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490 Results For

"horizontal machining center"

Quality SMTCL Cost-Effective HTC30Q Horizontal CNC Lathe Bar Feeder High Efficiency Turning Lathe for Small Parts factory

SMTCL Cost-Effective HTC30Q Horizontal CNC Lathe Bar Feeder High Efficiency Turning Lathe for Small Parts

Cost-Effective SMTCL HTC30Q Horizontal CNC Lathe High Efficiency Turning Lathe for Small Parts Product advantages: Optimize product layout with extremely small floor space. Main shaft with large bearings, meeting high rigidity and high torque requirements. It can be equipped with electric spindle for stable processing. Large box-type tool rest with extremely strong cutting rigidity. The entire machine is designed for thermal balance, ensuring high processing accuracy. Use

Quality SMTCL New Upgraded HTC40Q Horizontal CNC Lathe High Precision & Efficiency CNC Lathe with Bar Feeder factory

SMTCL New Upgraded HTC40Q Horizontal CNC Lathe High Precision & Efficiency CNC Lathe with Bar Feeder

SMTCL New Upgraded HTC40Q Horizontal CNC Lathe High Precision & Efficiency CNC Lath Product advantages: High efficiency: Configurable servo tailstock, operates at high speed, without impact clamping, eliminates defective raw materials, and enhances processing efficiency. High precision: The entire machine is designed with thermal balance, with a product batch capacity of CMK 2.0 (IT6 grade). Multi-functionality and easy expansion: Configurable power tool holder, center rest

Quality SMTCL HTC40Q Bar Feeder CNC Horizontal Lathe | Durable Machining Solution for Automotive Axle & Shaft Parts factory

SMTCL HTC40Q Bar Feeder CNC Horizontal Lathe | Durable Machining Solution for Automotive Axle & Shaft Parts

Shenyang Machine Tool HTC40Q : Efficient and Precision Machining Solution for Automotive Shaft Components I. Core Product Information Shenyang Machine Tool HTC40Q is a new generation upgraded CNC horizontal lathe, optimized and upgraded under the leadership of a team of national craftsmen. Relying on the intelligent manufacturing capacity of Shenyang Machine Tool's national-level intelligent factory, it has achieved all-round improvement in rigidity, precision and stability.

Quality A625 New Energy Motor Shaft Automated Production Line Processing and Inspection Unit factory

A625 New Energy Motor Shaft Automated Production Line Processing and Inspection Unit

Product Description: Efficient solution for automatic machining and inspection of new energy motor shafts The new energy motor shaft automated processing and inspection unit is composed of an HTC40P high-precision horizontal CNC lathe, a VMC1100P high-performance vertical machining center, a domestic 6-axis joint robot, and a double-station exchange pallet type silo. It can perform automatic processing and inspection without human intervention, enabling one person to manage

Quality SMTCL HTC40H FANUC CNC Lathe 12-station Servo Turret Slant Bed CNC Lathe with Bar Feeder factory

SMTCL HTC40H FANUC CNC Lathe 12-station Servo Turret Slant Bed CNC Lathe with Bar Feeder

Product Description: SMTCL HTC40H CNC Lathe FANUC Controller 12-station Servo Turret Slant Bed CNC Lathe HTC40H(Q) CNC horizontal lathe combines intelligent control and advanced manufacturing technologies. It features high precision, high efficiency and high rigidity, enabling the efficient processing of various shaft and disc parts. It can turn multiple types of threads and curved surfaces. Moreover, it can be equipped with a production management system to achieve

Quality SMTCL HTC63H Fanuc Double Guide Rails High Precision Slant Bed CNC Lathe factory

SMTCL HTC63H Fanuc Double Guide Rails High Precision Slant Bed CNC Lathe

Product Description SMTCL HTC63H Fanuc Double Guide Rails High Precision Slant Bed CNC Lathe HTC63Q/H/S series CNC horizontal lathe saddle adopts internal brace double guide rail structure, with large span and strong rigidity. The whole machine is more rigid when the inner hole is machined. The spindle adopts a two-gear headstock, which has a high rotary speed and a large cutting torque. It can effectively meet the parts machining demand of engineering machinery, automotive,

Quality SMTCL General High Precision FANUC Control Slant Bed CNC Lathe HTC63Q Engineering Machinery CNC Lathe factory

