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China wholesaler NEMA 34 Worm Gearbox 86 with Ratio 1: 7.5~100 and Double Output Gearbox for NEMA 34 Stepper Motor gearbox adjustment

Product Description

Descriptions: NMRV63 worm gear speed reducer Ratio 20:1
 
Product Paramenters:
Step angle:1.8° Temperature rise:below 80 ºC
Ambient temperature:-20 ºC ~ + 50 ºC
Insulation resistance:minimum 100MΩ, 500VDC
Dielectric strength:820VAC for 1 minute
Shaft radial clearance 0.02 max (450 g load)
Shaft axial clearance:0.08Max. (450 g load)
Maximum radial force:220N (20mm from flange)
Maximum axial force:60N

 

Model Name: JK86HS78-5504 

Step Angle(degrees):1.8Degree 

Model Number:NEMA34

Phase:2 

Type:Hybrid 

Current / Phase:5.5A 

Resistance:0.46Ω 

Inductance:4mH 

Holding Torque:4.5N.m 

Motor length:78mm 

Number of leads: 4leads

Shaft Dia: 12mm or 12.7mm

Shaft Type: Round Shaft or D-cut Shaft

Model Name: JK86HS115-6004
Step Angle(degrees):1.8Degree
Model Number:NEMA34
Phase:2
Type:Hybrid
Current / Phase:6A
Resistance:0.6Ω
Inductance:6.5mH
Holding Torque:8.5N.m
Motor length:115mm

Number of leads: 4leads 

 

Model Name: JK86HS155-6004
Step Angle(degrees):1.8Degree
Model Number:NEMA34
Phase:2
Type:Hybrid
Current / Phase:6A
Resistance:1Ω
Inductance:0.68mH
Holding Torque:12.5N.m
Motor length:155mm
Number of leads: 4leads

Detailed Image:

 

Company File:

   

WHY YOU CHOOSE US:

We are a professional manufacturer for Stepper motor , Stepper driver, BLDC motor and DC motor. we can supply OEM service.  
Our products all with CE and ROHS. 
Welcome you visit our company HangZhou Jingkong Motor&Electric Appliance Co.,Ltd 
 
Depending on advanced technology and CHINAMFG service, we establish a good and diligent team and keep nice business relationship with a large amount of worthy clients in global market. We are prepared to provide the best products to clients at competitive price. 

High quality  
Competitive price 
Good Packing 
Fast Delivery 
Knight service
Advanced technology

Believe that we will do our best!

Model No. Step Angle Motor Length Current
/Phase
Resistance
/Phase
Inductance
/Phase
Holding Torque # of Leads Detent Torque Rotor Inertia Mass
( °) (L)mm A Ω mH N.m No. kg.cm g.cm2 Kg
JK86HS68-5904 1.8 67 5.9 0.28 1.7 3.4 4 0.8 1000 1.7
JK86HS68-2808 1.8 67 2.8 1.4 3.9 3.4 8 0.8 1000 1.7
JK86HS78-5504 1.8 78 5.5 0.46 4.0 4.6 4 1.2 1400 2.3
JK86HS78-4208 1.8 78 4.2 0.75 3.4 4.6 8 1.2 1400 2.3
JK86HS97-4504 1.8 97 4.5 0.66 3.0 5.8 4 1.7 2100 3.0
JK86HS97-4008 1.8 97 4.0 0.98 4.1 4.7 8 1.7 2100 3.0
JK86HS100-6004 1.8 100 6.0 0.36 2.8 7.0 4 1.9 2200 3.1
JK86HS115-6004 1.8 115 6.0 0.6 6.5 8.7 4 2.4 2700 3.8
JK86HS115-4208 1.8 115 4.2 0.9 6.0 8.7 8 2.4 2700 3.8
JK86HS126-6004 1.8 126 6.0 0.58 6.5 6.3 4 2.9 3200 4.5
JK86HS155-6004 1.8 155 6.0 0.68 9.0 13.0 4 3.6 4000 5.4
JK86HS155-4208 1.8 155 4.2 1.25 8.0 12.2 8 3.6 4000 5.4

 

HangZhou Jingkong Motor Co.,Ltd

 

 
 

 

 

 

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Application: Printing Equipment
Speed: High Speed
Number of Stator: Two-Phase
Excitation Mode: HB-Hybrid
Function: Control, Driving
Number of Poles: Other
Customization:
Available

|

Customized Request

worm gearbox

What are the Noise Levels Associated with Worm Gearboxes?

