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Search Results - alloy
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High Strength, Non-Toxic Titanium Metallic Glass
This titanium-based metallic glass (i.e., amorphous
alloy
) is high-strength and non-toxic, suitable for surgical implants Background Titanium-based metallic glasses (TBMGs) are a class of advanced materials known for their unique combination of high strength, corrosion resistance, and biocompatibility. These properties make them highly attractive...
Published: 5/8/2026
|
Updated: 5/8/2026
|
Inventor(s):
Donghua Xu
,
Lei Chen
Keywords(s):
aerospace
,
aerospace component
,
alloy
,
amorphous
,
biocompatibility
,
biomedical
,
biomedical device
,
biomedical implants
,
casings
,
consumer electronics
,
corrosion resistance
,
durability
,
glass
,
hardness
,
high performance
,
high performance
alloy
s
,
implant
,
light weight
,
metallic glass
,
metallic glasses
,
non-toxic
,
orthopedic
,
precision mechanical processing
,
surgical
,
surgical implants
,
surgical tool
,
titanium
Category(s):
Materials Science
2022-216 Electrode for Rechargeable Batteries that Resists Dendrite Growth
Summary: UCLA researchers in the Department of Material Science and Engineering have developed electrodes for rechargeable batteries which resist dendrite growth. Background: Rechargeable batteries have attracted attention due to their wide array of applications and environmental benefits. Rechargeable metal-ion batteries, such as lithium-ion batteries,...
Published: 3/19/2025
|
Updated: 6/30/2022
|
Inventor(s):
Yang Yang
,
Xiaochun Li
Keywords(s):
Alloy
,
Dendrite
,
Electrode
,
Lithium Battery
,
Lithium-Ion Battery
,
Nanoelectronics
,
Nanoparticle
,
Rechargeable Battery
,
Rechargeable Battery Thermal Conductivity
Category(s):
Materials > Semiconducting Materials
,
Energy & Environment > Energy Efficiency
,
Energy & Environment > Energy Storage
,
Electrical > Electronics & Semiconductors
,
Energy & Environment > Energy Storage > Batteries