• Aluminium Alloy for Great Performance No. 1616 System 1
  • Aluminium Alloy for Great Performance No. 1616 System 2
  • Aluminium Alloy for Great Performance No. 1616 System 3
Aluminium Alloy for Great Performance No. 1616

Aluminium Alloy for Great Performance No. 1616

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
100 set
Supply Capability:
10000 set/month

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Aluminium Alloy Wheel for Great Pormance No. 1616

 

Product Description:
 

Aluminium Alloy Wheel for Great Performance No.1616

 

1. Structure of Aluminum Alloy Wheel Description:

Aluminum alloy wheel is special for cars and trucks & buses, they are a barrel shaped metal parts used to support the tyres within the tire profile. The original factory wheel hub on the market can be divided into steel wheel hub and alloy wheel according to the material differences. Compared with the former, the latter have more advantages than the former ones. Aluminum alloy wheel is an excellent representative of alloy wheel according to their following characters:

 

2. Aluminum Alloy Wheel Production Procedure:

With Casting Machine Melting & Full Heat Treatment

With CNC machine CNC made in Taiwan

WIth Painting Line Full automatic Painting


3. Aluminum Alloy Wheel No.1616 Images:

 

Aluminium Alloy for Great Performance No. 1616

Aluminium Alloy for Great Performance No. 1616

Aluminium Alloy for Great Performance No. 1616

 

 

4. Aluminum Alloy Wheel No.1616 Specifications & Advantage:

 

Specifications:

 

Size ETCBHoleP.C.DFinish
16X6.54564.15114.3Gunmetal w/m.face

 

Advantage:

 

It is Lighter than tube wheels

It has Better cooling performance in longdistance and high speed driving

It is Bigger external diameter

It gets High speed lowering tyre termperature can reduce wear resistance prevent tyre-shoulder seperation


4. FAQ

We have organized several common questions for our clients,may help you to choose the favourate aluminium alloy wheels for your consideration:

① How about your company?

CNBM International Corporation (CNBM International) is the most important trading platform of CNBM Group Corporation, a state-owned company under the direct supervision of State-owned Assets Supervision and Administration Commission of the State Council.

Since 2004, the trading volume of CNBM International has been doubled in 5 successive years owing to the support of superior corporations and effort of all staff. Meanwhile, we have established strategic partnerships with hundreds of domestic manufacturers and sound business relations with clients from over 120 countries. Currently, we have wholly-owned overseas subsidiaries and branches in 5 countries with a view to realize localization, which also represents an essential progress in our globalization target.

 

② How about your products?

We're focusing on our quality control all the time. From raw material to the final packing, every step we try to do the best. We offer 5 years warranty for the finish and lifetime warranty for the structure.

My company produces and exports alloy wheel s for years with good quality and competitive prices. We offer the quality customize wheel for aftermarket as well replica wheels. We have the size range from 12 inches to 24inches. We can make the wheels as chrome or paint finish. We promise the prompt delivery and reasonable price. We have the capacity of 15,0000pcs per month . So we can meet the quantity you want. Welcome anybody who want to deal these products to contact us.Up to now, we have enjoyed good popularity all over the world.

 

