Type: BALL
Structure: Angular Make contact with
Applicable Industries: Hotels, Garment Retailers, Constructing Substance Shops, Manufacturing Plant, Machinery Restore Outlets, Food & Beverage Manufacturing facility, Farms, Cafe, Property Use, Retail, Food Store, Printing Retailers, Construction works , Power & Mining, Meals & Beverage Shops, Promoting Firm, Other
Precision Rating: P4
Seals Sort: Open up
Amount of Row: One row
Width: 125mm
thickness: 30mm
dynamic: 127
static: 112
Fatigue load limit: 4.twenty five
Lubrication of grease: 8500
Oil gasoline lubrication: 14000
bodyweight: 2.twenty five
Keywords and phrases: Angular contact ball bearings
Characteristic: Substantial precision, higher speed and prolonged lifestyle
Packaging Specifics: A. Polybag +Box+CartonB. Tube+Box+CartonC. As for every customer’s requestWe have kinds of packages, these kinds of as plastic luggage, cartons, unique boxes. We can use distinct deals primarily based on the merchandise and our customers’ specifications.
Merchandise Description
| Main dimensions | Basic rated load | Fatigue load limit | Limit speed | high quality | model | ||||||||
| inner diameter | Outer diameter | thickness | dynamic | static | Lubrication of grease | Oil gasoline lubrication | weight | ||||||
| d | D | B | C | C0 | Pu | ||||||||
| mm | mm | mm | kN | kN | kN | r/min | kg | – | |||||
| 8 | 22 | 7 | 2,ninety one | 1,twelve | 0,048 | 67000 | 100000 | 0,011 | 708 ACD/P4A | ||||
| 8 | 22 | 7 | 2,ninety six | 1,sixteen | 0,048 | 70000 | 110000 | 0,011 | 708 CD/P4A | ||||
| 9 | 24 | 7 | 3,12 | 1,29 | 0,054 | 63000 | 95000 | 0,014 | 709 ACD/P4A | ||||
| 9 | 24 | 7 | 3,25 | 1,34 | 0,057 | 70000 | 110000 | 0,014 | 709 CD/P4A | ||||
| 10 | 26 | 8 | 3,97 | 1,6 | 0,067 | 56000 | 85000 | 0,018 | 7000 ACD/P4A | ||||
| 10 | 26 | 8 | 4,1 | 1,sixty six | 0,071 | 67000 | 100000 | 0,018 | 7000 CD/P4A | ||||
| 12 | 28 | 8 | 4,36 | 1,eighty three | 0,078 | 53000 | 80000 | 0,02 | 7001 ACD/P4A | ||||
| 12 | 28 | 8 | 4,49 | 1,nine | 0,08 | 60000 | 90000 | 0,02 | 7001 CD/P4A | ||||
| 15 | 32 | 9 | 4,ninety four | 2,32 | 0,098 | 45000 | 67000 | 0,571 | 7002 ACD/P4A | ||||
| 15 | 32 | 9 | 5,2 | 2,forty five | 0,104 | 50000 | 75000 | 0,571 | 7002 CD/P4A | ||||
| 17 | 35 | 10 | 6,five | 3, Good Functionality Lower Cost Extensively Employed E Tricycle Electrical Rickshaw BLDC Motor one | 0,132 | 40000 | 60000 | 0,037 | 7003 ACD/P4A | ||||
| 17 | 35 | 10 | 6,seventy six | 3,25 | 0,137 | 48000 | 70000 | 0,037 | 7003 CD/P4A | ||||
| 20 | 42 | 12 | 8,32 | 4,15 | 0,173 | 34000 | 50000 | 0,065 | 7004 ACD/P4A | ||||
| 20 | 42 | 12 | 8,seventy one | 4,three | 0,eighteen | 38000 | 56000 | 0,065 | 7004 CD/P4A | ||||
| 25 | 47 | 12 | 9,23 | 5 | 0,212 | 28000 | 43000 | 0,075 | 7005 ACD/P4A | ||||
| 25 | 47 | 12 | 9,fifty six | 5,6 | 0,22 | 34000 | 50000 | 0,075 | 7005 CD/P4A | ||||
| 30 | 55 | 13 | 13,8 | 7,65 | 0,325 | 24000 | 38000 | 0,11 | 7006 ACD/P4A | ||||
