China Industrial Chain Elevator Chain Sprocket and Gear with Good quality

Solution Description

Sprockets for Drop Forged Chains

Chain
Model
Pitch
(mm)
Gear
Number
Z
D2
(mm)
D
(mm)
D3
(mm)
D1
(mm)
D4
(mm)
A
(mm)
Amount
of Bolts
Bolt
Dimensions
B
(mm)
C
(mm)
P100 100 6 197.eight 70 105 143 135 eighty three six M12 16 36
one hundred seven 228.2 70 108 146 173 eighty three six M12 16 36
one hundred 8 259.one eighty five 144 one hundred seventy 196 eighty three 6 M12 16 36
100 9 290.four one zero five 174 two hundred 232 83 six M12 16 36
100 10 321.9 one zero five 179 241.3 264 83 8 M12 16 36
P142 142 six 284 85 136.five 168.three one hundred ninety.five 112 six M12 sixteen 46
142 seven 327.3 105 162 two hundred 234 112 6 M16 sixteen forty six
142 8 371.1 a hundred and fifteen 187.3 241.3 282 127 eight M20 16 forty six
142 nine 415.2 150 240 285.eight 330 127 8 M20 16 forty six
142 10 459.five one hundred fifty 240 285.eight 330 127 eight M20 sixteen 46
142 11 504 170 310 368.three 419 one hundred fifty eight M20 sixteen forty six
142 twelve 548.6 one hundred seventy 345 415 465 a hundred and fifty 8 M20 sixteen forty six
142 13 593.four a hundred and seventy 380 470 521 a hundred and fifty 8 M20 sixteen forty six
142 14 638.1 170 380 470 546 a hundred and fifty ten M20 16 46
P142H 142 seven 327.three one hundred and five 162 two hundred 234 127 six M16 eighteen 69
142 eight 371.one 115 187.three 241.three 282 a hundred and fifty 8 M20 18 69
142 nine 415.two a hundred and fifty 240 285.8 330 a hundred and fifty eight M20 18 69
142 10 459.5 one hundred fifty 240 285.8 330 a hundred and fifty eight M20 18 sixty nine
142 11 504 a hundred and seventy 310 368.three 419 a hundred and fifty eight M20 18 69
142 12 548.six a hundred and seventy 345 415 465 one hundred fifty eight M20 18 sixty nine
142 13 593.four a hundred and seventy 380 470 520 a hundred and eighty eight M20 eighteen sixty nine
142 fourteen 638.one 170 380 470 546 a hundred and eighty 10 M20 eighteen 69

Trailers for Drop Cast Chains
 

Chain Product Gear Amount
Z
D1
(mm)
D
(mm)
A
(mm)
C
(mm)
P100 six 197.8 sixty five 57 35
7 228.2 sixty five fifty seven 35
8 259.1 sixty five fifty seven 35
9 290.four 65 57 35
10 321.nine sixty five 57 35
P142 six 284 eighty five seventy four forty five
seven 327.three eighty five 74 45
8 371.one 85 77 45
9 415.two a hundred and fifteen 77 45
10 459.five a hundred and fifteen 77 45
eleven 504 115 one zero five 45
12 548.six 115 a hundred and five 45
13 593.4 one hundred fifteen one hundred twenty forty five
14 638.one 115 120 forty five
P142H 7 327.3 a hundred and fifteen a hundred and ten seventy five
8 371.1 a hundred and fifteen one hundred ten 75
nine 415.two 115 110 seventy five
ten 459.five a hundred and fifteen 120 75
11 504 a hundred and forty a hundred and twenty seventy five
12 548.6 140 one hundred twenty 75
thirteen 593.four a hundred and forty one hundred twenty seventy five
14 638.1 a hundred and forty 140 75

 
Note: Custom-made sizes and material are obtainable upon ask for
Sprockets for Roller Conveyor Chains
 

Model Pitch(mm) Equipment Number
Z
d1
(mm)
d
(mm)
D
(mm)
D1
(mm)
A
(mm)
B
(mm)
66.675 66.675 6 22.23 133.forty one forty 75 80 22.eight
66.675 seven 22.23 153.seventy four 40 75 80 22.eight
66.675 eight 22.23 174.31 50 100 one hundred 22.eight
sixty six.675 9 22.23 195.04 fifty one hundred 100 22.8
66.675 ten 22.23 215.87 sixty a hundred and ten one hundred 22.eight
66.675 11 22.23 236.seventy eight sixty one hundred ten 100 22.8
sixty six.675 twelve 22.23 257.seventy four sixty a hundred and ten a hundred 22.8
100 a hundred 8 36 261.44 sixty a hundred and ten one hundred 33.2
100 9 36 292.52 70 120 100 33.two
a hundred 10 36 323.77 70 a hundred and twenty a hundred 33.two

