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I magneti al neodimio, noti anche come magneti in NdFeB, magneti NIB o magneti neo, sono magneti permanenti alle terre rare realizzati in neodimio, ferro e boro. Sono ampiamente utilizzati quando sono richieste dimensioni compatte, una forza magnetica elevata e prestazioni magnetiche stabili.
Per gli acquirenti industriali, non conta solo la forza magnetica. Grado, rivestimento, tolleranze dimensionali, temperatura di esercizio e direzione di magnetizzazione influiscono sulle prestazioni finali nelle applicazioni reali.
Nella scelta dei magneti al neodimio, il solo grado non è sufficiente. I valori più importanti sono il prodotto energetico massimo (BHmax), l’induzione residua (Br), la coercitività intrinseca (HcJ), la forza di distacco, la temperatura di esercizio e l’intensità del campo magnetico superficiale. Il BHmax indica quanta energia magnetica può immagazzinare il materiale. La Br indica il campo magnetico residuo dopo la magnetizzazione. La HcJ esprime la capacità del magnete di resistere alla smagnetizzazione causata dal calore o da campi inversi.
La forza di distacco dipende da dimensioni e grado del magnete, spessore del rivestimento, superficie di contatto, spessore della piastra in acciaio, traferro e metodo di prova. Un grado più elevato non garantisce sempre prestazioni migliori nell’applicazione reale se il magnete opera a temperature elevate, in spazi limitati, in presenza di rischio di corrosione o all’interno di un assieme con traferri. Per applicazioni oltre 80 °C, prima della campionatura è opportuno valutare gradi ad alta coercitività, come le serie M, H, SH, UH, EH o AH.
Per un fissaggio sicuro mediante viti in attrezzature, staffe, pannelli di apparecchiature e assiemi.
| Induzione residua (Br) | Intrinic Coercivity (HcJ) | Coercivity (Hcb) | Max Energy Product (BH) Max | Densità | Relative Recoil Permeability | Temperature Coefficient | Max. Working Temp. | ||||||||||
| T | kGs | kA/m | kOe | kA/m | kOe | Kj/m | MGOe | g/cm | °C (L/D=0.7) | ||||||||
| Max | Min | Max | Min | Min | Min | Min | Min | Max | Min | Max | Min | Min | %/°C | %/°C | |||
| N56 | 1.51 | 1.5 | 15.1 | 14.7 | 876 | 11 | 836 | 10.5 | 454 | 414 | 57 | 52 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N54 | 1.49 | 1.5 | 14.9 | 14.5 | 955 | 12 | 836 | 10.5 | 437 | 406 | 55 | 51 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N52 | 1.46 | 1.4 | 14.6 | 14.2 | 955 | 12 | 836 | 10.5 | 422 | 390 | 53 | 49 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N50 | 1.44 | 1.4 | 14.4 | 13.9 | 955 | 12 | 860 | 10.8 | 406 | 374 | 51 | 47 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N48 | 1.43 | 1.4 | 14.3 | 13.7 | 955 | 12 | 860 | 10.8 | 390 | 358 | 49 | 45 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N45 | 1.37 | 1.3 | 13.7 | 13.2 | 955 | 12 | 860 | 10.8 | 366 | 342 | 46 | 43 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N42 | 1.32 | 1.3 | 13.2 | 12.8 | 955 | 12 | 860 | 10.8 | 342 | 318 | 43 | 40 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| 56M | 1.5 | 1.5 | 15 | 14.6 | 1,114 | 14 | 995 | 12.5 | 446 | 406 | 56 | 51 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 54M | 1.49 | 1.4 | 14.9 | 14.4 | 1,114 | 14 | 1,035 | 13 | 438 | 398 | 55 | 50 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 52M | 1.46 | 1.4 | 14.6 | 14.2 | 1,114 | 14 | 1,035 | 13 | 422 | 382 | 53 | 48 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 50M | 1.44 | 1.4 | 14.4 | 13.9 | 1,114 | 14 | 1,035 | 13 | 406 | 374 | 51 | 47 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 48M | 1.42 | 1.4 | 14.2 | 13.7 | 1,114 | 14 | 1,027 | 12.9 | 390 | 358 | 49 | 45 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 45M | 1.37 | 1.3 | 13.7 | 13.2 | 1,114 | 14 | 995 | 12.5 | 366 | 342 | 46 | 43 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 42M | 1.32 | 1.3 | 13.2 | 12.8 | 1,114 | 14 | 955 | 12 | 342 | 318 | 43 | 40 