China manufacturer China Factory Direct Supply Low Price IGBT Induction Quenching Machine for Heating The Drag Link, Steering Knuckle Arm, Worm Gear Sector and So on gear ratio calculator

Product Description

           
            CHINA Factory direct Supply low price IGBT Induction quenching machine for heating the drag link , steering knuckle arm , worm Gear Sector and so on 

 1 The integrated modular induction heating equipment manufactured by our company is the newest high-tech product formed by adopting the most advanced power electronic power devices and unique converter control technology in the world with reasonable structure design.

1) This equipment uses the digital signal processing (DSP) digital real-time high-speed signal processor and DDS (Direct Digital Synthesizer) direct digital frequency synthesizer.

2)Using advanced digital control technology and digital phase-locked loop tracking technology and computer control technology, the system structure is safe and reliable, stable performance and simple operation.

3)Imported integrated circuit and power module are used to realize automatic frequency tracking. It has the characteristics of small size, light weight, high efficiency, energy saving, simple installation, high reliability and not easy to damage.

4)The heating speed is fast and the heating efficiency is high. It can control the heating temperature and time conveniently, and it is easy to ensure the heating quality and the running water operation.

5)Visual digital display of voltage, current, frequency, power, heating time and  heating temperature,etc.

6)Can Predictable power, that is the power can be set before heating is turned on, with high accuracy. This function is not available for other similar products in the market.

7)Friendly man-machine interface:

Xihu (West Lake) Dis.n-computer interaction can choose a variety of ways, such as LED indicator or digital tube display, touch screen display and control, text screen display, customers can choose at will according to their needs; from the function realization and operation settings, it covers the traditional mechanical button panel, making the operation and maintenance easier, more intuitive and more convenient;

8). Hardware isolation interface:

It can be compatible with the existing PLC on the market, and is conducive to the functional transformation of the existing PLC system and the further expansion of the automation system.

9). Remote communication interface:

10) Working mode: Constant current or constant power can be selected, your application will be constant power working be better.

11)The device is equipped with a striking red emergency stop button, which can be pressed quickly when an emergency occurs.

Stop the equipment immediately to achieve protection measures.

12). Reasonable layout of the internal components of the equipment, the main control circuit board is centralized on the weak side to avoid the interference of the strong current to the control circuit and improve the control accuracy.

13)Induction Heating Machine have remote control function and adopt digital circuit control, power regulation can be adjusted from 0% to 100% resolution and digital PID temperature control module can be configured to set the target temperature of workpiece (infrared temperature measurement or thermocouple temperature measurement) automatically. The accuracy of temperature control is + 1’C for power regulation in heating process.

14) Water Pressure and water temperature CHINAMFG in the machine, can monitor the water sitation.

 

 

 Type DSP-200KW
 Work Power  3*380v/415v/440v/480v  50-60hz
 The range of operating voltage  340-430V AC
 Output power  120KW
 Input current  180A
 Fluctuating frequency  10-40khz
 Timing (Heat time,Retain time,Cool time)  1-9999S
 The flow rate of cooling water  0.15 Mpa 25L/Min
 Water temperature protection point  40centidegree
 Duty cycle  100% (40degree room temperature)
 Weight  Mainparts:138Kg    Transformer:80kg
 Size Main Parts:740*600*1200MM
Transformer: 520*450*670MM

Packing:

Pre-sale service:
1. recommend the most suitable machine for customers, according to their requirements. 
2. Inquiry and consulting support. 
3. Sample testing support. 
4. View our Factory.

In-sale service:
1. Strictly manufacture the machine, according to relevant technical standards.
2. Take run test, according to relevant equipment test run regulations.
3. Strictly check up the machine, before delivery
4. Delivery on time.

After-sale service:
1. Warranty time: Within 18 months from the date of delivering, 12months from date of receiving.
2. Within warranty all parts are free for customer, any fault caused by non-artificial reason, any quality problems such as design, manufacture, or procedure occurs, We shall provide replacement parts after detecting the faults.
3. If any big quality problems occurs out of the guarantee period, we will send maintenance
 technician to provide visiting service after checking with the customer and charge for a favorable price. 
5. We will provide a lifetime cost price to the buyer with the materials and spare parts used in system operation, equipment maintenance.
6. The above mentioned are only basic aftersale service requirements,we will make more promises related to quality assurance and operation guarantee.  

Type: Induction Heating Machine
Certification: CE
Structure: Vertical Type
Brand: Ord
Application: Heating, Quenching, Forging, Melting, Welding
Power: 120kw
Customization:
Available

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Customized Request

worm gear

How do you prevent backlash and gear play in a worm gear mechanism?

Preventing backlash and gear play is essential for maintaining the accuracy and performance of a worm gear mechanism. Here’s a detailed explanation of how to prevent backlash and gear play in a worm gear mechanism:

Backlash refers to the play or clearance between the teeth of the worm and the worm wheel in a worm gear mechanism. It can result in inaccuracies, positioning errors, and reduced efficiency. Here are some measures to prevent or minimize backlash and gear play:

  • Precision manufacturing: Accurate and precise manufacturing of the worm and worm wheel is crucial to minimize backlash. High-quality machining techniques, such as grinding, can be employed to achieve precise tooth profiles and minimize any gaps between the teeth. Careful attention to the design and manufacturing tolerances can help reduce backlash.
  • Tight meshing clearance: Proper adjustment of the meshing clearance between the worm and the worm wheel can help minimize backlash. The meshing clearance should be set as small as possible without causing interference or excessive friction. Close clearance ensures a tighter fit between the teeth, reducing the amount of play or backlash.
  • Anti-backlash mechanisms: Anti-backlash mechanisms can be incorporated into the worm gear system to reduce or eliminate backlash. These mechanisms typically consist of spring-loaded components or adjustable devices that help compensate for any clearance between the teeth. They apply a constant pressure to keep the teeth engaged tightly, reducing the effects of backlash.
  • Preload: Applying a preload to the worm gear system can help minimize backlash. Preload involves applying a slight compressive force or tension to the components, ensuring they remain engaged and eliminating any clearance. However, it is important to apply the appropriate preload to avoid excessive friction and wear.
  • Lubrication: Proper lubrication is crucial for minimizing backlash and reducing gear play. Lubricants with suitable viscosity and properties should be used to ensure smooth and consistent operation of the worm gear mechanism. Good lubrication helps reduce friction, wear, and any potential clearance that can contribute to backlash.
  • Regular maintenance: Regular inspection and maintenance of the worm gear mechanism can help detect and address any developing backlash or gear play. Routine checks can identify signs of wear, misalignment, or improper lubrication, allowing for timely adjustments or replacements to minimize backlash and maintain optimal performance.

It’s important to note that completely eliminating backlash in a worm gear mechanism may not always be possible or desirable. Some applications require a certain level of backlash to accommodate thermal expansion, compensate for positional errors, or allow for smooth operation. The acceptable level of backlash depends on the specific requirements of the application.

When implementing measures to prevent backlash and gear play, it is crucial to strike a balance between minimizing backlash and ensuring smooth, reliable operation. The specific techniques and approaches used to minimize backlash may vary depending on the design, manufacturing, and application requirements of the worm gear mechanism.

worm gear

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

Yes, worm gears can be used in both horizontal and vertical orientations. Here’s a detailed explanation of the suitability of worm gears for different orientations:

1. Horizontal Orientation: Worm gears are commonly used in horizontal orientations and are well-suited for such applications. In a horizontal configuration, the worm gear’s weight is primarily supported by the bearings and housing. The lubrication and load-carrying capabilities of the gear design are optimized for horizontal operation, allowing for efficient power transmission and torque generation. Horizontal worm gear applications include conveyor systems, mixers, mills, and many other industrial machinery setups.

