China Custom Professional Manufacture Slewing Bearing, External Gear, High Quality manufacturer

Product Description

Own 20,000m² production facility and 10,000m² forging workshop.

Structural characteristics,performance,and application scope

The single-row 4 point contact ball type slewing bearing is composed of 2 socket sleeves and is compact in structure and light in weight .Due to its steel balls contact with circular rollingtrack on 4 points,it can bear axialforce ,radial force and overturning moment at the same time,and it can be selected for use in engineering machinerysuch as rotary conveyer,welding operation machine,medium and small-scale hoists,and excavator.

Model No.: 011.30.560
Brand: Fenghe
No. of rows: single row
Inner structure:  ball
Gear option: External Gear
No. of mounting holes: 20
Inner ring diameter: 458mm
Outer ring diameter: 662mm
Thickness:  80mm
Size:from 150mm to 5000mm.

Types of our products:
single row ball slewing bearing
double row ball slewing bearing
three row roller slewing bearing
single row cross roller slewing bearing
double line ball slewing bearing
ball and roller slewing bearing

 

      Dimensions Fixing Holes Structure Size Gear data External gear data Internal gear data
Code Curva D       (mm) d                   (mm)    H    (mm) D1    (mm) D2   (mm) dn1     dn2    (mm) dm1    dm2   (mm) L    (mm) n1 D3    (mm) d1     (mm)    H1       (mm) h    (mm) b    (mm) m    (mm) da     (mm)    da    (mm)   
01.20.200 1 280 120 60 248 152 16 M14 28 12 2 201 199 50 10 40 3 300 98
01.20.224 2 304 144 60 272 176 16 M14 28 12 2 225 223 50 10 40 3 321 105
01.20.250 3 330 170 60 298 202 16 M14 28 18 2 251 249 50 10 40 4 352 86
01.20.280 4 360 200 60 328 232 16 M14 28 18 2 281 279 50 10 40 4 384 94
01.25.315 5 408 222 70 372 258 18 M16 32 20 2 316 314 60 10 50 5 435 85 190 40
01.25.355 6 448 262 70 412 298 18 M16 32 20 2 356 354 60 10 50 5 475 93 235 49
01.25.400 7 493 307 70 457 343 18 M16 32 20 2 401 399 60 10 50 6 528 86 276 48
01.25.450 8 543 357 70 507 393 18 M16 32 20 2 451 449 60 10 50 6 576 94 324 56
01.30.500 9 602 398 80 566 434 18 M16 32 20 4 501 498 70 10 60 5       6 629 628.8 123      102 367 368.4 74     62
01.25.500 10 602 398 80 566 434 18 M16 32 20 4 501 499 70 10 60 5       6 629  628.8 123     102 367 368.4 74       62
01.30.560 11 662 458 80 626 494 18 M16 32 20 4 561 558 70 10 60 5       6 689  688.8 135     112 427 428.4 86       72
01.25.560 12 662 458 80 626 494 18 M16 32 20 4 561 559 70 10 60 5       6 689 688.8 135      112 427 428.4 86       72
01.30.630 13 732 528 80 696 564 18 M16 32 24 4 631 628 70 10 60 6             8 772.8 774.4 126      94 494.4 491.2 83        62
01.25.630 14 732 528 80 696 564 18 M16 32 24 4 631 629 70 10 60 6       8 772.8 774.4 126      94 494.4 491.2 83       62
01.30.710 15 812 608 80 776 644 18 M16 32 24 4 711 708 70 10 60 6       8 850.8 854.4 139     104 572.4 571.2 96       72
01.25.710 16 812 608 80 776 644 18 M16 32 24 4 711 709 70 10 60 6       8 850.8 854.4 139     104 572.4 571.2 96       72
01.40.800 17 922 678 100 878 722 22 M20 40 30 6 801 798 90 10 80 8      10 966.4  968 118      94 635.2  634 80       64
01.30.800 18 922 678 100 878 722 22 M20 40 30 6 801 798 90 10 80 8      10 966.4 968 118      94 635.2 634 80       64
01.40.900 19 1571 778 100 978 822 22 M20 40 30 6 901 898 90 10 80 8      10 1062.4      1068 130     104 739.2  734 93       74
01.30.900 20 1571 778 100 978 822 22 M20  40 30 6 901 898 90 10 80 8      10 1062.4   1068 130     104 739.2 734 93       74
01.40.1000 21 1122 878 100 1078 922 22 M20 40 36 6 1001 998 90 10 80 10     12 1188  1185.6 116      96 824 820.8 83       69
