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CNC turning lathe, Swiss type lathe original manufacturer since 2007.

The Evolution Of Cnc Machining

CNC Drilling Machines – Sophisticated drilling machines could be programmed using CNC know-how to ensure exact positioning of holes in supplies. With thick material, a course of known as peck, or interrupted minimize drilling is used to drill the outlet in a stepwise procedure.CNC turret drilling machines have a number of drill bits and chopping tools mounted on a turret. Automation enables the required device to be listed shortly and accurately into position for drilling. CNC Milling Machines – A mill uses rotary cutters to shave, cut or slice sections off of a work piece.

Another number of this type of lathes includes the semi-automatic lathes, by which the mounting and elimination of labor is done by operator whereas all of the operations are carried out by the machine routinely. They fall in the class of heavy responsibility, high pace lathes primarily employed in mass production. The programming in CNC machines incorporates all of the exacting, high-pace movements needed to supply the item, and it permits detailed customization. CNC machining is changing into more and more in style as a way to fabricate steel parts in addition to plastic parts, because it allows the manufacturer to provide complex shapes that would be nearly impossible to create manually.

That is basically cool that lathe machines spin about an axis whereas the slicing software doesn’t and a milling machine does the other. The software in a milling machine rotates about its axis, whereas the workpiece does not. This allows the tool to strategy the workpiece in many alternative orientations that extra intricate and complicated components demand. If you can program it, you may make it in a milling machine so long as you've the correct clearance and choose the right tooling. If and only if all the above 5 conditions are satisfied by a particular machine then it can be called a Machine Tool.

M operations direct the machine to vary instruments, transfer the spindle or do other non-chopping duties contained in the equipment. If you wish to make the process simpler, you could contemplate CAD or CAM software program, but this isn't all the time an ideal answer.

Hence, all machine instruments are principally machines, however not vice versa. It is value mentioning that utilization of the phrase Machine Tool is confined to the steel cutting subject only. G-code provides metric-primarily based numeric management of CAM-controlled gear similar to CNC milling machines. The nice-grained management enabled by G-code and other CNC languages afford the precision for additive and discount-primarily based fabricating utilizing many materials.

Lathe CNC machines are characterised by their ability to rotate materials while in operation. They often have a fewer number of axes than milling CNC machines, making them smaller and extra compact. Lathe CNC machines characteristic a lathe within the heart that manipulates and strikes the fabric into the place as programmed on the pc.

Many industries, especially producers, look to CNC machining advantages for manufacturing solutions involving metal and plastic and any number of machining processes they might need. Thank you for all the information on milling machines and lathe machines.

Zhongshan JSTOMI CNC Machine Tool Co., Ltd. has a professional team of engineers and technology professionals.

If you want to know more about finding the proper for multi axis cnc machine solutions, visit JSTOMI CNC Machine.

Now that Zhongshan JSTOMI CNC Machine Tool Co., Ltd. has become a leader in the space and have been able to scale appropriately, we are ready to expand to other cities.

To deal with commercial threats, Zhongshan JSTOMI CNC Machine Tool Co., Ltd. konws that the notion of proactively seeking out potential or looming external threats against a company is gaining traction.

Zhongshan JSTOMI CNC Machine Tool Co., Ltd. can reassign work or shuffle around assigned tasks if one team member is overwhelmed while others are not, more effectively managing resources on the fly. With detailed overviews and reports, manufacturers also can more easily stay abreast of new developments.

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Maintaining Swiss-Type Lathe Fixtures – Locking Accuracy at the Micron Level

Daily “Clean + Lubricate” as the Baseline
After each shift, remove chips and coolant residue from the fixture surface and collet jaws with a soft cloth or air gun to prevent corrosion and re-clamping errors. Every eight hours, apply a trace of rust preventive oil to spring collets, guide bushings and other moving parts; once a week, add a thin coat of grease to ball-screw nuts and hydraulic cylinder rods to reduce wear. Before any prolonged shutdown, spray anti-rust oil on internal bores and locating faces and wrap them in wax paper or plastic film.
Precision Calibration & Data Closure
Use ring gauges or master bars every month to verify repeatability of the fixture; log results in the MES. If deviation exceeds 0.005 mm, trigger compensation or repair. For quick-change systems (HSK/Capto), check taper contact percentage every six months—target ≥ 80 %. If lower, re-grind or replace.
Spare Parts & Training
Keep minimum stock of jaws, seals and springs to enable replacement within two hours. Hold quarterly on-machine training sessions for operators on correct clamping practices and anomaly recognition to eliminate abusive clamping.
In short, embedding “clean–lubricate–inspect–calibrate” into daily SOP keeps the fixture delivering micron-level accuracy, reduces downtime, and extends overall machine life.
How To Preventing The Hidden Damage in Swiss-Type Lathes


Six preventive measures


Environment control: keep the workshop at a stable temperature and low humidity; exclude dust and corrosive gases to reduce chemical wear on guideways and screws.


Daily checks: remove chips every shift and inspect the lubrication of the spindle, bearings, ball screws and guideways; act on any abnormality immediately.


Preventive lubrication: replace lubricants on schedule and keep the lubrication system unobstructed to minimize fatigue wear.


