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BX32B/42B multi-tool lathe

● Equipped with the Mitsubishi E70 CNC control system from Japan, offering high precision and exceptional stability. ● Optional side-milling power head and end-face power head. ● Replaceable three-jaw chuck, expanding the range of single-piece machining. ● Optionally available oil‑film feed system, enabling long‑duration unattended operation.

Mechanical Body


Distinction

Project

BX32B/42B

Processing capacity

Clamping bar diameter

Φ3–Φ32 mm / Φ3–Φ42 mm (with elastic collet)

Clamping bar diameter

Φ135 (with hydraulic chuck)

Maximum machining length

100mm

Maximum turning diameter

Φ270mm/Φ330mm

Positioning accuracy

0.005mm

Repeatability of positioning accuracy

0.003mm

Spindle end runout

0.002mm

Spindle radial runout

0.002mm

Spindle indexing angle

Stepless

Machine capability

Spindle speed

6000 min⁻¹/5000 min⁻¹

X-axis travel

400mm

Z-axis travel

180mm

Power head rotational speed

4000 min-1

Tool holder length

520mm

Tool dimensions

16mm X 16mm /12mm X 12mm

Electric device

Fast movement speed

24m/min

Number of control axes

3-axis

Spindle

5.5kW/7.5kW

Power head

0.75kW/1kW

X, Z axes

1.5 kW (X, Z)

Cutting oil pump

0.62kW

Lubricating oil pump

0.1kW

Power Supply*Other

Net weight

Approximately 1750 kg

Power capacity

12kVA/14kVA

Compressed air source

0.6–0.7 MPa

Air volume

14NL/min

Cutting oil tank capacity

200L

Length x Width x Height

2140x1540x1800/
2200x1540x1800

 

Product details


  ● Equipped with the Mitsubishi E70 CNC control system from Japan, offering high precision and exceptional stability.
  ● Optional side milling power head and end-face power head.
  ● Replaceable three-jaw chuck, expanding the range of single-piece machining.
  ● An oil‑film feeder is available as an option, enabling long‑duration unattended operation.

NC Device


Project

BX32B/42B

NC device

Mitsubishi E70

Control axis

3-axis

Axis Name

X, Z, C

Minimum setting unit

0.001mm

Minimum unit of movement

0.001mm

Maximum command value

±6 digits

Interpolation function

Line/Arc/Cone/Thread

Quick Move Feature

24 m/min (X/Z)

Cutting feed function

1–10,000 mm/min

OVR feed

0–120%, 10% per step

Delay function

G04 0~99999.99

Quick zoom adjustment

F0, F25, F50, F100%

ABS/INC Instruction

X, Y, Z: absolute; U, W: incremental

Tool offset amount

±6 digits

Number of tool offset groups

64 groups

LCD/MDI

8.4″ color LCD

Expressive language

Chinese (English, Japanese)

Program storage capacity

500KB

Input/Output Interface

RS232C

Accessibility

M5 position

Spindle function

S5 position

Tool functions

Position T13

 

Accessories


Company advantages


Environment

Superior manufacturing environment, customized equipment advantages

Quality

Rigorous quality control, equipped with state-of-the-art testing equipment.

Team

An outstanding management team and a highly responsive combat philosophy.

Cost

Strong scale and synergy create a low-cost advantage.

Research and development

Over a decade of accumulated experience and robust R&D and manufacturing capabilities.

Resources

High-quality customer base and market resources with broad growth prospects.

Green Factory


Green Factory
Green Factory
Green Factory
Green Factory
Green Factory

FAQ


Q

How to Select Cutting Tools Appropriately Based on Different Machining Operations

+

A

Machining centers can perform a variety of operations, but different machining processes require different types of cutting tools. The general principles for tool selection should be: ease of installation and adjustment, good rigidity, and high durability and precision. Provided that machining requirements are met, shorter shanks should be chosen to enhance tool‑holding rigidity. When selecting tools, ensure that their dimensions are compatible with the surface geometry of the workpiece being machined.
When machining the peripheral contours of planar parts, it is recommended to use end mills.
When milling flat surfaces, it is recommended to use carbide-insert milling cutters.
When roughing—i.e., machining the blank’s surface—it is recommended to use a corn‑shaped end mill with a carbide insert.
Selecting the appropriate cutting tool is essential to achieving precise, seamless machining and preventing process deviations caused by unsuitable tools, which can lead to tool collisions.

Q

In summer, the weather is so hot—why can’t we open the CNC cabinet to allow it to dissipate heat?

+

A

In summer, to enable the CNC system to operate continuously under heavy load, some people open the CNC cabinet door to improve heat dissipation. Is this approach advisable?
The air in machining workshops typically contains oil mist, dust, and even metal particles. If these contaminants settle on the circuit boards or electronic components within a CNC system, they can reduce the insulation resistance between components and may even cause damage to the components and circuit boards.
Opening the doors of CNC cabinets to dissipate heat will ultimately accelerate the deterioration of the CNC system. Therefore, during extremely hot summer weather, it is advisable to minimize opening the doors of both the CNC cabinet and the high-voltage electrical cabinet. So, how should a CNC system be maintained?

Aluminum recycling

Hubei Province Intelligent Manufacturing Demonstration Unit

Aluminum recycling

Tech Little Giant

Aluminum recycling

Top Ten Brand Award

Aluminum recycling

China’s Famous Brand Products in the Machinery Industry

Aluminum recycling

Enterprise Technology Center

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