China Professional Machinery Components Balancing Machine, Gear, Wheel, Pulley, Axle, Shaft, Grinding Spindle (PHQ-300H) double pulley

Product Description

Balancing Machine for Grinding spindle (PHQ-300)

Modular structure:
Quick change-over from work piece to the next 
High balancing accuracy 
Infinitely variable DC drive 
Optimum operating height 
Installation without bolting 

Production Description:

Specially designed brackets transmit mechanical force with low vibration damping
Durable and reliable sensor possesses good linearity
Permanent calibration brings high accuracy with a permission of large initial unbalance amount
Belt-driving offers higher precision and easier operation
Advanced electrical measuring system and friendly man-machine interface
Modular design offers a wide range of application

 

Range of Application:

This balancing machine is widely used in balancing rotatable bodies, such as kinds of medium-sized and small-sized motors rotors, impeller, fans, crankshaft, turbocharger, water pump, roller, grinding wheel, main shaft of machine tool , textile machinery, tool , spindle, etc .. Driven by belt, equipped with Variable speed motor to drive .Which ensures high quality balancing and precision. quick booting ,easy operation. and high efficiency  

Special Features:

The measuring unit employs JP-580 Electrical Measuring unit is a system of top function and precision. It can be applied in all kinds of single/double plate and hard/soft bearing machines, and can be connected with different velocity and pressure sensors easily. The unit adopts industrial computer made in Xihu (West Lake) Dis.a Industry Co, which equiped with 17-inch LCD screen and Windows XP Operating System. Featuring with high running speed and reliabilitystrong dustproof and shakeproof ability, it is applicable to various industrial environments

Production Parameters: 

Technical data at a glance PHQ-160H PHQ-300H PHQ-500H
Max Mass of Workpiece(kg) 160 300 500
Max Diameter of Workpiece (mm) Φ1000 Φ1220 Φ1500
Distance Between Two Support Bearings (mm) 130~1270 130~1270 130~1270
Journal Diameter Scope of Workpiece (mm) Φ 15~753) Φ 15~753) Φ 15~753)
Diameter Scope of Driving Belt (mm) Φmax400 Φmax500 Φmax600
Rotational Speed when the Diameter of Driving Belt is 100mm (r/min)  756,11761) 756,11761) 756,11761)
Motor Power (kw) 1.52) 1.52) 2.22)
Length of Bed (mm) 1500 1500 1500
Min Achievable Residual Unbalance Amount (emar) ≤0.5g· mm/kg ≤0.5g· mm/kg ≤0.5· mm/kg

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Type: Vibration Testing Machine
Maxcapacity: <1000KN
Accuracy Grade: 1
Load Way: Electronic Load
Loading Method: Dynamic Load
Display: Digital
Customization:
Available

|

Customized Request

gear pulley

How are gear pulleys used in the production of electronics and manufacturing?

In the production of electronics and manufacturing processes, gear pulleys serve a variety of important functions. They are utilized in different applications to facilitate precise movements, power transmission, and speed control. Here’s a detailed explanation of how gear pulleys are used in the production of electronics and manufacturing:

1. Conveyor Systems:

In electronics and manufacturing facilities, conveyor systems are frequently employed for the transportation of components, products, or materials between different stages of the production process. Gear pulleys play a key role in driving the conveyor belts, enabling the smooth movement of items along the assembly line. These pulleys ensure consistent speed and precise positioning, allowing for efficient and automated production workflows.

2. Robotics and Automated Machinery:

Gear pulleys are integral components in robotics and automated machinery used in electronics and manufacturing. They are employed in robotic arms, gantry systems, and other automated equipment to provide precise and controlled movement. Gear pulleys drive the motors that control the motion of the robotic systems, allowing for accurate positioning, assembly, soldering, or testing of electronic components and devices.