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 40M | 1.28 | 1.3 | 12.8 | 12.5 | 1,114 | 14 | 923 | 11.6 | 326 | 302 | 41 | 38 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 54H | 1.49 | 1.44 | 14.9 | 14.4 | 1,353 | 17 | 1,075 | 13.5 | 438 | 398 | 55 | 50 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 52H | 1.46 | 1.42 | 14.6 | 14.2 | 1,353 | 17 | 1,059 | 13.3 | 422 | 382 | 53 | 48 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 50H | 1.44 | 1.39 | 14.4 | 13.9 | 1,353 | 17 | 1,043 | 13.1 | 406 | 374 | 51 | 47 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 48H | 1.42 | 1.36 | 14.2 | 13.6 | 1,353 | 17 | 1,027 | 12.9 | 390 | 358 | 49 | 45 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 45H | 1.37 | 1.32 | 13.7 | 13.2 | 1,353 | 17 | 995 | 12.5 | 366 | 342 | 46 | 43 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 42H | 1.32 | 1.28 | 13.2 | 12.8 | 1,353 | 17 | 955 | 12 | 342 | 318 | 43 | 40 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 40H | 1.28 | 1.25 | 12.8 | 12.5 | 1,353 | 17 | 923 | 11.6 | 326 | 302 | 41 | 38 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 38H | 1.25 | 1.22 | 12.5 | 12.3 | 1,353 | 17 | 899 | 11.3 | 310 | 287 | 39 | 36 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 35H | 1.22 | 1.17 | 12.2 | 11.7 | 1,353 | 17 | 868 | 10.9 | 287 | 263 | 36 | 33 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 54SH | 1.49 | 1.44 | 14.9 | 14.4 | 1,592 | 20 | 1,075 | 13.5 | 438 | 398 | 55 | 50 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 52SH | 1.46 | 1.42 | 14.6 | 14.2 | 1,592 | 20 | 1,059 | 13.3 | 422 | 390 | 53 | 49 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 50SH | 1.42 | 1.39 | 14.2 | 13.9 | 1,592 | 20 | 1,043 | 13.1 | 406 | 374 | 51 | 47 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 48SH | 1.4 | 1.36 | 14 | 13.6 | 1,592 | 20 | 1,035 | 13 | 390 | 358 | 49 | 45 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 45SH | 1.37 | 1.32 | 13.7 | 13.2 | 1,592 | 20 | 995 | 12.5 | 366 | 342 | 46 | 43 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 42SH | 1.32 | 1.28 | 13.2 | 12.8 | 1,592 | 20 | 955 | 12 | 342 | 318 | 43 | 40 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 40SH | 1.28 | 1.25 | 12.8 | 12.5 | 1,592 | 20 | 939 | 11.8 | 326 | 302 | 41 | 38 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 38SH | 1.25 | 1.22 | 12.5 | 12.2 | 1,592 | 20 | 907 | 11.4 | 310 | 287 | 39 | 36 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 35SH | 1.22 | 1.17 | 12.2 | 11.7 | 1,592 | 20 | 876 | 11 | 287 | 263 | 36 | 33 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 33SH | 1.17 | 1.13 | 11.7 | 11.3 | 1,592 | 20 | 844 | 10.6 | 271 | 247 | 34 | 31 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 52UH | 1.46 | 1.42 | 14.6 | 14.2 | 1,990 | 25 | 1,059 | 13.3 | 422 | 390 | 53 | 49 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 50UH | 1.42 | 1.39 | 14.2 | 13.9 | 1,990 | 25 | 1,043 | 13.1 | 406 | 374 | 51 | 47 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 48UH | 1.4 | 1.36 | 14 | 13.6 | 1,990 | 25 | 1,031 | 12.9 | 390 | 358 | 49 | 45 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 45UH | 1.36 | 1.32 | 13.6 | 13.2 | 1,990 | 25 | 1,003 | 12.6 | 366 | 342 | 46 | 43 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 42UH | 1.32 | 1.28 | 13.2 | 12.8 | 1,990 | 25 | 971 | 12.2 | 342 | 318 | 43 | 40 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 40UH | 1.28 | 1.25 | 12.8 | 12.5 | 1,990 | 25 | 923 | 11.6 | 326 | 302 | 41 | 38 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 38UH | 1.25 | 1.22 | 12.5 | 12.2 | 1,990 | 25 | 907 | 11.4 | 310 | 287 | 39 | 36 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 35UH | 1.22 | 1.17 | 12.2 | 11.7 | 1,990 | 25 | 860 | 10.8 | 287 | 263 | 36 | 33 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 33UH | 1.17 | 1.13 | 11.7 | 11.3 | 1,990 | 25 | 852 | 10.7 | 271 | 247 | 34 | 31 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 30UH | 1.13 | 1.08 | 11.3 | 10.8 | 1,990 | 25 | 812 | 10.2 | 247 | 223 | 31 | 28 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 50EH | 1.42 | 1.39 | 14.2 | 13.9 | 2,308 | 29 | 1,043 | 13.1 | 406 | 374 | 51 | 47 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 48EH | 1.36 | 1.4 | 13.5 | 14 | 2,308 | 29 | 1,031 | 12.9 | 390 | 358 | 49 | 45 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 45EH | 1.36 | 1.32 | 13.6 | 13.2 | 2,388 | 30 | 1,003 | 12.6 | 366 | 342 | 46 | 43 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 42EH | 1.32 | 1.28 | 13.2 | 12.8 | 2,388 | 30 | 970 | 12.2 | 342 | 318 | 43 | 40 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 40EH | 1.28 | 1.25 | 12.8 | 12.5 | 2,388 | 30 | 947 | 11.9 | 326 | 302 | 41 | 38 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 38EH | 1.25 | 1.22 | 12.5 | 12.2 | 2,388 | 30 | 915 | 11.5 | 310 | 287 | 39 | 36 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 35EH | 1.22 | 1.17 | 12.2 | 11.7 | 2,388 | 30 | 884 | 11.1 | 287 | 263 | 36 | 33 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 33EH | 1.17 | 1.13 | 11.7 | 11.3 | 2,388 | 30 | 860 | 10.8 | 271 | 247 | 34 | 31 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 30EH | 1.13 | 1.08 | 11.3 | 10.8 | 2,388 | 30 | 820 | 10.3 | 247 | 223 | 31 | 28 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 45AH | 1.36 | 1.32 | 13.6 | 13.2 | 2,640 | 33 | 1,003 | 12.6 | 366 | 342 | 46 | 43 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 42AH | 1.32 | 1.28 | 13.2 | 12.8 | 2,706 | 34 | 970 | 12.2 | 342 | 318 | 43 | 40 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 40AH | 1.28 | 1.25 | 12.8 | 12.5 | 2,786 | 35 | 947 | 11.9 | 326 | 302 | 41 | 38 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 38AH | 1.25 | 1.22 | 12.5 | 12.2 | 2,786 | 35 | 915 | 11.5 | 310 | 287 | 39 | 36 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 35AH | 1.2 | 1.17 | 12 | 11.7 | 2,786 | 35 | 883 | 11.1 | 287 | 263 | 36 | 33 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 33AH | 1.17 | 1.11 | 11.7 | 11.1 | 2,786 | 35 | 844 | 10.6 | 271 | 239 | 34 | 31 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 30AH | 1.13 | 1.07 | 11.3 | 10.7 | 2,786 | 35 | 812 | 10.2 | 247 | 215 | 31 | 27 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 28AH | 1.09 | 1.02 | 10.9 | 10.2 | 2,786 | 35 | 772 | 9.7 | 231 | 199 | 29 | 25 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| Grado | Br (T) max | Br (T) min | Br (kGs) max | Br (kGs) min | HcJ (kA/m) min | HcJ (kOe) min | Hcb (kA/m) min | Hcb (kOe) min | (BH)max (kJ/m³) max | (BH)max (kJ/m³) min | (BH)max (MGOe) max | (BH)max (MGOe) min | Densità (g/cm³) min | Relative Recoil Permeability | Coeff. di temperatura di Br (%/°C) | Coeff. di temperatura di HcJ (%/°C) | Max. Working Temp. (L/D=0.7) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| N56 | 1.51 | 1.5 | 15.1 | 14.7 | 876 | 11 | 836 | 10.5 | 454 | 414 | 57 | 52 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N54 | 1.49 | 1.5 | 14.9 | 14.5 | 955 | 12 | 836 | 10.5 | 437 | 406 | 55 | 51 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N52 | 1.46 | 1.4 | 14.6 | 14.2 | 955 | 12 | 836 | 10.5 | 422 | 390 | 53 | 49 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N50 | 1.44 | 1.4 | 14.4 | 13.9 | 955 | 12 | 860 | 10.8 | 406 | 374 | 51 | 47 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N48 | 1.43 | 1.4 | 14.3 | 13.7 | 955 | 12 | 860 | 10.8 | 390 | 358 | 49 | 45 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N45 | 1.37 | 1.3 | 13.7 | 13.2 | 955 | 12 | 860 | 10.8 | 366 | 342 | 46 | 43 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
| N42 | 1.32 | 1.3 | 13.2 | 12.8 | 955 | 12 | 860 | 10.8 | 342 | 318 | 43 | 40 | 7.5 | 1.05 | -0.12 | -0.76 | 80°C |
Pull force is not determined by magnet grade alone. The final holding force depends on magnet size, grade, magnetization direction, contact area, steel thickness, coating thickness, air gap, working temperature, and the testing method used.
