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STRONG R&D DESIGN TEAM AND SERIOUS SERVICE SPIRIT PROVIDE COMPLETE SOLUTIONS FOR USERS IN METALLURGY AND PHYSICAL AND CHEMICAL TESTING INDUSTRY

WAW-D microcomputer controlled electro-hydraulic servo hydraulic universal testing machine

Description
Technical Parameter
  WAW-D type microcomputer controlled electro-hydraulic servo universal testing machine host adopts the lower structure of the oil cylinder. The tensile space is located above the host. The compression and bending test space is located between the lower beam and the table under the host. The test is adjusted by the movement of the lower beam. In space, the lower beam is lifted by a motor through a reducer, a chain transmission mechanism, and a screw pair.
  The measurement and control system adopts a microcomputer-controlled electro-hydraulic servo measurement and control system independently developed by the company. The sensor force measurement and the microcomputer screen display the test force, deformation and various test curves. It can achieve constant velocity test force, constant velocity deformation, constant velocity displacement, load retention, Various control methods such as displacement hold, can automatically calculate various values according to GB / T228-200 ×, and can print various test reports (requires special customization), users can also edit the format of the test report by themselves.
   It is mainly used for tensile, compression, bending, shearing and other tests of metal materials. Corresponding accessories and devices are added. It can also test wood, cement, concrete, rubber and its products.
 
Corresponding parameter set not found, please add it in property template of background

 

Type

WAW-100D

WAW-300D

WAW-600D

WAW-1000D

WAW-2000D

Test force kN

100

300

600

1000

2000

Load accuracy level

Level 1

Level 1 (level 0.5)) 

Level 1 (level 0.5)

Level 1 (level 0.5)

Level 1 (level 0.5)

Effective measurement range kN

2-100 

6-300(3-300)

12-600(6-600)

20-1000(10-1000)

40-2000(20-2000)

Deformation measurement range

1-100%FS 

1-100%FS 

1-100%FS 

1-100%FS 

1-100%FS 

Constant velocity stress control range (N / mm2.s-1)

2-60

2-60

2-60

2-60

2-60

Constant speed displacement control range (mm / min)

0.5~50

0.5~50

0.5~50

0.5~50

0.5~50

Relative error of displacement speed

≤±5%

≤±5%

≤±5%

≤±5%

≤±5%

Clamping method

Hydraulic independent clamping

Hydraulic independent clamping

Hydraulic independent clamping

Hydraulic independent clamping

Hydraulic independent clamping

Maximum tensile test space mm

560

620

690

620

700

Maximum compression test space mm

530

550

620

580

600

Flat specimen clamping thickness mm

0-15

0-15 

0-30 

0-40 

0-50 

Round specimen clamping thickness mm

Ф6-Ф22 

Ф10-Ф32 

Ф13-Ф40 

Ф14-Ф45

Ф15-Ф70 

Working piston stroke mm

150

150

150

150

150

Upper and lower platen size mm

Ф120

120×120

170×170

205×205

Ф300

Bend test roll distance mm

30-150

100-320

100-500

100-500

100-600

Space between two pillars in tension and compression space mm

460

495

570

600

880

Platen ascending speed mm / min

≥120

≥100

≥100 

≥70 

50

Lifting speed of moving beam mm / min

≥220

≥220 

≥240 

≥300

130

Total motor power KW

≈2

≈2.1 

≈2.1

≈2.1

≈5.5

Dimensions of main body length × width × height mm

700×450×1780 

800×500×1950

950×630×2265

980×650×2220 

1500×900×3500 

Oil source dimensions (length × width × height) mm

580×540×1090 

580×540×1090 

580×540×1090 

580×540×1090 

580×540×1090 

Overall weight kg

≈1500 

≈2000 

≈3000 

≈3300 

≈4000 

Noise in dB

≤75 

≤75 

≤75 

≤75 

≤75 

 

暂未实现,敬请期待
暂未实现,敬请期待