MAXER 400

The Maxer 400 replaces the traditional use of a “lathe + machining center + gantry loader” for machining complex parts, thus reducing capex and saving on space. Pieces can be machined in a single set-up, minimizing geometric and shape defects. Single set-up machining also minimizes handling time and costs connected with loading and unloading operations. The two additional axes (B+Y) enable complex milling, drilling, and boring operations to be performed even outside the axis of rotation of the workpiece, with angles programmable between -15° and +90° and multiple axes interpolated.

Advantages:

  • Automatic loading/unloading of workpieces by the pick-up spindle, making every machine autonomous.
  • Superior quality and high output levels, thanks to machining in a single set-up.
  • Extreme precision thanks to the thermal stability and vibration absorption of the bedframe.
  • Milling, drilling, and boring of workpieces, even outside the axis of rotation.
  • Automatic swarf and filing conveyor.
  • Unbeatable flexibility thanks to a 32-position tool changer.
  • The design of the work area and the pick-up spindle ensures that swarf and filings fall away freely.
  • Minimal loading/unloading times thanks to extremely short strokes.
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TURNING CAPACITY

Standard chuck diameter [mm] 400
Max chuck diameter [mm] 400
Max swing diameter [mm] 480
Max turning length [mm] 340

AXES

Total stroke X axis [mm] 1900
Machining stroke X axis [mm] 1150
Machining stroke Y axis [mm] 400
Total stroke Y axis [mm] 600
Total stroke Z axis [mm] 600
Rapid speed X axis [m/min] 60
Rapid speed Y axis [m/min] 60
Rapid speed Z axis [m/min] 40
Ballscrew diameter X axis [mm] 63
Ballscrew diameter Y axis [mm] 50
Ballscrew diameter Z axis [mm] 50
Nominal Thrusth X axis [kN] 4,6
Nominal Thrusth Y axis [kN] 4,6
Nominal Thrusth Z axis [kN] 7
S3-25% Thrusth X axis [kN] 12,5
S3-25% Thrusth Y axis [kN] 10,5
S3-25% Thrusth Z axis [kN] 18,8

MAIN ELECTROSPINDLE

Spindle nose [ASA] 8
Front bearing ø [mm] 140
Nominal power [kW] 48,4
Nominal torque [Nm] 745
Max power [kW] 57,3
Max torque [Nm] 1179
Max speed [Rpm] 4000

TOOLS TURRET (Fixed/Live tools)

Toolholders type [VDI] 50
Toolholders [N°] 12
Max power [kW] 22,4
Max torque [Nm] 145
Max speed [Rpm] 8000/10000
Max tools length [mm] 200
Indexing time [sec] 0,25

GENERAL DATA

Loading/Unloading time [sec] 6 ÷ 10
Machine Weight [kg] ~ 16000
Main connection [V/Hz] 400/50 or 440/60
Compressed air [bar] 5
Conveyor height [mm] 1050
Lenght/Width/Height [mm] (Without chip conveyor) 3900/3600/3900

GEAR HOB - B AXIS

Nominal torque [Nm] 647
Nominal speed [Rpm] 170

GEAR HOB - MILLING HEAD

Nominal power [kW] 20,6
Nominal torque [Nm] 95,9
Nominal speed [Rpm] 2082
Max speed [Rpm] 11000

TOOLS MAGAZINE

Toolholders places [N°] 36
Max tool length [mm] 200
Max tool diameter [mm] 165

INFINITY OPTION "L" OPTION "Y" OPTION

MAXER 400

The Maxer 400 replaces the traditional use of a “lathe + machining center + gantry loader” for machining complex parts, thus reducing capex and saving on space. Pieces can be machined in a single set-up, minimizing geometric and shape defects. Single set-up machining also minimizes handling time and costs connected with loading and unloading operations. The two additional axes (B+Y) enable complex milling, drilling, and boring operations to be performed even outside the axis of rotation of the workpiece, with angles programmable between -15° and +90° and multiple axes interpolated.

Advantages:

  • Automatic loading/unloading of workpieces by the pick-up spindle, making every machine autonomous.
  • Superior quality and high output levels, thanks to machining in a single set-up.
  • Extreme precision thanks to the thermal stability and vibration absorption of the bedframe.
  • Milling, drilling, and boring of workpieces, even outside the axis of rotation.
  • Automatic swarf and filing conveyor.
  • Unbeatable flexibility thanks to a 32-position tool changer.
  • The design of the work area and the pick-up spindle ensures that swarf and filings fall away freely.
  • Minimal loading/unloading times thanks to extremely short strokes.
Request info