For example, the same N52 neodymium magnet can show different pull force values when it is tested against a thick steel plate, a thin metal sheet, a coated surface, or an assembly with an air gap. A higher grade may not solve the problem if the design has limited contact area, high temperature, or poor magnetic circuit conditions.
| Grado | Br (T) max | Br (T) min | Br (kGs) max | Br (kGs) min | HcJ (kA/m) min | HcJ (kOe) min | Hcb (kA/m) min | Hcb (kOe) min | (BH)max (kJ/m³) max | (BH)max (kJ/m³) min | (BH)max (MGOe) max | (BH)max (MGOe) min | Densità (g/cm³) min | Relative Recoil Permeability | Coeff. di temperatura di Br (%/°C) | Coeff. di temperatura di HcJ (%/°C) | Max. Working Temp. (L/D=0.7) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 56M | 1.5 | 1.5 | 15 | 14.6 | 1,114 | 14 | 995 | 12.5 | 446 | 406 | 56 | 51 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 54M | 1.49 | 1.4 | 14.9 | 14.4 | 1,114 | 14 | 1,035 | 13 | 438 | 398 | 55 | 50 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 52M | 1.46 | 1.4 | 14.6 | 14.2 | 1,114 | 14 | 1,035 | 13 | 422 | 382 | 53 | 48 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 50M | 1.44 | 1.4 | 14.4 | 13.9 | 1,114 | 14 | 1,035 | 13 | 406 | 374 | 51 | 47 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 48M | 1.42 | 1.4 | 14.2 | 13.7 | 1,114 | 14 | 1,027 | 12.9 | 390 | 358 | 49 | 45 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 45M | 1.37 | 1.3 | 13.7 | 13.2 | 1,114 | 14 | 995 | 12.5 | 366 | 342 | 46 | 43 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 42M | 1.32 | 1.3 | 13.2 | 12.8 | 1,114 | 14 | 955 | 12 | 342 | 318 | 43 | 40 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| 40M | 1.28 | 1.3 | 12.8 | 12.5 | 1,114 | 14 | 923 | 11.6 | 326 | 302 | 41 | 38 | 7.5 | 1.05 | -0.12 | -0.68 | 100 °C |
| Grado | Br (T) max | Br (T) min | Br (kGs) max | Br (kGs) min | HcJ (kA/m) min | HcJ (kOe) min | Hcb (kA/m) min | Hcb (kOe) min | (BH)max (kJ/m³) max | (BH)max (kJ/m³) min | (BH)max (MGOe) max | (BH)max (MGOe) min | Densità (g/cm³) min | Relative Recoil Permeability | Coeff. di temperatura di Br (%/°C) | Coeff. di temperatura di HcJ (%/°C) | Max. Working Temp. (L/D=0.7) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 54H | 1.49 | 1.44 | 14.9 | 14.4 | 1,353 | 17 | 1,075 | 13.5 | 438 | 398 | 55 | 50 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 52H | 1.46 | 1.42 | 14.6 | 14.2 | 1,353 | 17 | 1,059 | 13.3 | 422 | 382 | 53 | 48 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 50H | 1.44 | 1.39 | 14.4 | 13.9 | 1,353 | 17 | 1,043 | 13.1 | 406 | 374 | 51 | 47 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 48H | 1.42 | 1.36 | 14.2 | 13.6 | 1,353 | 17 | 1,027 | 12.9 | 390 | 358 | 49 | 45 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 45H | 1.37 | 1.32 | 13.7 | 13.2 | 1,353 | 17 | 995 | 12.5 | 366 | 342 | 46 | 43 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 42H | 1.32 | 1.28 | 13.2 | 12.8 | 1,353 | 17 | 955 | 12 | 342 | 318 | 43 | 40 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 40H | 1.28 | 1.25 | 12.8 | 12.5 | 1,353 | 17 | 923 | 11.6 | 326 | 302 | 41 | 38 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 38H | 1.25 | 1.22 | 12.5 | 12.3 | 1,353 | 17 | 899 | 11.3 | 310 | 287 | 39 | 36 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| 35H | 1.22 | 1.17 | 12.2 | 11.7 | 1,353 | 17 | 868 | 10.9 | 287 | 263 | 36 | 33 | 7.5 | 1.05 | -0.12 | -0.66 | 120 °C |
