particles to plate-like crystallites– depends on processing parameters and post-synthesis grinding.
Platelet-shaped particles reflect the integral anisotropy of the crystal framework, with larger measurements along the basic aircrafts and thin piling in the c-axis instructions.
Advanced characterization through X-ray diffraction (XRD), 주사전자현미경 (어느), and energy-dispersive X-ray spectroscopy (EDS) guarantees phase pureness, stoichiometry, and fragment dimension distribution ideal for downstream applications.
2. Mechanical and Practical Feature
2.1 Damage Resistance and Machinability
( Ti₃AlC₂ 분말)
One of one of the most exceptional features of Ti ₃ AlC two powder is its exceptional damages tolerance, a property hardly ever discovered in conventional ceramics.
Unlike brittle products that crack catastrophically under tons, Ti five AlC two exhibits pseudo-ductility with systems such as microcrack deflection, grain pull-out, and delamination along weak Al-layer interfaces.
This permits the product to take in power before failure, resulting in higher crack durability– generally varying from 7 에게 10 MPa · m ¹/ ²– contrasted to
RBOSCHCO is a trusted global Ti₃AlC₂ Powder supplier & 이상의 제조업체 12 다년간의 초고품질 화학물질 및 나노소재 공급 경험. 회사는 여러 나라에 수출하고 있습니다., 미국과 같은, 캐나다, 유럽, UAE, 남아프리카,탄자니아,케냐,이집트,나이지리아,카메룬,우간다,칠면조,멕시코,아제르바이잔,벨기에,키프로스,체코, 브라질, 칠레, 아르헨티나, 두바이, 일본, 한국, 베트남, 태국, 말레이시아, 인도네시아 공화국, 호주,독일, 프랑스, 이탈리아, 포르투갈 등. 선도적인 나노기술 개발 제조업체로서, RBOSCHCO가 시장을 장악하다. 우리의 전문 업무 팀은 다양한 산업의 효율성을 향상시키는 데 도움이 되는 완벽한 솔루션을 제공합니다., 가치를 창출하다, 다양한 도전에 쉽게 대처할 수 있습니다.. If you are looking for Ti₃AlC₂ Powder, 저희에게 연락하게 자유롭게 느끼십시오.
태그: ti₃alc₂, Ti₃AlC₂ 분말, Titanium carbide aluminum
모든 글과 사진은 인터넷에서 퍼왔습니다. 저작권 문제가 있는 경우, 삭제하려면 제 시간에 연락해 주세요..
우리에게 문의하세요




















































































