Road Engineering Slipform Paver for Highway and Municipal Roads
The application fields of three track cement sliding mode machine are wide, mainly including the following aspects:
1. Road engineering
2. Airport construction
3. Water conservancy engineering
4. Port terminals
5. Railway engineering
Construction of side ditches and slope protection for railway subgrade.
6. Industrial park
Construction of roads and drainage facilities within the park.
7. Underground pipe gallery
Construction of concrete structures around the pipe gallery.
Features:
The three track sliding mode machine has the following significant characteristics:
1. Strong stability
The distribution design of three tracks increases the contact area with the ground, maintaining good stability on uneven or soft construction surfaces and reducing the risk of machine shaking and tilting during operation.
2. Good maneuverability
The tracked walking system enables it to have flexible steering capabilities, allowing it to move freely in narrow construction sites and adapt to various complex construction environments.
3. High construction accuracy
Advanced control systems can accurately control the position, height, and shape of the sliding mode, ensuring that the construction products meet the design requirements with minimal errors.
4. Outstanding efficiency
The continuous operation mode greatly improves the construction speed, saves time and labor costs.
5. Wide adaptability
Can adapt to different types of cement concrete materials, as well as construction surfaces with different slopes and shapes.
6. Easy to operate
Operators can easily perform various operations and parameter adjustments through the console.
7. Low maintenance cost
The structure is relatively simple, the components are durable, and daily maintenance work is relatively easy, reducing the cost of long-term use.
Technical Parameters:
No. | Project | Unit | Parameter |
Basic performance parameters | |||
1 | Max paving width | cm | 250 |
2 | Max paving height | cm | 130 |
3 | Work speed | m/min | 0~16 |
4 | Driving speed | km/h | 0~2.1 |
5 | Theoretical productivity | m3/h | 90 |
6 | hopper capacity | m3 | 2~10(Depends on the width of the mold) |
7 | Climbing ability | % | 20 |
8 | Diesel tank | L | 115 |
9 | Water tank | L | 284 |
10 | Hydraulic oil tank | L | 189 |
Engine performance parameters | |||
11 | Engine model | / | Weichai WP4.1G |
12 | Engine power | kW r/min | 73.5Kw/2300 |
13 | Engine type | / | 4-cylinder water-cooled |
14 | Emission standard | / | stage 3 |
Size parameters | |||
15 |
| mm | 5400×3150×3300 |
16 |
| mm | 5400×2150×2700 |
17 | Track (L x W x H) | cm | 163x30x63 |
Weight parameters of the whole machine | |||
18 | Weight | kg | 9000 |
Homework performance parameters - feeding | |||
22 | Spiral device speed | r/min | 0~60 |
23 | Spiral diameter | cm | 42 |
24 | Belt device speed | r/min | 0~100 |
Homework Performance Parameters - Mold | |||
25 | Number of molds | pcs | 1 |
26 | Construction form | / | Left side paving |
Performance parameters for homework - vibration compaction | |||
28 | Vibration rod frequency | Hz | 0~167 |
32 | Number of vibrator | pcs | 5 |
Homework Performance Parameters - Cleaning | |||
33 | Cleaning form | / | High pressure cleaning |
34 | Cleaning pressure | Mpa | 5 |
Hydraulic system | |||
35 | Quantity of hydraulic pumps | pcs | 2 |
36 | Hydraulic oil cooling | / | Large size radiator, forced air cooling |
37 | Maximum filtering accuracy | / | 10μm |
Construction case: