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China Best Sales High Quality S Series Varvel Reduce Speed Worm Gear with Hollow Shaft Motor Manufacture Motor Gearbox 400W

Opis proizvoda

Detaljne fotografije

 

Karakteristike reduktora S serije

Isti model može biti opremljen motorima različitih snaga. Lako je ostvariti kombinaciju i povezivanje između različitih modela.
Efikasnost prijenosa je visoka, a efikasnost jednog reduktora je do 96%.
Prijenosni omjer je podijeljen, a raspon je širok. Kombinirani model može formirati veliki prijenosni omjer i nisku izlaznu brzinu.
Oblici ugradnje su različiti i mogu se ugraditi s bilo kojom stopom, prirubnicom B5 ili prirubnicom B4. Reduktor za montažu stope ima 2 obrađene ravnine za montažu stope.
Kombinacija spiralnog i pužnog zupčanika, kompaktna struktura, veliki prijenosni omjer.
Način ugradnje: ugradnja na stopalo, ugradnja na šuplje osovine, ugradnja na prirubnicu, ugradnja na oslonac obrtnog momenta, ugradnja na malu prirubnicu.
Način unosa: direktno spajanje motora, spajanje remena motora ili ulaznog vratila, ulaz prirubnice za spajanje.
Prosječna efikasnost: omjer redukcije 7,5-69,39 je 77%; 70,43-288 je 62%; S/R kombinacija je 57%.

S57 SF57 SA57 SAF57 S series helical worm gear box speed reducer 0.18kw 0.25kw 0.37kw 0.55kw 0.75kw 1.1kw 1.5kw 2.2kw 3kw, max. permissible torque up to 300Nm, transmission ratios from 10.78 to 196.21. Mounting mode: foot mounted, flange mounted, short flange mounted, torque arm mounted. Output shaft: CHINAMFG shaft, hollow shaft (with key, with shrink disc and with involute spline).

 

S series helical gear worm reducer

 

Features of products

1. The S series helical gear worm gear motor has a high technological content. It has a helical gear and a worm gear combined with an integrated transmission to improve the torque and efficiency of the machine. This series of products have complete specifications, wide speed range, good versatility, adapt to various installation methods, safe and reliable performance and long life, and have implemented international standards.

 

2. The uneven surface of the body has the effect of heat dissipation, strong vibration absorption, low temperature rise and low noise.

 

3. The machine has good sealing performance and strong adaptability to the working environment.

 

4. The machine has high transmission accuracy, and is especially suitable for working in occasions with frequent starting. It can be connected to various types of reducers and equipped with various types of motor drives, and can be installed in the 90-degree transmission operating position.

 

5. The key components of the motor are made of highly wear-resistant materials and undergo special heat treatment. They have the characteristics of high machining accuracy, stable transmission, small size, large carrying capacity, and long life.

 

6. The reducer can be equipped with various types of motors, forming a mechatronics, which fully guarantees the quality characteristics of the product.
 

Gearing Arrangement

Helical-worm

Izlazni obrtni moment

10-4484 Nm

Input Speed

Reference details page

Output Speed

0.21-12 r/min

Color

Customizable

Certificate

ISO9001

Structure

SF

Input power rating

0.55-7.5

Omjer

9.96-241.09

Maximum torque

1270

Input Configurations

Equipped with Electric Motors
CHINAMFG Shaft Input
IEC-normalized Motor Flange

Applicable Motors

Single Phase AC Motor, Three Phase AC Motor
Brake Motors
Inverter Motors
Multi-speed Motors
Explosion-proof Motor
Roller Motor

Output Configurations

CHINAMFG Shaft Output
Hollow Shaft Output

nstallation

Foot-mounted
B5 Flange-mounted
B14 Flange-mounted
Shaft-mounted

Podmazivanje

Oil-bath and Splash Lubrication

Parametri proizvoda

 

For more models, please contact us!

F helical gear reducer

Parallel output, compact structure, large transmission torque, stable operation, low noise and long life.

Installation method: base installation, flange installation, torque arm installation.

Reduction ratio: basic type 2 level 4.3-25.3, 3 level 28.2-273, combined to 18509.

