• Model TC5010-4 tower crane ,With PLC Control System 1
  • Model TC5010-4 tower crane ,With PLC Control System 2
Model TC5010-4 tower crane ,With PLC Control

Model TC5010-4 tower crane ,With PLC Control

Ref Price:
$20,000.00 - 150,000.00 / unit get latest price
Loading Port:
Shanghai
Payment Terms:
TT or LC
Min Order Qty:
1 unit
Supply Capability:
10 unit/month

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1. Performance parameters of TC5010-4: performance parameters and technical indexes reach both domestic and international advanced level.
• Max. jib length: 50m; Jib length under different assembling modes can decrease progressively by 5 meters and the Min. jib length is 30 meters.
• Max. lifting capacity 4t;
• Max. hoisting capacity at jib tip: 2.43t;
• Max. lifting moment 630 t.m;
• Max. free-standing height: 29.3m; Max. working height of anchored crane: 135.7m;
• Hoisting mechanism: QS465; rope capacity: 280m;
• Slewing mechanism: HR37C.100; power: 3.7 kW
• Trolleying mechanism: BE24 ; power: 2.4/1.5 kW
• Types of tower crane: stationary crane with embedded outriggers, stationary crane with embedded bolts, stationary crane with under-frame and mobile tower crane.

2. Electrical control system
With PLC control, the electrical control system enjoys better reliability and safety. Produced by professional manufacturers with advanced foreign technology, the electrical elements feature service lives that are 3 or 4 times longer than that of domestic products, less faults, easy maintenance and repair as well as reliable operation.

3. Technical features
• The crane boasts of multiple operation modes and wide application. The crane can work in different forms: stationary crane with embedded outriggers, stationary crane with under-frame, stationary crane with embedded bolts and crane anchored to wall, thus being applicable to various construction projects.
• The complete machine adopts internationally well-received beautiful shape;
• The crane features high working speed and excellent speed regulation performance. Stepless speed regulation by frequency control, the world's most advanced solution, is adopted for the trolleying mechanism and slewing mechanism, thus ensuring more stable and reliable operation ;
• The cab is independently installed externally with good vision and large inner space, thus offering a good working environment for operators;
• A variety of safety devices are equipped, which are all mechanical or mechatronic products that are applicable to severe working conditions, so as to ensure the tower crane's reliable operation.

4 Parameters

Rated lifting moment (kN.m)

630

Lifting height (m)

Rope fall

Free-standing stationary crane

Anchored crane

α=2

29.3

135.7

α=4

29.3

67.85

Working  radius (m)

Max. working radius

50

Min. working radius

2.5

Max. lifting capacity (t)

4

Hoisting mechanism

Rope fall

α=2

α=4

Speed (m/min)

65

32.5

9.7

32.5

16.25

4.85

Lifting weight (t)

1

2

2

2

4

4

Power
(kW)

15/15/4

Traction mechanism

Speed (m/min)

40/20

Power (kW)

2.4/1.5

Slewing mechanism

Speed (r/min)

  0 ~0.6

Power (kW)

3.7

 5 Images

Model TC5010-4 tower crane ,With PLC Control

Model TC5010-4 tower crane ,With PLC Control

6 FAQ :Installation of trolleying mechanism

Trolleying mechanism is the power device of trolley. The mechanism adopts double speeds motor with features as smooth work. The trolleying speed is 40/20m/min.When installing, put the trolleying motor on right side (from root of jib to head) to prevent the motor interfering with maintenance cage of trolley.

 

