China manufacturer Whosale Auto Spare Parts/ Timing Belt Tensioner Pulley/ Car Accessories /OEM  957726 idler pulley

Product Description

MIC NO OEM.NO APPLICATION YEAR PHOTO
TB34PG9301 957726
082990
CITROEN  BERLINGO / BERLINGO FIRST Box (M_) 1.1 i (MAHDZ, MBHDZ, MBHFX)        
CITROEN  BERLINGO / BERLINGO FIRST Box (M_) 1.4 bivalent        
CITROEN  BERLINGO / BERLINGO FIRST Box (M_) 1.4 i (MBKFX, MBKFW)        
CITROEN  BERLINGO / BERLINGO FIRST Box (M_) 1.4 i bivalent (MBKFW)        
CITROEN  BERLINGO / BERLINGO FIRST MPV (MF_, GJK_, GFK_) 1.1 i (MFHDZ, MFHFX)        
CITROEN  BERLINGO / BERLINGO FIRST MPV (MF_, GJK_, GFK_) 1.4 bivalent        
CITROEN  BERLINGO / BERLINGO FIRST MPV (MF_, GJK_, GFK_) 1.4 i (MFKFX, MFKFW, GJKFWB, GJKFWC, GFKFWC)        
CITROEN  BERLINGO / BERLINGO FIRST MPV (MF_, GJK_, GFK_) 1.4 i bivalent (MFKFW)        
CITROEN  C2 (JM_) 1.1        
CITROEN  C2 (JM_) 1.4        
CITROEN  C3 I (FC_, FN_) 1.1 i        
CITROEN  C3 I (FC_, FN_) 1.4 i        
CITROEN  C3 I (FC_, FN_) 1.4 i Bivalent        
CITROEN  C3 II (SC_) 1.1 i        
CITROEN  C3 II (SC_) 1.4        
CITROEN  C3 Pluriel (HB_) 1.4        
CITROEN  NEMO Box (AA_) 1.4        
CITROEN  NEMO Estate 1.4        
CITROEN  SAXO (S0, S1) 1.1 X,SX        
CITROEN  XSARA (N1) 1.4 i        
CITROEN  XSARA Break (N2) 1.4 i        
CITROEN  XSARA Coupe (N0) 1.4 i        
FIAT  FIORINO Box Body/Estate (225_) 1.4 (225BXA1A, 225BXF1A)        
FIAT  QUBO (225_) 1.4 (225AXA1A)        
PEUGEOT  1007 (KM_) 1.4        
PEUGEOT  106 II (1A_, 1C_) 1.1 i        
PEUGEOT  206 Hatchback (2A/C) 1.1        
PEUGEOT  206 Hatchback (2A/C) 1.1 i        
PEUGEOT  206 Hatchback (2A/C) 1.4 i        
PEUGEOT  206 Hatchback (2A/C) 1.4 LPG        
PEUGEOT  206 Saloon 1.4        
PEUGEOT  206 SW (2E/K) 1.1        
PEUGEOT  206 SW (2E/K) 1.4        
PEUGEOT  206+ (2L_, 2M_) 1.1        
PEUGEOT  206+ (2L_, 2M_) 1.4 i        
PEUGEOT  207 (WA_, WC_) 1.4        
PEUGEOT  207 SW (WK_) 1.4        
PEUGEOT  306 (7B, N3, N5) 1.1        
PEUGEOT  306 (7B, N3, N5) 1.4 SL        
PEUGEOT  306 Break (7E, N3, N5) 1.4        
PEUGEOT  306 Hatchback (7A, 7C, N3, N5) 1.1        
PEUGEOT  307 (3A/C) 1.4        
PEUGEOT  BIPPER (AA_) 1.4        
PEUGEOT  BIPPER Tepee 1.4        
PEUGEOT  PARTNER Box (5_, G_) 1.1        
PEUGEOT  PARTNER Box (5_, G_) 1.4        
PEUGEOT  PARTNER Box (5_, G_) 1.4 BiFuel        
PEUGEOT  PARTNER Combispace (5_, G_) 1.1        
PEUGEOT  PARTNER Combispace (5_, G_) 1.4
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2002-2011
1996-2011
2003-2005
1996-2008
2002-2011
1996-2011
2003-2008
2003-2012
2003-2009
2002-
2002-2571
2002-
2009-2013
2009-2016
2003-
2008-
2009-
1996-2003
1997-2005
1997-2005
1998-2005
2007-
2008-
2005-
1996-2004
1998-2000
1998-2007
1998-2012
2006-2007
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2002-
2002-2007
2009-2013
2009-2013
2006-2013
2007-2012
1994-2001
1994-2001
1997-2002
1993-2001
2000-2003
2008-
2008-
1996-2005
1996-2015
2003-2006
1996-2002
1996-2015