The noise levels associated with worm gearboxes can vary depending on several factors, including the design, quality, operating conditions, and maintenance of the gearbox. Here are some key points to consider:

  • Design and Quality: Well-designed and high-quality worm gearboxes tend to produce lower noise levels. Factors such as gear tooth profile, precision manufacturing, and proper alignment can contribute to reduced noise.
  • Gear Engagement: The way the worm and worm wheel engage and mesh with each other can impact noise levels. Proper tooth contact and alignment can help minimize noise during operation.
  • Lubrication: Inadequate or improper lubrication can lead to increased friction and wear, resulting in higher noise levels. Using the recommended lubricant and maintaining proper lubrication levels are important for noise reduction.
  • Operating Conditions: Operating the gearbox within its specified load and speed limits can help prevent excessive noise generation. Overloading or operating at high speeds beyond the gearbox’s capabilities can lead to increased noise.
  • Backlash: Excessive backlash or play between the gear teeth can lead to impact noise as the teeth engage. Proper backlash adjustment can help mitigate this issue.
  • Maintenance: Regular maintenance, including gear inspection, lubrication checks, and addressing any wear or damage, can help keep noise levels in check.

It’s important to note that while worm gearboxes can produce some noise due to the nature of gear meshing, proper design, maintenance, and operation can significantly reduce noise levels. If noise is a concern for your application, consulting with gearbox manufacturers and experts can provide insights into selecting the right gearbox type and implementing measures to minimize noise.

worm gearbox

How to Calculate the Input and Output Speeds of a Worm Gearbox?

Calculating the input and output speeds of a worm gearbox involves understanding the gear ratio and the principles of gear reduction. Here’s how you can calculate these speeds:

  • Input Speed: The input speed (N1) is the speed of the driving gear, which is the worm gear in this case. It is usually provided by the manufacturer or can be measured directly.
  • Output Speed: The output speed (N2) is the speed of the driven gear, which is the worm wheel. To calculate the output speed, use the formula:

    N2 = N1 / (Z1 * i)

Where:
N2 = Output speed (rpm)
N1 = Input speed (rpm)
Z1 = Number of teeth on the worm gear
i = Gear ratio (ratio of the number of teeth on the worm gear to the number of threads on the worm)

It’s important to note that worm gearboxes are designed for gear reduction, which means that the output speed is lower than the input speed. Additionally, the efficiency of the gearbox, friction, and other factors can affect the actual output speed. Calculating the input and output speeds is crucial for understanding the performance and capabilities of the worm gearbox in a specific application.

worm gearbox

How Does a Worm Gearbox Compare to Other Types of Gearboxes?

Worm gearboxes offer unique advantages and characteristics that set them apart from other types of gearboxes. Here’s a comparison between worm gearboxes and some other common types:

  • Helical Gearbox: Worm gearboxes have higher torque multiplication, making them suitable for heavy-load applications, while helical gearboxes are more efficient and offer smoother operation.
  • Bevel Gearbox: Worm gearboxes are compact and can transmit motion at right angles, similar to bevel gearboxes, but worm gearboxes have self-locking capabilities.
  • Planetary Gearbox: Worm gearboxes provide high torque output and are cost-effective for applications with high reduction ratios, whereas planetary gearboxes offer higher efficiency and can handle higher input speeds.
  • Spur Gearbox: Worm gearboxes have better shock load resistance due to their sliding motion, while spur gearboxes are more efficient and suitable for lower torque applications.
  • Cycloidal Gearbox: Cycloidal gearboxes have high shock load capacity and compact design, but worm gearboxes are more cost-effective and can handle higher reduction ratios.

While worm gearboxes have advantages such as high torque output, compact design, and self-locking capability, the choice between gearbox types depends on the specific requirements of the application, including torque, efficiency, speed, and space limitations.

China wholesaler NEMA 34 Worm Gearbox 86 with Ratio 1: 7.5~100 and Double Output Gearbox for NEMA 34 Stepper Motor   gearbox adjustment	China wholesaler NEMA 34 Worm Gearbox 86 with Ratio 1: 7.5~100 and Double Output Gearbox for NEMA 34 Stepper Motor   gearbox adjustment
editor by CX 2024-02-23