01.30.1000 22 1122 878 100 1078 922 22 M20 40 36 6 1001 998 90 10 80 10     12 1188  1185.6 116      96 824  820.8 93       69
01.40.1120 23 1242 998 100 1198 1042 22 M20 40 36 6 1121 1118 90 10 80 10     12 1298 1305.6 127     106 944  940.8 95       79
01.30.1120 24 1242 998 100 1198 1042 22 M20 40 36 6 1121 1118 90 10 80 10     12 1298 1305.6 127     106 944 940.8 95       79
01.45.1250 25 1390 1110 110 1337 1163 26 M24 48 40 5 1252 1248 100 10 90 12     14 1449.6  1453.2 118     101 1048.8     1041.6 88       75
01.35.1250 26 1390 1110 110 1337 1163 26 M24 48 40 5 1251 1248 100 10 90 12     14 1449.6  1453.2 118     101 1048.8 1041.6 88       75
01.45.1400 27 1540 1260 110 1487 1313 26 M24 48 40 5 1402 1398 100 10 90 12     14 1605.6 1607.2 131     112 1192.8  1195.6 100      86
01.35.1400 28 1540 1260 110 1487 1313 26 M24 48 40 5 1401 1398 100 10 90 12     14 1605.6 1607.2 131     112 1192.8 1195.6 100      86
01.45.1600 29 1740 1460 110 1687 1513 26 M24 48 45 5 1602 1598 100 10 90 14     16 1817.2 1820.8 127     111 1391.6 1382.4 100      87
01.35.1600 30 1740 1460 110 1687 1513 26 M24 48 45 5 1601 1598 100 10 90 14     16 1817.2 1820.8 127     111 1391.6 1382.4 100      87
01.45.1800 31 1940 1660 110 1887 1713 26 M24 48 45 5 1802 1798 100 10 90 14     16 2013.2 2012.8 141     123 1573.6  1574.4 113      99
01.35.1800 32 1940 1660 110 1887 1713 26 M24 48 45 5 1801 1798 100 10 90 14     16 2013.2 2012.8 141     123 1573.6  1574.4 113      99
01.60.2000 333 2178 1825 144 2110 1891 33 M30 60 48 8 2002 1998 132 12 120 16     18 2268.8 2264.4 139     123 1734.4  1735.2 109      97
01.40.2000 34 2178 1825 144 2110 1891 33 M30 60 48 8 2001 1998 132 12 120 16     18 2268.8 2264.4 139     123 1734.4 1735.2 109      97
01.60.2240 35 2418 2065 144 2350 2131 33 M30 60 48 8 2242 2238 132 12 120 16     18 2492.8 2498.4 153     136 1990.4  1987.2 125     111
01.40.2240 36 2418 2065 144 2350 2131 33 M30 60 48 8 2241 2238 132 12 120 16     18 2492.8 2498.4 153     136 1990.4  1987.2 125     111
01.60.2500 37 2678 2325 144 2610 2391 33 M30 60 56 8 2502 2498 132 12 120 18     20 2768.4 2776 151     136 2339.2 2228 125     112
01.40.2500 38 2678 2325 144 2610 2391 33 M30 60 56 8 2501 2498 132 12 120 18     20 2768.4 2776 151     136 2339.2 2228 125     112
01.60.2800 39 2978 2625 144 2910 2691 33 M30 60 56 8 2802 2798 132 12 120 18     20 3074.4 3076 168     151 2527.2 2528 141     127
01.40.2800 40 2978 2625 144 2910 2691 33 M30 60 56 8 2801 2798 132 12 120 18     20 3074.4 3076 168     151 2527.2 2528 141     127
01.75.3150 41 3376 2922 174 3686 3014 45 M42 84 56 8 3152 3147 162 12 150 20     22 3476  3471.6 171     155 2828 2824.8 142     129
01.50.3150 42 3376 2922 174 3686 3014 45 M42 84 56 8 3152 3148 162 12 150 20     22 3476 3471.6 171     155 2828 2824.8 142     129
01.75.3550 43 3776 3322 174 3686 3414 45 M42 84 56 8 3552 3547 162 12 150 20     22 3876 3889.6 191     174 3228  3220.8 162     147
01.50.3550 44 3776 3322 174 3686 3414 45 M42 84 56 8 3552 3548 162 12 150 20     22 3876  3889.6 191     174 3228   3220.8 162     147
01.75.4000 45 4226 3772 174 4136 3864 45 M42 84 60 10 4002 3997 162 12 150 22     25 4329.6 4345  194     171 3660.8  3660 167     147
01.50.4000 46 4226 3772 174 4136 3864 45 M42 84 60 10 4002 3998 162 12 150 22     25 4329.6 4345 194     171 3660.8  3660 167     147
01.75.4500 47 4726 4272 174 4636 4364 45 M42 84 60 10 4502 4497 162 12 150 22     25 4835.6  4845 217     191 4166.8  4160 190     167
01.50.4500 48 4726 4272 174 4636 4364 45 M42 84 60 10 4502 4498 162 12 150 22     25 4835.6  4845 217     191 4166.8 4160 190     167