SMTCL General High Precision FANUC Control Slant Bed CNC Lathe HTC63Q Engineering Machinery CNC Lathe

Product Description SMTCL General High Precision FANUC Control Slant Bed CNC Lathe HTC63Q Engineering Machinery CNC Lathe HTC63Q/H/S series CNC horizontal lathe saddle adopts internal brace double guide rail structure, with large span and strong rigidity. The whole machine is more rigid when the inner hole is machined. The spindle adopts a two-gear headstock, which has a high rotary speed and a large cutting torque. It can effectively meet the parts machining demand of

Quality CNC Lathe Small Size Parts Processing T5.1-500Q Precision Metal SMTCL CNC Slant Bed Lathe factory

CNC Lathe Small Size Parts Processing T5.1-500Q Precision Metal SMTCL CNC Slant Bed Lathe

Product Description: SMTCL CNC Lathe Small Size Parts Processing T5.1-500Q Precision Metal CNC Slant Bed Lathe T5.1 - 500Q is a general-purpose CNC horizontal lathe with an inclined bed design. Its bed has high rigidity, which can ensure the stability of machining. Equipped with a high-precision spindle, it can achieve precise machining with high machining precision. This machine tool is also equipped with an advanced CNC system that is easy to operate and rich in functions.

Quality Hard Rail CNC Lathe HTC40S High Rigidity Large Span A2-8 Spindle Speed 4000r/min SMTCL Slant Bed CNC Lathe factory

Hard Rail CNC Lathe HTC40S High Rigidity Large Span A2-8 Spindle Speed 4000r/min SMTCL Slant Bed CNC Lathe

Product Description: SMTCL Hard Rail CNC Lathe HTC40S High Rigidity Large Span A2-8 Spindle Speed 4000r/min Slant Bed CNC Lathe HTC40S CNC Lathe has unique advantages in its hardened guideway design. The hardened guideway has undergone special processing techniques and possesses super-strong rigidity, which can effectively bear heavy cutting loads. During powerful machining processes, it has excellent stability, ensuring that the machining accuracy remains unaffected. The

Quality SMTCL HTC40S High Rigidity Hard Rail Bar Feeder CNC Lathe For Automotive Bearing & Engineering Parts factory

SMTCL HTC40S High Rigidity Hard Rail Bar Feeder CNC Lathe For Automotive Bearing & Engineering Parts

Product Description: SMTCL HTC40S High Rigidity Hard Rail CNC Lathe For Automotive Bearing & Engineering Parts HTC40S CNC Lathe has unique advantages in its hardened guideway design. The hardened guideway has undergone special processing techniques and possesses super-strong rigidity, which can effectively bear heavy cutting loads.During powerful machining processes, it has excellent stability, ensuring that the machining accuracy remains unaffected. The high-precision

Quality SMTCL Max.cutting Diameter 500mm Vertical CNC Lathe Milling Combo T6 Vertical CNC Lathe For Brake Disc Processing factory

SMTCL Max.cutting Diameter 500mm Vertical CNC Lathe Milling Combo T6 Vertical CNC Lathe For Brake Disc Processing

SMTCL Max.cutting Diameter 500mm Vertical CNC Lathe Milling Combo T6 Vertical CNC Lathe For Brake Disc Processing T6-Q series CNC vertical lathe is cost-effective, easy to operate, with high rigidity and stability, supporting domestic high-quality functional parts, small floor area, large processing range, widely used in automotive, general industry, construction machinery and other industries processing. T6-H series CNC vertical lathe is our new upgraded technology structure

Quality SMTCL Multi-purpose Fanuc System CNC Lathe T5.2-500Q Metal Processing Slant Bed CNC Lathe factory

SMTCL Multi-purpose Fanuc System CNC Lathe T5.2-500Q Metal Processing Slant Bed CNC Lathe

Product Description: SMTCL Multi-purpose CNC Lathe T5.2-500Q Fanuc System Metal Processing 3 Axis Slant Bed CNC Llathe T5Q series horizontal CNC lathe, combining intelligent control technology and advanced manufacturing technology, has high precision, high efficiency and high cutting rigidity. The finite element analysis software is used to optimize the design, analyze the distribution of stress points, reduce the deformation of parts, and achieve the optimal structure of the