Pulvis rhenii-molybdeni (pulvis mixturae molybdeni-rhenii Mo-Re)
Molybdenum-rhenium mixtura est mixtura soluta solida cum excellenti robore ad altas temperaturas et resistentia ad reptationem. Rhenium solutionem solidam β in molybdeno format, solubilitate maxima 53% (atomo rhenii) ad 2250℃. Additio rhenii processum deformationis mechanicae molybdeni puri a simplici actione labendi ad actionem geminam et combinationem labendi in operatione calida et frigida mutat, fragilitatem carbonii et oxygenii inhibet, et machinabilitatem, proprietates physicas et chemicas, necnon proprietates thermoelectricas mixturae molybdeni emendat.
Series pulveris rhenii molybdeni singularem processum dopationis humidae adhibet, qui habet proprietates distributionis uniformis rhenii aliarumque phasium dopantium, humilis contenti impuritatum, distributionis uniformis magnitudinis particularum, facilis formationis et retractationis.
Molybdenum purum, molybdenum altae temperaturae (molybdenum lanthanum), et materias molybdeni TZM substituere potest, comparatione facta cum maiori robore, vita utili, et stabilitate in alta temperatura, praebens rationem efficaciae ad pretium altioris. Praecipue adhibetur in partibus structuralibus altae temperaturae (fistula, fistula, scutum caloris, etc.), componentibus elasticis, filis secandis altae efficientiae et diuturnitatis, filis specialibus, electrodis, componentibus electronicis, et cetera.
| Nota | Magnitudo particularum media (um) | Pondus specificum laxum (g/cm³) | Compositio chemica principalis (%) | ||||
| Nam | ILLA | Re | La₂O₃ | Y₂O₃ | |||
| MoreRe0.1 | 2.0-4.0 | 0.6-1.0 | ≧99.8 | ≤0.12 | 0.1 | - | - |
| MoreRe0.3 | 2.0-4.0 | 0.6-1.0 | ≧99.6 | ≤0.12 | 0.3 | - | - |
| PlusRe0.5 | 2.0-4.0 | 0.6-1.0 | ≧99.4 | ≤0.12 | 0.5 | - | - |
| MoRe1 | 2.0-4.0 | 0.65-1.1 | ≧98.9 | ≤0.12 | 1 | - | - |
| MoRe3 | 2.0-4.0 | 0.7-1.2 | ≧96.9 | ≤0.12 | Tres | - | - |
| MoRe5 | 2.0-4.0 | 0.75-1.3 | ≧94.9 | ≤0.12 | quinque | - | - |
| MoRe10 | 2.0-4.0 | 0.85-1.4 | ≧89.9 | ≤0.12 | decem | - | - |
| MoRe14 | 2.0-4.0 | 0.9-1.5 | ≧85.9 | ≤0.12 | XIV | - | - |
| Plura-La₂O₃ 0.1 | 2.0-4.0 | 0.6-1.0 | ≧99.7 | ≤0.12 | 0.1 | 0.02-0.1 | - |
| Plura-La₂O₃ 0.3 | 2.0-4.0 | 0.6-1.0 | ≧99.4 | ≤0.12 | 0.3 | 0.1-0.2 | - |
| Plura-La₂O₃ 0.5 | 2.0-4.0 | 0.6-1.0 | ≧99.1 | ≤0.12 | 0.5 | 0.2-0.3 | - |
| Plura-La₂O₃ 1 | 2.0-4.0 | 0.65-1.1 | ≧98.5 | ≤0.12 | 1 | 0.3-0.4 | - |
| Plura-La₂O₃₃ | 2.0-4.0 | 0.7-1.2 | ≧96.4 | ≤0.12 | Tres | 0.4-0.5 | - |
| Plura-La₂O₃₅ | 2.0-4.0 | 0.75-1.3 | ≧94.2 | ≤0.12 | quinque | 0.5-0.7 | - |
| Plura-La₂O₃₀-10 | 2.0-4.0 | 0.85-1.4 | ≧88.9 | ≤0.12 | decem | 0.7-1.0 | - |
| Plura-La₂O₃₀-14 | 2.0-4.0 | 0.9-1.5 | ≧84.9 | ≤0.12 | XIV | 1.0 | - |
| Plura-Y2O3-14 | 1.5-3.0 | 0.7-1.4 | 98.2-85.2 | ≤0.12 | 1-14 | - | 0.5-0.7 |
| Non. | Codex | Nomen Chemicum |
| 1. | Ammonii perrhenas | Ammonii perrhenas |
| 2. | Pulvis Rhenii | Pulvis Rhenii Sphaericus |
| 3. | Pulvis Rhenii | Pulvis metallicus rhenii purus 99.99%-99.999% |
| 4. | Rhenium Pellet | Rhenium Pellet |
| 5. | Virga Metallica Rhenii | Virga Metallica Rhenii |
| VI. | Rhenium Pellet, Rhenium Ingot | Rhenium Pellet, Rhenium Ingot |
| VII. | Pulvis Osmii | Pulvis Osmii |
| VIII. | Rhenii pentachloridum | Rhenii Pentachloridum / CAS 13596-35-5 |
| IX. | Methyltrioxorhenium (VII) | Methyltrioxorhenium (VII)/ CAS 70197-13-6 |
| 10. | Rhenii Heptoxidum | Rhenii Heptoxidum/ CAS 1314-68-7 |
| XI. | Pulvis Wolframii Rhenii | Pulvis Wolframii Rhenii |
| XII. | Pulvis rhenii cobalti | Pulvis rhenii cobalti — carburum cementatum summae qualitatis (vel carburum cementatum altae temperaturae) |
| XIII. | Pulvis molybdeni rhenio-imbutus | Pulvis molybdeni rhenio-imbutus (pulvis mixturae molybdeni rhenii Mo-Re) |
| XIV. | Pulvis nano-rhenii | Pulvis nano-rhenii |
| XV. | Acidum Perrhenicum | Acidum Perrhenicum |
| XVI. | Adde elementum terrae rarae mixturam Mo-Re | Adde elementum terrae rarae mixturam Mo-Re |
| XVII. | Mixtura parentalis rhenii niccoli | Mixtura parentalis rhenii niccoli |
| XVIII. | ... | www.theoremchem.com |









