Best quality 160t Press Machine - ST Series C Frame ... - Daya
Best Quality 160t Press Machine - ST Series C Frame ... - Daya
Robot, Best quality 160t Press Machine - ST Series C Frame Single Crank Mechanical Press – Daya Detail:
Our goal is to adhere to "market-centric, customer-centric, and science-centric" attitudes. Following the theory of "quality as the foundation, faith in the initial, and administration as advanced," we aim to provide high-quality products. Our vision is to continuously improve to keep pace with changing times. Best quality 160t Press Machine - ST Series C Frame Single Crank Mechanical Press – Daya Detail:
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Main Performance Characteristics
- Body rigidity (deformation): 1/6000.
- Uses OMPI pneumatic dry clutch and brake.
- The slider adopts two-corner six-sided guide path with high-frequency hardening and rail grinding process, which ensures low wear, high precision, long precision retention, and extended mold life.
- The crankshaft is made of high-strength alloy material 42CrMo, which is 1.3 times stronger than 45 steel, providing a longer service life.
- The copper sleeve is made of tin-phosphorus bronze ZQSn10-1, which is 1.5 times stronger than ordinary BC6 brass.
- Uses a highly sensitive hydraulic overload protection device to effectively extend the service life of the punch and die.
- Standard SMC pressure regulating valve, lubricator, air filter.
- Optional mold cushion (air cushion).
Technical Parameters
Name | Specifications | ST-25 | ST-35 | ST-45 | ST-60 | ST-80 | ST-110 | ST-160 | ST-200 | ST-260 | ST-315 | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Mode | V-type | H-type | V-type | H-type | V-type | H-type | V-type | H-type | V-type | H-type | V-type | H-type | V-type | H-type | V-type | H-type | V-type | H-type | |
Press capacity | Ton | 25 | 35 | 45 | 60 | 80 | 110 | 160 | 200 | 260 | 315 | ||||||||
Impact force location | mm | 3.2 | 1.6 | 3.2 | 1.6 | 3.2 | 1.6 | 4.0 | 2.0 | 4.0 | 2.0 | 6.0 | 3.0 | 6.0 | 3.0 | 6.0 | 3.0 | 7.0 | 3.5 |
Slider strokes per minute | S.P.M | 60~140 | 130~200 | 40~120 | 110~180 | 40~100 | 110~150 | 35~90 | 80~120 | 35~80 | 80~120 | 30~60 | 60~90 | 20~50 | 40~70 | 20~50 | 50~70 | 20~40 | 40~50 |
Slider stroke length | mm | 60 | 30 | 70 | 40 | 80 | 50 | 120 | 60 | 150 | 70 | 180 | 80 | 200 | 90 | 200 | 100 | 250 | 150 |
Max mold height | mm | 200 | 215 | 220 | 235 | 250 | 265 | 310 | 340 | 340 | 380 | 360 | 410 | 460 | 510 | 460 | 510 | 500 | 550 |
Slider adjustment amount | mm | 50 | 55 | 60 | 75 | 80 | 80 | 100 | 110 | 120 | 120 | ||||||||
Up platform size | mm | 470*230*50 | 520*250*50 | 560*340*60 | 700*400*70 | 770*420*70 | 910*470*80 | 990*550*90 | 1130*630*90 | 1250*700*100 | 1300*750*100 | ||||||||
Down platform size | mm | 680*300*70 | 800*400*70 | 850*440*80 | 900*500*80 | 1000*550*90 | 1150*600*110 | 1250*800*140 | 1400*820*160 | 1500*840*180 | 1600*840*180 | ||||||||
Slider center to machine distance | mm | 155 | 205 | 225 | 255 | 280 | 305 | 405 | 415 | 430 | 430 | ||||||||
Platform to floor distance | mm | 795 | 790 | 790 | 785 | 830 | 830 | 900 | 995 | 1030 | 1030 | ||||||||
Shank hole | mm | ø38.1 | ø38.1 | ø38.1 | ø50 | ø50 | ø50 | ø65 | ø65 | ø65 | ø65 | ||||||||
Main motor power | KW*P | 3.7*4 | 3.7*4 | 5.5*4 | 5.5*4 | 7.5*4 | 11*4 | 15*4 | 18.5*4 | 22*4 | 30*4 | ||||||||
Slider adjust device | Manual | Electric | |||||||||||||||||
Air pressure | kg*cm² | 6 | |||||||||||||||||
Press accuracy grade | Grade | JIS 1 | |||||||||||||||||