  

 

 

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After-sales Service: Online Technical Support
Warranty: One year
Car Make: CITROEN
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belt and pulley

What is the significance of tensioning belts correctly in belt and pulley systems?

Tensioning belts correctly in belt and pulley systems is of utmost importance for ensuring optimal performance and longevity of the system. Here are some key reasons why proper belt tensioning is significant:

  • Power Transmission: Correct belt tension ensures efficient power transmission from the driving pulley to the driven pulley. When a belt is properly tensioned, it securely grips the pulleys, allowing the transfer of rotational force without slipping. This enables the effective transfer of power from the motor or drive source to other components or machinery.
  • Prevention of Slippage: Insufficient tension in a belt can lead to slippage between the belt and pulleys. Slippage results in a loss of power transmission efficiency and can cause erratic or incomplete operation of the equipment. Proper tensioning ensures that the belt remains in firm contact with the pulleys, minimizing slippage and maximizing power transfer.
  • Reduced Wear and Belt Life: Over-tensioning or under-tensioning of belts can significantly impact their lifespan. When a belt is over-tensioned, excessive stress is placed on the belt and pulley bearings, leading to accelerated wear and potential premature failure. Conversely, under-tensioning allows the belt to flex excessively, leading to increased wear, heat generation, and reduced belt life. Proper tensioning helps maintain the optimal balance, reducing wear and extending the longevity of the belt.
  • Optimal Performance: Proper tensioning ensures that the belt operates within its designed specifications. It helps maintain the required belt tension for optimal grip and power transmission, allowing the equipment to perform effectively and efficiently. This is particularly important in applications where precise speed control or torque transfer is necessary, such as in industrial machinery, automotive engines, or conveyor systems.
  • Energy Efficiency: Correct belt tensioning contributes to energy efficiency by minimizing power loss due to slippage and reducing the load on the motor or drive system. When belts are properly tensioned, the power is efficiently transferred from the input to the output, resulting in improved overall energy efficiency of the system. This is particularly relevant in applications where energy conservation is a priority, as it helps reduce operating costs and environmental impact.

Overall, correctly tensioning belts in belt and pulley systems is crucial for ensuring optimal power transmission, preventing slippage, reducing wear, maximizing belt life, achieving optimal performance, and improving energy efficiency. Regular monitoring and adjustment of belt tension, following manufacturer recommendations, are essential maintenance practices to uphold the reliability and effectiveness of belt and pulley systems.

belt and pulley

How does proper pulley alignment affect the efficiency of belt and pulley systems?

In belt and pulley systems, proper pulley alignment plays a crucial role in ensuring the efficiency and performance of the system. Here's a detailed explanation of how pulley alignment affects the efficiency of belt and pulley systems:

Optimal Power Transmission:

  • Proper pulley alignment ensures that the belt tracks accurately along the pulley's centerline. This alignment maximizes the contact area between the belt and pulley, optimizing power transfer efficiency.
  • When the pulleys are misaligned, the belt may experience excessive friction, slippage, or uneven wear. This can result in power loss, reduced system efficiency, and increased energy consumption.

Reduced Wear and Tear:

  • Correct pulley alignment helps distribute the belt's load evenly across its width. This balanced load distribution minimizes stress concentrations and excessive tension on specific areas of the belt.
  • Improper alignment can cause the belt to run off-center or rub against the pulley's edges, leading to accelerated wear and tear. Excessive belt wear not only decreases efficiency but also increases the frequency of belt replacements, resulting in higher maintenance costs.

