产品描述
HangZhou Manufacturer Professional supplier high tolerance precision CNC machining Stainless Steel rod Spline Shaft
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19 years industry experience
11 years in Euro-market, been serving Top 10 companies in the Railway and gym equipments industry.
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Muyang machinery is a manufacturer with the capability of comprehensive services of casting, forging and machining, committed to the production of customized parts. Since established in 2002 (former Miaosen Machinery Co., Ltd), we’ve been supplying to the global market for over 15 years, served industries include automotive, railway, gas and oil, medical machinery, construction machinery, gym equipment, etc.
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Capability |
CNC machining center – MAX size: 600*1200*500mm General tolerance: ±0.005mm Machine qty: 6 sets CNC Milling – MAX size: 1200*500mm General tolerance: ±0.02mm Machine qty: 12 sets CNC turning – MAX size: φ0.5-φ800*1000mm General tolerance: ±0.005mm Machine qty: 35 sets |
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Service: |
CNC turning, CNC milling, CNC grinding, CNC lathe machining, CNC boring, CNC drilling, CNC tapping, surface treatment etc. |
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Material available |
Stainless steel: SS201, SSS301, SS303, SS304, SS316, SS416, SS440C etc. Steel: Mild steel, Carbon steel, 4140, 4340, Q235, Q345B, 20#, 45# Brass/Bronze: HPb63, HPb62, HPb61, HPb59, H59, H68, H80, H90, C360, C260, C932 Copper: C11000, C12000, C36000 Aluminum: AL2017, AL2571, AL5052, AL5083, AL6061, AL6063, AL6082, AL7075 Iron: A36, 45#, 1213, 1214, 1215 Others per customers’ requirements |
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表面处理 |
Aluminum alloy: Clear anodized, color anodized, sand blast anodized, hard anodized, brushing, polishing, powder coated and painting Brass/copper/steel: Nickel plating, chrome plating Steel/Stainless steel: Zinc plating, oxide black, carburized, heat treatment, nitriding |
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Measuring tools |
Micrometer, calipers, thread tools, high guage, trapezoidal thread plug gauge, sclerometer, dial indicator, projector |
Related Services
包装和运输
We promise our clients careful, safe and tight package for exporting!
标准 packing: pearl cotton/bubble bag + carton box + pallet/wooden box
Special packing: custom packaging + wooden box
常问问题
1. Are you a manufacturer or trading company?
We’re a manufacturer with self-export rights.
2. What’s your main business?
Our main business is custom metal parts processed by CNC machining, casting, forging etc., served industries including railway, automobile, construction machinery, gym equipment, water gas and oil.
3. Directly get to CONTACT or send your product drawing/inquiries to email, we will reply within 0.5 hour.
| 应用: | Fastener, Auto and Motorcycle Accessory, Hardware Tool, Machinery Accessory |
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| 标准: | GB, EN, API650, China GB Code, JIS Code, TEMA, ASME |
| 表面处理: | Sand Blast/Powder Coating/Electroplating/Polishing |
| Production Type: | Mass Production |
| Machining Method: | CNC Machining |
| 材料: | Steel, Brass, Alloy, Copper, Aluminum, Iron |
| 定制化: |
可用的
| 定制请求 |
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花键轴如何促进高效动力传输?
花键轴在各种机械系统中发挥着至关重要的作用,能够实现高效的动力传输。以下详细解释了花键轴如何促进高效的动力传输:
1. 扭矩传递:
花键轴的设计目的是将扭矩从一个部件传递到另一个部件。它们提供可靠的防滑连接,从而实现高效的动力传输,避免打滑或能量损失。轴上的花键与配合部件上的相应花键啮合,形成牢固的机械连接,实现扭矩传递。
2. 负荷分配:
花键轴能将施加的载荷均匀地分布在啮合面上。轴上的花键齿或槽确保载荷分散到多个接触点。这种均匀的载荷分布有助于防止局部应力集中,并降低过早磨损或失效的风险。高效的载荷分布确保动力平稳可靠地传递。
3. 错位补偿:
花键轴能够适应配合部件之间一定程度的不对中。花键的轮廓设计允许存在角度或平行不对中,而不会影响动力传输能力。这种不对中补偿能力对于在难以实现完美对准或对准条件不稳定的情况下保持高效的动力传输至关重要。
4. 高扭矩容量:
花键轴的设计旨在承受高扭矩。花键的齿形、啮合长度和材料选择都经过优化,以满足预期的扭矩需求。这种高扭矩容量确保轴在正常运行条件下能够高效地传递动力,而不会发生过度变形或失效。
5.扭转刚度:
花键轴具有很高的扭转刚度,这意味着它们在承受扭矩时能够抵抗扭转或扭转变形。轴的设计,包括其直径、花键轮廓和材料特性,都会影响其扭转刚度。高扭转刚度可以最大限度地减少因轴的变形或弯曲而造成的功率损失,从而实现高效的动力传输。
6. 可靠的连接:
花键轴可在驱动部件和从动部件之间提供可靠且可重复的连接。一旦正确啮合,花键轴即可保持连接,确保动力传输的稳定性。这种可靠性对于维持效率以及防止运行过程中出现动力损失或中断至关重要。
7. 最小反弹:
齿隙是指配合部件之间轻微的旋转间隙或间隙。设计合理、制造精良的花键轴可以最大限度地减少动力传输系统中的齿隙。减少齿隙能够最大限度地减少因换向或改变方向而造成的动力损失,从而确保更平稳的运行、更高的精度和效率。
8. 紧凑型设计:
花键轴为动力传输提供了一种紧凑且节省空间的解决方案。其设计使其占用空间相对较小,同时又能提供强大的扭矩传输能力。这种紧凑的设计在空间受限的应用中尤为有利,例如汽车传动系统或小型机械。
通过在机械系统中采用花键轴,工程师可以实现高效的动力传输,确保动力从驱动源有效传递到被驱动部件。花键轴独特的设计特点使其能够实现可靠的扭矩传递、均匀的载荷分布、补偿不对中、高扭矩容量、扭转刚度、可靠的连接、最小的齿隙以及紧凑的结构。

