China Hot selling High Precision Standard Special Stainless Steel Spur Gear Aluminum Metric Steering Spline Shaft Pinion Wheel Hobbing CNC OEM worm gear motor
Product Description
High Precision Standard Special Stainless Steel Spur Gear Aluminum Metric Steering
Spline Shaft Pinion Wheel Hobbing CNC OEM
| Material | 1) Aluminum: AL 6061-T6, 6063, 7075-T etc. |
| 2) Stainless steel: 303, 304, 316L, 17-4(SUS630) etc. | |
| 3) Steel: 4140, Q235, Q345B, 20#, 45# etc. | |
| 4) Titanium: TA1, TA2/GR2, TA4/GR5, TC4, TC18 etc. | |
| 5) Brass: C36000 (HPb62), C37700 (HPb59), C26800 (H68), C22000(H90) etc. | |
| 6) Copper, Bronze, Magnesium alloy, Delrin, POM, Acrylic, PC, etc. | |
| Finsh | Sandblasting, Anodize color, Blackenning, Zinc/Nickl Plating, Polish. |
| Power coating, Passivation PVD, Titanium Plating, Electrogalvanizing. | |
| Electroplating chromium, Electrophoresis, QPQ(Quench-Polish-Quench). | |
| Electro Polishing, Chrome Plating, Knurl, Laser etch Logo, etc. | |
| Main Equipment | CNC machining center(Milling), CNC Lathe, Grinding machine. |
| Cylindrical grinder machine, Drilling machine, Laser cutting machine, etc. | |
| Drawing format | STEP, STP, GIS, CAD, PDF, DWG, DXF etc or samples. |
| Tolerance | +/-0.01mm ~ +/-0.05mm |
| Surface roughness | Ra 0.1~3.2 |
| Inspection | Complete inspection lab with Micrometer, Optical Comparator, Caliper Vernier, CMM. |
| Depth Caliper Vernier, Universal Protractor, Clock Gauge, Internal Centigrade Gauge. | |
| Capacity | CNC turning work range: φ0.5mm-φ150mm*300mm. |
| CNC milling work range: 510mm*1571mm*500mm. |
About Runsom
Runsom, a company specializing in rapid prototyping and manufacturing, has decades of experience in
CNC machining, 3D printing, injection molding, sheet metal fabrication, and die casting. Our engineering
team with extensive knowledge and experience utilizes the latest prototyping technologies and top-notch
machining equipment to provide comprehensive services to satisfy global customers’ requirements,
timescales, and specific needs. We are able to take your concepts or designs to reality production in just
days with our advanced machining technologies, extensive manufacturing experience, and a wealth of
premium materials.
Our Mission
Runsom Precision was established to give support to companies in the industries fields who continually
need to reduce their costs and meet tight deadlines. Our purpose is to ensure customer satisfaction by
providing first-class project management control and problem-free products.
Get a Quote
Q1: What’s kinds of information you need for quote?
A1: Kindly please provide the 2D/3D drawings (PDF/DWG/DXF/IGS/STP/SLDPRT/etc) and advise material
, finish, quantity for quoting.
Q2: What is your MOQ?
A2: MOQ depends on our client’s needs, besides, we welcome trial order before mass-production.
Q3: What is the lead time?
A3: Depending on your specific project and quantity.
Q4: Available for customized design drawings?
A4: Yes, please send the technical drawings to us. It’s better if you can send both 2D and 3D drawings if
you have.
Q5: If the parts we purchase from your company are not good, what can we do?
A5: Please feel free to contact us after you got the products. Kindly send us some photos, we will
feedback to our engineers and QC departments and solve the problems ASAP.
Q6: Are you a manufacturer or trading company?
A6: We are a manufacturer, we are located in HangZhou, China.
Q7: Will my drawings be safe after sending to you?
A7: Yes, we will keep them well and not release to third party without your permission.
| Application: | Motor, Electric Cars, Motorcycle, Machinery, Marine, Toy, Agricultural Machinery, Car, Auto,Motorcycle,Aviation,Electonic,Medical,Home |
|---|---|
| Hardness: | According to The Drawing |
| Gear Position: | According to The Drawing |
| Manufacturing Method: | Machining,Milling,Turning,5axis,etc |
| Toothed Portion Shape: | Custom |
| Material: | Aluminum,Steel,Brass,Hardware,etc |
| Samples: |
US$ 5/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

What is the impact of temperature variations on aluminum gears?
