Product Description
Water Pump Parts coupling Factory Manufacturer China Standard Taper Bore Cast Iron HRC Flexible Water Pump Shaft Coupling for Electric Motor
Product Description
Quick Detail:
HRC Couplings
Double cardanic type DKM Coupling
C45 steel, Alloy steel, Aluminum etc. material
Standard and non-standard coupling available
With high quality and competitive price
Prompt delivery
Packing as per customer’s demand.
Description:
We are the leading top Chinese coupling manufacturer, and are specializing in various high quality Double cardanic type DKM
Coupling.
1. For high shaft displacements
2. 3-part double-cardanic
3. Reduced vibration and noise
4. The restoring forces resulting from displacements are very low
5. Increase of the total lifetime of all adjacent components (bearings,seals etc.)
6. Approved according to EC Standard 94/9/EC(Explosion Certificate ATEX 95)
7. Double-cardanic design without the need for bearing support or external guarding
8. Finish bore according to ISO fit H7, feather keyway according to DIN 6885 (JS9)
9. Size: 19, 24, 28, 38, 42, 48, 55, 65, 75, 90 mm
Applications:
HRC Couplings Double cardanic type DKM Coupling are offered in the industry’s largest variety of stock bore/keyway combinations.
These couplings require no lubrication and provide highly reliable service for light, medium, and heavy duty electrical motor and
internal combustion power transmission applications. Applications include power transmission to industrial equipment such as
pumps, gear boxes, compressors, blowers, mixers, and conveyors.
Recommended Products
FAQ
Q: Are you trading company or manufacturer ?
A: Our group consists in 3 factories and 2 abroad sales corporations.
Q: Do you provide samples ? is it free or extra ?
A: Yes, we could offer the sample for free charge but do not pay the cost of freight.
Q:How long is your delivery time ? What is your terms of payment ?
A: Generally it is 40-45 days. The time may vary depending on the product and the level of customization. For standard products, the payment is: 30% T/T in advance ,balance before shippment.
Q:What is the exact MOQ or price for your product ?
A: As an OEM company, we can provide and adapt our products to a wide range of needs.Thus, MOQ and price may greatly vary with size, material and further specifications; For instance, costly products or standard products will usually have a lower MOQ. Please contact us with all relevant details to get the most accurate quotation.
If you have another question, please feel free to contact us.
Standard Or Nonstandard: | Standard |
---|---|
Shaft Hole: | 19-32 |
Torque: | 70-80N.M |
Bore Diameter: | OEM |
Speed: | 4000r/M |
Structure: | Flexible |
Samples: |
US$ 999/Piece
1 Piece(Min.Order) | |
---|
Are There Any Safety Considerations When Using HRC Couplings in Rotating Machinery?
When using HRC (Highly Resilient Coupling) couplings in rotating machinery, several safety considerations should be taken into account to ensure the proper and safe functioning of the coupling and the connected equipment:
- Proper Installation: It is crucial to follow the manufacturer’s guidelines and recommendations for the correct installation of the HRC coupling. Ensure that the coupling is mounted securely on the shafts and that all fasteners are tightened to the specified torque values.
- Alignment: Adequate shaft alignment is essential for the smooth operation of the HRC coupling. Misalignment can lead to increased stress on the coupling and its elastomeric element, reducing its service life and possibly causing premature failure.
- Torque Capacity: Before selecting an HRC coupling, verify that it has the appropriate torque capacity for the specific application. Using an undersized coupling can result in overloading, leading to coupling failure and potential damage to connected machinery.
- Operating Conditions: Consider the environmental conditions and operating parameters of the machinery when choosing an HRC coupling. Factors such as temperature, humidity, and exposure to chemicals can affect the coupling’s performance and longevity.
- Regular Inspection: Implement a regular inspection and maintenance schedule for the HRC coupling and the entire power transmission system. Check for signs of wear, corrosion, or any other issues that may require attention. Replace worn or damaged components promptly.
- Emergency Stop: Ensure that the rotating machinery is equipped with a proper emergency stop mechanism to quickly shut down operations in case of unexpected events or coupling failure.
- Overload Protection: Consider adding overload protection devices to the system to prevent excessive torque or shock loads from reaching the coupling and the connected equipment.
By adhering to these safety considerations and best practices, the risk of accidents, equipment damage, and downtime can be minimized, ensuring a safe and reliable operation of rotating machinery with HRC couplings.
How Does an HRC Coupling Handle Angular, Parallel, and Axial Misalignment?
