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TECNOMAGNETE MaxX 125 - 5 Technical Characteristics; Maxx Technical Characteristics

TECNOMAGNETE MaxX 125
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12
codice 09MAXX001
versione EN
revisione 01
Use and Maintenance Manual
MaxX
5 TECHNICAL
CHARACTERISTICS
5.1 MaxX
TECHNICAL CHARACTERISTICS
In This manual the operating conditions of the MaxX are as
follows:
Operating temperature from -5°C (23°F) to +55°C (104°F)
Load temperature max 80°C (176°F)
The temperature of the load must not exceed + 80 ° C.
For higher temperatures of the load consult Tecnomagnete
S.p.A.
Instead, the following two tables describe the load
characteristics that MaxX can raise:
Fig.5.1A
MaxX
- CARATTERISTICHE DEL CARICO
LOAD
CONDITION
MODEL
MAX LOAD
[kg]
MIN.
THICKNESS
[mm]
MAX.
LENGTH
[mm]
MAX.
DIAMETER
[mm]
MaxX 125 125 20 1000 ---
MaxX 250 250 20 1500 ---
MaxX 300E 300 20 1500 ---
MaxX 500 500 25 2000 ---
MaxX 600E 600 25 2000 ---
MaxX 1000 1000 40 3000 ---
MaxX 1500 1500 45 3000 ---
MaxX 2000 2000 55 3000 ---
MaxX 125 50 10 1000 300
MaxX 250 100 10 1500 300
MaxX 300E 120 10 1500 300
MaxX 500 200 15 2000 400
MaxX 600E 240 15 2000 400
MaxX 1000 400 25 3000 450
MaxX 1500 600 30 3000 500
MaxX 2000 800 35 3000 600
Fig.5.1B
MaxX TG
- CARATTERISTICHE DEL CARICO
CONDIZIONI
DI CARICO
MODELLO
CARICO
MASSIMO
[kg]
SPESSORE
MINIMO
[mm]
LUNGHEZZA
MASSIMA
[mm]
DIAMETRO
MASSIMO
[mm]
MaxX
TG150
150 8 1500 ---
MaxX
TG300
300 10 2000 ---
MaxX
TG150
60 8 1500 240
MaxX
TG300
120 10 2000 290
Nickel treatment on all steel parts prevents oxidation/rust
formation, improves the life of the components and allows
a greater surface hardness of the poles to allow an
excellent contact condition between the MaxX and the
Load.
Each MaxX lifter is checked to ensure that all the expected
operating parameters are guaranteed and certified, in
compliance with the strictest international standards.
All models of MaxX products are subjected to a test that
ensures their performance. This test is carried out by
placing MaxX, and Activan-Dolo, on the plate made of mild
steel 80 mm thick with rectified super ¬ surface, of a
dynamometric machine as from the following
photographs. A force equal to 3 times the maximum
operating load is applied to the lift, in order to verify the
lifting capacity and the mechanical resistance.
Fig.5.1C Fig.5.1D
The thickness of the load conditions the capacity of the lift;
For thicknesses smaller than the width of the pole there is
a reduction in the flow proportional to the ratio between
the thickness (S) of the load to be anchored and the width
(L) of the pole.
Flow reduction factor = S/L

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