The rotation direction of the input and output of the basic two-stage is the same, and the three-stage is opposite; please consult when combining.

Output mode: hollow shaft output or CHINAMFG shaft output.

Average efficiency: Level 2 96%, Level 3 94%, F/CR average efficiency 85%.

K helical bevel gear reducer

Vertical output, compact structure, hard tooth surface transmission torque, high-precision gears ensure stable work, low noise
and long life.

Installation method: base installation, flange installation, torque arm installation, small flange installation.
Način unosa: direktno spajanje motora, spajanje remena motora ili ulaznog vratila, ulaz prirubnice za spajanje.

Output mode: hollow shaft output or CHINAMFG shaft output, the average efficiency is 94%.

Reduction ratio: basic type 8.1-191, combined to 13459.

R helical gear reducer

Small bias output, compact structure, maximum use of cabinet space, the second and third levels are in the same cabinet. Using an integral cast box, the box structure has good rigidity, which is easy to improve the strength of the shaft and the life of the
bearing.

Installation method: pedestal installation, flanges with large and small flanges are easy to choose.

CHINAMFG shaft output, the average efficiency is 96% in the second stage, 94% in the third stage, and 85% in CR/CR. The CRM series specially designed for mixing can carry large axial and radial forces.

Profil kompanije

 

Certifikati

 

Pakovanje i dostava

 

Često postavljana pitanja

 

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Kako se elektronske ili računarski kontrolisane komponente integrišu sa pužnim kotačima u modernim aplikacijama?

In modern applications, electronic or computer-controlled components play a vital role in integrating with worm wheels. Here’s a detailed explanation of how these components integrate:

  • Povratne informacije senzora: Elektronski senzori mogu biti integrisani sa pužnim kotačima kako bi pružili povratne informacije o različitim parametrima kao što su položaj, brzina, obrtni moment i temperatura. Ovi senzori mogu detektovati rotacioni položaj pužnog kotača, pratiti brzinu rotacije, mjeriti primijenjeni obrtni moment i pratiti temperaturu sistema. Podaci senzora mogu se obraditi računarski kontrolisanim sistemom kako bi se optimizovale performanse, osigurala sigurnost i omogućila precizna kontrola sistema pužnog kotača.
  • Algoritmi upravljanja: Računarski kontrolisane komponente omogućavaju implementaciju preciznih algoritama upravljanja u sistemima pužnih kotača. Ovi algoritmi mogu optimizirati rad pužnog kotača podešavanjem parametara kao što su brzina, obrtni moment ili položaj na osnovu povratnih informacija senzora u realnom vremenu. Analiziranjem podataka senzora i primjenom algoritama upravljanja, računarski kontrolisane komponente mogu osigurati efikasan i precizan rad sistema pužnih kotača u skladu sa željenim zahtjevima za performanse.
  • Pozicioniranje i kontrola kretanja: Computer-controlled components can enable advanced positioning and motion control capabilities in worm wheel systems. By integrating with the worm wheel, electronic components can precisely control the position and movement of the system. This is particularly useful in applications where precise positioning or synchronized motion is required, such as robotics, CNC machines, or automated systems. The computer-controlled components receive input commands, process them, and generate appropriate signals to control the worm wheel’s rotation and positioning.
  • Praćenje i dijagnostika: Elektronske komponente mogu olakšati praćenje i dijagnostiku sistema pužnih kotača u realnom vremenu. Kontinuiranim praćenjem parametara kao što su temperatura, vibracije ili opterećenje, računarski kontrolisane komponente mogu otkriti sve abnormalnosti ili potencijalne probleme u sistemu. To omogućava proaktivno održavanje ili rješavanje problema, minimizirajući vrijeme zastoja i optimizirajući performanse i vijek trajanja pužnog kotača. Osim toga, računarski kontrolisane komponente mogu generirati dijagnostičke izvještaje, evidentirati podatke i pružati vizualna ili daljinska upozorenja za pravovremenu intervenciju.
  • Integracija sa interfejsima čovjek-mašina: Kompjuterski kontrolisane komponente mogu se integrisati sa interfejsima čovjek-mašina (HMI) kako bi se obezbijedio korisnički prilagođen i intuitivan interfejs za interakciju sa sistemima pužnih kotača. HMI mogu uključivati ​​ekrane osjetljive na dodir, kontrolne panele ili softverske aplikacije koje omogućavaju operaterima ili korisnicima unos komandi, praćenje statusa sistema, podešavanje parametara i primanje povratnih informacija. Ova integracija poboljšava upotrebljivost, fleksibilnost i dostupnost sistema pužnih kotača u različitim primjenama.
  • Umrežavanje i komunikacija: Kompjuterski kontrolisane komponente mogu se integrisati u umrežene sisteme, omogućavajući komunikaciju i koordinaciju s drugim uređajima ili sistemima. Ova integracija omogućava besprijekornu integraciju pužnog kotača u veće automatizovane sisteme, proizvodne linije ili međusobno povezane mašine. Mogućnosti umrežavanja i komunikacije olakšavaju razmjenu podataka, sinhronizaciju i koordinaciju, poboljšavajući ukupne performanse sistema i omogućavajući napredne funkcionalnosti.

