China best Gear Box Reducer Bevel Pinion Gear with 17CrNiMo6 Steel hypoid bevel gear

Product Description

Gear Box Reducer Bevel Pinion Gear with 17CrNiMo6 Steel
 

Product Description

ball mill parts for pinion gear 

CITICMC  Pinion Gears offered find extensive application in Sponge Iron Plants that have running capacities of -50TPD, 100TPD, 300TPD, 350TPD, 500TPD. Further, these also provide functionality as integral pinion shaft for cement plants/ball mills and as pinion & pinion assemblies for Phosphate mining plants, Alumina, Kaolin-Bentonite plants and others. Further, we can also custom design these in finish specifications as demanded by the customers.

Pinion gear material
42CRMO STEEL DATA
CHEMICAL LIST
C : 0.38-0.45%
Si: 0.17-0.37%
Mn: 0.50-0.80%
S : Allow residual content <0.035%
P : Allow residual content <0.035%
Cr:  0.90-1.20%
Ni: Allow residual content <0.030% Cu: Allow residual content <0.030%
Mo: 0.15-0.25%
MECHANICAL DATA
Tensile Strength σb (MPa): >1080(110)
Yield point σs (MPa): >930(95)
Elongation σ5 (%): >12
Reduction of area ψ (%): >45 Akv (J): Impact absorbing energy Akv(J): >63
Impact toughness value αkv (J/cm2): >78(8)
Hardness: <217HB
Sample size: The blank size of the sample is 25mm
PHYSICAL DATA
Critical point temperature (approximate value): Ac1=730ºC, Ac3=800ºC, Ms=310ºC
Linear expansion coefficient: temperature: 20~100ºC/20~200ºC/20~300ºC /20 ~400ºC/20~500ºC /20~600ºC
linear expansivity: 11.1x10K/12.1x10K/12.9x10K/13.5x10K/13.9x10K14.1x10K

Pinion for:-Sponge iron plant-50TPD, 100TPD,300TPD,350TPD,500TPDIntegral pinion shaft for cement plant or ball millsPinion & pinion assemblies for Alumina, kaolin-bentonite plants, phosphate mining plantMain Type of pinion applications as given below for the all above mentioned plants:Kiln PinionCooler pinionPinion shaftPinion assembled with shaft, bearings, plummer blocksIntegral pinion shaft upto 3 mtr total lentgh.

Gear Box Reducer Bevel Pinion Gear with 17CrNiMo6 Steel

Company Profile

CITICIC began in 1956-The  largest mining equipment and cement equipment manufacturers in China.CITICIC is a global supplier of technology and services to customers in the process industries,including
Mining,Construction,Metallurgical,Environmental,Power,Chemical,Marine,Casting&Forgings. 
CITIC IC produces over 200,000 tons of quality equipment annually. Our products include grinding mills, scrubbers,crushers, kilns, coolers, hoists, reducers, steam turbines and compressors. CHINAMFG also manufactures heavy castings and forgings, as well as electric/hydraulic control and lubrication systems.
Our factory in HangZhou covers more than 3 million square meters, of which 2 million square CHINAMFG is under cover. It has a total workforce of approximately 10,000 employees of which more than 1,200 are engineers.

 produces over 200,000 tons of quality equipment annually. Our products include grinding mills, scrubbers,crushers, kilns, coolers, hoists, reducers, steam turbines and compressors. CITIC HIC also manufactures heavy castings and forgings, as well as electric/hydraulic control and lubrication systems Etc.

Website: citiczt
Company Video:http://citiczt

 

  Machining Equipment

Fabrication Equipment

Casting & Forging Equipment

Heat treatment Equipment

 

Our Services

After Sales Service

1.    ENGINEERED SPARES –  DESIGN AND MANUFACTURING

2.    LARGE VOLUME STEEL AND IRON CASTING FOUNDARIES

3.    HUGE MACHINE SHOP CAPABILITIES

4.    TRAINING PROGRAMMES

5.    PREVENTATIVE MAINTENANCE PROGRAMS

6.    PREVETATIVE MAINTENANCE SERVICES

7.    COMPREHENSIVE MAINTENANCE PROGRAMS

 CITIC’s Field Service Engineers are trained specifically in the CITIC brand group products but are capable of undertaking the servicing of other OEM brands.

 Our technicians are equipped with the most advanced technological diagnostic equipment available to trouble shoot your equipment to optimise performance and minimise down time.

 CITICIC also has an extensive capability in supplying all you consumable and electrical/ mechanical spare part needs.
 

Quality ControlPhysical & Chemical Identification Center

CITICIC owns a professional testing and metrology institute which provides advanced testing methods such as nondestructive testing, industrial chemical analysis, metallographic testing and analysis, mechanical testing, sample preparation, meter/length measurement, weighing apparatus verification, and weighman inspection. Our metrology institute has taken a leading role in China.

CITICIC owns nearly 2 hundred types of advanced testing equipment, 9 different measurement standards and nearly 20 types of world-class testing equipment which have been imported from international locations such as Germany, Japan, USA, UK and Belgium.