An HRC (Highly Resilient Coupling) is designed to handle various types of misalignment, including angular, parallel, and axial misalignment. The coupling’s unique construction allows it to provide flexibility while transmitting torque between two shafts. Here’s how it handles each type of misalignment:
1. Angular Misalignment: Angular misalignment occurs when the axes of the connected shafts are not perfectly aligned. The HRC coupling can accommodate this misalignment due to its flexible element, typically made of synthetic rubber or polyurethane. The rubber element can bend and flex, allowing the coupling to compensate for slight angular deviations between the shafts. This helps to reduce stress on the connected equipment and the coupling itself.
2. Parallel Misalignment: Parallel misalignment happens when the shafts are not perfectly aligned side by side. The HRC coupling’s rubber element can also tolerate small amounts of parallel misalignment. As the shafts move slightly in parallel, the rubber element flexes to maintain the torque transmission between the shafts. However, excessive parallel misalignment should be avoided to prevent premature wear on the coupling.
3. Axial Misalignment: Axial misalignment occurs when the ends of the shafts move closer together or farther apart. The HRC coupling can accommodate limited axial misalignment, thanks to the elasticity of the rubber element. As the shafts move in the axial direction, the rubber element compresses or expands accordingly, ensuring continuous torque transmission.
It’s essential to note that while HRC couplings are designed to handle misalignment, they have limits. Excessive misalignment can cause premature wear and failure of the coupling. Therefore, it’s crucial to install and align the HRC coupling properly within the recommended tolerances to ensure optimal performance and longevity of the coupling and connected equipment.
Advantages of Using HRC Couplings in Mechanical Systems
1. Flexibility: HRC couplings offer flexibility in accommodating misalignment between shafts, both angular and parallel. This flexibility helps to reduce stress on the connected equipment and increases the overall reliability of the system.
2. Vibration Damping: The elastomeric spider in HRC couplings acts as a cushion, absorbing vibrations and shock loads, which results in smoother and quieter operation of the machinery.
3. Simple Design: HRC couplings have a straightforward design, consisting of just two hubs and an elastomeric spider. This simplicity makes them easy to install, assemble, and maintain.
4. Cost-Effective: Compared to some other types of couplings, HRC couplings are cost-effective, providing reliable performance at a relatively lower cost.
5. High Torque Transmission: HRC couplings can handle high torque transmission, making them suitable for various heavy-duty applications.
6. Misalignment Compensation: They can compensate for small amounts of misalignment between shafts, which can occur due to factors like thermal expansion or shaft deflection.
7. Corrosion Resistance: The elastomeric spider in HRC couplings provides some level of corrosion resistance, making them suitable for applications in harsh environments.
8. Wide Range of Sizes and Torque Ratings: HRC couplings are available in various sizes and torque ratings, making it easy to find a suitable coupling for different power transmission requirements.
9. Electrically Insulating: Some HRC couplings are electrically insulating, which can be advantageous in certain applications to prevent electrical currents from passing between connected shafts.
10. Reduced Downtime: Due to their ability to absorb shock loads and vibrations, HRC couplings can help reduce wear and tear on machinery, leading to less downtime and lower maintenance costs.
Overall, HRC couplings are a reliable and widely used choice for connecting shafts in mechanical systems, providing flexibility, vibration dampening, and cost-effectiveness in a wide range of applications.
editor by CX 2023-09-07
China Professional Nm148 Elastic / Flexible Pump Motor Shaft Torsional Rubber HRC Coupling
Product Description
Product Description
Product Parameters
product | Nm148 Elastic / flexible Pump Motor Shaft Torsional Rubber HRC Star Spider Plum Jaw Coupling |
material | stainless steel , iron , aluminum ,bronze ,carbon steel ,brass etc . |
size | ISO standard ,customer requirements |
BORE | Finished bore, Pilot Bore, Special request |
surface treatment | Carburizing and Quenching,Tempering ,Tooth suface high quenching Hardening,Tempering |
Processing Method | Molding, Shaving, Hobbing, Drilling, Tapping, Reaming, Manual Chamfering, Grinding etc |
Heat Treatment | Quenching & Tempering, Carburizing & Quenching, High-frequency Hardening, Carbonitriding…… |
Package | Wooden Case/Container and pallet, or made-to-order |
Certificate | ISO9001 ,SGS |
Machining Process | Gear Hobbing, Gear Milling, Gear Shaping, Gear Broaching, Gear Shaving, Gear Grinding and Gear Lapping |
Applications | Toy, Automotive, instrument, electrical equipment, household appliances, furniture, mechanical equipment,daily living equipment, electronic sports equipment, , sanitation machinery, market/ hotel equipment supplies, etc. |
Testing Equipment | Rockwell hardness tester 500RA, Double mesh instrument HD-200B & 3102,Gear measurement center instrument CNC3906T and other High precision detection equipments |
workshop & equipment
Production process
Certifications
Our Advantages
1 . Prioritized Quality
2 .Integrity-based Management
3 .Service Orientation
4 .150+ advanced equipment
5 .10000+ square meter factory area
6 .200+ outstanding employees
7 .90% employees have more than 10 year- working experience in our factory
8 .36 technical staff
9 .certificate ISO 9001 , SGS
10 . Customization support
11 .Excellent after-sales service
shipping
sample orders delivery time:
10-15 working days as usual
15-20 working days in busy season
large order leading time :
20-30 working days as usual
30-40 working days in busy season
FAQ
1. why should you buy products from us not from other suppliers?