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Standard or Nonstandard: Standard
Feature: Cold-Resistant, Corrosion-Resistant, Heat-Resistant
Sealing Gland: Sealed On Both Sides

Gear

How to Compare Different Types of Spur Gears

When comparing different types of spur gears, there are several important considerations to take into account. The main considerations include the following: Common applications, Pitch diameter, and Addendum circle. Here we will look at each of these factors in more detail. This article will help you understand what each type of spur gear can do for you. Whether you’re looking to power an electric motor or a construction machine, the right gear for the job will make the job easier and save you money in the long run.

Common applications

Among its many applications, a spur gear is widely used in airplanes, trains, and bicycles. It is also used in ball mills and crushers. Its high speed-low torque capabilities make it ideal for a variety of applications, including industrial machines. The following are some of the common uses for spur gears. Listed below are some of the most common types. While spur gears are generally quiet, they do have their limitations.
A spur gear transmission can be external or auxiliary. These units are supported by front and rear casings. They transmit drive to the accessory units, which in turn move the machine. The drive speed is typically between 5000 and 6000 rpm or 20,000 rpm for centrifugal breathers. For this reason, spur gears are typically used in large machinery. To learn more about spur gears, watch the following video.
The pitch diameter and diametral pitch of spur gears are important parameters. A diametral pitch, or ratio of teeth to pitch diameter, is important in determining the center distance between two spur gears. The center distance between two spur gears is calculated by adding the radius of each pitch circle. The addendum, or tooth profile, is the height by which a tooth projects above the pitch circle. Besides pitch, the center distance between two spur gears is measured in terms of the distance between their centers.
Another important feature of a spur gear is its low speed capability. It can produce great power even at low speeds. However, if noise control is not a priority, a helical gear is preferable. Helical gears, on the other hand, have teeth arranged in the opposite direction of the axis, making them quieter. However, when considering the noise level, a helical gear will work better in low-speed situations.

Construction

The construction of spur gear begins with the cutting of the gear blank. The gear blank is made of a pie-shaped billet and can vary in size, shape, and weight. The cutting process requires the use of dies to create the correct gear geometry. The gear blank is then fed slowly into the screw machine until it has the desired shape and size. A steel gear blank, called a spur gear billet, is used in the manufacturing process.
A spur gear consists of two parts: a centre bore and a pilot hole. The addendum is the circle that runs along the outermost points of a spur gear’s teeth. The root diameter is the diameter at the base of the tooth space. The plane tangent to the pitch surface is called the pressure angle. The total diameter of a spur gear is equal to the addendum plus the dedendum.
The pitch circle is a circle formed by a series of teeth and a diametrical division of each tooth. The pitch circle defines the distance between two meshed gears. The center distance is the distance between the gears. The pitch circle diameter is a crucial factor in determining center distances between two mating spur gears. The center distance is calculated by adding the radius of each gear’s pitch circle. The dedendum is the height of a tooth above the pitch circle.
Other considerations in the design process include the material used for construction, surface treatments, and number of teeth. In some cases, a standard off-the-shelf gear is the most appropriate choice. It will meet your application needs and be a cheaper alternative. The gear will not last for long if it is not lubricated properly. There are a number of different ways to lubricate a spur gear, including hydrodynamic journal bearings and self-contained gears.
Gear