Quality testing equipment

 

         Spectrometer

 

    Ultrasonic flaw detector

 

  Carbon and sulfur analyzer

 

   X-ray detection apparatus

 

      Brinell microscope

 

       Leeb hardness tester

FAQ

Q: Why we believe in HangZhou CHINAMFG industries co., ltd:
A: 1. More than 30 years experience.
     2.We are the leading professional supplier of mining machinery, construction machinery, machines casting and forged parts.
     3. All products achieved ISO9901:2000 quality management certificate and CE, ROHS certificates.
 
Q:Delivery time:
A: Parts lead time 1-2months, machines 2-3months.
 
Q:Payment terms:
A: Accept payment type: T/T, L/C, Western union,Cash.
30% deposit when signed contract. Full payment paid before shipping.
 
Q: Quality warranty?
A: Guarantee time: 1 year for main machinery. If something wrong we will provide the technical advice and find solution immediately. For those wearing parts we guarantee high quality parts for long-term supply.
 
Q: After sales service?
A: We can supply technical guide for machines running test and parts maintenance if end user needs.

Aftersales service 
ZTIC Heavy Industries is your business partner in the After Market.
ZTIC  able to provide:
1.    ENGINEERED SPARES –  DESIGN AND MANUFACTURING
2.    LARGE VOLUME STEEL AND IRON CASTING FOUNDARIES
3.    HUGE MACHINE SHOP CAPABILITIES
4.    TRAINING PROGRAMMES
5.    PREVENTATIVE MAINTENANCE PROGRAMS
6.    PREVETATIVE MAINTENANCE SERVICES
7.    COMPREHENSIVE MAINTENANCE PROGRAMS

 
ZTIC’s Field Service Engineers are trained specifically in the CITIC brand group products but are capable of undertaking the servicing of other OEM brands.
Our technicians are equipped with the most advanced technological diagnostic equipment available to trouble shoot your equipment to optimise performance and minimise down time.
ZTIC also has an extensive capability in supplying all you consumable and electrical/ mechanical spare part needs.
 

 

Application: Machinery
Hardness: Hardened Tooth Surface
Gear Position: as Required
Manufacturing Method: Cast Gear
Toothed Portion Shape: Curved Gear
Material: Stainless Steel
Customization:
Available

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Customized Request

bevel gear

How does a bevel gear impact the overall efficiency of a system?

A bevel gear plays a significant role in determining the overall efficiency of a system. Its design, quality, and operating conditions can impact the efficiency of power transmission and the system as a whole. Here’s a detailed explanation of how a bevel gear can impact overall efficiency:

  • Power Transmission Efficiency: The primary function of a bevel gear is to transmit power between intersecting shafts at different angles. The efficiency of power transmission through a bevel gear depends on factors such as gear geometry, tooth profile, material quality, lubrication, and operating conditions. In an ideally designed and well-maintained system, bevel gears can achieve high power transmission efficiency, typically above 95%. However, factors such as friction, misalignment, inadequate lubrication, and gear tooth wear can reduce efficiency and result in power losses.
  • Friction and Mechanical Losses: Bevel gears experience friction between their mating teeth during operation. This friction generates heat and causes mechanical losses, reducing the overall efficiency of the system. Factors that affect friction and mechanical losses include the gear tooth profile, surface finish, lubrication quality, and operating conditions. High-quality gears with well-designed tooth profiles, proper lubrication, and optimized operating conditions can minimize friction and mechanical losses, improving the overall efficiency.
  • Gear Tooth Design: The design of the bevel gear tooth profile influences its efficiency. Factors such as tooth shape, size, pressure angle, and tooth contact pattern affect the load distribution, friction, and efficiency. Proper tooth design, including optimized tooth profiles and contact patterns, help distribute the load evenly and minimize sliding between the teeth. Well-designed bevel gears with accurate tooth profiles can achieve higher efficiency by reducing friction and wear.
  • Material Quality and Manufacturing Precision: The material quality and manufacturing precision of bevel gears impact their durability, smooth operation, and efficiency. High-quality materials with suitable hardness, strength, and wear resistance can minimize friction, wear, and power losses. Additionally, precise manufacturing processes ensure accurate gear geometry, tooth engagement, and alignment, optimizing the efficiency of power transmission and reducing losses due to misalignment or backlash.
  • Lubrication and Wear: Proper lubrication is crucial for reducing friction, wear, and power losses in bevel gears. Insufficient or degraded lubrication can lead to metal-to-metal contact, increased friction, and accelerated wear, resulting in reduced efficiency. Adequate lubrication with the recommended lubricant type, viscosity, and replenishment schedule ensures a sufficient lubricating film between the gear teeth, minimizing friction and wear and improving overall efficiency.
  • Misalignment and Backlash: Misalignment and excessive backlash in bevel gears can negatively impact efficiency. Misalignment causes uneven loading, increased friction, and accelerated wear. Excessive backlash results in power losses during direction changes and can lead to impact loads and vibration. Proper alignment and control of backlash within acceptable limits are crucial for maintaining high efficiency in a bevel gear system.