Tht
The full range of our conveyor products:

 

US $10
/ Piece
|
1 Piece

(Min. Order)

###

Standard Or Nonstandard: Standard
Application: Motor, Electric Cars, Motorcycle, Machinery, Marine, Agricultural Machinery, Car
Hardness: Hardened Tooth Surface
Manufacturing Method: Rolling Gear
Toothed Portion Shape: Curved Gear
Material: Cast Steel

###

Samples:
US$ 10/Piece
1 Piece(Min.Order)

|
Request Sample

###

Customization:

###

Chain
Model
Pitch
(mm)
Gear
Number
Z
D2
(mm)
D
(mm)
D3
(mm)
D1
(mm)
D4
(mm)
A
(mm)
Number
of Bolts
Bolt
Size
B
(mm)
C
(mm)
P100 100 6 197.8 70 105 143 135 83 6 M12 16 36
100 7 228.2 70 108 146 173 83 6 M12 16 36
100 8 259.1 85 144 170 196 83 6 M12 16 36
100 9 290.4 105 174 200 232 83 6 M12 16 36
100 10 321.9 105 179 241.3 264 83 8 M12 16 36
P142 142 6 284 85 136.5 168.3 190.5 112 6 M12 16 46
142 7 327.3 105 162 200 234 112 6 M16 16 46
142 8 371.1 115 187.3 241.3 282 127 8 M20 16 46
142 9 415.2 150 240 285.8 330 127 8 M20 16 46
142 10 459.5 150 240 285.8 330 127 8 M20 16 46
142 11 504 170 310 368.3 419 150 8 M20 16 46
142 12 548.6 170 345 415 465 150 8 M20 16 46
142 13 593.4 170 380 470 521 150 8 M20 16 46
142 14 638.1 170 380 470 546 150 10 M20 16 46
P142H 142 7 327.3 105 162 200 234 127 6 M16 18 69
142 8 371.1 115 187.3 241.3 282 150 8 M20 18 69
142 9 415.2 150 240 285.8 330 150 8 M20 18 69
142 10 459.5 150 240 285.8 330 150 8 M20 18 69
142 11 504 170 310 368.3 419 150 8 M20 18 69
142 12 548.6 170 345 415 465 150 8 M20 18 69
142 13 593.4 170 380 470 520 180 8 M20 18 69
142 14 638.1 170 380 470 546 180 10 M20 18 69

###

Chain Model Gear Number
Z
D1
(mm)
D
(mm)
A
(mm)
C
(mm)
P100 6 197.8 65 57 35
7 228.2 65 57 35
8 259.1 65 57 35
9 290.4 65 57 35
10 321.9 65 57 35
P142 6 284 85 74 45
7 327.3 85 74 45
8 371.1 85 77 45
9 415.2 115 77 45
10 459.5 115 77 45
11 504 115 105 45
12 548.6 115 105 45
13 593.4 115 120 45
14 638.1 115 120 45
P142H 7 327.3 115 110 75
8 371.1 115 110 75
9 415.2 115 110 75
10 459.5 115 120 75
11 504 140 120 75
12 548.6 140 120 75
13 593.4 140 120 75
14 638.1 140 140 75

###

Model Pitch(mm) Gear Number
Z
d1
(mm)
d
(mm)
D
(mm)
D1
(mm)
A
(mm)
B
(mm)
66.675 66.675 6 22.23 133.41 40 75 80 22.8
66.675 7 22.23 153.74 40 75 80 22.8
66.675 8 22.23 174.31 50 100 100 22.8
66.675 9 22.23 195.04 50 100 100 22.8
66.675 10 22.23 215.87 60 110 100 22.8
66.675 11 22.23 236.78 60 110 100 22.8
66.675 12 22.23 257.74 60 110 100 22.8
100 100 8 36 261.44 60 110 100 33.2
100 9 36 292.52 70 120 100 33.2
100 10 36 323.77 70 120 100 33.2
US $10
/ Piece
|
1 Piece

(Min. Order)

###

Standard Or Nonstandard: Standard
Application: Motor, Electric Cars, Motorcycle, Machinery, Marine, Agricultural Machinery, Car
Hardness: Hardened Tooth Surface
Manufacturing Method: Rolling Gear
Toothed Portion Shape: Curved Gear
Material: Cast Steel

###

Samples:
US$ 10/Piece
1 Piece(Min.Order)

|
Request Sample

###

Customization:

###

Chain
Model
Pitch
(mm)
Gear
Number
Z
D2
(mm)
D
(mm)
D3
(mm)
D1
(mm)
D4
(mm)
A
(mm)
Number
of Bolts
Bolt
Size
B
(mm)
C
(mm)
P100 100 6 197.8 70 105 143 135 83 6 M12 16 36
100 7 228.2 70 108 146 173 83 6 M12 16 36
100 8 259.1 85 144 170 196 83 6 M12 16 36
100 9 290.4 105 174 200 232 83 6 M12 16 36
100 10 321.9 105 179 241.3 264 83 8 M12 16 36
P142 142 6 284 85 136.5 168.3 190.5 112 6 M12 16 46
142 7 327.3 105 162 200 234 112 6 M16 16 46
142 8 371.1 115 187.3 241.3 282 127 8 M20 16 46
142 9 415.2 150 240 285.8 330 127 8 M20 16 46
142 10 459.5 150 240 285.8 330 127 8 M20 16 46
142 11 504 170 310 368.3 419 150 8 M20 16 46
142 12 548.6 170 345 415 465 150 8 M20 16 46
142 13 593.4 170 380 470 521 150 8 M20 16 46
142 14 638.1 170 380 470 546 150 10 M20 16 46
P142H 142 7 327.3 105 162 200 234 127 6 M16 18 69
142 8 371.1 115 187.3 241.3 282 150 8 M20 18 69
142 9 415.2 150 240 285.8 330 150 8 M20 18 69
142 10 459.5 150 240 285.8 330 150 8 M20 18 69
142 11 504 170 310 368.3 419 150 8 M20 18 69
142 12 548.6 170 345 415 465 150 8 M20 18 69
142 13 593.4 170 380 470 520 180 8 M20 18 69
142 14 638.1 170 380 470 546 180 10 M20 18 69

###

Chain Model Gear Number
Z
D1
(mm)
D
(mm)
A
(mm)
C
(mm)
P100 6 197.8 65 57 35
7 228.2 65 57 35
8 259.1 65 57 35
9 290.4 65 57 35
10 321.9 65 57 35
P142 6 284 85 74 45
7 327.3 85 74 45
8 371.1 85 77 45
9 415.2 115 77 45
10 459.5 115 77 45
11 504 115 105 45
12 548.6 115 105 45
13 593.4 115 120 45
14 638.1 115 120 45
P142H 7 327.3 115 110 75
8 371.1 115 110 75
9 415.2 115 110 75
10 459.5 115 120 75
11 504 140 120 75
12 548.6 140 120 75
13 593.4 140 120 75
14 638.1 140 140 75

###

Model Pitch(mm) Gear Number
Z
d1
(mm)
d
(mm)
D
(mm)
D1
(mm)
A
(mm)
B
(mm)
66.675 66.675 6 22.23 133.41 40 75 80 22.8
66.675 7 22.23 153.74 40 75 80 22.8
66.675 8 22.23 174.31 50 100 100 22.8
66.675 9 22.23 195.04 50 100 100 22.8
66.675 10 22.23 215.87 60 110 100 22.8
66.675 11 22.23 236.78 60 110 100 22.8
66.675 12 22.23 257.74 60 110 100 22.8
100 100 8 36 261.44 60 110 100 33.2
100 9 36 292.52 70 120 100 33.2
100 10 36 323.77 70 120 100 33.2

How to Design a Forging Spur Gear

Before you start designing your own spur gear, you need to understand its main components. Among them are Forging, Keyway, Spline, Set screw and other types. Understanding the differences between these types of spur gears is essential for making an informed decision. To learn more, keep reading. Also, don’t hesitate to contact me for assistance! Listed below are some helpful tips and tricks to design a spur gear. Hopefully, they will help you design the spur gear of your dreams.
Gear

Forging spur gears

Forging spur gears is one of the most important processes of automotive transmission components. The manufacturing process is complex and involves several steps, such as blank spheroidizing, hot forging, annealing, phosphating, and saponification. The material used for spur gears is typically 20CrMnTi. The process is completed by applying a continuous through extrusion forming method with dies designed for the sizing band length L and Splitting angle thickness T.
The process of forging spur gears can also use polyacetal (POM), a strong plastic commonly used for the manufacture of gears. This material is easy to mold and shape, and after hardening, it is extremely stiff and abrasion resistant. A number of metals and alloys are used for spur gears, including forged steel, stainless steel, and aluminum. Listed below are the different types of materials used in gear manufacturing and their advantages and disadvantages.
A spur gear’s tooth size is measured in modules, or m. Each number represents the number of teeth in the gear. As the number of teeth increases, so does its size. In general, the higher the number of teeth, the larger the module is. A high module gear has a large pressure angle. It’s also important to remember that spur gears must have the same module as the gears they are used to drive.

