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SKU # | Product Name | Mesh Size | Mesh Size (in) | Mesh Size (mm) | Bulk Density Range (g/cm³) | Bulk Density | Description | Air Jet Diameters (in) | All Beads | Aluminum Oxide (Al₂O₃) (%) | Angle (º) | Application | Barcol Hardness | Benefits | Brand Name | Calcium Oxide (CaO) (%) | Capacity (gal) | Capacity | CFM at 6" SP (ft³/min) | Chemical Analysis | Chemistry | Cleaner | Coarse Beads | Color | Component Spec | Comprehensive Strength (psi) | Crystal Form | Density (g/cc) | Designation | Diameter (mm) | Diameter | Diameter (in) | Dimension A (in) | Dimension A (mm) | Dimension B (in) | Dimension B (mm) | Dimension C (in) | Drawing Reference No. | Faster | Fine Beads | Flow Aid | For Dust Collector Models | Formulation | Free Carbon (C) (%) | Free Silica (SiO₂) (%) | Free Silicon (Si) (%) | Frequency (Hz) | Grit Range | Hardness (kg/mm²) | Hardness | Hose Length (ft) | ID (in) | Iron (Fe) (%) | Iron Oxide (Fe₂O₃) (%) | Length (in) | Length (ft) | Magnesium Oxide (MgO) (%) | Material | Max Nominal Dia. (in) | Max Nominal Dia. (microns) | Melting Point | Melting Point (°C) | Metering Tube ID (in) | Micro Hardness | Microstructure | Min Density (Alc. Disp.) (g/cm³) | Min Nominal Dia. (in) | Min Nominal Dia. (microns) | Min Percent Round (%) | Model | MOH Hardness | Nominal Hose Dia. (in) | Note | Nozzle Dia. (in) | Nozzle Size | Nozzle Type | OD (in) | Others (CaO, MgO, etc.) (%) | Packaging | Phase | Power (hp) | Pressure (psi) | Surface Profile (Steel) | Quantity Increment | Safer | Screen Number | Selected Application | Shape | Shape When New | Sieve Analysis | Silica (SiO₂) (%) | Silicon Carbide (SiC) (%) | Size (microns) | Size (mm) | Size | Size (in) | Size (ft) | Size (Mesh) | Sizing | Sodium Oxide (Na₂O) (%) | Specific Gravity | Specify Length | Standard Deviation | Standard Mesh Size | Testing Services | Titania (TiO₂) (%) | True Density (g/cm³) | Style | Typical Applications | U.S. Mesh Size | Value Plus | Victors | Voltage (V) | Walnut Shell Grit Sizes | Warning | Get a Quote |
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0.0555 to 0.0661 | 1.400 to 1.700 | W Abrasives technical studies have shown that at an average of 44 HRC hardness, GP Angular-shot™ provides the optimum performance in many foundry and other cleaning applications. These studies show | W Abrasives | According to standard SAE J827 shot / J1993 grit | GP 12 | Steel | 40 - 51 HRC | Well controlled manufacturing gives die a martensitic structure that blends the iron and carbon atoms in the finest and most ideal way possible. This structure produces a homogeneity or hardness and | > 7.3 | 12 to 14 | Round | Angular | According to standard SAE J 444 | ±3Rc or ± 240 HV | 392 - 528 HV | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
0.0469 to 0.0555 | 1.180 to 1.140 | W Abrasives technical studies have shown that at an average of 44 HRC hardness, GP Angular-shot™ provides the optimum performance in many foundry and other cleaning applications. These studies show | W Abrasives | According to standard SAE J827 shot / J1993 grit | GP 14 | Steel | 40 - 51 HRC | Well controlled manufacturing gives die a martensitic structure that blends the iron and carbon atoms in the finest and most ideal way possible. This structure produces a homogeneity or hardness and | > 7.3 | 14 to 16 | Round | Angular | According to standard SAE J 444 | ±3Rc or ± 240 HV | 392 - 528 HV | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
0.0394 to 0.0469 | 1.000 to 1.180 | W Abrasives technical studies have shown that at an average of 44 HRC hardness, GP Angular-shot™ provides the optimum performance in many foundry and other cleaning applications. These studies show | W Abrasives | According to standard SAE J827 shot / J1993 grit | GP 16 | Steel | 40 - 51 HRC | Well controlled manufacturing gives die a martensitic structure that blends the iron and carbon atoms in the finest and most ideal way possible. This structure produces a homogeneity or hardness and | > 7.3 | 16 to 18 | Round | Angular | According to standard SAE J 444 | ±3Rc or ± 240 HV | 392 - 528 HV | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