Accuracy monitoring: use laser interferometers or ball-bar systems monthly to measure geometric errors and compensate for ball-screw backlash or guideway straightness in time.


Electrical health checks: periodically examine cables, relays and cooling fans to prevent hidden aging caused by overheating.


Data monitoring: onboard sensors record spindle current, vibration and temperature; cloud-based analytics predict early bearing or tool failures.


Why prevention matters
• Ensures machining consistency: eliminating micron-level error sources keeps batch dimensions stable and reduces scrap.
• Extends machine life: preventing micro-cracks from growing can prolong overall life by more than 20 %.
• Reduces unplanned downtime: planned maintenance replaces emergency repairs, increasing overall equipment effectiveness (OEE) by 10 % or more.
• Cuts total cost: lower spare-parts inventory, labor and lost-production costs can save tens of thousands of dollars per machine annually.
• Enhances brand reputation: consistent on-time, defect-free deliveries strengthen customer trust and secure future orders.
Cycle Time Optimization Strategies for Turn-Mill Machining





Optimizing cycle time on turn-mill machining centers is crucial for boosting productivity and reducing costs. It requires a systematic approach addressing machine tools, cutting tools, processes, programming, fixtures, and material flow.
Level Re-verification — The Gatekeeper of Swiss Lathe Accuracy



Ensure Geometric Accuracy
Swiss-type lathes process long, slender workpieces with multi-axis synchronization. A bed inclination of only 0.02 mm/m creates a “slope error” along the Z-axis, tilting the tool relative to the part centerline. This results in taper on outer diameters and asymmetric thread profiles. Periodic re-verification and re-leveling restore overall geometric accuracy to factory standards, guaranteeing consistent dimensions during extended production runs.


Extend Guideway and Ball-Screw Life
When the machine is not level, guideways carry uneven loads and lubricant films become discontinuous, accelerating localized wear and causing stick-slip or vibration. After re-leveling with shims or wedges, load distribution evens out, reducing guideway scoring and ball-screw side-loading. Service life typically improves by more than 20 %.


Suppress Thermal Growth and Vibration
A tilted bed leads to asymmetric coolant and lubricant flow, generating thermal gradients. Subsequent expansion further amplifies geometric errors. Re-verifying level, combined with thermal compensation, produces a more uniform temperature rise and reduces scrap caused by thermal drift. Additionally, a level bed raises natural frequencies, cutting chatter amplitude and improving surface finish by half to one full grade.
 From Low-Cost Alternative to Global Value Leader – China’s Swiss-Type Lathes


Chinese-built Swiss-type lathes have moved beyond the “low-cost substitute” label to become the “value leader” for overseas users. On the cost side, machines of comparable specification are priced well below those of traditional leading brands, and ongoing maintenance costs amount to only a fraction, dramatically lowering the entry barrier for small-to-medium job shops in Europe and North America. Lead time is equally compelling: major domestic OEMs can ship standard models within weeks, and special configurations follow shortly thereafter. When urgent orders arise from the electric-vehicle or medical-device sectors, Chinese production lines consistently deliver rapid responses.

Intelligence is on par with top-tier global standards. Machines routinely feature thermal compensation, AI-based tool-life prediction, and cloud-enabled remote diagnostics. Mean time between failures is long, and fully open data interfaces simplify secondary development for end users. Complementing this is a worldwide service network: Chinese manufacturers maintain parts depots and resident field engineers across the Americas, Europe, and Southeast Asia, enabling on-site support often within a single day, whereas legacy brands usually require factory returns measured in weeks.
Solutions for Bar Feed Jamming in Swiss-Type Lathes



1. Quick Troubleshooting Steps


Check the clamping pressure: Ensure the pressure plate or collet applies even force; too much or too little pressure will jam the bar. Adjust the pneumatic or hydraulic release mechanism accordingly.


Align the material path: Verify that the bar feeder, guide bushing, and spindle centers are collinear; any offset will cause the bar to twist or wedge.


Inspect belts and rollers: Belts must be tensioned correctly—loose belts slip, over-tight belts bind. Replace worn rollers immediately.


Lubricate moving parts: Clean and grease the eccentric shaft, release cam, and pusher fingers; lack of lubrication is a common cause of seizure.
Installation and Maintenance Guide for Swiss-Type Lathe Bed



I. Installation Guidelines for Swiss-Type Lathe Bed
1. Foundation Preparation


Floor Requirements: The Swiss lathe bed must be installed on a solid, level concrete foundation to prevent machining inaccuracies caused by ground settlement or vibration.



Load Capacity: The foundation must support the machine’s weight and dynamic cutting forces to avoid deformation affecting spindle and guide bushing alignment.



Vibration Isolation: If the workshop has vibration sources (e.g., punch presses, forging machines), anti-vibration pads or isolation trenches are recommended to enhance CNC machine stability.
Key Functions of Ball Screws in Swiss-Type Lathes




Summary
Ball screws are the physical enablers of Swiss-type lathes across five critical dimensions:



Micron-level positioning for complex micro-structures;



High-speed rigidity supporting synchronized multi-axis cutting;



Active thermal control ensuring batch consistency;



Ultra-wear-resistant design enabling maintenance-free operation for 10+ years.
Their performance defines the precision ceiling of Swiss-type machining – truly "invisible champions" in precision transmission.
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