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Disc Springs products in the Automation Components category from OCHIAI. The product can be selected based specifications such as Outer Dia. D, Inner Dia. d, Applied Load, Material, Plate Thickness t. OCHIAI offers products around 2 items and the product specifications can easily be compared. Search and select detailed specifications of parts for your machine with free CAD download. OCHIAI products are available to order through MISUMI online 24/7. Free shipping, no minimum order.
Disc Spring (Heavy Load)Disc Springs also known as belleville spring offer a wide variety of sizes to choose from.[Feature]● Outer Diameter Minimum/Maximum (mm.) : 8 and 100● Inner Diameter Minimum/Maximum (mm.) : 4.2 and 51● Free State Height Minimum/Maximum (mm.) : 0.6 and 8.2 (depend on product code)● Material : Spring Steel● Surface treatment : ACP (Phosphate coating)[Application]Disc springs for heavy load are utilized in bolted joints to maintain the desired preload force.
Outer Dia. D(Ø)
Inner Dia. d(Ø)
Applied Load
Load P3 (at 0.75h)(N)
Material
Plate Thickness t(mm)
Free Height Ho(mm)
Load P1 (at 0.25h)(N)
Total Deflection h(mm)
Deflection δ
Load P1 (at 0.50h)(N)
8 ~ 100
4.2 ~ 51
For Heavy Load
-
Spring Steel
0.4 ~ 6
-
-
0.2 ~ 2.2
-
-
From:
2,370 VND
Special Price
Days to Ship: Số ngày giao hàng:
Same day or more
Same day or more
You can add up to 6 items per a category to the compare list.
Disc Spring (for Light Loads)Disc Springs also known as belleville spring offer a wide variety of sizes to choose from.[Feature]● Outer Diameter Minimum/Maximum (mm.) : 8 and 100● Inner Diameter Minimum/Maximum (mm.) : 4.2 and 51● Free State Height Minimum/Maximum (mm.) : 0.55 and 6.3 (depend on product code)● Material : Spring Steel[Application]Disc springs for light load are utilized in bolted joints to maintain the desired preload force.
Outer Dia. D(Ø)
Inner Dia. d(Ø)
Applied Load
Load P3 (at 0.75h)(N)
Material
Plate Thickness t(mm)
Free Height Ho(mm)
Load P1 (at 0.25h)(N)
Total Deflection h(mm)
Deflection δ
Load P1 (at 0.50h)(N)
8 ~ 100
4.2 ~ 51
For Light Load
-
Spring Steel
0.3 ~ 3.5
-
-
0.25 ~ 2.8
-
-
From:
3,090 VND
Days to Ship: Số ngày giao hàng:
Same day or more
Same day or more
BrandNhãn hiệu
Product SeriesDòng sản phẩm
From
Days to ShipSố ngày giao hàng
Outer Dia. D(Ø)
Inner Dia. d(Ø)
Applied Load
Load P3 (at 0.75h)(N)
Material
Plate Thickness t(mm)
Free Height Ho(mm)
Load P1 (at 0.25h)(N)
Total Deflection h(mm)
Deflection δ
Load P1 (at 0.50h)(N)
You can add up to 6 items per a category to the compare list.
You can add up to 6 items per a category to the compare list.
Answer: Disc spring washers are used to absorb the vibration and shock loads in bolt assemblies that are suitable for industries that use high-vibration machinery. It depends on how you put the disc spring washers on.
1. Parallel - When tightening the bolt and nut, The disc spring washer will help distribute the compression force equally from the bolt to the flange. Make good seals to prevent leakage.
2. Stacking - this method provides a spring constant and prevents deflecting force. Make it act like a shock absorber that helps to decrease the bolt's loose from vibration.
3. Combined This method combined the advantages of Parallel and Stacking together.
Question: What is the material of disc springs?
Answer: Here are some common materials for disc springs or Belleville spring consist of
1. Carbon steel: Carbon steel is the most common material for disc springs. It is relatively inexpensive and easy to work with. However, carbon steel has a relatively low fatigue limit, so it is not suitable for applications where the spring will be subjected to a lot of repeated loading and unloading.
2. Stainless steel: Stainless steel is a more corrosion-resistant material than carbon steel. It is also more fatigue resistant, so it is suitable for applications where the spring will be subjected to a lot of repeated loading and unloading. However, stainless steel is more expensive than carbon steel.
3. Chrome vanadium steel: Chrome vanadium steel is a high-strength material that is often used in applications where the spring will be subjected to high loads. It is also more fatigue resistant than carbon steel or stainless steel. However, chrome vanadium steel is more expensive than these other materials.
4. Beryllium copper: Beryllium copper is a very strong and fatigue-resistant material. It is also corrosion-resistant and has a high spring rate. However, beryllium copper is a very expensive material.
Question: How do I choose a disc spring?
Answer: 1. Choose a Disc Spring that has the right dimensions, which include the Outer diameter, Inner diameter, Thickness and Height.
2. Choose a Disc Spring that matches the temperature in the operation area - which has 4 ranges: normal temperature, >150°C, >300°C and >600°C.
3. Choose a Disc Spring that is resistant to chemicals and corrosion.
4. Choose a Disc Spring that is matched to the Load of the application.
Question: What is the difference between a wave washer and a disc spring?
Answer: Wave washers and disc springs are both types of spring washers that are used to provide a preload in bolted assemblies. However, there are some key differences between the two types of washers.
• Wave washers are typically made from a single piece of metal that has been shaped into a wave pattern. The wave pattern creates a series of peaks and valleys that provide a progressive preload as the bolt is tightened. Wave washers are typically used in applications where a high preload is required, such as in heavy-duty machinery.
• Disc springs are typically made from a stack of thin discs that have been sandwiched together. The discs are shaped into a conical frustum, which creates a spring-like action when the bolt is tightened. Disc springs are typically used in applications where a repeatable preload is required, such as in pressure control valves, shock absorbers and clutches.
In general, wave washers are a good choice for applications where a high preload is required, while disc springs are a good choice for applications where a repeatable preload is required.
How can we improve?
How can we improve?
While we are not able to respond directly to comments submitted in this form, the information will be reviewed for future improvement.
Customer Privacy Policy
Thank you for your cooperation.
While we are not able to respond directly to comments submitted in this form, the information will be reviewed for future improvement.
Please use the inquiry form.
Customer Privacy Policy