Extended Belt and Pulley Life:

  • Proper alignment reduces the strain on the belt and pulleys, prolonging their lifespan.
  • When the pulleys are misaligned, the belt may experience excessive bending, twisting, or side loading. These forces can cause premature fatigue failure of the belt material, resulting in belt breakage or cracking.
  • Misalignment can also lead to worn or damaged pulley surfaces, which can accelerate belt wear and compromise the belt's grip on the pulleys.
  • By maintaining proper alignment, the belt and pulleys operate under optimal conditions, reducing the risk of premature failure and increasing the overall system reliability.

Noise and Vibration Reduction:

  • Properly aligned pulleys help minimize noise and vibration levels in belt and pulley systems.
  • Misalignment can cause the belt to generate excessive noise as it rubs against the pulley's sides or edges. It can also induce vibrations, leading to increased component fatigue and decreased operator comfort.
  • By achieving precise alignment, the system operates smoothly and quietly, enhancing the working environment and reducing the likelihood of component damage.

Improved System Performance:

  • Proper pulley alignment contributes to the overall performance of belt and pulley systems.
  • Accurate alignment ensures that the belt runs smoothly and consistently, preventing unplanned stops or disruptions in material handling or machinery operation.
  • Efficient power transmission, reduced downtime, and increased system reliability lead to improved productivity, reduced maintenance costs, and enhanced operational efficiency.

Therefore, proper pulley alignment is essential for maximizing power transmission efficiency, minimizing wear and tear, extending component life, reducing noise and vibrations, and optimizing the overall performance of belt and pulley systems.

belt and pulley

How do belts and pulleys work together in mechanical systems?

In mechanical systems, belts and pulleys work together to transmit power and motion from one rotating component to another. Here's a detailed explanation of how belts and pulleys function in mechanical systems:

Belts: Belts are flexible loops made of materials such as rubber, synthetic polymers, or fabric. They are designed to fit around two or more pulleys and transfer rotational motion from the driving pulley to the driven pulley. Belts are typically used in applications where a flexible and lightweight power transmission solution is required.

Pulleys: Pulleys are wheels with a grooved rim designed to support and guide belts. They can be made of metal, plastic, or other materials. Pulleys have a central bore that allows them to rotate on a shaft. They are available in different sizes and configurations to accommodate various belt sizes and power transmission requirements.

Working Together: The cooperation between belts and pulleys in a mechanical system is based on the principle of friction and the transfer of rotational motion. When a belt is placed around two pulleys, the driving pulley (also known as the input pulley) transfers rotational force to the belt. As the driving pulley rotates, it creates frictional forces between the belt and the pulley's grooved rim.

The friction between the belt and the driving pulley causes the belt to move, transferring the rotational motion to the driven pulley (also known as the output pulley). The driven pulley is connected to the driven component, such as a conveyor belt, a fan, or a machine part. As the belt moves and wraps around the driven pulley, it causes the driven pulley to rotate and transmit the rotational motion to the driven component.

The ratio of the diameters of the driving and driven pulleys determines the speed and torque relationship in the system. By using pulleys of different sizes, mechanical systems can achieve speed reduction or speed increase, allowing for proper matching of rotational speeds between different components.

Belts and pulleys offer several advantages in mechanical systems:

  • Flexibility: Belts can easily bend and wrap around pulleys of different sizes and configurations, allowing for flexibility in designing power transmission systems.
  • Slip Prevention: The friction between the belt and pulleys helps prevent slipping, ensuring efficient power transmission.
  • Shock Absorption: Belts can absorb shocks and vibrations, reducing the impact on the system's components.
  • Noise Reduction: Compared to other power transmission methods, belts and pulleys operate with relatively low noise levels.
  • Cost-Effectiveness: Belts and pulleys are generally cost-effective compared to other power transmission alternatives.

In summary, belts and pulleys work together in mechanical systems by utilizing friction and rotational motion transfer. The driving pulley rotates and creates friction with the belt, causing it to move and transfer the rotational motion to the driven pulley. This cooperation allows for efficient power transmission, speed adjustment, and the smooth operation of various mechanical components in a system.

China manufacturer Whosale Auto Spare Parts/ Timing Belt Tensioner Pulley/ Car Accessories /OEM  957726   idler pulley	China manufacturer Whosale Auto Spare Parts/ Timing Belt Tensioner Pulley/ Car Accessories /OEM  957726   idler pulley
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