What materials are commonly used in the construction of spline shafts?
Various materials are commonly used in the construction of spline shafts, depending on the specific application requirements. Here’s a list of commonly used materials:
1. Steel:
Steel is one of the most widely used materials for spline shafts. Different grades of steel, such as carbon steel, alloy steel, or stainless steel, can be employed based on factors like strength, hardness, and corrosion resistance. Steel offers excellent mechanical properties, including high strength, durability, and wear resistance, making it suitable for a broad range of applications.
2. Alloy Steel:
Alloy steel is a type of steel that contains additional alloying elements, such as chromium, molybdenum, or nickel. These alloying elements enhance the mechanical properties of the steel, providing improved strength, toughness, and wear resistance. Alloy steel spline shafts are commonly used in applications that require high torque capacity, durability, and resistance to fatigue.
3. Stainless Steel:
Stainless steel is known for its corrosion resistance properties, making it suitable for applications where the spline shaft is exposed to moisture or corrosive environments. Stainless steel spline shafts are commonly used in industries such as food processing, chemical processing, marine, and medical equipment.
4. Aluminum:
Aluminum is a lightweight material with good strength-to-weight ratio. It is often used in applications where weight reduction is a priority, such as automotive and aerospace industries. Aluminum spline shafts can provide advantages such as decreased rotating mass and improved fuel efficiency.
5. Titanium:
Titanium is a strong and lightweight material with excellent corrosion resistance. It is commonly used in high-performance applications where weight reduction, strength, and corrosion resistance are critical factors. Titanium spline shafts find applications in aerospace, motorsports, and high-end industrial equipment.
6. Brass:
Brass is an alloy of copper and zinc, offering good machinability and corrosion resistance. It is often used in applications that require electrical conductivity or a non-magnetic property. Brass spline shafts can be found in industries such as electronics, telecommunications, and instrumentation.
7. Plastics and Composite Materials:
In certain applications where weight reduction, corrosion resistance, or noise reduction is important, plastics or composite materials can be used for spline shafts. Materials such as nylon, acetal, or fiber-reinforced composites can provide specific advantages in terms of weight, low friction, and resistance to chemicals.
It’s important to note that material selection for spline shafts depends on factors such as load requirements, environmental conditions, operating temperatures, and cost considerations. Engineers and designers evaluate these factors to determine the most suitable material for a given application.

What are the advantages of using spline shafts in mechanical systems?
Using spline shafts in mechanical systems offers several advantages. Here’s a detailed explanation:
1. 扭矩传递:
Spline shafts provide efficient torque transmission between the driving and driven components. The interlocking splines ensure a secure and reliable transfer of rotational force, enabling the transmission of power and motion in mechanical systems.
2. Relative Movement Accommodation:
Spline shafts can accommodate relative movement between the driving and driven components. They allow axial, radial, and angular displacements, compensating for misalignments, thermal expansion, and vibrations. This flexibility helps to maintain proper engagement and minimize stress concentrations.
3. 负荷分配:
The splines on the shaft distribute the transmitted load across the entire engagement surface. This helps to reduce localized stresses and prevents premature wear or failure of the components. The load distribution capability of spline shafts contributes to the overall durability and longevity of the mechanical system.
4. Precise Positioning and Control:
Spline shafts enable precise positioning and control of mechanical components. The splines provide accurate rotational alignment, allowing for precise angular positioning and indexing. This is crucial in applications where precise control and synchronization of movements are required.
5. Interchangeability and Standardization:
Spline shafts are available in standardized designs and dimensions. This enables interchangeability between components and facilitates easier maintenance and replacement. Standardization also simplifies the design and manufacturing processes, reducing costs and lead times.
6. High Power Transmission Capacity:
Spline shafts are designed to withstand high torque loads. The interlocking splines provide a large contact area, distributing the transmitted torque across multiple teeth. This allows spline shafts to handle higher power transmission requirements, making them suitable for heavy-duty applications.
7. Versatility:
Spline shafts can be designed and manufactured to suit various application requirements. They can be customized in terms of size, shape, number of splines, and spline profile to match the specific needs of a mechanical system. This versatility makes spline shafts adaptable to a wide range of industries and applications.
8. Reduced Slippage and Backlash:
When properly designed and manufactured, spline shafts exhibit minimal slippage and backlash. The tight fit between the splines prevents significant axial or radial movement during torque transmission, resulting in improved efficiency and precision in mechanical systems.
In summary, the advantages of using spline shafts in mechanical systems include efficient torque transmission, accommodation of relative movement, load distribution, precise positioning and control, interchangeability, high power transmission capacity, versatility, and reduced slippage and backlash. These advantages make spline shafts a reliable and effective choice in various applications where power transfer, flexibility, and precise motion control are essential.


editor by CX 2023-09-26