| Jaw Crusher | Primary crushing of hard rock, recycled concrete, ores and quarry materials | Up to approximately 1,200 mm, depending on model and opening size | About 50–1,500 t/h | Approximately 75–400 kW | About 3:1 to 6:1 | Deep crushing chamber, hydraulic setting adjustment, high-strength eccentric shaft and overload protection | Coarse and angular; suitable for secondary crushing feed | Check jaw plate life, toggle protection, CSS adjustment range, lubrication access and availability of wear parts |
| Cone Crusher | Secondary, tertiary and quaternary crushing of abrasive hard rock and ores | Typically 50–560 mm, depending on chamber configuration | About 50–1,200 t/h | Approximately 90–1,000 kW | About 3:1 to 5:1 per crushing stage | Hydraulic tramp-release system, automated CSS control, cavity design and anti-spin technology | Well-graded, cubical to elongated, depending on chamber and closed-side setting | Compare liner wear rate, feed distribution requirements, hydraulic protection, power draw and control-system integration |
| Impact Crusher | Soft to medium-hard limestone, recycled aggregates and materials requiring cubical output | Typically 100–1,000 mm | About 80–800 t/h | Approximately 110–630 kW | About 10:1 to 30:1 | Rotor balancing, impact-bar design, adjustable apron system and hydraulic opening mechanism | Highly cubical with good particle shape | Usually offers high reduction in one stage, but wear can rise with abrasive feed; inspect blow-bar material and apron protection |
| Hammer Crusher | Primary or secondary crushing of limestone, coal, gypsum and other relatively soft materials | Typically 100–1,000 mm | About 10–600 t/h | Approximately 45–800 kW | About 10:1 to 50:1 | Rotor inertia, hammer configuration, grate or screen design and overload protection | Fine to medium product with a relatively high proportion of fines | Simple structure and high reduction, but hammer and grate wear should be evaluated for abrasive or wet feed |
| Vertical Shaft Impact Crusher | Manufacturing high-quality sand and shaping aggregate in the final crushing stage | Usually below 60 mm | About 30–600 t/h | Approximately 75–800 kW | About 4:1 to 8:1 | Rock-on-rock or rock-on-steel crushing chamber, rotor tip speed control and cascade-feed adjustment | Highly cubical and suitable for manufactured sand | Compare sand-fineness control, rotor wear protection, feed grading, recirculation requirements and energy consumption |
| Mobile Jaw Crushing Plant | Flexible primary crushing for quarrying, demolition, road construction and remote projects | Up to approximately 1,000–1,200 mm | About 100–600 t/h | Approximately 150–500 kW | About 3:1 to 6:1 | Tracked or wheeled chassis, hydraulic folding conveyors, remote control and onboard dust-control options | Coarse and angular | Evaluate transport dimensions, setup time, crawler or axle design, fuel efficiency, service access and site mobility |
| Mobile Cone Crushing Plant | Mobile secondary or tertiary processing for aggregates, mining and construction recycling | Typically 50–350 mm | About 100–500 t/h | Approximately 250–750 kW | About 3:1 to 5:1 | Integrated screening, closed-loop operation, hydraulic cone adjustment and automated process monitoring | Well-graded and relatively cubical | Compare feed-hopper volume, inter-stage conveyors, liner replacement time, machine weight and remote diagnostics |
| Fine Crusher / Sand Maker | Fine crushing and manufactured-sand production from limestone, river stone and selected hard rock | Generally below 150 mm | About 20–300 t/h | Approximately 75–400 kW | About 5:1 to 20:1 | Adjustable discharge gap, grading control, wear-resistant chamber parts and dust-suppression system | Fine, cubical and adjustable according to the discharge setting | Check moisture tolerance, final product grading, fines control, wear-part cost and compatibility with a screening circuit |