Application of Standard Horizontal Lathe
The standard horizontal lathe, as an important piece of equipment in the manufacturing and processing field, is widely used in the production and manufacturing of various industries due to its sturdy structure, simple operation and high processing accuracy. It is mainly used for processing rotary parts such as shafts, sleeves and discs, and achieves efficient processing of material size, shape and surface quality through turning technology.
Standard horizontal lathes have multiple advantages. Firstly, their sturdy bed structure ensures the stability and machining accuracy of the machine tool, meeting strict processing requirements. Secondly, the user-friendly interface enables operators to quickly master and work efficiently, enhancing production efficiency. Additionally, the standardized design makes it easy to maintain and manage, reducing production costs.
In practical applications, standard horizontal lathes are widely used in various fields such as automotive manufacturing, mechanical manufacturing, aerospace, and electronic equipment. Whether it is mass production or single-piece customization, processing precision parts or large workpieces, it can demonstrate outstanding performance, providing a solid guarantee for enterprises to improve product quality and market competitiveness..
The performance characteristics of a standard horizontal lathe
The standard horizontal lathe, as an important equipment in turning processing, enjoys outstanding performance characteristics and is widely applied in various fields such as mechanical manufacturing, automobiles, aerospace, etc. Its main advantages and performance features are as follows:
The structure is stable and the rigidity is excellent.
The standard horizontal lathe adopts a sturdy bed structure design, ensuring that the machine tool maintains good rigidity and stability during operation. This not only improves the processing accuracy but also guarantees the long-term reliable operation of the equipment.
01
High processing accuracy
Equipped with advanced guide rails and high-precision spindles, the standard horizontal lathe can perform high-precision turning of workpieces, meeting precise size requirements, ensuring stable product quality and enhancing processing efficiency.
02
Convenient operation, rich functions
The machine tool is designed in accordance with ergonomics, with a user-friendly operation interface, making it easy for operators to quickly master and use. It also features multiple turning functions, such as external cylindrical turning, end face turning, and thread cutting, significantly enhancing the flexibility and application scope of the processing.
03
Strong adaptability, wide processing range
The standard horizontal lathe is suitable for processing various metal materials. Whether it is for small-scale or large-scale production, it can consistently produce high-quality products and meet the diverse needs of different industries.
04
Easy maintenance, long lifespan
The design focuses on facilitating daily maintenance and upkeep, thereby extending the service life of the machine tool, reducing operating costs, and enabling enterprises to achieve efficient production and sustainable development.
05
Parameters of standard horizontal lathe
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Main technical specification |
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Capacities |
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Swing over bed |
mm |
800 |
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Swing over carriage |
mm |
480 |
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Maximum length of workpiece |
mm |
1500 |
2000 |
3000 |
4000 |
5000 |
6000 |
|
Maximum turning length |
mm |
1350 |
1850 |
2850 |
3850 |
4850 |
5850 |
|
Width of guideway |
mm |
600 |
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Spindle |
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Spindle nose code |
mm |
C11 |
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|
Diameter of spindle thru hole |
mm |
100 |
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Taper hole of spindle |
1:20 |
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Taper hole of tailstock quill |
morse6 |
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Number of forward turning speeds |
18 |
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Number of reverse turning speeds |
6 |
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Spindle speed -Forward |
r/min |
5.5~750 |
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Spindle speed-Reverse |
r/min |
10~775 |
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Feed motion |
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longitudinal and cross |
64;0.1~24.32 |
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Cross-to-longitudinal feed rate |
½ |
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Screw pitch of leadscrew |
mm |
12 |
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Number and range of metric thread |
50 types; 1~240(mm) | ||||||
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Number and range of inch thread |
26 types; 14~1( teeth/inch) | ||||||
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Number and range of module thread |
53 types; 0.5~120(mm) | ||||||
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Number and range of diametrical pitch thread |
24 types; 28~1(teeth/inch) | ||||||
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Rapid traverse speed of carriage |
mm/min |
4000 |
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Tool post |
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Distance between spindle center-line and tool resting plane |
mm |
33 |
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Size of tool shank |
mm |
32 |
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Tool post swing range |
±90° |
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Max. travel of top slide |
mm |
200 |
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Max. travel of cross slide |
mm |
500 |
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Tailstock |
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Diameter of Tailstock quill |
mm |
100 |
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|
Travel of tailstock quill |
mm |
250 |
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Taper hole of tailstock quill |
morse6 |
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Acceptance conditions |
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GB/T4020-1997 Accuracy , parallel lathe |
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JB/T2322-1993 Terms, parallel lathe |
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Other |
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Main motor power |
kw |
11 |
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Machine mass |
kg |
4900 |
5100 |
5500 |
6100 |
6900 |
7500 |
|
Machine overall dimension |
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|
Length |
mm |
3670 |
3985 |
5165 |
6220 |
7400 |
8260 |
|
Hight |
mm |
1730 |
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|
Width |
mm |
1450 |
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Certification
Anyang XS small turning lathe design and produce according to the ISO 9001, ISO14001, we also owned the CE, UL certifications.

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