Timing Pulley
Timing pulleys are crucial components used in various mechanical applications, designed to synchronize motion between shafts. Made from materials like steel, aluminum, or plastic, each type offers distinct properties suited to specific environments. The durability of a timing pulley is influenced by the operational conditions, as extreme temperatures can affect performance. These pulleys come in various profiles, such as trapezoidal and hexagonal, and are available in both metric and inch sizes. As a leading manufacturer, Ever-Power offers customized timing pulleys tailored to meet your specific needs and specifications.
Argentina Timing Pulleys for Sale
Timing pulleys come in a variety of types and sizes to suit different applications. When selecting a timing pulley, it’s crucial to consider the operating environment, as factors like temperature and pressure can impact performance. Regular checks for wear, debris, and overall integrity are essential to ensure reliability. For high-temperature or harsh conditions, plastic pulleys may underperform, while certain metals could corrode. In situations involving oil and gas exposure, polyurethane pulleys are often the best choice.
Timing pulleys are typically categorized into two tension levels: the lower tension pulley on the drive shaft and the higher tension pulley managing slack on the larger gear. This arrangement generates frictional force, which is crucial for effective power transmission. Timing pulleys are widely used in various sectors, including automotive, industrial, and packaging applications. The ideal pulley for your needs will depend on material, operating environment, and size requirements. While many options are available off the shelf, it’s important to choose the right size for your specific application, ensuring optimal performance.
European Standard Timing Pulleys
Type |
Teeth No. |
Type |
Teeth No. |
XL 037 |
10~72 |
H 200 |
14~120 |
L 050 |
10~84 |
H 300 |
16~120 |
L 075 |
12~84 |
XH 200 |
18~120 |
L 100 |
12~84 |
XH 300 |
18~120 |
H 100 |
14~120 |
XH 400 |
18~120 |
H 150 |
14~120 |
|
|
Type |
Teeth No. |
MXL – 0.080″ |
10~110 |
XL – 1/5″ |
10~72 |
L – 3/8″ |
10~30 |
Type |
Teeth No. |
Type |
Teeth No. |
L 050 |
18~120 |
H 200 |
14~120 |
L 075 |
18~120 |
H 300 |
16~120 |
L 100 |
16~120 |
XH 200 |
18~120 |
H 100 |
14~120 |
XH 300 |
18~120 |
H 150 |
14~120 |
XH 400 |
18~120 |
Type |
Teeth No. |
Type |
Teeth No. |
T2.5 For belt width 6mm |
12~60 |
T10 For belt width 32mm |
12~60 |
T5 For belt width 10mm |
10~60 |
T10 For belt width 50mm |
12~60 |
T5 For belt width 16mm |
10~60 |
T20 For belt width 32mm |
18~72 |
T5 For belt width 25mm |
10~60 |
T20 For belt width 50mm |
18~72 |
T10 For belt width 16mm |
12~60 |
T20 For belt width 100mm |
18~72 |
T10 For belt width 25mm |
12~60 |
|
|
Metric Pitch Standard Toothed Bars
Type |
Teeth No. |
T2.5 (P=2.5) |
10~110 |
T5(P=5) |
10~72 |
T10(P=10) |
10~30 |
Type |
Teeth No. |
Type |
Teeth No. |
ST5 For belt width 10mm |
12~60 |
ST10 For belt width 25mm |
15~60 |
ST5 For belt width 16mm |
12~60 |
ST10 For belt width 32mm |
15~60 |
ST5 For belt width 25mm |
12~60 |
ST10 For belt width 50mm |
18~60 |
ST10 For belt width 16mm |
15~60 |
|
|
Type |
Teeth No. |
ST5 (P=5) |
12~72 |
ST10(P=10) |
15~75 |
Type |
Teeth No. |
Type |
Teeth No. |
HTD 3M-06 |
10~72 |
HTD14M-40 |
28~216 |
HTD 3M-09 |
10~72 |
HTD 14M-55 |
28~216 |
HTD 3M-15 |
10~72 |
HTD 14M-85 |
28~216 |
HTD 5M-09 |
12~84 |
HTD 14M-115 |
28~216 |
HTD 5M-15 |
14~72 |
HTD 14M-170 |
28~216 |
HTD 5M-25 |
12~72 |
HTD 20M-115 |
34~216 |
HTD 8M-20 |
22~192 |
HTD 20M-170 |
34~216 |
HTD 8M-30 |
22~192 |
HTD 20M-230 |
34~216 |
HTD 8M-50 |
22~192 |
HTD 20M-290 |
34~216 |
HTD 8M-85 |
22~192 |
HTD 20M-340 |
34~216 |
Type |
Teeth No. |
HTD 3M |
9~72 |
HTD 5M |
12~72 |
Type |
Teeth No. |
Type |
Teeth No. |
HTD 8M-20 |
24~90 |
HTD14M-55 |
28~216 |
HTD 8M-30 |
24~144 |
HTD 14M-85 |
28~216 |
HTD 8M-50 |
28~192 |
HTD 14M-115 |
28~216 |
HTD 8M-85 |
34~192 |
HTD 14M-170 |
38~216 |
HTD 14M-40 |
28~216 |
|
|
American Standard Timing Pulleys
Type |
Teeth No. |
Type |
Teeth No. |
XL 1/5” Pitch | H 1/2‘’ Pitch | ||
XL037 Minimum Plain Bore |
10~72 |
H100 Minimum Plain Bore | 14~28 |
L 3/8” Pitch |
