Produktbeskrivelse
Produktbeskrivelse
Shaft Coupling
1. The couplings offer a range of hub and element selection to meet different demands.
2. They can absorb shock and cater for incidental misalignment and damp out small amplitude vibrations.
3. NBR, Urethane, Hytrel elements.
4. Customized requirement is available.
Produktparametere
Emballasje og frakt
| Emballasje |
|
|
| Shipping |
|
Firmaprofil
ZheJiang Mighty Machinery Co., Ltd. specializes in manufacturing mechanical power transmission components. We Mighty is the branch of SCMC Group, a wholly state-owned company, established in 1980.
About us:
-3 manufacturing factories
We have 5 technical staff, our FTY have strong capacity for design and process design, and more than 70 workers and double shift eveyday.
-Large quality of material purchase and stock
We ensure both the quality and low cost for material and production.
-Strick quality control
We have strict process inspection and final production inspection to ensure the perfect quality.
-20 years of machinery experience
MIGHTYs produkter eksporteres hovedsakelig til Europa, Amerika og Midtøsten-markedet. With the top-ranking management, professional technical support and abundant export experience, MIGHTY has established lasting and stable business partnership with many world famous companies and has gained good reputation from CHINAMFG customers.
Vanlige spørsmål
Q: Are you manufacturer or trading company?
A: Vi er fabrikk.
Q: Hvor lang er leveringstiden din?
A: Generally it is 5-10 days if the goods are in stock or 15-20 days with short stock based on the quantity.
Q: Do you provide samples ? Is it free or extra ?
A: Yes, we could offer free sample but do not conclude the shipping cost.
Q: Hva er betalingsbetingelsene dine?
A: Payment=1000USD, 30% T/T in advance, balance before shippment.
If you have another question, pls feel free to contact me without hesitation as below:
/* 22. januar 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))
| Standard eller ikke-standard: | Standard |
|---|---|
| Akselhull: | 19-32 |
| Dreiemoment: | >80 Nm |
| Boringsdiameter: | 19 mm |
| Fart: | 4000 o/min |
| Struktur: | Fleksibel |
| Tilpasning: |
Tilgjengelig
| Tilpasset forespørsel |
|---|


Hvordan beskytter en fleksibel kobling tilkoblet utstyr mot støtbelastninger og vibrasjoner?
Fleksible koblinger spiller en avgjørende rolle i å beskytte tilkoblet utstyr mot støtbelastninger og vibrasjoner ved å gi demping og isolasjon. Når maskiner eller mekaniske systemer opplever plutselige støtbelastninger eller vibrasjoner, fungerer den fleksible koblingen som en buffer, som absorberer og avleder støtet, og dermed reduserer de overførte kreftene og beskytter utstyret. Slik oppnår fleksible koblinger dette:
- Demping av vibrasjoner: Fleksible koblinger er ofte laget av materialer som har dempende egenskaper. Når vibrasjoner overføres gjennom akslingene, kan materialet i den fleksible koblingen absorbere en del av vibrasjonsenergien og omdanne den til varme. Denne energispredningen bidrar til å redusere amplituden til vibrasjonene og forhindrer at de forplanter seg videre til det tilkoblede utstyret.
- Vibrasjonsisolering: I tillegg til å dempe vibrasjoner, tilbyr fleksible koblinger også en viss grad av vibrasjonsisolering. De er utformet for å frakoble de to akslingene, noe som betyr at vibrasjoner som oppstår på den ene akselen ikke overføres direkte til den andre akselen. Denne isolasjonseffekten forhindrer at vibrasjoner forplanter seg over hele systemet og minimerer påvirkningen på sensitivt utstyr eller komponenter i nærheten.
- Støtdemping: Når det tilkoblede maskineriet opplever plutselige støtbelastninger, for eksempel under oppstart eller brå endringer i belastningen, kan den fleksible koblingen fungere som en støtdemper. Koblingens design gjør at den deformeres litt under støtet, og absorberer og fordeler støtenergien. Dette forhindrer at støtet overføres direkte til det tilkoblede utstyret, noe som reduserer risikoen for skade eller for tidlig slitasje.
- Kompensasjon for feiljustering: Fleksible koblinger er i stand til å kompensere for feiljustering mellom akslene. Feiljustering kan føre til ytterligere belastninger og vibrasjoner i systemet. Ved å tillate en viss grad av vinkelmessig, parallell og aksial feiljustering, reduserer den fleksible koblingen kreftene som overføres til det tilkoblede utstyret og støttestrukturene.
- Reduksjon av resonanseffekter: Resonans er et fenomen som oppstår når den naturlige frekvensen til et system samsvarer med frekvensen til eksterne vibrasjoner, noe som fører til forsterkede vibrasjoner. Fleksible koblinger kan bidra til å unngå resonanseffekter ved å endre systemets naturlige frekvens og gi en viss grad av fleksibilitet som demper resonansresponsen.
Ved å integrere en fleksibel kobling i drivverket eller kraftoverføringssystemet, kan utstyrsprodusenter og operatører forbedre påliteligheten og levetiden til tilkoblede maskiner betydelig. Koblingens evne til å dempe vibrasjoner, isolere støt og kompensere for feiljustering bidrar til en jevnere og mer stabil drift, noe som reduserer vedlikeholdskrav og forbedrer den generelle systemytelsen.
Kort sagt fungerer fleksible koblinger som beskyttende elementer som beskytter tilkoblet utstyr mot støtbelastninger og vibrasjoner. Deres evne til å dempe vibrasjoner, isolere støt og kompensere for feiljustering bidrar til en jevnere og mer pålitelig drift av ulike mekaniske systemer.

