• BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire System 1
  • BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire System 2
  • BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire System 3
  • BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire System 4
  • BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire System 5
BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire

BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
25 m.t.
Supply Capability:
25000000 m.t./month

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Item specifice

Material:
Stainless Steel Wire,Iron Wire,Copper Wire,Steel Wire,Black Wire Mesh,Brass Wire,Low-Carbon Iron Wire,Aluminum Wire,Galvanized Steel Wire,PVC Coated Steel Wire,Plastic Coated Iron Wire,Aluminum Alloy Wire,Phosphor Bronze Wire,Galvanized Iron Wire
Cross Sectional Shape:
Round,Rectangle,Oval,Triangle
Application:
Construction Wire Mesh,Protectiong Mesh,Fence Mesh,Decorative Mesh,Gabion Mesh,Window Curtain,Barbecue Wire Mesh,Cages
Type:
Steel Coll,Self-Locking,Galvanized,U Type Wire,Insulated,Flat Wire,Loop Tie Wire
Wild in Width:
2.1M,1.8M,1.6M,1.5M,1.1M
Surface Treatment:
Color Coated,PVC Coated,Black,Coated
Metal Wire Drawing:
Cold Drawing,Hot Drawing
Status:
Soft State,In Hard State,Hard State
Thickness:
Metal Fiber,Metal Microfilament,Metal Filament,Metal Thick Wire
Galvanized Technique:
Electro Galvanized,Hot Dipped Galvanized

1.Structure of BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire

Black Annealed Iron Wire also called galvanized steel wire, galvanized iron wire according to the difference zinc coating process, there are electro galvanized iron wire and hot-dipped galvanized iron wire. 

Black Annealed Iron Wire can be classified into hot-dipped galvanized iron wire and electro galvanized wire according to the differences of processing. This wire is very good for Chain link fence, fencing mesh, gabion mesh box production and for construction business as tire wire, binding wire and galvanized wire raw material production.

 

2.Main Features of BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire

• Use widely

• Corrosion- resistant

• Durable 

• Practical use

• Beauty Surface

 

3. BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire Images

 BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire

4 BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire Specification:

Chemical composition

C

Mn

Si

S

P

Guarantee value

≤0.12

0.3~0.6

≤0.35

≤0.035

≤0.040

                                                      

Test Item  

Rm(MPa)

ReL(Mpa)

A(%)

KV2(J)

KV2(J)

Guarantee value

≥420

≥330

≥17

-(normal temperature)

-(0°C)

General result

460~540

≥340

18~26

50~80

≥47

 

 

5.FAQ

We have organized several common questions for our clientsmay help you sincerely 

How about your  BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire

We are focus on steel wire trading for more than ten years. We are specialized in export of various kinds of steel wire and wire mesh products, like Black Annealed Iron Wire we offer high quality steel wire; hot dipped wire;  electro galvanized wire; PVC /PE coated wire;  fencing , steel wire rope, steel wire strand, cable wire; wire mesh and other wire related products.

 

What is the advantage of our Low Price Black Annealed Wire Galvanized Wire Binding Wire For Construction?

1. Durable service life and competitive price.

2. Beautiful, strong and not expensive.

3. With long live and good anti-corrosive

4. High quality and low price.

 

How long can we receive the product after purchase?

In the purchase of Black Annealed Iron Wire within three working days, We will arrange the factory delivery as soon as possible. The pacific time of receiving is related to the state and position of customers. Commonly 15 to 20 working days can be served.

BWG14 BWG18 Black Annealed Wire/Loop Annealed Wire/U Type Annealed Wire

Q:i'm building a race car out of a buick century and the tail lights wires got cut, come to find out the fuel pump ties into the talight wiring harness, i found the wires going to the fuel pump but i'm not sure what is what, there's 4 wires going to it, black, black with a white strip, gray, and pur any ideas what is what please so i can just run a switch to the fuel pump... thanks
Where is my ground wire located on my fuel pump on 86 buick century 2.5L got 3 wire the green wire in the middle in the hot wire help pleae
Q:installing ceiling fan, when remove light fixture, it has 4 wires system, wires used: white red and green with one light switch, what is black for, it has a wire nut, but has nothing connect to it
people use a four wire system when they are going to operate one fixture in more than one location or continue power to another fixture or outlet. Red and black are always hot. If the black wire was only wire nutted, then don't use it, just leave the wire nut on it. Sometimes people run a four wire because that is what they had lying around. Also, if you want to run the fan independently from the light, you could use a four wire to run power independently from a switch where one side of the switch runs the fan and the other runs the light.
Q:Two wires are made of the same material but the second wire has twice the diameter and twice the length of the first wire. When the two wires are stretched, and the tension in the second wire is also twice the tension in the first wire. the funamental frequency of the first wire is 880 Hz. What is the fundamental frequency of the second wire?
Since the tension and size are different the two wire will have different wave speeds Since v= sqrt(T/mu) mu can be represented by density * area Since the second wire has twice the diameter it will have 4 times the mu and since Tension in wire 2 is twice that in wire 1 v2 = sqrt(2T/4mu) sqrt(.5)*v1 = 0.707*v1 Since f1 (wire 1) = v/2L1 then f2(wire 2) = v2/2L2 so replacing v2 and L2 yields 0.707v1/(2*2*L1) = 0.707/2(v1/2L) = 0.707/2 *f1 = 0.707/2*880Hz = 311Hz
Q:A long horizontal wire carries a current of = 52 . A second wire, made of 1.00--diameter copper wire and parallel to the first, is kept in suspension magnetically 5.0 below.What is the magnitude of the current in the lower wire?
There is 1V across ampere meter. To find the current.... Current = 1V / meter internal resistance
Q:If you hang a pot-plant with mass of 8kg from two lengths of wire attached to a horizontal beam 100cm apart. The wire on the left has a length of 50cm and the wire on the right has a length of 75cm.What is the tension in both wires?
The tension in both wires.? If you hang a pot-plant with mass of 8kg from two lengths of wire attached to a horizontal beam 100cm apart. The wire on the left has a length of 50cm and the wire on the right has a length of 75cm. What is the tension in both wires? In the triangle ABC, AB(c) = 100 cm, BC (a) = 50 cm and AC (b) = 75 cm 2s = a+b+c = 225 cm s = 112.5 s-a = 112.5 - 50 = 62.5 s-b = 112.5 - 75 = 37.5 s-c = 112.5 - 100 = 12.5 tan A/2 = √ {(s-b)*(s-c) / [s*(s-a)] = √ {37.5*12.5) / [112.5*62.5] A = 28.95? tan B/2 = √ {(s-c)*(s-a) / [s*(s-b)] = √ {12.5*62.5) / [112.5*37.5] B = 46.57? C = 180-28.95-46.57 =104.48? --------------------------------------... 46.57? is the angle between horizontal and 50 cm wire. 28.95 is he angle between horizontal and 100 cm P is the tension in the 50 cm wire and Q is the tension in the 75 cm wire Equating the horizontal components of the tensions P cos 46.57? = Q cos 28.95 ? P = Q cos 28.95 ?/ cos 46.57? P = 1.27 Q-------------------1 Equating the sum of the vertical components of the tensions to the weight of the pot P sin 46.57? + Q sin 28.95 = 8*9.8 N 0.73P + 0.48 Q = 78.4N 0.73(1.27 Q) + 0.48 Q = 78.4N Q = 55.72 N and P = 70.76 N ============================= Or use Lamis theorm Angle between P and Q = 104.48? Angle between P and the pot = 90 + 46.57? Angle between Q and the pot = 90 + 28.95 By Lamis theorm P/ cos 46.57? = 78.4/ sin 104.48? P = 55.67 N and Q = (78.4/ sin 104.48? ) cos28.95 = 70.85N ====================================
Q:The wire is to the box
Black wire= hot goes to the the black screw. White wire = neutral goes to the other side. Looking from the plug side, the hot/black wire is the smaller slot The larger slot is the neutral.
Q:I wanna know how does the temperature affect the resistance of the wire.
as temperature increases, resistance also goes up. the reverse is also true. at most temperatures comfortable to humans, it is not a signifigant factor. that's the general answer. if you need specifics, the electrical code will give you very specific answers.
Q:A potential difference of 13 V is found to produce a current of 0.37 A in a 3.1 m length of wire with a uniform radius of 0.42 cm.(a) What is the resistance of the wire? (b) What is the resistivity of the wire? Please show work.
Voltage (Volts) = Current (Amps) times Resistance (Ohms) or V=IxR = R = V/I = 13/0.37 = 35.14 Ohms Resistance = Resistivity * Length/Area The longer the wire is, the more resistance it has. The larger the crossectional area of the wire (pi times radius^2), the less resistance it has Longer wires have more resistance, thicker wires have less 35.14 = Resistivity * 3.1/pi*0.0042^2 Resistivity = 35.14*pi*0.0042^2/3.1 = 6.281 x 10^-4
Q:i want technical names of the electrical equipments rheostat,wire wound
there are no other names for them. these names are not used by laymen. they are used by everyone from students to advanced engineers.
Q:Why is thin strand wire better for powering car audio?
DC current rides on the outer valence electrons at the surface of the wire strand so the more conductors in the cable stranded together the better. AC current is a push pull so any old aluminum conductor will work as long as it won't melt under the amperage load. For 12 VDC audio amps, you want the power cable with the most fine strands twisted together for the least resistance to DC current flow because the power FET's will heat up as the power feed wire heats up. The lower the DC voltage loss, the cooler the FET amplifier modules will operate.

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