| 30 | 55 | 13 | 14,three | 8 | 0,345 | 28000 | 43000 | 0,11 | 7006 CD/P4A | ||||
| 35 | 62 | 14 | 14,8 | 9 | 0,38 | 19000 | 32000 | 0,fifteen | 7007 ACD/P4A | ||||
| 35 | 62 | 14 | 15,6 | 9,five | 0,4 | 22000 | 36000 | 0,fifteen | 7007 CD/P4A | ||||
| 40 | 68 | 15 | 15,9 | 10,four | 0,44 | 18000 | 30000 | 0,19 | 7008 ACD/P4A | ||||
| 40 | 68 | 15 | 16,eight | 11 | 0,465 | 19000 | 32000 | 0,19 | 7008 CD/P4A | ||||
| 45 | 75 | 16 | 27,six | 21,6 | 0,nine | 16000 | 26000 | 0,23 | 7009 ACD/P4A | ||||
| 45 | 75 | 16 | 28,six | 22,4 | 0,ninety five | 18000 | 30000 | 0,23 | 7009 CD/P4A | ||||
| 50 | 80 | 16 | 28,1 | 23,two | 0,98 | 15000 | 24000 | 0,25 | 7571 ACD/P4A | ||||
| 50 | 80 | 16 | 29,6 | 24 | 1,02 | 17000 | 28000 | 0,25 | 7571 CD/P4A | ||||
| 55 | 90 | 18 | 37,one | 31 | 1,32 | 14000 | 22000 | 0,37 | 7011 ACD/P4A | ||||
| 55 | 90 | 18 | 39,seven | 32, .18kw 13 hp Stainless Steel Motor General Function .18kw 3 section TENV food grade IEC60034-thirty-2008 IE2 efficiency AC motor five | 1,37 | 15000 | 24000 | 0,37 | 7011 CD/P4A | ||||
| 60 | 95 | 18 | 39 | 33,5 | 1,four | 13000 | 20000 | 0,four | 7012 ACD/P4A | ||||
| 60 | 95 | 18 | 40,three | 34,five | 1,5 | 14000 | 22000 | 0,four | 7012 CD/P4A | ||||
| 65 | 100 | 18 | 39 | 35,five | 1,5 | 12000 | 19000 | 0,42 | 7013 ACD/P4A | ||||
| 65 | 100 | 18 | 41,six | 37,five | 1,six | 14000 | 22000 | 0,forty two | 7013 CD/P4A | ||||
| 70 | 110 | 20 | 48,eight | 44 | 1,86 | 10000 | 17000 | 0,59 | 7014 ACD/P4A | ||||
| 70 | 110 | 20 | 52 | 45,five | 1,93 | 12000 | 19000 | 0,59 | 7014 CD/P4A | ||||
| 75 | 115 | 20 | 49,four | 46,5 | 1,96 | 9500 | 16000 | 0,sixty two | 7015 ACD/P4A | ||||
| 75 | 115 | 20 | 52,7 | 49 | 2,08 | 11000 | 18000 | 0,62 | 7015 CD/P4A | ||||
| 80 | 125 | 22 | 62,4 | 58,5 | 2,forty five | 9000 | 15000 | 0,eighty five | 7016 ACD/P4A | ||||
| 80 | 125 | 22 | 65 | 61 | 2,55 | 10000 | 17000 | 0,eighty five | 7016 CD/P4A | ||||
| 85 | 130 | 22 | 63,seven | 62 | 2,five | 8500 | 14000 | 0,89 | 7017 ACD/P4A | ||||
| 85 | 130 | 22 | 67,six | 65,five | 2,sixty five | 9500 | 16000 | 0,89 | 7017 CD/P4A | ||||
| 90 | 140 | 24 | 74,1 | 72 | 2,eighty five | 8000 | 13000 | 1,fifteen | 7018 ACD/P4A | ||||
| 90 | 140 | 24 | 79,three | 76,five | 3 | 9000 | 15000 | 1,fifteen | 7018 CD/P4A | ||||
| 95 | 145 | 24 | 76,1 | 76,five | 2,9 | 8000 | 13000 | 1,2 | 7019 ACD/P4A | ||||
| 95 | 145 | 24 | 81,nine | 80 | 3,one | 8500 | 14000 | 1,2 | 7019 CD/P4A | ||||
| 100 | 150 | 24 | 79,3 | 80 | 3,05 | 7500 | 12000 | 1,25 | 7571 ACD/P4A | ||||
| 100 | 150 | 24 | 83,2 | 85 | 3,two | 8500 | 14000 | 1,25 | 7571 CD/P4A | ||||
| 105 | 160 | 26 | 904 | 93 | 3, YE4 Collection ac Modest Electric powered Motor for Industrial Machine four | 7500 | 12000 | 1,six | 7571 ACD/P4A | ||||
| 105 | 160 | 26 | 95,6 | 96,5 | 3,six | 8000 | 13000 | 1,6 | 7571 CD/P4A | ||||