The impact of temperature variations on aluminum gears can be significant. Here’s a detailed explanation:
1. Thermal Expansion: Aluminum gears, like most metals, expand with increasing temperature and contract with decreasing temperature. This thermal expansion can affect the dimensional stability of the gears, leading to changes in gear meshing, backlash, and overall gear performance. It is crucial to consider the coefficient of thermal expansion of the specific aluminum alloy used and account for it in gear design and assembly.
2. Mechanical Properties: Temperature variations can influence the mechanical properties of aluminum gears. At higher temperatures, aluminum alloys may experience a reduction in strength, stiffness, and hardness. This can affect the load-carrying capacity and durability of the gears, especially in applications involving high operating temperatures. Additionally, prolonged exposure to elevated temperatures can cause thermal degradation and a loss of mechanical properties over time.
3. Lubrication: Temperature changes can impact the lubrication properties of the gear system. Lubricants behave differently at different temperatures, and extreme temperature variations can affect their viscosity, film thickness, and lubricating effectiveness. Insufficient lubrication due to temperature-related changes can lead to increased friction, wear, and potential gear failures. Proper selection of lubricants and consideration of temperature effects are essential.
4. Thermal Cycling: Cycling between high and low temperatures can induce thermal stresses in aluminum gears. These thermal stresses, combined with mechanical loading, can contribute to fatigue failure, cracking, or distortion of the gears over time. It is important to evaluate the thermal cycling conditions and design the gears to withstand the associated thermal stresses to ensure long-term reliability.
5. Heat Dissipation: Aluminum has good thermal conductivity, which allows it to dissipate heat effectively. In applications where the gears generate significant heat, such as high-speed or heavy-load operations, aluminum gears can help dissipate heat and prevent overheating. However, excessive temperatures can still cause thermal stress and affect the overall performance and lifespan of the gears.
6. Operating Envelope: Temperature variations define the operating envelope of aluminum gears. Each aluminum alloy has a specific temperature range within which it can perform optimally. Operating beyond this temperature range can lead to reduced gear life, accelerated wear, loss of dimensional stability, or even catastrophic failures. Understanding the temperature limits of the selected aluminum alloy is crucial for determining its suitability in a given application.
It is important to note that the impact of temperature variations on aluminum gears can be mitigated through proper design, material selection, lubrication, and thermal management measures. Thermal analysis, including finite element analysis (FEA), can be employed to assess the thermal behavior of the gears and optimize their performance under different temperature conditions.
In summary, temperature variations can significantly impact aluminum gears through thermal expansion, changes in mechanical properties, lubrication effects, thermal cycling, heat dissipation, and the overall operating envelope. Understanding these effects and implementing appropriate measures ensures that the aluminum gears can withstand temperature variations and operate reliably in their intended applications.

Can aluminum gears be used in renewable energy systems?
Yes, aluminum gears can be used in renewable energy systems. Here’s a detailed explanation:
1. Lightweight and Efficient: Aluminum gears offer the advantage of being lightweight, which is beneficial in renewable energy systems where weight reduction can enhance overall efficiency. For example, in wind turbines, lighter gears reduce the stress on the turbine structure and enable more efficient power generation by reducing the inertia and drag on the rotor.
2. Corrosion Resistance: Aluminum alloys exhibit good corrosion resistance, making them suitable for use in renewable energy systems that are often exposed to outdoor environments. This corrosion resistance ensures the durability and longevity of the gears, even in challenging weather conditions.
3. High Strength-to-Weight Ratio: Despite being lightweight, aluminum alloys can provide adequate strength and durability required for the demanding operational conditions in renewable energy systems. The high strength-to-weight ratio of aluminum gears allows for efficient power transmission while minimizing the weight and size of the gear components.