3. Printing and Labeling Equipment:

In electronics and manufacturing, gear pulleys are used in printing and labeling equipment. They are utilized to drive the printing heads, label applicators, or other mechanisms involved in printing or applying labels to products or components. Gear pulleys ensure consistent and precise movement of these components, facilitating accurate printing and labeling in high-speed production environments.

4. Testing and Inspection Systems:

Gear pulleys are employed in testing and inspection systems used in electronics and manufacturing. These systems often require precise and controlled movements for the accurate positioning of components or test probes. Gear pulleys drive the motors that control the movement of testing fixtures, allowing for precise alignment and contact with the tested components. This ensures reliable and accurate testing and inspection results.

5. Machinery Speed Control:

In various manufacturing processes, gear pulleys are utilized for speed control. By using different pulley sizes and ratios, operators can adjust the rotational speed of machinery components. This flexibility allows for customization of the production process according to the specific requirements of different tasks or materials. Gear pulleys enable manufacturers to optimize the speed of cutting tools, processing equipment, or assembly lines, ensuring efficient and precise manufacturing operations.

6. Automated Assembly and Packaging:

In electronics manufacturing, gear pulleys are used in automated assembly and packaging systems. They contribute to the precise movement and positioning of electronic components, ensuring accurate placement and alignment during the assembly process. Gear pulleys drive the motors that control the robotic arms, pick-and-place mechanisms, or other automated systems involved in component placement and packaging operations.

7. Maintenance and Replacement:

Regular maintenance and inspection of gear pulleys are essential to ensure their reliability and performance in electronics and manufacturing processes. Operators should check for wear, damage, or misalignment of the gear teeth and pulley surfaces. Proper lubrication and tensioning of belts or chains connected to the gear pulleys are also important for their smooth operation. Timely replacement of worn or damaged gear pulleys is crucial to avoid interruptions in production and maintain the efficiency of manufacturing operations.

In conclusion, gear pulleys are widely used in the production of electronics and manufacturing processes. They contribute to the precise movements, power transmission, speed control, and automation required for efficient and accurate manufacturing operations. Proper maintenance and replacement of gear pulleys are necessary to ensure their reliability and optimal performance in electronics and manufacturing facilities.

gear pulley

Can gear pulleys be customized for specific machinery and equipment?

Yes, gear pulleys can be customized to meet the specific requirements of machinery and equipment. Customization allows for the adaptation of gear pulleys to fit unique applications, ensuring optimal performance and compatibility. Here’s a detailed explanation of how gear pulleys can be customized for specific machinery and equipment:

Design and Dimensions:

Gear pulleys can be customized in terms of their design and dimensions. The number of teeth, pitch diameter, and overall size of the gear pulley can be adjusted to match the specific requirements of the machinery or equipment. This customization ensures proper fit and alignment within the system, enabling efficient power transmission and smooth operation.

Material Selection:

The choice of materials for gear pulleys can be customized based on the application’s needs. Different materials, such as steel, cast iron, aluminum, or various alloys, can be selected to optimize strength, durability, and resistance to wear and corrosion. The material selection can be tailored to withstand specific operating conditions, such as high temperatures, harsh environments, or exposure to chemicals or moisture.

Tooth Profile and Configuration:

The tooth profile and configuration of gear pulleys can be customized to suit the specific machinery or equipment requirements. Different tooth profiles, such as spur, helical, bevel, or worm gears, can be employed based on factors like load capacity, noise reduction, and efficiency. The gear pulley’s tooth configuration, such as pressure angle, module, and helix angle, can also be tailored to optimize performance and ensure smooth and reliable power transmission.

Gear Ratio:

The gear ratio of a gear pulley system can be customized to achieve the desired speed and torque requirements of the machinery or equipment. By selecting the appropriate combination of driving and driven gears with different tooth counts, the gear ratio can be adjusted to meet specific operating parameters. This customization allows for precise control over the output speed and torque, ensuring optimal performance and compatibility with the application.