| 110 | 170 | 28 | 104 | 104 | 3,seventy five | 7000 | 11000 | 1,95 | 7571 ACD/P4A | ||||
| 110 | 170 | 28 | 111 | 108 | 3,nine | 7500 | 12000 | 1,ninety five | 7571 CD/P4A | ||||
| 120 | 180 | 28 | 111 | 116 | 4 | 6700 | 10000 | 2,1 | 7571 ACD/P4A | ||||
| 120 | 180 | 28 | 114 | 122 | 4,25 | 7000 | 11000 | 2,one | 7571 CD/P4A | ||||
| 130 | 200 | 33 | 140 | 150 | 4,nine | 6000 | 9000 | 3,two | 7026 ACD/P4A | ||||
| 130 | 200 | 33 | 148 | 156 | 5,two | 6700 | 10000 | 3,2 | 7026 CD/P4A | ||||
| 140 | 210 | 33 | 146 | 156 | 5,1 | 5600 | 8500 | 3,4 | 7571 ACD/P4A | ||||
| 140 | 210 | 33 | 153 | 166 | 5,3 | 6700 | 10000 | 3,four | 7571 CD/P4A | ||||
| 150 | 225 | 35 | 163 | 180 | 5,six | 5300 | 8000 | 4,fifteen | 7030 ACD/P4A | ||||
| 150 | 225 | 35 | 172 | 190 | 5,85 | 6000 | 9000 | 4,15 | 7030 CD/P4A | ||||
| 160 | 240 | 38 | 182 | 204 | 6,2 | 5000 | 7500 | 5,one | 7032 ACD/P4A | ||||
| 160 | 240 | 38 | 195 | 216 | 6,55 | 5600 | 8500 | 5,one | 7032 CD/P4A | ||||
| 170 | 260 | 42 | 199 | 232 | 6,7 | 4800 | 7000 | 6,eighty five | 7034 ACD/P4A | ||||
| 170 | 260 | 42 | 212 | 245 | 7,one | 5300 | 8000 | 6,eighty five | 7034 CD/P4A | ||||
| 180 | 280 | 46 | 229 | 275 | 7,sixty five | 4300 | 6300 | 8,nine | 7036 ACD/P4A | ||||
| 180 | 280 | 46 | 242 | 290 | 8,15 | 5000 | 7500 | 8,nine | 7036 CD/P4A | ||||
| 190 | 290 | 46 | 234 | 290 | 8 | 4300 | 6300 | 9,35 | 7038 ACD/P4A | ||||
| 190 | 290 | 46 | 247 | 300 | 8,3 | 4800 | 7000 | 9,35 | 7038 CD/P4A | ||||
| 200 | 310 | 51 | 281 | 365 | 9,8 | 4000 | 6000 | 12 | 7040 ACD/P4A | ||||
| 200 | 310 | 51 | 296 | 390 | 10,2 | 4500 | 6700 | 12 | 7040 CD/P4A | ||||
| 220 | 340 | 56 | 338 | 455 | 11,6 | 3600 | 5300 | 16 | 7044 ACD/P4A | ||||
| 220 | 340 | 56 | 338 | 455 | 11,6 | 4000 | 6000 | 16 | 7044 CD/P4A | ||||
| 240 | 360 | 56 | 325 | 465 | 11,4 | 3200 | 4800 | 17 | 7048 ACD/P4A | ||||
| 240 | 360 | 56 | 345 | 490 | 12 | 3800 | 5600 | 17 | 7048 CD/P4A | ||||
The Benefits of Using Self-Lubricating Bushings for Your Next Pivot
Like any other auto part, control arm bushings wear out over time. This results in an increase in irritating vibrations that can be dangerous in severe cases. The bushings in the control arms also wear out due to the stress that extreme driving conditions put on the control arms. Additionally, environmental factors and oversized tires tend to transmit more vibration through the bushing than conventionally sized tires. Whatever the cause, bushings can be the source of many problems.
wear and cracking
The main cause of dry valve side bushing cracking is a mismatch in thermal expansion of the core and flange. This situation can seriously compromise the safety of the power system. To improve the safety of dry valve side bushings, the crack development of epoxy impregnated paper under various conditions was investigated. A coupled thermomechanical simulation model was also used to study the cracking process.