Press dimension (L*W*H) | mm | 1280*850*2200 | 1380*900*2400 | 1575*950*2500 | 1595*1000*2800 | 1800*1180*2980 | 1900*1300*3200 | 2315*1400*3670 | 2615*1690*4075 | 2780*1850*4470 | 2780*1870*4470 | ||||||||
Press weight | tons | 2.1 | 3.0 | 3.8 | 5.6 | 6.5 | 9.6 | 16 | 23 | 32 | 34 | ||||||||
Die cushion capacity | ton | / | 2.3 | 3.6 | 6.3 | 10 | 14 | ||||||||||||
Die cushion stroke | mm | / | 50 | 70 | 80 | 100 | |||||||||||||
Die cushion active area | mm² | / | 300*230 | 350*300 | 450*310 | 500*350 | 650*420 | 710*480 | 810*480 |
NOTE: Our company is ready to conduct research and improvement work at any time. Therefore, the size design characteristics specified in this catalogue can be changed without further notice. (If the slider is selected for electric mold adjustment, the parameter will be reduced by 10 mm)
Standard Configuration
- Hydraulic overload protection device
- Manual slider adjustment device (below ST60)
- Electric slider adjusting device (above ST80)
- Variable frequency variable speed motor (adjustable speed)
- Mechanical mold height indicator (below ST60)
- Digital mold height indicator (above ST80)
- Slider and mold balance device
- Rotating cam controller
- Crankshaft angle indicator
- Electromagnetic counter
- Air source connector
- Two-degree fall protection device
- Air blowing device
- Mechanical shockproof feet
- Reserved interface for wrong delivery detection device
- Maintenance tools and toolbox
- Main motor reversing device
- Photoelectric safety protection device
- Power outlet
- Electric grease lubrication device
- Touch screen (pre-break, pre-load)
Optional Configuration
- Pneumatic mold pad device
- Foot switch
- Quick die change device (die lifter, die clamper or mold shifter)
- Upper part punching device of slider
- Feeder (air, mechanical, and NC)
- Leveling machine
- Manipulator
- Mold die lighting device
- Rack
- Thin oil lubrication device
Daya Press vs. Other Presses
Daya press
With platform and safety fence: convenient for clutch maintenance and change of cooling oil, main motor belt is easy to adjust, ensuring subsequent maintenance is safer and more convenient.
Other press
Without maintenance platform: clutch maintenance, replacement of cooling oil, and loose adjustment of main motor belt require forklift assistance, making subsequent repairs and maintenance less convenient with potential safety hazards.
Daya press
Guide Rail: adopts a fully enclosed guide rail structure, providing high stamping accuracy, strong anti-eccentric load capacity, minimal rail wear, and long precision retention.
Other press
Guide Rail: semi-enclosed structure, leaving part of the guide rail exposed during stamping, leading to tilting and poor anti-bias load capacity. This results in higher rail wear, shorter precision retention, and higher maintenance costs.
Daya press
Force Application Distance: more than 60%; larger distance provides greater eccentric bearing capacity and higher design cost.
Other press
Force Application Distance: less than 50%; smaller distance results in lower eccentric bearing capacity, and tilting of the guide rail, making it easy to wear and costly to maintain precision.
Daya press
Thin Oil Circulation System: energy-saving, recyclable, good thermal performance, and can increase production speed by 5-10 beats per minute.
Other press
Electric Grease Pump: grease cannot be reused, lacking the advantages of a forced thin oil circulation system.
Daya press
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