• ea-507.l
    EA Rotary Table EA rotary tables have one spindle (4th axis). Our single-spindle rotary tables (4th axis) are compact, flexible and can be installed in almost any machining center. The better accessibility of the rotary tables ensures a stable machining process and higher machining capacity. The smaller the rotary tables for the needed for the particular range of parts, the more energy-efficient it is. This results from the smaller moving masses.
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  • m2-510.l
    M rotary tables have one axe (4th axis) with multi-spindles for 2 to 4 working pieces. Multi-spindle rotary tables from pL Lehmann permit simultaneous machining of different spatial angles as well as multi-side machining at every station. Maximum flexibility during continuous use make our rotary tables cost-effective, since high output can be achieved with little effort. Our rotary tables are characterized by high angular accuracy in conjunction with minimal radial and axial run-out. Our multi-spindle rotary tables offer you the best possible solution even for difficult workpiece clamping situations.
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  • tf-507510.ll_fix
    TF rotary tables / dividing heads are 2-axis tables (4th + 5th axis) and have one spindle for one working piece. TF-type rotary tables (4th + 5th axis) are single-spindle, cantilevered dividing heads without a counter bearing and are especially well-suited for small workpieces with a cube size of approx. 100 mm to max. 250 mm. Our dividing heads offer good accessibility for the smallest parts, making them ideal for machining of watch cases, medical device parts, dental implants and other small parts. Difficult-to-machine materials are processed especially precisely with our dividing heads. Even when carburetors, turbines and similar parts are involved, our dividing heads are known for high machining capacity per unit time. Low-vibration clamping and machining are assured.
    Without counter bearing ("flying")
    • Small workpieces (up to cubes of approx. 100 mm, max. 250 mm)
    • Amongst other things, ideal for the machining of watch cases, medical engineering parts, dental implants, small parts for carburetors, turbines etc.
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  • t1-507510.ll_variox1
    T1 rotary tables are 2-axis tables (4th + 5th axis) with one spindle for one working piece. Single-spindle, 2-axis table (4th + 5th axis) with clamped counter bearing is one of over 20 standardized systems available within our product range. Our technical performance data for rotary tables cover a wide range of applications. This 2-axis table is well-suited for small to medium-sized workpieces with a cube size of approx. 350 mm. The 2-axis table is ideal for machining automotive, aircraft and turbine parts as well as for general machining tasks. After all, maximum adaptability is required in contract manufacturing as it is no where else. This 2-axis rotary table, manufactured using superior technology, can largely fulfill you requirements for an all-rounder. With counter bearing, clamped
    • Small to medium-sized workpieces (up to cubes of approx. 350 mm)
    • Amongst other things, ideal for the machining of automotive, airplane and turbine parts as well as for general mechanical engineering
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  • t2-510520.ll_fix
    T2/T3 rotary tables are 2-axis tables (4th + 5th axis) for one or more working pieces. These 2-axis tables, equipped with a clamped counter bearing, are well-suited for simultaneous clamping and machining of 2 to 3 workpieces. The 2-axis tables are ideal for machining of automotive, aircraft and turbine parts as well as for general machining tasks. With a high machining capacity per unit time, these 2-axis rotary tables permit the shortest possible tool lengths and shortest possible clamped workpieces for maximum rigidity. They impress with their low-vibration clamping and high-precision machining. Even difficult workpiece clamping configurations are possible with these 2-axis tables, which are just another standard product from us. With counter bearing, clamped
    • For simultaneous clamping / machining of two or three workpieces
    • Amongst other things, ideal for the machining of automotive, airplane and turbine parts as well as for general mechanical engineering
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