Surface Grinding Machine with Horizontal Spindle

Surface Grinding Machine with Horizontal Spindle

A horizontal spindle surface grinder is a grinding machine that removes material from the surface of a workpiece by means of a horizontally arranged grinding wheel spindle.

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Product Introduction
 

Introduction

 

A horizontal spindle surface grinder is a grinding machine that removes material from the surface of a workpiece by means of a horizontally arranged grinding wheel spindle.

 

 

Specification

 

Model

MX-7160

MX-7160x14

MX-7160x16

MX-7160x20

Max. Workpiece to bi Groud

1250x600x600mm

1400x600x600mm

1600x600x600mm

2000x600x600mm

Longitudinal Motion Stroke (Hydraulic)

1350mm

1500mm

1700mm

2100mm

Distance From Table Surface To Spindle Center

780mm

780mm

780mm

780mm

Vertical Feed Wheel Movement Per Lap

1mm

1mm

1mm

1mm

Vertical Feed Hand Wheel Per Movement

0.01mm

0.01mm

0.01mm

0.01mm

The Max. Stroke of Transverse Motion

650mm

650mm

650mm

650mm

Horizontal Intermittent Movement Speed (Stepless)

0.5-3m/min

0.5-3m/min

0.5-3m/min

0.5-3m/min

Longitudinal Velocity (Stdpless)

3-30m/min

3-30m/min

3-30m/min

3-30m/min

Spindle Speeds

1440r/min

1440r/min

1440r/min

1440r/min

Wheel Size (Dia*Width*Bore)

Φ400x50xΦ203mm

Φ400x50xΦ203mm

Φ400x50xΦ203mm

Φ400x50xΦ203mm

Grinding Head Motor Power

7.5kw

7.5kw

7.5kw

7.5kw

Total Motor Power

14.5kw

14.5kw

14.5kw

16kw

Oil Pump Motor Power

5.5kw

5.5kw

5.5kw

5.5kw

Max. Loading Capacity of Table

1010kg

1290kg

1780kg

2100kg

Net Weight

5500kg

6500kg

7000kg

8000kg

The Machined Surface of The Base of Parallelism

1000:0.015mm

1000:0.015mm

1000:0.015mm

1000:0.015mm

Surface Roughness

Ra0.63μm

Ra0.63μm

Ra0.63μm

Ra0.63μm

Machine Size

3000x1950x2400mm

4600x1950x2400mm

4600x1950x2400mm

5250x1950x2400mm

 

 

Features

 

No-segmentation machining conditions
A 2100 mm stroke covers a 2000 mm workpiece length, determining whether multiple machining operations and clamping are required.

 

No space modification conditions
A 780 mm spindle height corresponds to a 600 mm workpiece height, determining whether shimming or fixture structure modification is needed.

 

Reduced path splicing requirements
A 50 mm grinding wheel width affects whether multiple lateral toolpaths are required for single-sided machining.

 

Load capacity matching
A 1010–2100 kg table load capacity determines whether additional tooling is needed to share the workpiece weight and reversing load.

 

 

Applications

 

Heavy Structural Components Machining Industry: Used for machining planar reference surfaces of large frame and base parts, providing positioning reference surfaces for subsequent assembly.

 

Mold Manufacturing Industry: Used for machining large mold templates and base plates, establishing assembly reference surfaces and parting lines.

 

Energy Equipment Manufacturing Industry: Used for machining structural components of power generation and transmission equipment, ensuring geometric consistency of contact surfaces.

 

Rail Transit Equipment Industry: Used for machining vehicle body structural components and connecting plates, achieving mating relationships at assembly interfaces.

 

 

FAQ

 

Q: How to determine if equipment meets necessary specifications?

A: When the workpiece length exceeds 1500 mm or the cross-sectional height exceeds 500 mm, priority should be given to assessing whether a structure matching the stroke and height is required; otherwise, insufficient processing coverage or interference limitations may occur.

Q: Why do similar equipment require different grinding wheel width configurations?

A: The grinding wheel width determines the unit contact bandwidth, corresponding to differences in the load distribution pattern of the material removal path, thus affecting whether multiple lateral segmentations are necessary.

Q: Does a heavier workpiece necessarily require a higher load-bearing capacity model?

A: It is necessary to consider both directional inertia and the contact pressure transmission path. When the workpiece mass approaches the table's load-bearing capacity limit, structural deformation and displacement constraints will change.

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