Q: I need to know what stores sell steering wheel covers, preferably racing ones or anything not fuzzy
Oh Baby! I've got the steering wheel cover for you! The are called Wheel Skins. Go to their website and you can pick out genuine leather wheel covers in either solid or perforated leather. They have various colors so you'll be able to select something that will match your interior perfectly. Let me warn you however. These covers need to be stitched on the wheel around the inside diameter. They send needles and special high strength waxed tough as nails woven string to do the job. If I can do it so can you. The very good instructions explain how to stitch around the spokes of the wheel so that it'll look like a factory job. I had to cover the fake leather wheel in by car as the foam type plastic began to look like crap and it became sticky. The new Wheel Skin added a slight amount of thickness to the steering wheel. I've never had a genuine leather covered steering wheel but it was worth the wait. Your hands never sweat and the feel of the wheel is beyond belief. I use to re-string baseball and softball gloves for kids in town and in some cases they were in pretty sad condition. With the proper kooks and wire pullers and my stack of various sizes of leather string we always seemd to get them back in shape.
Q: when you bring a hedgehog home, on the first day will they use thier wheel because mine is just pushing his wheel around
I feel that we should make life even harder than it already is in Somalia. Pull out of Iraq and put pressure on Somalia.
Q: I wanna get new wheels and i wanna know if the spitfire hardcore blackcore wheels are good or not and also is it good to ride 50mm wheels rather than 52mm wheels and do 52mm wheels last longer???
You need to put a filter on your subby and that will stop all car noise
Q: i have a few questions about how the size of a skate board wheel affects the speed of the skateboard.what are the advantages of a large wheel?what are the advantages of a small wheel?how is friction realated to skateboard wheels?how does the size affect the amount of friction in a skateboard wheel?Why do large wheels absorb more of the bumps on a rough surface? and if you have any sources of were u got themthank you!!
definite, mushy wheels can skate on hard surfaces. The softer the wheel, the better the holiday is on hard surfaces. there is one commerce off, velocity. Softer wheels do not flow as quickly as difficult ones. you may make amends for the softness by ability of going better. it extremely is why longboard racers use huge wheels. the bigger wheels also help flow over hard surfaces. notwithstanding, that's difficult to locate mushy wheels any smaller than 60mm. when you're planning in basic terms to cruise round, i'd flow with 65mm, seventy 8-80a wheels. I have some Kryptonics route sixty 5 (pink) wheels on a cruiser. i have had no problems with highway stumbling blocks except for some sewer grates. once you've low trucks, you extremely choose risers. I;d recommend them inspite of mids and highs. when you're desirous to do turn tricks with those wheels, the further height can make it somewhat extra difficult to get the board round. you ought to in difficulty-free words ought to make minor differences for street skating. in basic terms checked your additions. you may ignore about powersliding with mushy wheels, except you've glassy comfortable surfaces, or perhaps then it is going to likely be confusing. inspite of great difficult wheels, powersliding is extra difficult on hard surfaces. Parking garages and freshly sealed asphalt parking a lot are large powersliding places. Grinding might want to develop into less difficult for the reason that your board will be taller, so that you'll hit better grinding spots.
Q: Two wheels are rotating in such a way that the rotation of the smaller wheel causes the larger wheel to rotate. The radius of the smaller wheel is 8.0 centimeters and the radius of the larger wheel is 19.7 centimeters. Through how many degrees will the larger wheel rotate if the smaller one rotates 91○?Answer choices are a) 36.95○b) 38.95○c) 36.85○d) 37.95○* All I did was that I got the circumference using c2 pi r, and I got the area using a pi r ^2, I did this for both wheels, but I am unsure what to do afterwards*.
I got A, 36.95. The first wheel rotates 91 degrees. How much of its circumference moved? Well let's find the arc length. L 8(91/180)pi 12.706 cm We we went around 12.706 cm. Notice that both circles went around this much. So at what angle on the other wheel is the arc length 12.706? Well the entire circumference of that wheel is (2*19.7pi) 123.7788 cm. 12.706/123.7788 0.1027. This means that the arc length we covered is 10.27% of the entire circumference of the wheel. We want the angle that creates that arc. So multiply that by 360 degrees: 360(0.1027) 36.95
Q: What is the problem with a small car in a car?
Speed table is not allowed, and you think you only over 10%, in fact, you have exceeded 20% +
Q: Where is the best place to buy cheap Peugeot 206 wheels? Thank you
Original wheels, down at the breakers. clearly they'll need new tyres. Or do you mean new tyres? Yeah, just down at a local breakers yard. they'll be dirt cheap (scrap value). don't emphasise that you actually need the wheels, just say you're looking for some spares for winter tyres. it'll be easier to negotiate the best deal that way :P
Q: Hamster Wheel: Is this okay?
Putting a blanket on any room heater is dangerous. It could overheat and start a fire.
Q: I started playing the game again and I really wanted a steering wheel for TDU2.
There sure is! There's, for example, this wheel: www.amazon.ca/Xbox-360-Wired-Raci. Or this one: www.amazon.ca/Xbox-360-Wireless-S. Either way, go into your local game store and just ask if they have any wheels, because 9 times out of 10 they will!
Q: A turbine wheel is positioned such that the center of the wheel sits 26 feet off the floor of an electric steam generating plant. The wheel has a radius of 18 feet and is turning at 1rev/8sec. Design a Trig Model that will predict the height of the sensor, located at the lowest point on the wheel at t 0 seconds, from the floor of the plant. The Trig model should be in the form of h(t)(a)cos((b)(t)+c)+d , where h(t) measures the height of the sensor from the floor, in feet, at any time t in seconds.
The wheel is turning at 1 rev/ 8 sec, so 1/8 rev/sec, i.e. pi/4 radians per second ( 45 degrees per second) So the angle the wheel has rotated by at time T is T*pi/4 rad 45*T degrees - we will denote the angle by x for clarity. The radius of the wheel is 18 feet, so after time T, the sensor will be 18-18cos(x) feet higher than it was when it started the rotation. To see this, draw the wheel having rotated through some angle ypi/2 rad (90 degrees), and use trigonometry to work out the vertical distance between the centre of the wheel and the sensor. Since you know the radius of the wheel, you can the work out how much height the sensor has gained in terms of the angle the wheel has rotated. Now, for any time t, we know that the sensor will be 18(1-cos(x)) feet higher than it started. We also know that at t0 the sensor was at the lowest point of the wheel, which was 8 feet off the ground (since the centre of the wheel was 26 feet off the ground and the wheel has radius 18 feet) Hence, at any time t, the sensor is -18(cos(t*pi/4)-1) + 8 feet from the ground.

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