Addendum circle

The pitch diameter and addendum circle are two important dimensions of a spur gear. These diameters are the overall diameter of the gear and the pitch circle is the circle centered around the root of the gear’s tooth spaces. The addendum factor is a function of the pitch circle and the addendum value, which is the radial distance between the top of the gear tooth and the pitch circle of the mating gear.
The pitch surface is the right-hand side of the pitch circle, while the root circle defines the space between the two gear tooth sides. The dedendum is the distance between the top of the gear tooth and the pitch circle, and the pitch diameter and addendum circle are the two radial distances between these two circles. The difference between the pitch surface and the addendum circle is known as the clearance.
The number of teeth in the spur gear must not be less than 16 when the pressure angle is twenty degrees. However, a gear with 16 teeth can still be used if its strength and contact ratio are within design limits. In addition, undercutting can be prevented by profile shifting and addendum modification. However, it is also possible to reduce the addendum length through the use of a positive correction. However, it is important to note that undercutting can happen in spur gears with a negative addendum circle.
Another important aspect of a spur gear is its meshing. Because of this, a standard spur gear will have a meshing reference circle called a Pitch Circle. The center distance, on the other hand, is the distance between the center shafts of the two gears. It is important to understand the basic terminology involved with the gear system before beginning a calculation. Despite this, it is essential to remember that it is possible to make a spur gear mesh using the same reference circle.

Pitch diameter

To determine the pitch diameter of a spur gear, the type of drive, the type of driver, and the type of driven machine should be specified. The proposed diametral pitch value is also defined. The smaller the pitch diameter, the less contact stress on the pinion and the longer the service life. Spur gears are made using simpler processes than other types of gears. The pitch diameter of a spur gear is important because it determines its pressure angle, the working depth, and the whole depth.
The ratio of the pitch diameter and the number of teeth is called the DIAMETRAL PITCH. The teeth are measured in the axial plane. The FILLET RADIUS is the curve that forms at the base of the gear tooth. The FULL DEPTH TEETH are the ones with the working depth equal to 2.000 divided by the normal diametral pitch. The hub diameter is the outside diameter of the hub. The hub projection is the distance the hub extends beyond the gear face.
A metric spur gear is typically specified with a Diametral Pitch. This is the number of teeth per inch of the pitch circle diameter. It is generally measured in inverse inches. The normal plane intersects the tooth surface at the point where the pitch is specified. In a helical gear, this line is perpendicular to the pitch cylinder. In addition, the pitch cylinder is normally normal to the helix on the outside.
The pitch diameter of a spur gear is typically specified in millimeters or inches. A keyway is a machined groove on the shaft that fits the key into the shaft’s keyway. In the normal plane, the pitch is specified in inches. Involute pitch, or diametral pitch, is the ratio of teeth per inch of diameter. While this may seem complicated, it’s an important measurement to understand the pitch of a spur gear.
gear

Material

The main advantage of a spur gear is its ability to reduce the bending stress at the tooth no matter the load. A typical spur gear has a face width of 20 mm and will fail when subjected to 3000 N. This is far more than the yield strength of the material. Here is a look at the material properties of a spur gear. Its strength depends on its material properties. To find out what spur gear material best suits your machine, follow the following steps.
The most common material used for spur gears is steel. There are different kinds of steel, including ductile iron and stainless steel. S45C steel is the most common steel and has a 0.45% carbon content. This type of steel is easily obtainable and is used for the production of helical, spur, and worm gears. Its corrosion resistance makes it a popular material for spur gears. Here are some advantages and disadvantages of steel.
A spur gear is made of metal, plastic, or a combination of these materials. The main advantage of metal spur gears is their strength to weight ratio. It is about one third lighter than steel and resists corrosion. While aluminum is more expensive than steel and stainless steel, it is also easier to machine. Its design makes it easy to customize for the application. Its versatility allows it to be used in virtually every application. So, if you have a specific need, you can easily find a spur gear that fits your needs.
The design of a spur gear greatly influences its performance. Therefore, it is vital to choose the right material and measure the exact dimensions. Apart from being important for performance, dimensional measurements are also important for quality and reliability. Hence, it is essential for professionals in the industry to be familiar with the terms used to describe the materials and parts of a gear. In addition to these, it is essential to have a good understanding of the material and the dimensional measurements of a gear to ensure that production and purchase orders are accurate.

China Custom Professional Manufacture Slewing Bearing, External Gear, High Quality manufacturer China Custom Professional Manufacture Slewing Bearing, External Gear, High Quality manufacturer
editor by CX 2023-05-26