Overall, a well-designed bevel gear system with high-quality materials, accurate manufacturing, proper lubrication, and minimal losses due to friction, misalignment, or wear can achieve high efficiency in power transmission. Regular maintenance, monitoring, and optimization of operating conditions are essential to preserve the efficiency of the system over time.

bevel gear

Can bevel gears be used in both horizontal and vertical orientations?

Yes, bevel gears can be used in both horizontal and vertical orientations, although certain considerations should be taken into account for each orientation. Here’s a detailed explanation:

Bevel gears are versatile and can accommodate various shaft orientations, including horizontal and vertical arrangements. The suitability of bevel gears for a specific orientation depends on factors such as load distribution, lubrication, and potential effects of gravity. Here are some considerations for each orientation:

  • Horizontal Orientation: In horizontal applications, where the shafts are parallel to the ground, bevel gears can be used effectively. Proper lubrication is crucial to ensure adequate film formation and minimize friction and wear. Horizontal orientation typically allows for good load distribution among the gear teeth, promoting even wear and reducing the risk of localized stress concentrations. However, it is important to consider the effects of axial forces and thrust loads that may be present in the system and ensure that the gear design and bearings can handle these loads appropriately.
  • Vertical Orientation: When bevel gears are used in a vertical orientation, where the shafts are perpendicular to the ground, additional considerations come into play. Gravity can introduce new challenges, such as the potential for gear thrust loads, lubricant pooling, and inadequate load distribution. To address these challenges, steps can be taken, including incorporating thrust bearings or thrust plates to handle axial forces, optimizing gear design to ensure proper load sharing, and implementing suitable lubrication methods to prevent lubricant pooling and ensure consistent lubrication to all gear surfaces. Additionally, proper sealing measures may be necessary to prevent lubricant leakage in the vertical orientation.

Overall, by considering the specific requirements and challenges associated with each orientation, bevel gears can be successfully utilized in both horizontal and vertical arrangements. Careful attention to design, lubrication, load distribution, and thrust management can help ensure reliable and efficient operation in either orientation.

It is important to note that for certain extreme or specialized applications, additional considerations and modifications may be required to accommodate the specific demands of the gear system. Consulting with experienced engineers and considering application-specific factors will help determine the most suitable gear design and orientation for a given application.

bevel gear

How do bevel gears differ from other types of gears?

Bevel gears have distinct characteristics that set them apart from other types of gears. Here’s a detailed explanation of how bevel gears differ from other gears:

1. Tooth Geometry: Bevel gears have teeth cut on the cone-shaped surface of the gears, whereas other types of gears, such as spur gears and helical gears, have teeth cut on cylindrical surfaces. The tooth geometry of bevel gears allows them to accommodate intersecting shafts and transmit rotational motion at different angles.

2. Axis Orientation: Bevel gears have intersecting axes, meaning the shafts they are mounted on intersect each other. In contrast, other types of gears typically have parallel or skewed axes. The intersecting axis of bevel gears allows for changes in direction and allows for power transmission between shafts that are not in a straight line.

3. Types of Bevel Gears: Bevel gears come in different variations, including straight bevel gears, spiral bevel gears, and hypoid bevel gears. Straight bevel gears have straight-cut teeth and intersect at a 90-degree angle. Spiral bevel gears have curved teeth that are gradually cut along the gear surface, providing smoother engagement and reduced noise. Hypoid bevel gears have offset axes and are used when the intersecting shafts are non-parallel. Other types of gears, such as spur gears and helical gears, also have their own variations but do not typically involve intersecting axes.

4. Direction of Motion: Bevel gears can change the direction of rotational motion between intersecting shafts. Depending on the orientation of the gears, the direction of rotation can be reversed. This capability makes bevel gears suitable for applications where changes in direction are required. In contrast, other gears, such as spur gears and helical gears, transmit motion in a specific direction along parallel or skewed axes.

5. Load Distribution: Bevel gears distribute loads differently compared to other gears. Due to the conical shape of the gears, the contact area between the teeth changes as the gears rotate. This can result in varying load distribution along the gear teeth. Other gears, such as spur gears and helical gears, have a consistent load distribution along their teeth due to their cylindrical shape.

6. Applications: Bevel gears are commonly used in applications where changes in direction or speed of rotational motion are required, such as automotive differentials, marine propulsion systems, and power transmission systems. Other types of gears, such as spur gears and helical gears, are more commonly used in applications where parallel or skewed shafts are involved and changes in direction are not necessary.

While bevel gears have their unique characteristics, it’s important to note that different types of gears have their own advantages and applications. The selection of the appropriate gear type depends on factors such as the application requirements, operating conditions, space limitations, and load considerations.

In summary, bevel gears differ from other types of gears in terms of tooth geometry, axis orientation, types of variations available, direction of motion, load distribution, and applications. Their ability to accommodate intersecting shafts and change the direction of rotational motion makes them suitable for specific applications where other types of gears may not be as effective.

China best Gear Box Reducer Bevel Pinion Gear with 17CrNiMo6 Steel hypoid bevel gearChina best Gear Box Reducer Bevel Pinion Gear with 17CrNiMo6 Steel hypoid bevel gear
editor by CX 2023-09-14