Customization: | Available |
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Motor Type: | AC Motor |
Engine Type: | Diesel |
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The wedges are placed into a drilled hole. When a splitter is operated, the power pack produces high-pressure oil to drive the piston of the splitter cylinder which in turn pushes the middle wedge down. The downward movements of the middle wedge force two counter wedges against the wall of the hole. When the tension increases beyond the material's tensile strength.
Step 1: Drill the holes in the rock/concrete required to split of suitable diameter and length.
Step 2: Put the wedge group of cylinders into the hole. Check the position before starting the splitter.
Step 3: Once the splitter is initiated, a crack will be developed due to the expansion of counter wedges. The cracking direction of the rock/concrete is the same as that of the splitter handle.
Hydraulic splitting machines have been widely used in the mining industry, construction engineering, demolition engineering, chemical industry, smelting production and overhaul engineering, and various rescue and rescue fields.
1. Security: The hydraulic splitting machine uses the physical properties of hydraulic oil to be non-compressible and movable and adds static thrust to complete the task of static controllability.
2. Eco-friendly: There is no vibration, impact, noise, dust, or flying debris in the whole process.
3. Efficiency: machine completes one task within 10 -15 seconds with powerful splitting force (the rock splitting tonnage can reach 840t), and can continue to work continuously with high efficiency.
4. Application flexibility: The splitting machine has a small volume, lightweight, and compact structure. It ensures that the application method is easy to learn, and just one person is required to operate it.
Model | Drilling diameter(mm) | Drilling depth(mm) | Theoretical split(t) | Piston stroke (mm) | Splitting time | Wedge length(mm) |
250 | 38 | 450 | 800 | 90-200 | 10-15s | 250 |
350 | 42 | 550 | 820 | 90-200 | 10-15s | 350 |
450 | 50 | 650 | 840 | 90-200 | 10-15s | 450 |