Mechanized Slipform Paver for Reduced Labor Intensity in Tunnel Engineering
Usage conditions:
1. Highway and municipal road construction fields: curbs, central isolation belt, anti-collision walls, slope protection, drainage ditches, cement pavements, etc.
2. Railway construction field: retaining walls, drainage ditches, etc.
3. Agriculture and water conservancy construction fields: anti-seepage canals, slope protection and pavement hardening, etc.
The construction advantages of the three track cement sliding formwork machine in tunnel engineering include:
1. Strong adaptability: The design of the three track makes it have good stability and passability in complex terrain and working conditions inside the tunnel, and can provide sufficient driving force for various harsh working conditions.
2. One time molding: During the operation, the transportation, compaction, paving, extrusion molding, smoothing and other processes of cement concrete can be completed in one go, improving construction efficiency and ensuring construction quality.
3. High molding quality: Helps to form a regular and smooth tunnel lining surface, reducing surface defects and unevenness.
4. High degree of mechanization: It can reduce manpower input, lower labor intensity, and to some extent avoid the impact of human factors on construction quality.
5. Continuous operation: capable of continuous construction, reducing the setting of construction joints, which is conducive to improving the overall integrity and waterproof performance of tunnel structures.
6. Good dimensional accuracy control: Through precise adjustment and control, the requirements of tunnel engineering for lining size and shape can be better met.
7. Flexible and versatile: By changing the mold, it can be used to make different cement structures, such as side ditches, cable trenches, etc.
Technical Parameters:
No. | Project | Unit | Parameter |
Basic performance parameters | |||
1 | Max paving width | cm | 300 |
2 | Max paving height | cm | 180 |
3 | Work speed | m/min | 0~10 |
4 | Driving speed | km/h | 0~2 |
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 | 230+120(optional) |
9 | Water tank | L | 500 |
10 | Hydraulic oil tank | L | 300 |
Engine performance parameters | |||
11 | Engine model | / | Shangchai SC4H160.5G4 |
12 | Engine power | kW r/min | 118Kw/2200 |
13 | Engine type | / | 4-cylinder water-cooled |
14 | Emission standard | / | stage 4(stage 3 is optional) |
Size parameters | |||
15 |
| mm | 7000×3550×3600 |
16 |
| mm | 7000×2250×2860 |
17 | Track (L x W x H) | cm | 163x30x63 |
Weight parameters of the whole machine | |||
18 | Weight | kg | 15000 |
Homework performance parameters - feeding | |||
22 | Spiral device speed | r/min | 0~70 |
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(optional) |
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 | 7 |
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: