New Hydrobar LNS Sprint 565 Magazine Type Bar Feed
* Remnant Retract *
a 5% surcharge may apply from LNS to cover additional expenses due to logistics during COVID
Prices and specifications are subject to change without prior
notice.
General Specifications As Per Brochure (Must Be Verified By Buyer):
Bar Capacity: 1/4" - 2-5/8" (5mm - 65mm)
Max. Bar Length Capacity: 12' 6" Barstock
Changeover Time: 8 minute complete changeovers
Air Supply: 80 - 100 PSI of shop air
Hydraulic Oil: 14 Gal/ISO 100
Control Voltage: 24V DC
Weight (Approx.): 3,080 lbs
Includes
Automatic Hydrostatic front stabilizer, remnant retraction system, 20" Z-axis
retraction system & custom electrical cable with plugs for electrical
interfacing to the lathe.
Flag Pusher
Collet Adapter Bering Elements
Rotating Sleeve
Collet According to Bar Stock Size (round)
(please specify bar stock size when ordering)
Custom Interface Electrical Cable
Production Package
2-1/2" (65 mm) bar capacity lathe: Bearing Sets: 66, 56, 45, 35: $63,665.00
2-3/8" (60 mm) bar capacity lathe: Bearing Sets: 51, 52, 43, 33: $63,665.00
2-3/16" (55 mm) bar capacity lathe: Bearing Sets: 56, 45, 38, 29: $63,665.00
Including base unit plus 4 sets of:
Flag Pusher
Collet Adapter Custom Interface Electrical Cable
Bearing Elements Package with Plugs
Rotating Sleeve 1 Collet Included
Notes
A collet is required for each bar diameter, as the bar diameter approaches the
lathe capacity, the bar will require end turning preparation.
The above 4 listed bearing set sizes may vary according to the I.D. of the
spindle (or draw tube I.D.).
Installation (USA) $ 3,450.00
Installation (Canada & Mexico) $ 4,150.00
Optional Accessories
Additional bearing set
Includes: set of bearing element, pusher, rotating sleeve, collet, flag &
adapter: $ 2,410.00
Tall leg risers for lathe centerline 47-1/4" to 55"
(1200 mm to 1400 mm): $ 1,015.00
Horizontal floor mounting storage, 25" wide
(for increased magazine capacity): $ 3,850.00
Bearing set for hexagonal/square bars
(required for each size stock): $ 2,675.00
Swiss Style Lathe Telescopic Tube Package: $ 1,715.00
Additional T-Tube Liner: $ 400.00
Two Z-Axis Barfeed: $ 1,340.00
Rear Load Configuration: $ 2,140.00
Floor Discharge Remnant Chute (No Cart Supplied): $ 830.00
Dual Channel Safety Circuit Protection: $ 535.00
Oil Recuperator for Recessed Spindle: $ 300.00
Includes a Telescopic Connecting Tube, Headstock Adapter, One T-Tube
Liner and Support Bushing
Additional Tube Liner for Traveling Headstock Safety Connection: $ 695.00
(One Required for Each Size Guiding Element)
Note: Profiled material applications with remnant retraction system: bar end
must be turned down so collet and pusher O.D. match the bar diameter across
corners.
Traveling Headstock Safety Connection: $20,330.00
Additional Tube Liner for traveling headstock safety connection: $ 695.00
Package for 52 mm sliding headstock lathes $ 900.00
Remnant Collets and Cones
(one remnant collet or cone is required for each bar diameter)
Cone for Pusher .250" to 2.050" (remnant ejected through spindle) $ 190.00
Remnant Collet from .078" to .437" $ 115.00
Remnant Collet from .438" to .868" $ 140.00
Remnant Collet from .869" to 1.249" $ 170.00
Remnant Collet from 1.250" to 1.873" $ 275.00
Remnant Collet from 1.874" to 2.441" $ 480.00
Steel Spindle Liners for Fixed Headstock Lathe
One spindle liner tube is required for each guiding element
(Round list price, each)
Up to 3-1/8" Drawtube I.D. $ 530.00
Surcharge for Hardened Liner $ 350.00
Spindle Liner 3-Piece (for undersized barfeeds) up to 2.75" $ 635.00
Spindle Liner 3-Piece (for undersized barfeeds) over 2.75" $ 830.00
Coolant Collector Extension $ 700.00
Quick Change Adapter $ 580.00
Note: Steel price also includes extended style and 2-piece style liners
Barstock Straightness Specifications:
For optimum rotational performance, bar stock straightness needs to be .020"
per 3.25 feet, non-accumulative. Barstock out of this tolerance will not run
at optimum RPM capability. Other factors such as material type (brass, copper,
bronze and other malleable materials), clamping efficiency of the machine
workholding, alignment of the barfeed, oil type, bar preparation and spindle
liners will effect optimum RPM capability of the system
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