| Grado | Br (T) max | Br (T) min | Br (kGs) max | Br (kGs) min | HcJ (kA/m) min | HcJ (kOe) min | Hcb (kA/m) min | Hcb (kOe) min | (BH)max (kJ/m³) max | (BH)max (kJ/m³) min | (BH)max (MGOe) max | (BH)max (MGOe) min | Densità (g/cm³) min | Relative Recoil Permeability | Coeff. di temperatura di Br (%/°C) | Coeff. di temperatura di HcJ (%/°C) | Max. Working Temp. (L/D=0.7) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 54SH | 1.49 | 1.44 | 14.9 | 14.4 | 1,592 | 20 | 1,075 | 13.5 | 438 | 398 | 55 | 50 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 52SH | 1.46 | 1.42 | 14.6 | 14.2 | 1,592 | 20 | 1,059 | 13.3 | 422 | 390 | 53 | 49 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 50SH | 1.42 | 1.39 | 14.2 | 13.9 | 1,592 | 20 | 1,043 | 13.1 | 406 | 374 | 51 | 47 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 48SH | 1.4 | 1.36 | 14 | 13.6 | 1,592 | 20 | 1,035 | 13 | 390 | 358 | 49 | 45 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 45SH | 1.37 | 1.32 | 13.7 | 13.2 | 1,592 | 20 | 995 | 12.5 | 366 | 342 | 46 | 43 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 42SH | 1.32 | 1.28 | 13.2 | 12.8 | 1,592 | 20 | 955 | 12 | 342 | 318 | 43 | 40 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 40SH | 1.28 | 1.25 | 12.8 | 12.5 | 1,592 | 20 | 939 | 11.8 | 326 | 302 | 41 | 38 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 38SH | 1.25 | 1.22 | 12.5 | 12.2 | 1,592 | 20 | 907 | 11.4 | 310 | 287 | 39 | 36 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 35SH | 1.22 | 1.17 | 12.2 | 11.7 | 1,592 | 20 | 876 | 11 | 287 | 263 | 36 | 33 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| 33SH | 1.17 | 1.13 | 11.7 | 11.3 | 1,592 | 20 | 844 | 10.6 | 271 | 247 | 34 | 31 | 7.5 | 1.04 | -0.115 | -0.56 | 150 °C |
| Grado | Br (T) max | Br (T) min | Br (kGs) max | Br (kGs) min | HcJ (kA/m) min | HcJ (kOe) min | Hcb (kA/m) min | Hcb (kOe) min | (BH)max (kJ/m³) max | (BH)max (kJ/m³) min | (BH)max (MGOe) max | (BH)max (MGOe) min | Densità (g/cm³) min | Relative Recoil Permeability | Coeff. di temperatura di Br (%/°C) | Coeff. di temperatura di HcJ (%/°C) | Max. Working Temp. (L/D=0.7) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 52UH | 1.46 | 1.42 | 14.6 | 14.2 | 1,990 | 25 | 1,059 | 13.3 | 422 | 390 | 53 | 49 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 50UH | 1.42 | 1.39 | 14.2 | 13.9 | 1,990 | 25 | 1,043 | 13.1 | 406 | 374 | 51 | 47 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 48UH | 1.4 | 1.36 | 14 | 13.6 | 1,990 | 25 | 1,031 | 12.9 | 390 | 358 | 49 | 45 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 45UH | 1.36 | 1.32 | 13.6 | 13.2 | 1,990 | 25 | 1,003 | 12.6 | 366 | 342 | 46 | 43 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 42UH | 1.32 | 1.28 | 13.2 | 12.8 | 1,990 | 25 | 971 | 12.2 | 342 | 318 | 43 | 40 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 40UH | 1.28 | 1.25 | 12.8 | 12.5 | 1,990 | 25 | 923 | 11.6 | 326 | 302 | 41 | 38 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 38UH | 1.25 | 1.22 | 12.5 | 12.2 | 1,990 | 25 | 907 | 11.4 | 310 | 287 | 39 | 36 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 35UH | 1.22 | 1.17 | 12.2 | 11.7 | 1,990 | 25 | 860 | 10.8 | 287 | 263 | 36 | 33 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 33UH | 1.17 | 1.13 | 11.7 | 11.3 | 1,990 | 25 | 852 | 10.7 | 271 | 247 | 34 | 31 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| 30UH | 1.13 | 1.08 | 11.3 | 10.8 | 1,990 | 25 | 812 | 10.2 | 247 | 223 | 31 | 28 | 7.55 | 1.03 | -0.11 | -0.5 | 180 °C |
| Grado | Br (T) max | Br (T) min | Br (kGs) max | Br (kGs) min | HcJ (kA/m) min | HcJ (kOe) min | Hcb (kA/m) min | Hcb (kOe) min | (BH)max (kJ/m³) max | (BH)max (kJ/m³) min | (BH)max (MGOe) max | (BH)max (MGOe) min | Densità (g/cm³) min | Relative Recoil Permeability | Coeff. di temperatura di Br (%/°C) | Coeff. di temperatura di HcJ (%/°C) | Max. Working Temp. (L/D=0.7) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 50EH | 1.42 | 1.39 | 14.2 | 13.9 | 2,308 | 29 | 1,043 | 13.1 | 406 | 374 | 51 | 47 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 48EH | 1.36 | 1.4 | 13.5 | 14 | 2,308 | 29 | 1,031 | 12.9 | 390 | 358 | 49 | 45 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 45EH | 1.36 | 1.32 | 13.6 | 13.2 | 2,388 | 30 | 1,003 | 12.6 | 366 | 342 | 46 | 43 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 42EH | 1.32 | 1.28 | 13.2 | 12.8 | 2,388 | 30 | 970 | 12.2 | 342 | 318 | 43 | 40 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 40EH | 1.28 | 1.25 | 12.8 | 12.5 | 2,388 | 30 | 947 | 11.9 | 326 | 302 | 41 | 38 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 38EH | 1.25 | 1.22 | 12.5 | 12.2 | 2,388 | 30 | 915 | 11.5 | 310 | 287 | 39 | 36 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 35EH | 1.22 | 1.17 | 12.2 | 11.7 | 2,388 | 30 | 884 | 11.1 | 287 | 263 | 36 | 33 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 33EH | 1.17 | 1.13 | 11.7 | 11.3 | 2,388 | 30 | 860 | 10.8 | 271 | 247 | 34 | 31 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| 30EH | 1.13 | 1.08 | 11.3 | 10.8 | 2,388 | 30 | 820 | 10.3 | 247 | 223 | 31 | 28 | 7.6 | 1.03 | -0.1 | -0.45 | 200 °C |
| Grado | Br (T) max | Br (T) min | Br (kGs) max | Br (kGs) min | HcJ (kA/m) min | HcJ (kOe) min | Hcb (kA/m) min | Hcb (kOe) min | (BH)max (kJ/m³) max | (BH)max (kJ/m³) min | (BH)max (MGOe) max | (BH)max (MGOe) min | Densità (g/cm³) min | Relative Recoil Permeability | Coeff. di temperatura di Br (%/°C) | Coeff. di temperatura di HcJ (%/°C) | Max. Working Temp. (L/D=0.7) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 45AH | 1.36 | 1.32 | 13.6 | 13.2 | 2,640 | 33 | 1,003 | 12.6 | 366 | 342 | 46 | 43 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 42AH | 1.32 | 1.28 | 13.2 | 12.8 | 2,706 | 34 | 970 | 12.2 | 342 | 318 | 43 | 40 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 40AH | 1.28 | 1.25 | 12.8 | 12.5 | 2,786 | 35 | 947 | 11.9 | 326 | 302 | 41 | 38 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 38AH | 1.25 | 1.22 | 12.5 | 12.2 | 2,786 | 35 | 915 | 11.5 | 310 | 287 | 39 | 36 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 35AH | 1.2 | 1.17 | 12 | 11.7 | 2,786 | 35 | 883 | 11.1 | 287 | 263 | 36 | 33 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 33AH | 1.17 | 1.11 | 11.7 | 11.1 | 2,786 | 35 | 844 | 10.6 | 271 | 239 | 34 | 31 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 30AH | 1.13 | 1.07 | 11.3 | 10.7 | 2,786 | 35 | 812 | 10.2 | 247 | 215 | 31 | 27 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
| 28AH | 1.09 | 1.02 | 10.9 | 10.2 | 2,786 | 35 | 772 | 9.7 | 231 | 199 | 29 | 25 | 7.6 | 1.03 | -0.1 | -0.45 | 230 °C |
A higher grade does not always mean a better magnet. Size, air gap, working temperature, coating, and magnetization direction affect real performance.