The first step in diagnosing the cause of bushing wear and cracking is a visual inspection. The bushing of the lower control arm is fixed to the frame by a bracket. If there are any visible cracks, it’s time to replace the bushing. However, there is no need to replace the entire suspension. In some cases, worn bushings can cause a variety of problems, including body lean, excessive tire wear and cornering noise.
Maintenance free
If you’re considering maintenance-free bushings for your next pivot, you’ll be wondering what to look for in these components. The bushing protects the housing from corrosion and keeps the bushing under pressure. However, many users are not familiar with what these components can do for their applications. In this article, we’ll look at several examples of truly maintenance-free pivots and discuss their requirements.
One of the most popular types of maintenance-free bushings are flanged and parallel. Unlike worm gear bushings, these self-lubricating metal bearings are ideal for a variety of applications and conditions. They reduce failure and downtime costs while providing the long-term lubrication required by other types of bushings. Since these sleeves are made of lead-free material, they are RoHS compliant, which means they are environmentally friendly.Another common maintenance-free bushing is plastic. This material is easier to find off-the-shelf and relatively inexpensive to produce. However, it is not suitable for high load applications as it will crack under heavy loads and damage mating parts. Plastics can also deviate if the manufacturing process is imprecise. Plastic bushings can also crack when subjected to high loads.
self-lubricating
When using a self-lubricating bushing, there is no need to apply grease to the bushing. Oily liquids tend to attract dirt and grit, which can wear away the graphite prematurely. By eliminating the need for regular lubrication, you will reduce equipment maintenance costs. This article will explore the benefits of self-lubricating bushings. You will love your kindness.
Self-lubricating bushings have a strong base material to withstand radial bearing pressure while providing shaft support at the contact surfaces. The material also has good fatigue properties and low friction motion. Self-lubricating bushings can be used in environments with high temperatures and aggressive media. These products can also withstand enormous pressure. When using self-lubricating bushings, it is important to select the correct material.
The main advantage of using self-lubricating bushings is ease of maintenance. They don’t require oil to run and are cheaper to buy. Their main benefit is that they can significantly reduce your machine running costs. These bearings do not require oiling operations, reducing maintenance costs. These bearings also offer a simplified mechanical design due to their thin walls and high load capacity. In addition, they reduce noise levels while maintaining excellent wear resistance. Plus, their materials are ROHS compliant, which means they don’t require oil.
Hydropower installations are another area where self-lubricating bushings have proven their advantages. They reduce maintenance costs, extend equipment life, and improve environmental benefits. For example, the Newfoundland Power Company uses self-lubricating bushings in the gates of its hydroelectric power plants. These self-lubricating bushings eliminate grease from entering waterways and tailraces. As a result, power companies are able to reduce maintenance and costs.
compared to cartilage in the human body
What is the difference between tendon, bone and cartilage? Human cartilage is composed of collagen and elastic fibers. In contrast, fibrocartilage contains more collagen than hyaline cartilage. Both cartilage types are composed of proteoglycans, which have a protein backbone and glycosaminoglycan side chains. These components work together to provide structure and flexibility to the cartilage.
Bone is a combination of living and dead cells embedded in a matrix. The outer hard layer of bone is dense bone, and the inner layer is spongy, containing bone marrow, blood vessels, nerves, etc. Bone contains both organic and inorganic substances, and this process of hardening of the matrix produces bone. On the other hand, cartilage consists of chondrocytes and a matrix composed of collagen and elastin fibers. Compared to bone, cartilage is yellow and contains elastic fibers.
Although bone and cartilage are structurally identical, cartilage is more flexible. It is mainly found in the joints and respiratory system and requires flexibility. Its ingredients include collagen and proteoglycans, which provide compression and abrasion resistance. Furthermore, connective tissue is composed of cells, fibers and matrix.
The basic substance of cartilage is chondroitin sulfate, which is derived from animals. Although cartilage grows more slowly than bone, its microstructure is less organized. There is a fibrous sheath covering the cartilage, called the perichondrium. The molecular composition of the ECM plays an important role in the function of cartilage. The collagen matrix is important for cartilage remodeling and consists of changes in the collagen matrix.
Compared to metal-on-bone contact
Both metal-on-bone contact are known to cause a significant increase in the pressures in a joint. To compare the two, we first calculated the joint contact pressures in each model and compared them. The results of this study support previous research on this subject. The following sections discuss the benefits of both types of contact. They also outline some key differences between the two.

editor by czh 2023-02-17