Mounting Options:

Gear pulleys can be customized with various mounting options to facilitate easy installation and integration into specific machinery or equipment. Mounting features such as keyways, set screws, or flanges can be incorporated into the gear pulley design, enabling secure attachment to shafts or other components. Customized mounting options ensure proper alignment and minimize the risk of slippage or misalignment during operation.

Surface Treatment and Coatings:

To enhance performance and durability, gear pulleys can undergo surface treatments and coatings customized for specific applications. Treatments such as heat treatment, carburizing, or nitriding can improve the gear pulley’s hardness and wear resistance. Additionally, coatings like lubricants, platings, or specialized materials can reduce friction, enhance corrosion resistance, or provide self-lubricating properties, depending on the operating conditions and requirements of the machinery or equipment.

Special Features:

Depending on the application, gear pulleys can be customized with special features or modifications. This may include the addition of keyways, grooves, or other attachments for auxiliary components, such as sensors, encoders, or brakes. Customized gear pulleys can also incorporate specific tolerances, backlash requirements, or noise reduction features, ensuring optimal performance and compatibility with the machinery or equipment.

In summary, gear pulleys can be customized in terms of design, dimensions, materials, tooth profile, gear ratio, mounting options, surface treatments, and special features. This customization allows gear pulleys to be tailored to the specific requirements of machinery and equipment, ensuring optimal performance, reliability, and compatibility in various industrial applications.

gear pulley

What types of belts or cables are typically used with gear pulleys?

When it comes to gear pulleys, different types of belts or cables can be used depending on the specific application and requirements. The choice of belt or cable is crucial as it determines the efficiency, durability, and performance of the power transmission system. Here are some commonly used types of belts or cables with gear pulleys:

  1. V-Belts: V-belts are one of the most widely used types of belts for power transmission with gear pulleys. They have a trapezoidal cross-section and are designed to fit into V-shaped grooves on the pulleys. V-belts are known for their high traction capability and efficiency. They can transmit significant amounts of power and are commonly used in applications such as industrial machinery, automotive engines, and HVAC systems.
  2. Synchronous Belts: Synchronous belts, also known as timing belts, are toothed belts that engage with the teeth on the pulleys. They offer precise motion control and high power transmission efficiency. Synchronous belts are commonly used in applications where accurate positioning and synchronization of shafts are required, such as in robotics, printing presses, and CNC machines.
  3. Flat Belts: Flat belts are flexible, flat-surfaced belts that wrap around the pulleys. They provide a large contact area with the pulley surface, resulting in good power transmission capabilities. Flat belts are used in various applications, including conveyor systems, agricultural machinery, and textile machinery.
  4. Round Belts: Round belts, also known as o-ring belts, are round cross-section belts that rely on friction to transmit power. They are commonly used in lightweight and low-power applications, such as office equipment, small appliances, and light-duty conveyors.
  5. Chain Drives: Chain drives utilize roller chains that engage with sprockets on the pulleys. Chains are made of interconnected links and provide robust power transmission capabilities. They are commonly used in heavy-duty applications, such as motorcycles, bicycles, industrial machinery, and agricultural equipment.
  6. Wire Ropes and Cables: In certain applications where high strength and durability are required, wire ropes or cables can be used with gear pulleys. Wire ropes consist of multiple strands of wire twisted together to form a strong and flexible structure. They are commonly used in lifting and hoisting equipment, cranes, and mining machinery.

The choice of belt or cable depends on factors such as the power requirements, speed, environmental conditions, load capacity, and the specific characteristics of the application. It’s important to select the appropriate belt or cable that matches the requirements of the gear pulley system to ensure efficient power transmission and reliable operation.

China Professional Machinery Components Balancing Machine, Gear, Wheel, Pulley, Axle, Shaft, Grinding Spindle (PHQ-300H)   double pulley	China Professional Machinery Components Balancing Machine, Gear, Wheel, Pulley, Axle, Shaft, Grinding Spindle (PHQ-300H)   double pulley
editor by CX

2024-03-14