Heat Resistant Crane Scale
High temperature resistant core technology design
Sensor protection
- Heat insulation design: The sensor is isolated from high-temperature heat sources using multiple layers of high-performance insulation materials, including ceramic fibers, aerogel, and special insulation boards.
- Heat dissipation design: Heat sinks and air cooling channels have been designed around the sensor to accelerate heat dissipation.
- High-temperature resistant sensor: Sensors made of special materials, specific alloys, and crafted with specialized techniques are capable of operating at higher temperatures.
Protection of electronic components
- The heat resistant crane scale is placed in a safe area away from heat sources and is connected to the scale body through an extended high-temperature resistant cable.
- The junction box also needs to be insulated or placed in a low-temperature area.
- Adopt wide-temperature electronic components.
Heat-insulating hook/lifting ring
Add a heat-insulating hook or multiple layers of heat-insulating pads at the connection between the scale body and the lifting device to prevent heat from being directly conducted to the scale body through the metal sling.
High-temperature resistant housing and cable
- The scale body shell is made of stainless steel, which is corrosion-resistant and has a certain degree of heat resistance.
- The connecting cable utilizes high-temperature resistant special cables, with an insulating layer capable of maintaining its performance under high temperatures to prevent melting and short circuits.
Measures against thermal radiation
For scenarios involving strong thermal radiation (such as near furnaces or steel ladles), the surface of the scale body is coated with a high-reflectivity coating and fitted with reflective insulation panels to reduce the absorption of radiant heat.
Temperature compensation technology
The internal circuit of the heat resistant crane scale performs temperature compensation to correct measurement errors caused by temperature changes, ensuring accuracy.
Technical Index
- Accuracy level Complies with internationa third level scale standards (GT/T11883-2002)
- Working time for charging fully the battery: About 2months
- Safe Overload:150% F.S
- Destruction overload: 300% F.S
- Working environment temperature: 1400℃ at 1.8M
1600°℃ at 2.0M
6. Ambient temperature: ≤90%R.H
7. Display specifications: LCD display8
8. Stable time: <5.05s
9. Display: 10.4×6.5 LCD Instrument
10. Battery: 6V/4.5A Lead-Acid Battery; Charger 7.5V
|
Model No |
Max Rang(T) |
Specs |
Size(mm) |
||||||
|
Graduation value(kg) |
Min Range(kg) |
Overload coefficient |
A |
B |
C |
D |
E |
|||
|
EMET-W05H |
5 |
1.0 |
40 |
5D |
650 |
130 |
53 |
270 |
150 |
|
|
EMET-W10H |
10 |
2.0 |
80 |
5D |
690 |
123 |
62 |
270 |
150 |
|
|
EMET-155H |
15 |
5.0 |
100 |
5D |
880 |
115 |
60 |
320 |
190 |
|
|
EMET-W20H |
20 |
5.0 |
100 |
5D |
970 |
155 |
80 |
320 |
190 |
|
|
EMET-W30H |
30 |
5.0 |
150 |
5D |
1090 |
160 |
105 |
320 |
190 |
|
|
EMET-W50H |
50 |
10.0 |
200 |
5D |
1550 |
202 |
420 |
390 |
||

The safe distance between the heat resistant crane scale body and the ladle solution: 1600℃>2.0m
Optional Parts

Application of Heat resistant Crane Scale

steel Production Plant
brick kiln plant


Waste treatment plant
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