| Rivestimento | Common Use | Key Benefit |
|---|---|---|
| NiCuNi | General industrial | Durable clean finish |
| Zinco | Cost-sensitive projects | Basic protection |
| Resina epossidica | Humid environments | Better moisture resistance |
| Parylene | Precision parts | Thin uniform layer |
| Oro | Elettronica | Conductive surface |
Standard and project-specific dimensions based on drawings, samples, or application needs.
Critical for assemblies, motors, sensors, and precision devices.
Axial, diametrical, radial, multi-pole, and custom options.
Neodymium arc segment magnets are commonly used in electric motors, generators, servo motors, and compact drive systems where high torque density is required. For motor projects, grade, HcJ, working temperature, magnetization direction, and dimensional tolerance should be confirmed before sampling.
Small disc, block, and custom NdFeB magnets are used in sensors, encoders, switches, and position-detection assemblies. The key selection factors are magnetic field stability, size tolerance, coating thickness, and consistent magnetization direction.
Precision neodymium magnets can be used in medical devices, diagnostic equipment, and compact instrument assemblies when stable magnetic performance and clean surface quality are required. Material grade, coating, corrosion resistance, and packaging requirements should be reviewed carefully before production.
Block, disc, and countersunk neodymium magnets are widely used in fixtures, holding tools, positioning systems, and equipment panels. Pull force, steel contact area, working gap, mounting method, and safety factor should be checked before choosing a size.
Ring, arc, and custom neodymium magnets are used in magnetic couplings to transfer torque without direct mechanical contact. For coupling designs, torque requirement, air gap, operating speed, temperature, and magnetization pattern must be matched together.
Compact neodymium magnets are used in loudspeakers, headphones, haptic motors, wearable devices, and small electronic assemblies. These projects usually require tight size tolerance, stable coating, consistent magnetic direction, and reliable batch repeatability.
Neodymium magnets are used in automotive sensors, small motors, robotic joints, actuators, and compact control systems. For these applications, temperature resistance, vibration conditions, coating durability, and long-term magnetic stability are more important than grade alone.
High-coercivity neodymium magnets can be used in wind generators and energy systems where stable output and temperature resistance are important. Arc segment design, HcJ level, coating protection, and assembly method should be reviewed based on the generator structure.




I magneti al neodimio sono realizzati con neodimio, ferro e boro. Sono anche denominati magneti NdFeB, magneti NIB o magneti neo.
They are among the strongest commercially available permanent magnets, especially for compact applications that need high magnetic force.
It depends on size, pull force, temperature, air gap, coating, and cost. A higher grade is not always the best choice for every application.
Yes. Most neodymium magnets need coating because they are brittle and vulnerable to corrosion. Common coatings include NiCuNi, zinc, epoxy, parylene, and gold.
Sì. Forma, dimensioni, grado magnetico, rivestimento, tolleranza e direzione di magnetizzazione possono spesso essere personalizzati in base ai disegni tecnici o ai requisiti dell’applicazione.
Invia dimensioni, forma, grado, rivestimento, direzione di magnetizzazione, quantità, tolleranza, applicazione e, se disponibili, i disegni tecnici.
Standard grades have temperature limits. For high-temperature applications, buyers should confirm the correct temperature grade instead of only choosing a higher magnetic grade.
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