2. Vertical Orientation: Worm gears can also be used in vertical orientations, although there are some additional considerations to address in such cases. In a vertical configuration, the weight of the worm gear exerts an axial force on the worm shaft, which can introduce additional load and affect the gear’s performance. To ensure proper operation in a vertical orientation, the following factors should be considered:

  • Thrust load handling: Vertical orientations impose a thrust load on the worm gear due to the weight of the gear and any additional external loads. The gear design should be capable of handling and transmitting this thrust load without excessive wear or deformation. Proper bearing selection and lubrication are crucial to support the axial load and maintain optimal performance.
  • Lubrication: Lubrication becomes even more critical in vertical worm gear applications. Adequate lubrication ensures proper lubricant film formation to minimize friction, reduce wear, and dissipate heat generated during operation. Careful consideration should be given to the lubricant type, viscosity, and lubrication method to ensure effective lubrication, particularly in the upper parts of the gear where lubricant distribution may be more challenging.
  • Backlash control: In vertical orientations, gravity can cause the load to act on the gear in the opposite direction, potentially leading to increased backlash. Proper gear design, including tooth geometry and clearance adjustments, can help minimize backlash and ensure precise motion control and positional stability.
  • Bearing selection: The choice of bearings becomes crucial in vertical worm gear applications. Thrust bearings or combinations of thrust and radial bearings may be required to handle the axial and radial loads effectively. Bearings with appropriate load-carrying capacities and stiffness are selected to ensure smooth operation and minimize deflection under vertical loads.
  • Sealing: Vertical orientations may require additional sealing measures to prevent lubricant leakage and ingress of contaminants. Proper sealing and protection mechanisms, such as seals or gaskets, should be implemented to maintain the integrity of the gear system and ensure reliable operation.

In summary, worm gears can be utilized in both horizontal and vertical orientations. However, certain considerations related to thrust load handling, lubrication, backlash control, bearing selection, and sealing should be taken into account for vertical applications. By addressing these factors appropriately, worm gears can effectively transmit power and torque, whether in horizontal or vertical configurations.

worm gear

How do you install a worm gear system?

Installing a worm gear system requires careful attention to ensure proper alignment, lubrication, and secure mounting. Here are the general steps involved in installing a worm gear system:

  1. Prepare the components: Before installation, ensure that all the components of the worm gear system, including the worm, worm wheel, bearings, and housing, are clean and free from any contaminants or damage. Inspect the components for any signs of wear or defects.
  2. Check alignment: Verify that the mating surfaces of the worm and worm wheel are clean and free from any debris. Ensure that the gear teeth mesh properly and that there is no excessive backlash or misalignment. Make any necessary adjustments or repairs before proceeding with the installation.
  3. Apply lubrication: Lubricate the worm gear system according to the manufacturer’s recommendations. Select a suitable lubricant that provides sufficient lubrication and reduces friction between the worm and worm wheel during operation. Apply the lubricant evenly to the gear teeth and other contact surfaces.
  4. Mounting: Position the worm gear system in the desired location, taking into account any space constraints or mounting requirements. Use appropriate fasteners, such as bolts or screws, to securely attach the system to the surrounding structure or base. Ensure that the mounting surfaces are clean, flat, and able to withstand the forces and loads exerted by the gear system.
  5. Alignment and adjustment: Once the worm gear system is mounted, check the alignment again and make any necessary adjustments. Ensure that the worm and worm wheel are properly engaged and that there is no excessive play or binding. Pay attention to any specified alignment tolerances provided by the manufacturer.
  6. Testing and operation: After installation, conduct a thorough functional test of the worm gear system. Verify that it operates smoothly, without unusual noise or vibration. Check for proper engagement of the gear teeth and ensure that the system performs as intended under different load conditions. Monitor the system’s performance during initial operation and address any issues or abnormalities promptly.

It’s important to follow the specific installation instructions provided by the gear system manufacturer. Different worm gear designs and applications may have additional installation requirements or considerations that should be taken into account.

Proper installation of a worm gear system ensures its reliable operation, minimizes wear, and maximizes its lifespan. If you are unsure about any aspect of the installation process, it is recommended to consult the manufacturer or seek the assistance of a qualified professional.

China manufacturer China Factory Direct Supply Low Price IGBT Induction Quenching Machine for Heating The Drag Link, Steering Knuckle Arm, Worm Gear Sector and So on gear ratio calculatorChina manufacturer China Factory Direct Supply Low Price IGBT Induction Quenching Machine for Heating The Drag Link, Steering Knuckle Arm, Worm Gear Sector and So on gear ratio calculator
editor by CX 2023-11-03