H100 QD Type | 14~120 | |
L050 Minimum Plain Bore |
10~32 |
H100 Taper Bushed Type |
14~60 |
L050 QD Type |
18~84 |
H150 Minimum Plain Bore | 14~26 |
L050 Taper Bushed Type |
18~60 |
H150 QD Type | 14~120 |
L075 Minimum Plain Bore |
12~32 |
H150 Taper Bushed Type |
14~60 |
L075 QD Type |
18~84 |
H200 Minimum Plain Bore | 14~26 |
L075 Taper Bushed Type |
18~60 |
H200 QD Type | 16~120 |
L100 Minimum Plain Bore |
14~32 |
H200 Taper Bushed Type |
16~60 |
L100 QD Type |
18~84 |
H300 Minimum Plain Bore | 16 |
L100 Taper Bushed Type |
18~60 |
H300 QD Type | 22~120 |
|
|
H300 Taper Bushed Type |
18~60 |
XH 7/8” Pitch |
|||
XH200 Minimum Plain Bore |
18~20 |
XH300 Minimum Plain Bore | 18~20 |
XH200 Taper Bushed Type |
22~60 |
XH300 Taper Bushed Type |
22~60 |
|
|
XH400 QD Type |
20~120 |
Timing Pulley Features
- Accurate Transmission: Ensures precise motion without slipping, maintaining a constant transmission ratio for reliable performance.
- Smooth Operation: Designed for smooth transmission with buffering and vibration damping capabilities, resulting in low noise levels during operation.
- High Efficiency: Achieves transmission efficiency of up to 0.98, providing significant energy savings and reducing operational costs.
- Low Maintenance: Requires minimal upkeep with no lubrication needed, leading to reduced maintenance costs and hassle-free operation.
- Versatile Speed Ratio: Offers a wide range of speed ratios, typically up to 10, accommodating linear speeds of up to 50 m/s and a broad power transmission range from a few watts to several hundred kilowatts.
- Long-Distance Transmission: Capable of transmitting power over long distances, with center distances exceeding 10 meters.
- Environmentally Friendly: Operates without pollution and functions effectively in harsh workplace conditions, making it suitable for various applications.
Timing Pulley Advantages
Timing pulleys can be made from various materials such as aluminum, steel, and plastic. Aluminum offers a lightweight, durable, and corrosion-resistant option, while steel provides superior strength and rigidity, ensuring a long service life. These pulleys enable accurate transmission ratios with no slipping, allowing for a constant speed ratio that enhances overall system reliability. Designed for smooth operation, they absorb shocks and minimize noise, making them ideal for applications requiring quiet operation. With transmission efficiencies reaching 98% to 99%, timing pulleys provide effective power transfer while saving energy.
Capable of handling power from a few watts to hundreds of kilowatts, timing pulleys cater to a wide range of applications. Their compact structure makes them suitable for multi-shaft transmissions, optimizing space in mechanical designs. Additionally, they require minimal maintenance, as they operate without lubrication and do not produce pollution, making them environmentally friendly. The teeth or pockets on timing pulleys ensure proper alignment and timing of engine components, preventing misalignment of valves and enhancing performance.
HZPT is a reliable power transmission group, manufacturer and supplier. We offer China timing pulleys for sale according to customers’ requirements. Feel free to contact us to get more!
Timing Pulley FAQs
What materials are timing pulleys made from?
Timing pulleys can be constructed from various materials, including aluminum, steel, and plastic. Each material offers different properties, such as corrosion resistance, strength, and weight, suitable for specific applications.
How do I choose the right timing pulley for my application?
When selecting a timing pulley, consider factors such as the required size, material, power transmission capacity, and environmental conditions. It’s essential to match the pulley with the appropriate timing belt profile to ensure optimal performance.
What are the benefits of using timing pulleys?
Timing pulleys provide accurate transmission ratios without slipping, ensuring constant speed and precision. They are efficient, with high transmission rates, low maintenance needs, and they help prevent misalignment in mechanical systems.
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