0.0278 to 0.0394 | 0.710 to 1.000 | W Abrasives technical studies have shown that at an average of 44 HRC hardness, GP Angular-shot™ provides the optimum performance in many foundry and other cleaning applications. These studies show | W Abrasives | According to standard SAE J827 shot / J1993 grit | GP 18 | Steel | 40 - 51 HRC | Well controlled manufacturing gives die a martensitic structure that blends the iron and carbon atoms in the finest and most ideal way possible. This structure produces a homogeneity or hardness and | > 7.3 | 18 to 25 | Round | Angular | According to standard SAE J 444 | ±3Rc or ± 240 HV | 392 - 528 HV | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
0.0165 to 0.0278 | 0.425 to 0.710 | W Abrasives technical studies have shown that at an average of 44 HRC hardness, GP Angular-shot™ provides the optimum performance in many foundry and other cleaning applications. These studies show | W Abrasives | According to standard SAE J827 shot / J1993 grit | GP 25 | Steel | 40 - 51 HRC | Well controlled manufacturing gives die a martensitic structure that blends the iron and carbon atoms in the finest and most ideal way possible. This structure produces a homogeneity or hardness and | > 7.3 | 25 to 40 | Round | Angular | According to standard SAE J 444 | ±3Rc or ± 240 HV | 392 - 528 HV | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
0.0165 to 0.0117 | 0.300 to 0.425 | W Abrasives technical studies have shown that at an average of 44 HRC hardness, GP Angular-shot™ provides the optimum performance in many foundry and other cleaning applications. These studies show | W Abrasives | According to standard SAE J827 shot / J1993 grit | GP 40 | Steel | 40 - 51 HRC | Well controlled manufacturing gives die a martensitic structure that blends the iron and carbon atoms in the finest and most ideal way possible. This structure produces a homogeneity or hardness and | > 7.3 | 40 to 50 | Round | Angular | According to standard SAE J 444 | ±3Rc or ± 240 HV | 392 - 528 HV | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
0.007 to 0.0117 | 0.180 to 0.300 | W Abrasives technical studies have shown that at an average of 44 HRC hardness, GP Angular-shot™ provides the optimum performance in many foundry and other cleaning applications. These studies show | W Abrasives | According to standard SAE J827 shot / J1993 grit | GP 50 | Steel | 40 - 51 HRC | Well controlled manufacturing gives die a martensitic structure that blends the iron and carbon atoms in the finest and most ideal way possible. This structure produces a homogeneity or hardness and | > 7.3 | 50 to 80 | Round | Angular | According to standard SAE J 444 | ±3Rc or ± 240 HV | 392 - 528 HV | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
0.0049 to 0.007 | 0.125 to 0.180 | W Abrasives technical studies have shown that at an average of 44 HRC hardness, GP Angular-shot™ provides the optimum performance in many foundry and other cleaning applications. These studies show | W Abrasives | According to standard SAE J827 shot / J1993 grit | GP 80 | Steel | 40 - 51 HRC | Well controlled manufacturing gives die a martensitic structure that blends the iron and carbon atoms in the finest and most ideal way possible. This structure produces a homogeneity or hardness and | > 7.3 | 80 to 120 | Round | Angular | According to standard SAE J 444 | ±3Rc or ± 240 HV | 392 - 528 HV | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
0.0029 to 0.0049 | 0.075 to 0.125 | W Abrasives technical studies have shown that at an average of 44 HRC hardness, GP Angular-shot™ provides the optimum performance in many foundry and other cleaning applications. These studies show | W Abrasives | According to standard SAE J827 shot / J1993 grit | GP 120 | Steel | 40 - 51 HRC | Well controlled manufacturing gives die a martensitic structure that blends the iron and carbon atoms in the finest and most ideal way possible. This structure produces a homogeneity or hardness and | > 7.3 | 120 to 200 | Round | Angular | According to standard SAE J 444 | ±3Rc or ± 240 HV | 392 - 528 HV |
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