A thin wall bearing is a type of bearing that features a slim design with a reduced cross-section compared to standard bearings. This design allows for space-saving solutions in applications where size and weight are critical factors. Thin wall bearings are commonly used in industries such as robotics, medical equipment, aerospace, and automotive, where precision and compactness are required.
High load capacity: Despite their slim design, thin wall bearings are engineered to have a high load-carrying capacity, making them suitable for applications with moderate to heavy loads.
Excellent rigidity: Thin wall bearings offer excellent rigidity and stiffness, providing enhanced support and stability for rotating components.
Corrosion resistance: Many thin wall bearings are made from materials such as stainless steel or ceramic, which offer excellent corrosion resistance, ensuring a longer service life and reduced maintenance requirements.
Temperature resistance: Thin wall bearings are designed to withstand high temperatures, making them suitable for applications where heat generation is a concern.
Customization options: Thin wall bearings can often be customized to meet specific application requirements, such as special coatings for improved performance or sealing options for added protection against contamination.
Low torque: Thin wall bearings are designed to have low starting and running torque, reducing energy consumption and improving overall efficiency.
Easy installation and maintenance: Thin wall bearings are typically easy to install and maintain, helping to minimize downtime and reduce maintenance costs.
These additional features highlight the versatility and reliability of thin wall bearings, making them a popular choice for various industrial applications where space-saving, precision, and performance are essential.
model | Imperial Sizes(in) | Metric Sizes | Radial load capacity | weight | |||||
Inner diameter | Outer diameter | Width | Inner diameter | Outer diameter | Width | Static load | Dynamic load | (Kg) | |
d | D | B | d | D | B | Cor | Cr | ||
mm | mm | (N) | |||||||
61802 | 1000802 | 15 | 24 | 5 | 2.1 | 1.30 | 30000 | 22000 | |
61803 | 1000803 | 17 | 26 | 5 | 2.2 | 1.50 | 28000 | 20000 | |
61804 | 1000804 | 20 | 32 | 7 | 3.5 | 2.20 | 24000 | 18000 | |
61801 | 1000801 | 12 | 21 | 5 | 1.9 | 1.00 | 32000 | 24000 | |
61809 | 1000809 | 45 | 58 | 7 | 6.4 | 5.60 | 12000 | 9000 | |
61806 | 1000806 | 30 | 42 | 7 | 4.7 | 3.60 | 17000 | 13000 | |
61807 | 1000807 | 35 | 47 | 7 | 4.9 | 4.00 | 15000 | 11000 | |
61805 | 1000805 | 25 | 37 | 7 | 4.3 | 2.90 | 20000 | 16000 | |
61808 | 1000808 | 40 | 52 | 7 | 5.1 | 4.40 | 13000 | 10000 | |
61810 | 1000810 | 50 | 65 | 7 | 6.6 | 6.10 | 10000 | 8500 | |
61811 | 1000811 | 55 | 72 | 9 | 9.1 | 8.40 | 9500 | 8000 | |
61815 | 1000815 | 75 | 95 | 10 | 12.5 | 12.8 | 7000 | 6000 | |
61813 | 1000813 | 65 | 85 | 10 | 11.9 | 11.5 | 8000 | 6700 | |
61814 | 1000814 | 70 | 90 | 10 | 12.1 | 11.9 | 7500 | 6300 | |
61812 | 1000812 | 60 | 78 | 10 | 9.1 | 8.70 | 8500 | 7000 | |
61816 | 1000816 | 80 | 100 | 10 | 12.7 | 13.3 | 6700 | 5600 | |
61800 | 1000800 | 10 | 19 | 5 | 1.8 | 0.93 | 36000 | 28000 | |
61818 | 1000818 | 90 | 115 | 13 | 19.5 | 20.5 | 6000 | 4800 | |
61819 | 1000819 | 95 | 120 | 13 | 19.8 | 21.3 | 5600 | 4500 | |
61820 | 1000820 | 100 | 125 | 13 | 20.1 | 22.0 | 5300 | 4300 | |
61817 | 1000817 | 85 | 110 | 13 | 19.2 | 19.8 | 6300 | 5000 | |
61822 | 1000822 | 110 | 140 | 16 | 28.1 | 30.7 | 5000 | 3800 | |
61824 | 1000824 | 120 | 150 | 16 | 28.9 | 32.9 | 4300 | 3400 | |
61821 | 1000821 | 105 | 130 | 13 | 20.3 | 22.7 | 5000 | 4000 | |
61826 | 1000826 | 130 | 165 | 18 | 37.9 | 42.9 | 4000 | 3200 |
Thin wall bearings are commonly used in various industries and applications where space-saving, precision, and efficiency are important. Some typical applications of thin wall bearings include:
Robotics: Thin wall bearings are widely used in robotic arms, joints, and manipulators due to their compact design and high precision, enabling smooth and precise movement.
Medical equipment: Thin wall bearings are utilized in medical devices such as surgical robots, imaging equipment, and prosthetics, where precise and reliable motion control is required.
Aerospace: Thin wall bearings are used in aircraft components, including landing gear, control systems, and cabin equipment, due to their lightweight design and ability to withstand high loads and temperatures.
Automotive: Thin wall bearings are employed in automotive applications such as steering systems, transmissions, and electric motors, where space-saving solutions and high-performance capabilities are needed.
Machinery and equipment: Thin wall bearings are used in various industrial machinery and equipment, such as packaging machines, textile machinery, and semiconductor manufacturing equipment, to provide smooth and reliable operation in limited spaces.
Renewable energy: Thin wall bearings are used in wind turbines, solar tracking systems, and other renewable energy applications to support precise movement and load handling requirements.
Precision instruments: Thin wall bearings are incorporated into precision instruments such as measuring devices, optical equipment, and laboratory equipment, where high levels of accuracy and stability are crucial.
Product Packaging:
The thin wall bearings are packaged in a sturdy cardboard box to protect them during shipping and storage. Each bearing is individually wrapped in a plastic bag to prevent any damage or contamination during transportation.
Shipping:
Our thin wall bearings are shipped via a reputable courier service to ensure fast and reliable delivery to our customers. We take great care in packaging and labeling each shipment to ensure that it arrives in good condition and is easy to identify.
Q:What's your after-sales service and warranty?
A: We promise to bear the following responsibilities when defective products were found:
1. Replacements would be sent with goods of your next order;
2. Refund for defective products if customers require.
Q:Do you accept ODM&OEM orders?
A: Yes, we provide ODM&OEM services to worldwide customers, we also customize OEM box and packing as your requirements.
Q:What's the MOQ?
A: MOQ is 10pcs for standardized products; for customized products, MOQ should be negotiated in advance. There is no MOQ for sample orders.
Q:How long is the lead time?
A: The lead time for sample orders is 3-5 days, for bulk orders is 5-15 days.
Q:Do you offer free samples?
A: Yes we offer free samples to distributors and wholesalers, however customers should bear freight. We DO NOT offer free samples to end users.
Q:How to place order?
A: 1. Email us the model, brand and quantity,shipping way of bearings and we will quote our best price for you;
2. Proforma Invoice made and sent to you as the price agreed by both parts;
3. Deposit Payment after confirming the PI and we arrange production;
4. Balance paid before shipment or after copy of Bill of Loading.