艺术
美容与健康
工艺
文化与历史
娱乐
环境
食品与饮料
绿色未来
逆向工程
科学
体育
技术
可穿戴设备

Understanding Samarium from Monazite — The First Rare Earth Magnet
中级
说明
1
1
Understand Samarium's Discovery
Understand Samarium's Discovery
Paul-Émile Lecoq de Boisbaudran isolated samarium oxide in 1879 from the mineral samarskite, which had been named after Colonel Vasili Samarsky-Bykhovets — the Russian mining engineer who provided specimens to European chemists. Samarium was the first chemical element named after a living person. The samarskite specimen came from the Ural Mountains and contained a complex mixture of rare earth elements that took decades to fully separate.
2
2
Identify Samarium in Rare Earth Concentrates
Identify Samarium in Rare Earth Concentrates
Samarium makes up about 2.5% of light rare earth concentrates from bastnasite and monazite — less abundant than cerium, lanthanum, neodymium, or praseodymium but still commercially significant at 7 ppm crustal abundance. It sits at the boundary between light and heavy rare earths in solvent extraction cascades, making it one of the more difficult lanthanides to separate to high purity. Annual production is approximately 700 tonnes of samarium oxide.
所需工具:
Hand Lens (10x Magnification)3
3
Examine Samarium Metal Properties
Examine Samarium Metal Properties
Samarium is a moderately hard, silvery metal that oxidizes slowly in dry air but rapidly in moist air. It has an unusual rhombohedral crystal structure unique among the elements. Melting point is 1072°C, density 7.52 g/cm³. Samarium ignites at 150°C in air. It has the highest neutron absorption cross-section of any stable element after gadolinium — 5,900 barns — making it valuable for nuclear applications.
4
4
Understand Samarium-Cobalt Permanent Magnets
Understand Samarium-Cobalt Permanent Magnets
Karl Strnat developed SmCo₅ magnets at Wright-Patterson Air Force Base in 1966 — the first rare earth permanent magnets and a revolution in magnet technology. SmCo₅ has a maximum energy product of 20 MGOe, five times stronger than previous Alnico magnets. The improved Sm₂Co₁₇ version reaches 32 MGOe. SmCo magnets resist corrosion without coating and maintain strength to 300°C — superior to NdFeB in harsh environments.
所需工具:
Safety Goggles5
5
Compare SmCo and NdFeB Magnets
Compare SmCo and NdFeB Magnets
Neodymium magnets (NdFeB) replaced SmCo for most applications because they are cheaper and 50% stronger at room temperature. However, SmCo magnets dominate where temperature stability, corrosion resistance, or radiation hardness matter: jet engines, satellite systems, military sensors, downhole drilling motors, and medical implants. A SmCo magnet retains 90% of its strength at 250°C, where NdFeB loses 50%.
6
6
Explore Nuclear Reactor Applications
Explore Nuclear Reactor Applications
Samarium-149 has a neutron absorption cross-section of 40,140 barns — used in nuclear reactor control rods and neutron shielding. Samarium hexaboride (SmB₆) is a topological Kondo insulator studied for exotic quantum states. In nuclear reactors, Sm-149 is also a fission product 'poison' that builds up during operation and absorbs neutrons, requiring compensation by control rod withdrawal — the 'samarium poisoning' effect.
7
7
Discover Samarium-153 Cancer Therapy
Discover Samarium-153 Cancer Therapy
Samarium-153 lexidronam (Quadramet) is a radiopharmaceutical that treats pain from bone cancer metastases. The samarium-153 isotope (half-life 46.3 hours) chelated to EDTMP localizes in bone tissue, delivering targeted beta radiation to cancer cells while minimizing damage to surrounding tissue. It provides pain relief in 65-80% of patients within one week. This is one of the few medical applications of any lanthanide element.
8
8
Survey Optical and Catalyst Applications
Survey Optical and Catalyst Applications
Samarium-doped calcium fluoride (CaF₂:Sm) was used in the first optical memory demonstration — samarium ions trapped in different valence states store data readable by laser. Samarium oxide is a catalyst for ethanol dehydration and is used in infrared-absorbing glass for welding goggles. Samarium iodide (SmI₂) is a powerful single-electron reducing agent widely used in organic chemistry — the 'Kagan reagent' — for forming carbon-carbon bonds.
9
9
Understand Samarium's Role in Dating Rocks
Understand Samarium's Role in Dating Rocks
The samarium-neodymium (Sm-Nd) radiometric dating system uses the alpha decay of Sm-147 to Nd-143 (half-life 106 billion years — seven times the age of the universe). This extremely slow decay rate makes Sm-Nd ideal for dating the oldest rocks on Earth and meteorites, providing constraints on the formation age of the solar system. The Sm-Nd system is less susceptible to metamorphic resetting than rubidium-strontium dating.
所需工具:
Precision Scale (0.01g)10
10
Document Findings and Market Context
Document Findings and Market Context
Record samarium's key data: atomic number 62, density 7.52 g/cm³, melting point 1072°C, silvery metal. Samarium oxide is priced at $5-15 per kilogram — relatively cheap because demand for SmCo magnets is small compared to NdFeB. The defense and aerospace sectors consume most samarium for high-temperature magnets. As electric aircraft and high-temperature motor applications grow, SmCo magnet demand may increase, but NdFeB's cost advantage limits substitution.
已连接蓝图材料
Understanding Yttrium from Xenotime — The Rare Earth That Lights Red Screens作者 Peter
Understanding Uranium from Uraninite — The Element That Changed Everything作者 Peter
Extracting Iron from Hematite — Bloomery Smelting from Ore to Bloom作者 Peter
Understanding Europium from Monazite — The Red Phosphor That Colored Television作者 Peter
Understanding Gadolinium from Monazite — The MRI Contrast Agent Metal作者 Peter
Understanding Terbium from Xenotime — The Green Phosphor That Lights the World作者 Peter
Understanding Dysprosium from Xenotime — The Magnet Stabilizer for Electric Vehicles作者 Peter
Understanding Thorium from Monazite — The Nuclear Fuel That Could Replace Uranium作者 Peter
Understanding Promethium from Nuclear Fission — The Phantom Lanthanide作者 Peter
CC0 公共领域
此蓝图以 CC0 协议发布。你可以自由复制、修改、分发和使用此作品,无需征得许可。
通过购买蓝图中的产品支持创客,他们将获得 创客佣金 (由供应商设定),或创建此蓝图的新版本并将其作为连接包含在你自己的蓝图中以分享收入。