We are a 32 year-experience manufacturer on making the gear, specializing in manufacturing varieties of gears, such as helical gear ,bevel gear ,spur gear and grinding gear, gear shaft, timing pulley, rack, , timing pulley and other transmission parts . There are 150+ advanced equipment ,200+ excellent employees ,and 36 technical staff . what’s more ,we have got ISO9001 and SGS certificate .
2 .Do you accept small order?
If your order bearings are our standard size, we accept even 1pcs.
3 .How long is the delivery?
A: Small orders usually takes 10-15 working days,big order usually 20-35 days, depending on orders quantity and whether are standard size.
Standard Or Nonstandard: | Standard |
---|---|
Shaft Hole: | 8-24 |
Torque: | >80N.M |
Bore Diameter: | 14mm |
Speed: | 4000r/M |
Structure: | Rigid |
Samples: |
US$ 5/Piece
1 Piece(Min.Order) | |
---|
Customization: |
Available
| Customized Request |
---|
What are the Maintenance Requirements for HRC Couplings?
HRC (Highly Resilient Coupling) couplings are known for their relatively low maintenance requirements, making them popular in various industrial applications. However, like any mechanical component, they still require some attention to ensure optimal performance and longevity. Here are the typical maintenance requirements for HRC couplings:
- Regular Inspection: Perform visual inspections of the coupling regularly to check for signs of wear, damage, or misalignment. Look for any unusual vibrations, noise, or overheating during operation.
- Lubrication: Some HRC couplings have elastomeric elements that require periodic lubrication to maintain their flexibility and resilience. Check the manufacturer’s recommendations for the proper lubrication schedule and type of lubricant to use.
- Torque Monitoring: Ensure that the coupling is properly torqued and recheck the torque periodically, especially after installation or maintenance activities.
- Alignment Checks: Misalignment can lead to premature wear and reduced coupling life. Regularly check the alignment of the connected shafts and correct any misalignment if necessary.
- Environmental Considerations: HRC couplings can be affected by environmental factors such as temperature, humidity, and exposure to chemicals. Ensure that the coupling is suitable for the specific environmental conditions of the application.
- Replace Worn Parts: Over time, the elastomeric elements of the HRC coupling may wear out. When signs of wear, cracking, or damage are observed, replace the coupling elements promptly to prevent further issues.
- Professional Inspection: Periodic inspections by maintenance professionals or coupling experts can help identify any potential problems and address them proactively.
It’s essential to follow the manufacturer’s guidelines and recommendations for maintenance and inspection intervals specific to the HRC coupling model being used. Proper maintenance can extend the life of the coupling, reduce downtime, and ensure the reliable operation of the machinery in which it is installed.
How Does an HRC Coupling Handle Angular, Parallel, and Axial Misalignment?
An HRC (Highly Resilient Coupling) is designed to handle various types of misalignment, including angular, parallel, and axial misalignment. The coupling’s unique construction allows it to provide flexibility while transmitting torque between two shafts. Here’s how it handles each type of misalignment:
1. Angular Misalignment: Angular misalignment occurs when the axes of the connected shafts are not perfectly aligned. The HRC coupling can accommodate this misalignment due to its flexible element, typically made of synthetic rubber or polyurethane. The rubber element can bend and flex, allowing the coupling to compensate for slight angular deviations between the shafts. This helps to reduce stress on the connected equipment and the coupling itself.
2. Parallel Misalignment: Parallel misalignment happens when the shafts are not perfectly aligned side by side. The HRC coupling’s rubber element can also tolerate small amounts of parallel misalignment. As the shafts move slightly in parallel, the rubber element flexes to maintain the torque transmission between the shafts. However, excessive parallel misalignment should be avoided to prevent premature wear on the coupling.