Set screw spur gears

A modern industry cannot function without set screw spur gears. These gears are highly efficient and are widely used in a variety of applications. Their design involves the calculation of speed and torque, which are both critical factors. The MEP model, for instance, considers the changing rigidity of a tooth pair along its path. The results are used to determine the type of spur gear required. Listed below are some tips for choosing a spur gear:
Type A. This type of gear does not have a hub. The gear itself is flat with a small hole in the middle. Set screw gears are most commonly used for lightweight applications without loads. The metal thickness can range from 0.25 mm to 3 mm. Set screw gears are also used for large machines that need to be strong and durable. This article provides an introduction to the different types of spur gears and how they differ from one another.
Pin Hub. Pin hub spur gears use a set screw to secure the pin. These gears are often connected to a shaft by dowel, spring, or roll pins. The pin is drilled to the precise diameter to fit inside the gear, so that it does not come loose. Pin hub spur gears have high tolerances, as the hole is not large enough to completely grip the shaft. This type of gear is generally the most expensive of the three.
Gear

Keyway spur gears

In today’s modern industry, spur gear transmissions are widely used to transfer power. These types of transmissions provide excellent efficiency but can be susceptible to power losses. These losses must be estimated during the design process. A key component of this analysis is the calculation of the contact area (2b) of the gear pair. However, this value is not necessarily applicable to every spur gear. Here are some examples of how to calculate this area. (See Figure 2)
Spur gears are characterized by having teeth parallel to the shafts and axis, and a pitch line velocity of up to 25 m/s is considered high. In addition, they are more efficient than helical gears of the same size. Unlike helical gears, spur gears are generally considered positive gears. They are often used for applications in which noise control is not an issue. The symmetry of the spur gear makes them especially suitable for applications where a constant speed is required.
Besides using a helical spur gear for the transmission, the gear can also have a standard tooth shape. Unlike helical gears, spur gears with an involute tooth form have thick roots, which prevents wear from the teeth. These gears are easily made with conventional production tools. The involute shape is an ideal choice for small-scale production and is one of the most popular types of spur gears.

Spline spur gears

When considering the types of spur gears that are used, it’s important to note the differences between the two. A spur gear, also called an involute gear, generates torque and regulates speed. It’s most common in car engines, but is also used in everyday appliances. However, one of the most significant drawbacks of spur gears is their noise. Because spur gears mesh only one tooth at a time, they create a high amount of stress and noise, making them unsuitable for everyday use.
The contact stress distribution chart represents the flank area of each gear tooth and the distance in both the axial and profile direction. A high contact area is located toward the center of the gear, which is caused by the micro-geometry of the gear. A positive l value indicates that there is no misalignment of the spline teeth on the interface with the helix hand. The opposite is true for negative l values.
Using an upper bound technique, Abdul and Dean studied the forging of spur gear forms. They assumed that the tooth profile would be a straight line. They also examined the non-dimensional forging pressure of a spline. Spline spur gears are commonly used in motors, gearboxes, and drills. The strength of spur gears and splines is primarily dependent on their radii and tooth diameter.
SUS303 and SUS304 stainless steel spur gears

Stainless steel spur gears are manufactured using different techniques, which depend on the material and the application. The most common process used in manufacturing them is cutting. Other processes involve rolling, casting, and forging. In addition, plastic spur gears are produced by injection molding, depending on the quantity of production required. SUS303 and SUS304 stainless steel spur gears can be made using a variety of materials, including structural carbon steel S45C, gray cast iron FC200, nonferrous metal C3604, engineering plastic MC901, and stainless steel.
The differences between 304 and 303 stainless steel spur gears lie in their composition. The two types of stainless steel share a common design, but have varying chemical compositions. China and Japan use the letters SUS304 and SUS303, which refer to their varying degrees of composition. As with most types of stainless steel, the two different grades are made to be used in industrial applications, such as planetary gears and spur gears.
Gear

Stainless steel spur gears

There are several things to look for in a stainless steel spur gear, including the diametral pitch, the number of teeth per unit diameter, and the angular velocity of the teeth. All of these aspects are critical to the performance of a spur gear, and the proper dimensional measurements are essential to the design and functionality of a spur gear. Those in the industry should be familiar with the terms used to describe spur gear parts, both to ensure clarity in production and in purchase orders.
A spur gear is a type of precision cylindrical gear with parallel teeth arranged in a rim. It is used in various applications, such as outboard motors, winches, construction equipment, lawn and garden equipment, turbine drives, pumps, centrifuges, and a variety of other machines. A spur gear is typically made from stainless steel and has a high level of durability. It is the most commonly used type of gear.
Stainless steel spur gears can come in many different shapes and sizes. Stainless steel spur gears are generally made of SUS304 or SUS303 stainless steel, which are used for their higher machinability. These gears are then heat-treated with nitriding or tooth surface induction. Unlike conventional gears, which need tooth grinding after heat-treating, stainless steel spur gears have a low wear rate and high machinability.

China Industrial Chain Elevator Chain Sprocket and Gear     with Good qualityChina Industrial Chain Elevator Chain Sprocket and Gear     with Good quality
editor by czh 2023-01-30