High-efficiency CNC horizontal lathe
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  • High-efficiency CNC horizontal lathe

High-efficiency CNC horizontal lathe


Product selling points:

Dedicated service line: 021-61195255

Detailed Introduction

HTC40H/(500/1000)|T5.2-500Q/1000Q

NameUnitHTC 40H/500 | T5.2-500CHTC 40H/1000 | T5.2-1000Q
Machine tool capabilityMaximum cutting diametermmΦ380Φ380
Maximum workpiece lengthmm5001000
SpindleChuck diameterinch88
Maximum Spindle Motor Powerkilowatt1515
Maximum spindle speedr/min4000/45004000/4500
Maximum spindle torqueN.m245245
ItineraryX/Z axismm200/560200/1050
Rapid traverse speedX/Z axism/min30/3030/30
DotaNumber of刀positionsto put88

Axial components of automobiles, such as drive shafts, half shafts, and crankshafts, are critical load-bearing and transmission elements in the vehicle’s powertrain. Their machining places stringent demands on machine tools for high precision, high efficiency, and high stability.

 

Product Advantages:

The typical machining process for automotive axles generally includes turning, milling, grinding, and heat treatment. CNC lathes are used to perform rough and finish turning of the outer diameter, end faces, and grooves of shaft components; CNC milling machines or machining centers are employed to machine keyways, splines, or hole patterns on flanges; and high-precision CNC grinders are utilized for the final finishing of critical features such as journal surfaces and bearing seats, ensuring dimensional accuracy and surface finish.

 

Product Performance:

Precision Control: The shaft’s geometric tolerance requirements—such as radial runout, coaxiality, and cylindricity—are extremely stringent, necessitating machine tools with high rigidity and outstanding dynamic accuracy. The CNC system’s precise compensation functions are critical for ensuring consistency in mass production. 
Efficient Production: To meet the high-volume production demands of the automotive industry, machine tools are often integrated into automated production lines and equipped with automatic loading/unloading systems and on-line inspection devices, enabling 24-hour continuous and stable operation. 
Trend in composite machining: To enhance efficiency, the application of multi-functional machine tools is becoming increasingly widespread. For example, composite machining centers that integrate turning, milling, and even gear machining can complete multiple operations on shaft-type parts in a single setup, thereby reducing cumulative positioning errors and shortening the production cycle.

  

Advantageous industries:

Precision Control: The shaft’s geometric tolerance requirements—such as radial runout, coaxiality, and cylindricity—are extremely stringent, necessitating machine tools with high rigidity and outstanding dynamic accuracy. The CNC system’s precise compensation functions are critical for ensuring consistency in mass production. 
Efficient Production: To meet the high-volume production demands of the automotive industry, machine tools are often integrated into automated production lines and equipped with automatic loading/unloading systems and on-line inspection devices, enabling 24-hour continuous and stable operation. 
Trend in composite machining: To enhance efficiency, the application of multi-functional machine tools is becoming increasingly widespread. For example, composite machining centers that integrate turning, milling, and even gear machining can complete multiple operations on shaft-type parts in a single setup, thereby reducing cumulative positioning errors and shortening the production cycle.

 

Product Specifications:

NameUnitHTC 40H/500 | T5.2-500CHTC 40H/1000 | T5.2-1000Q
Machine tool capabilityMaximum cutting diametermmΦ380Φ380
Maximum workpiece lengthmm5001000
SpindleChuck diameterinch88
Maximum Spindle Motor Powerkilowatt1515
Maximum spindle speedr/min4000/45004000/4500
Maximum spindle torqueN.m245245
ItineraryX/Z axismm200/560200/1050
Rapid traverse speedX/Z axism/min30/3030/30
DotaNumber of刀positionsto put88

Precision Control: The shaft’s geometric tolerance requirements—such as radial runout, coaxiality, and cylindricity—are extremely stringent, necessitating machine tools with high rigidity and outstanding dynamic accuracy. The CNC system’s precise compensation functions are critical for ensuring consistency in mass production. 
Efficient Production: To meet the high-volume production demands of the automotive industry, machine tools are often integrated into automated production lines and equipped with automatic loading/unloading systems and on-line inspection devices, enabling 24-hour continuous and stable operation. 
Trend in composite machining: To enhance efficiency, the application of multi-functional machine tools is becoming increasingly widespread. For example, composite machining centers that integrate turning, milling, and even gear machining can complete multiple operations on shaft-type parts in a single setup, thereby reducing cumulative positioning errors and shortening the production cycle.

 

 

Keywords:

Turning centers, vertical machining centers, horizontal machining centers

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