3. Axial Misalignment: Axial misalignment occurs when the ends of the shafts move closer together or farther apart. The HRC coupling can accommodate limited axial misalignment, thanks to the elasticity of the rubber element. As the shafts move in the axial direction, the rubber element compresses or expands accordingly, ensuring continuous torque transmission.
It’s essential to note that while HRC couplings are designed to handle misalignment, they have limits. Excessive misalignment can cause premature wear and failure of the coupling. Therefore, it’s crucial to install and align the HRC coupling properly within the recommended tolerances to ensure optimal performance and longevity of the coupling and connected equipment.
Explanation of Different Types of HRC Coupling Designs
1. HRC Standard Design: The standard or classic HRC coupling design consists of two cast iron hubs with a spider made of an elastomeric material, usually rubber. The hubs have teeth on the inner surface that mesh with the spider, providing torque transmission and flexibility. This design is commonly used in various industrial applications due to its simplicity and cost-effectiveness.
2. HRC Spacer Design: The HRC spacer coupling design is similar to the standard HRC design, but it includes a spacer between the two hubs. The spacer allows for more axial misalignment compensation and can accommodate longer distances between shafts. This design is suitable for applications where additional spacing between the shafts is necessary.
3. HRC Flywheel Design: The HRC flywheel coupling design is specifically used in applications where the coupling is mounted on a flywheel. The design incorporates a flywheel mounting hub on one side and a standard HRC hub on the other side. This allows the coupling to be easily connected to a flywheel for various engine-driven machinery.
4. HRC Taper Lock Design: The HRC taper lock coupling design includes taper lock bushings that enable easy installation and removal of the coupling from the shaft. The hubs have a tapered bore, and the taper lock bushings are inserted into the bore, providing a secure and precise connection to the shaft. This design is commonly used in applications that require frequent coupling removal and reassembly.
5. HRC Brake Drum Design: The HRC brake drum coupling design is used in applications where a brake is required. The design incorporates a brake drum on one of the hubs, allowing the coupling to serve both as a torque transmitting coupling and a brake drum for braking purposes. This design is commonly used in industrial machinery where controlled braking is necessary.
6. HRC Non-Spacer Design: The HRC non-spacer coupling design is similar to the standard HRC design but does not include a spacer. This design is suitable for applications where the shafts are relatively close together, and a spacer is not required for additional misalignment compensation.
7. HRC Stainless Steel Design: The HRC stainless steel coupling design is used in applications where corrosion resistance is essential. The hubs and spider are made of stainless steel, providing better resistance to rust and corrosion. This design is commonly used in industries such as food processing, marine, and pharmaceuticals.
8. HRC Pilot Bore Design: The HRC pilot bore coupling design is supplied with plain bore hubs, allowing the end-users to machine the bore to the required size. This design is beneficial when the shaft sizes are not standard or need to be customized for a specific application.
Overall, these different HRC coupling designs offer flexibility and versatility to suit various power transmission requirements across different industries.
editor by CX 2023-08-03
china Lowest price factory supplier radial piston hydraulic motor pump Radial piston hydraulic motor
focus in power transmission products,pto shaft, agricultural gearboxes , CATV products, mechanical seal, hydraulic and Pheumatic, and advertising products.