4. Compatibility with Lubricants: Aluminum gears are compatible with various lubricants commonly used in renewable energy systems. Proper lubrication reduces friction, wear, and heat generation, ensuring smooth and efficient gear operation. The compatibility of aluminum gears with lubricants simplifies maintenance and extends the lifespan of the gear system.
5. Design Flexibility: Aluminum is a highly formable material, allowing for versatile gear design possibilities. Engineers can optimize gear geometries and tooth profiles to improve efficiency, reduce noise, and enhance overall system performance. The design flexibility of aluminum gears enables customization to meet the specific requirements of renewable energy applications.
6. Cost-Effectiveness: Aluminum gears offer cost advantages over other materials such as steel or high-performance alloys. The lower material cost and ease of manufacturing aluminum gears contribute to cost-effective solutions in renewable energy systems, making them an attractive option for gear applications.
7. Reduced Environmental Impact: Aluminum is a highly recyclable material, aligning with the sustainability goals of renewable energy systems. The recyclability of aluminum gears reduces the environmental impact and supports the circular economy by conserving resources and reducing waste.
8. Specific Applications: Aluminum gears find applications in various renewable energy systems, including wind turbines, solar power systems, hydroelectric generators, and tidal energy converters. In each of these applications, aluminum gears contribute to efficient power conversion, improved system performance, and reduced maintenance requirements.
Overall, aluminum gears offer several advantages for use in renewable energy systems, including lightweight design, corrosion resistance, high strength-to-weight ratio, compatibility with lubricants, design flexibility, cost-effectiveness, reduced environmental impact, and suitability for specific applications. These qualities make aluminum gears a viable choice for maximizing the performance and efficiency of renewable energy systems.

What are the benefits of using aluminum gears over traditional materials?
Using aluminum gears over traditional materials offers several benefits. Here’s a detailed explanation:
1. Weight Reduction: Aluminum gears are significantly lighter compared to gears made from traditional materials like steel or cast iron. The lower density of aluminum results in gears that weigh less for the same size and shape. This weight reduction offers advantages such as improved energy efficiency, reduced inertia, and easier handling and installation.
2. Improved Energy Efficiency: The lightweight nature of aluminum gears contributes to improved energy efficiency in machinery. With lighter gears, less energy is required to rotate or move the gears, resulting in reduced power consumption. This is particularly beneficial in applications where energy efficiency is a priority, such as automotive or aerospace systems.
3. Reduced Inertia: The lower weight of aluminum gears reduces the inertia of rotating parts. This enables quicker acceleration and deceleration, leading to improved responsiveness and overall performance of the machinery. Reduced inertia also helps reduce wear and tear on other components, enhancing the durability of the system.
4. Corrosion Resistance: Aluminum gears offer good corrosion resistance, particularly when compared to traditional materials like steel. This makes them suitable for applications in environments where exposure to moisture, chemicals, or corrosive substances is common. Industries such as marine, automotive, and outdoor equipment benefit from the corrosion-resistant properties of aluminum gears.
5. Design Flexibility: Aluminum is a highly malleable material, allowing for intricate and complex gear designs. It can be easily shaped and machined into various gear profiles, including custom or specialized designs. This design flexibility enables engineers to optimize gear performance and adapt to specific application requirements.
6. Noise Reduction: Aluminum gears exhibit better noise-dampening characteristics compared to some traditional materials. The inherent damping properties of aluminum help reduce gear noise and vibrations, leading to quieter operation in machinery and equipment.
7. Cost Efficiency: Aluminum gears can offer cost advantages over traditional materials in certain situations. While the initial material cost of aluminum may be higher, the overall cost savings can be realized through factors such as reduced energy consumption, simplified handling and installation, and lower maintenance requirements.
8. Recyclability: Aluminum is a highly recyclable material. Using aluminum gears promotes sustainability and environmental responsibility. Recycling aluminum gears at the end of their lifecycle helps conserve resources and reduce waste.
In summary, using aluminum gears over traditional materials provides benefits such as weight reduction, improved energy efficiency, reduced inertia, corrosion resistance, design flexibility, noise reduction, cost efficiency, and recyclability. These advantages make aluminum gears a favorable choice in various industries and applications.


editor by CX 2023-12-04