Can flexible couplings be used for both motor-to-shaft and shaft-to-shaft connections?
Yes, flexible couplings can be used for both motor-to-shaft and shaft-to-shaft connections in various applications. The versatility of flexible couplings allows them to adapt to different types of connections and meet the specific requirements of the system.
Motor-to-Shaft Connections:
When connecting a motor to a shaft, a flexible coupling serves as an intermediary component that joins the motor shaft and the driven shaft. Flexible couplings are commonly used in motor-driven systems to accommodate misalignment between the motor and the driven load. In motor applications, flexible couplings help reduce stress and wear on the motor bearings, thus extending the motor’s life and enhancing overall system reliability. They also act as vibration dampeners, minimizing vibrations transmitted from the motor to the driven shaft, and subsequently to connected equipment, ensuring smoother operation.
Shaft-to-Shaft Connections:
In many mechanical systems, such as those in the manufacturing, automation, and power transmission industries, shaft-to-shaft connections are required. A flexible coupling can bridge the gap between two shafts and transmit torque while accommodating misalignment. This type of coupling is commonly used to connect shafts that are not perfectly aligned due to factors like manufacturing tolerances, thermal expansion, or foundation settling. By allowing for misalignment, the flexible coupling protects the connected components from excessive stresses and ensures efficient power transmission.
Versatility and Advantages:
The ability of flexible couplings to handle both motor-to-shaft and shaft-to-shaft connections makes them versatile solutions for a wide range of industrial applications. Some of the advantages of using flexible couplings in these connections include:
- Minimizing stress and wear on connected components, such as bearings and seals.
- Compensating for misalignment, ensuring smooth power transmission.
- Damping vibrations and shock loads, reducing the risk of mechanical failures.
- Protecting equipment from excessive forces, enhancing system reliability.
- Simplifying installation and alignment procedures, reducing downtime.
- Improving overall system performance and operational efficiency.
Bruksområder:
Flexible couplings find applications in a wide range of industries, including manufacturing, material handling, automotive, aerospace, robotics, and more. Whether connecting a motor to a shaft or joining two shafts directly, flexible couplings play a crucial role in enhancing the reliability and efficiency of rotating machinery and mechanical systems.
In conclusion, flexible couplings can effectively serve as connectors for both motor-to-shaft and shaft-to-shaft connections, providing essential misalignment compensation and protection for connected equipment in various industrial applications.

Can you explain the different types of flexible coupling designs available?
There are several types of flexible coupling designs available, each with its unique construction and characteristics. These designs are tailored to meet specific application requirements and address different types of misalignment and torque transmission needs. Here are some of the most common types of flexible couplings:
- Kjevekoblinger: Jaw couplings consist of two hubs with curved jaws and an elastomer spider placed between them. The spider acts as a flexible element and can compensate for angular and parallel misalignment. Jaw couplings are widely used in various industrial applications due to their simple design and effectiveness in handling misalignment and vibration damping.
- Skivekoblinger: Disc couplings use thin metallic discs with a series of alternating slits and flanges to connect the shafts. The disc coupling design allows for excellent misalignment compensation, including angular, parallel, and axial misalignment. Disc couplings are known for their high torsional stiffness and precise torque transmission capabilities.
- Girkoblinger: Gear couplings consist of toothed hubs connected by an external sleeve with gear teeth. They are well-suited for applications with high torque and moderate misalignment. Gear couplings offer good misalignment compensation and high torque capacity, making them popular in heavy-duty industrial applications.
- Bjelkekoblinger: Beam couplings use a single piece of flexible material, often a metal beam, to connect the shafts. The material’s flexibility allows for angular and axial misalignment compensation. Beam couplings are compact, lightweight, and provide low inertia, making them suitable for applications with high-speed requirements.
- Belgkoblinger: Bellows couplings consist of a bellows-like flexible structure that connects the two hubs. They can compensate for angular, parallel, and axial misalignment. Bellows couplings are known for their high torsional stiffness and ability to maintain constant velocity transmission.
- Oldham-koblinger: Oldham couplings use three discs, with the middle one having a perpendicular slot. This design allows for angular misalignment compensation while transmitting torque between the hubs. Oldham couplings are often used when electrical isolation between shafts is required.
Each flexible coupling design has its strengths and limitations, and the choice depends on factors such as the application’s torque requirements, misalignment conditions, operating environment, and speed. Proper selection of the coupling type ensures optimal performance, efficiency, and reliability in various mechanical systems and rotating machinery.


editor by CX 2024-03-29