Q: Please write in days, hours, weeks, etc.I need math help!!!!
If it takes 7*60 + 11 = 431 seconds to make 1 crane, then making one million would take 431,000,000 seconds. There are 3600s*24hr*365.25d = 31,557,600 seconds in an average year. Dividing 431 million by this gives a little over 13 years, with a remainder of 20,751,200 seconds. There are 3600*24*30 = 2,592,000 seconds in an average month. So that gives 8 months with a remainder of 15,200 seconds. There are 3600 seconds in an hour, so that gives 4 hours plus 800 seconds. The 800 seconds = 60*13 + 20 = 13 minutes, 20 seconds. This works out to 13 years, 8 months, 4 hours, 13 minutes, and 20 seconds. Though answers can vary depending on how many days you define to be in a year, and how many days in a month.
Q: who can tell me tower crane details?
1. Accurate positioning Kinematic limit, High-repetition-accuracy torque,weight limiter ; 2. Unique, and reliable car off-axis device and Trolley Anti broken rope Safety Device; 3.Independent of side driver's cab,its Vision is good,with a large space in the tower crane driver's cab,Using linkage console,Configuration ottoman, convenience, and comfort; 4. Machine appearance as an international pop style, beautiful and generous 5. Long boom, operating a large space, a rigid double-bar suspension, light weight, cross-section is small, air resistance is small, the leading domestic;
Q: Is there a crane big enough to lift Hillary off the yoga matt when she has finished her yoga?
You wouldn't need a crane, all you'd need is a hershey's bar and she'd wattle off the yoga mat. Or, you can present her with facts about the destruction of her e-mail server, the fact that she allowed innocent people in Iraq and Syria to die, or the fact that she hit the reset button with Russia, and she'll RUN AWAY from the yoga mat.
Q: I'm talking about the movie, for those of you who have seen it. If you have seen it, you can probably recall one of the final scenes where head Gamemaker Seneca Crane is being walked to his death by two Peacekeepers. I really want a picture of this! Why? Because the Peacekeeper on the right is my dad! I think it would be awesome if I could get him a picture of this since he is so proud of it! So if anyone knows where I can find a clip of this scene, or knows where I could get a picture, could you please tell me? I'd really appreciate it! Thank you!
I don't think it would be out there yet, as the movie just came out. I would try searching Seneca Crane and then your dad's name. You also might be able to find it on YouTube. It's really cool that your dad was in the movie!! Good luck finding the picture!
Q: How to build a strong paper crane?
Fact: paper is relatively strong when you pull on it, but when you push on it, it easily crumples. Build your crane out of several bars. Bars that are being pushed upon by the weight need to resist the crumpling. A good way to do this is to roll a sheet of paper into a tube form to make the bars. Bars that are only being pulled on don't need to be more than a sheet of paper. A frame cranes are simple to make: www.lni.wa /wisha/rules/generalsafety/images/24_d2_a-frame.gif
Q: The judge that sentenced people Death or Exile looked alot like Dr. Crane in the 1995 Batman film, which is why I ask.
Yes Gordon even calls him crane i remember
Q: My husband and I will be going to the Crane Resort in Barbados for 3 nights in January. Just wondering, will we need to rent a car or is everything we need to see right there on the beach. Past Crane visitors or even Barbados civilians, please respond. Thanks :)
The okorder / If you only are focusing on relaxing at your resort/beach then renting a vehicle is not necessary.
Q: How do they get the cranes and counterweights down off the top of buildings when finished?
Dereks, which are built along side of the buildings, actually take themselves apart. There is a jacking system which attaches to the segment that is 2nd from the top. This lifts the bussiness end of the crane off the top segment which can then be unfastened and lowered to the ground. The jacking system then replaces the crane on the new top, travels down one more segement and the process is repeated. It is actually cool to watch.
Q: Two cranes can unload a ship together in 8 hours. The faster crane takes 12 hours less than the slower crane, if each were to unload the same ship alone. How long does it take for each crane to unload this ship?
I'm surprised by how difficult and convoluted the other answers are. They're also wrong. If two cranes are working together and one crane can, in fact, do the job in two hours, then it cannot possibly take longer than two hours with the help of another crane. That makes no sense just by simple reasoning. So the answer of 2 and 14 hours is not correct. Not even close, really. Here's the simple, neat, and correct approach using basic algebra with no assumptions necessary or made: If crane 1 can unload at a rate1/x per hour, then crane 2 can unload at 1/(x+12) per hour since it takes 12 hours longer. The two cranes combined, unload at 1/8 per hour, which must be faster than either one alone. Example: If I can eat a pie in 3 hours and you can eat a pie in 6 hours: 1/3 + 1/6 = 3/6 = 1/2, so together we can eat a pie in just 2 hours... less time than either one alone. Makes sense. Back to the cranes, then: 1/x + 1/(x+12) = 1/8 (2x+12) / (x^2 + 12x) = 1/8 16x + 96 = x^2 + 12x x^2 - 4x - 96 = 0 (x - 12) (x + 8) = 0 - x = 12 or -8 Since the rate cannot be -8, the answer is x = 12 Crane A can unload all by itself in 12 hours. Crane B can do it in 24 hours, and together they can do it in just 8 hours. Check: 1/12 + 1/24 = 3/24 = 1/8 Their combined rate is, indeed, 1/8 per hour!
Q: I have a Holden 253 and I'm looking at a hydraulic street/strip cam, and I'm wondering which brand is better out of Crow and Crane?Cheers.
crane is they cam i like but they are both good.

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