Overview
Quick Details
- Guarantee:
-
one.five many years
- After Guarantee Provider:
-
Movie technical assist
- Regional Service Place:
-
Egypt
- Showroom Spot:
-
Egypt
- Type:
-
components
- Brand name Identify:
-
OEM
- Location of Origin:Zhejiang, China
- Strain:
-
hydraulic pressure
- Composition:
-
hydraulic method, 5 Radial Piston Motor
- Certification:
-
CE
- Bodyweight:
-
≤75kg
- Electricity(W):
-
6000-90000
- Right after-income Provider Provided:
-
Video clip complex assistance
Offer Capability
- Offer Potential:
- 5000 Piece/Pieces per Thirty day period radial piston hydraulic motor pump
Packaging & Shipping and delivery
- Packaging Details
- packaged in plywood situation or PALLET
- Port
- NINGBO/SHANGHAI, CHINA
-
Direct Time
: -
Amount(Bags) 1 – twenty >20 Est. Time(days) fifteen To be negotiated
On the internet Customization
Kind | Displacement (ml/r) |
Strain (Mpa) |
Torque(N.m) | Pace Variety (r/min) |
Max.cont. Electrical power (kw) |
Fat (kg) |
||
(N.m) Price torque |
N.m/Mpa Theoric Torque |
|||||||
peak strain | cont.pressure | |||||||
JMDG1-50 | 54 | 24 | twenty | 164 | eight | 35-five hundred | six | 23 |
JMDG1-63 | sixty four | 24 | twenty | 188 | nine | 35-five hundred | 7 | 23 |
JMDG1-80 | 78 | 22 | eighteen | 206 | eleven | 35-five hundred | nine | 23 |
JMDG1-one hundred | ninety six | 22 | 18 | 253 | fourteen | 35-five hundred | 11 | 23 |
JMDG1-a hundred twenty five | 126 | 22 | 18 | 332 | eighteen | 35-five hundred | fifteen | 23 |
JMDG1-a hundred and sixty | 159 | twenty | sixteen | 373 | 23 | 35-500 | 16 | 23 |
JMDG2-one hundred | 113 | 24 | twenty | 331 | 17 | 30-four hundred | 11 | 28 |
JMDG2-a hundred and fifty | 157 | 24 | twenty | 460 | 23 | 30-four hundred | 15 | 28 |
JMDG2-one hundred seventy five | 176 | 22 | 18 | 464 | 26 | 30-400 | seventeen | 28 |
JMDG2-two hundred | 201 | 22 | 18 | 530 | 29 | thirty-four hundred | 19 | 28 |
JMDG2-250 | 254 | 20 | 16 | 595 | 37 | 30-400 | 21 | 28 |
JMDG2-280 | 271 | 20 | 16 | 635 | 39 | 30-four hundred | 23 | 28 |
JMDG3-200 | 199 | 22 | 18 | 525 | 29 | 30-350 | 25 | 36 |
JMDG3-250 | 254 | 22 | 18 | 670 | 37 | 30-350 | 32 | 36 |
JMDG3-300 | 289 | 22 | 18 | 762 | forty two | thirty-350 | 32 | 36 |
JMDG3-350 | 351 | 22 | eighteen | 926 | fifty one | thirty-350 | 32 | 36 |
JMDG3-400 | 397 | 20 | 16 | 931 | 58 | 30-350 | 32 | 36 |
JMDG3-450 | 462 | twenty | sixteen | 1083 | 68 | 30-350 | 32 | 36 |
JMDG6-four hundred | 397 | 22 | eighteen | 1047 | 58 | twenty five-320 | forty six | sixty five |
JMDG6-450 | 452 | 22 | 18 | 1192 | 66 | 25-320 | fifty three | 65 |
JMDG6-five hundred | 491 | 22 | eighteen | 1295 | seventy two | 25-320 | fifty three | 65 |
JMDG6-600 | 594 | 22 | 18 | 1566 | 87 | 25-320 | 63 | sixty five |
JMDG6-seven hundred | 683 | 22 | 18 | 1801 | a hundred | twenty five-320 | 63 | 65 |
JMDG6-750 | 754 | 20 | sixteen | 1767 | a hundred and ten | 25-320 | 63 | 65 |
JMDG6-800 | 799 | twenty | sixteen | 1873 | 117 | twenty five-320 | sixty three | sixty five |
JMDG8-600 | 617 | 22 | eighteen | 1627 | ninety | 20-280 | 80 | 71 |
JMDG8-seven-hundred | 710 | 22 | eighteen | 1872 | 104 | twenty-280 | eighty | 71 |
JMDG8-800 | 810 | 22 | 18 | 2136 | 118 | twenty-280 | 85 | 71 |
JMDG8-900 | 889 | twenty | 16 | 2084 | one hundred thirty | twenty-280 | 85 | seventy one |
JMDG8-1000 | one thousand | 20 | sixteen | 2344 | 146 | twenty-280 | eighty five | 71 |
JMDG8Y-seven hundred | 710 | 24 | twenty | 2080 | a hundred and one | twenty-280 | eighty five | 75 |
JMDG8Y-800 | 810 | 24 | 20 | 2373 | 116 | 20-280 | eighty five | 75 |
JMDG8Y-900 | 889 | 24 | 20 | 2604 | 127 | 20-280 | eighty five | 75 |
JMDG8Y-one thousand | 1000 | 24 | 20 | 2930 | 143 | 20-280 | 85 | seventy five |
JMDG8Y-1100 | 1117 | 22 | 18 | 2945 | one hundred sixty | 20-280 | ninety | seventy five |
JMDG8Y-1200 | 1178 | 22 | eighteen | 3106 | 168 | 20-280 | 90 | 75 |