Integracijom elektronskih ili računarski kontrolisanih komponenti sa pužnim kotačima, moderne aplikacije mogu imati koristi od poboljšane kontrole, preciznosti, praćenja i komunikacijskih mogućnosti. Ova unapređenja omogućavaju optimizovane performanse, poboljšanu efikasnost i povećanu pouzdanost u raznim industrijama i sektorima.

How do worm wheels contribute to the adaptability and versatility of mechanical systems in different settings?

Worm wheels play a significant role in enhancing the adaptability and versatility of mechanical systems across various settings. Here’s a detailed explanation of how worm wheels contribute to these aspects:

  • Variable Speed Ratios: Worm wheels allow for the transmission of motion between the worm and the wheel with variable speed ratios. By changing the number of teeth on the worm wheel or the pitch diameter of the worm, different speed ratios can be achieved. This flexibility in speed control enables mechanical systems to adapt to different operating conditions, accommodate varying load requirements, and provide the desired output speeds for specific applications.
  • Directional Reversibility: One of the key advantages of worm wheels is their ability to transmit motion in both clockwise and counterclockwise directions. By reversing the direction of the worm’s rotation, the motion can be transmitted in the opposite direction through the worm wheel. This feature contributes to the adaptability of mechanical systems, allowing for bidirectional operation and versatility in various applications where reversible motion is required.
  • Kompaktni dizajn: Worm wheels offer a compact and space-efficient design due to their high gear ratio capabilities. The worm’s helical shape allows for a large reduction in speed within a relatively small package size. This compact design is advantageous in applications where space is limited or where a high gear reduction is required without occupying excessive space. The compactness of worm wheels enhances the adaptability of mechanical systems in diverse settings, including compact machinery, automotive applications, or tight spaces.
  • High Torque Transmission: Worm wheels are known for their ability to transmit high torque. The sliding action between the worm and the worm wheel creates a large contact area, enabling efficient torque transfer. This high torque transmission capability makes worm wheels suitable for applications requiring high torque output, such as lifting mechanisms, conveyor systems, or heavy-duty machinery. The ability to handle high torque contributes to the versatility and adaptability of mechanical systems in different settings.
  • Mechanical Advantage: Worm wheels provide a mechanical advantage by converting a small rotational input force into a larger rotational output force. This mechanical advantage is a result of the gear ratio between the worm and the worm wheel. It allows mechanical systems to generate higher output forces or torques than what is applied at the input. This feature is valuable in applications where increased force or torque amplification is required, enabling systems to adapt to varying load demands and perform tasks that would otherwise be challenging or impractical.
  • Noise Reduction: Worm wheels are known for their quiet operation due to the sliding contact between the worm and the worm wheel teeth. This sliding action reduces the impact and noise associated with gear meshing compared to other types of gears, such as spur gears or bevel gears. The noise reduction capability of worm wheels makes them suitable for applications where noise control is important, such as in precision equipment, office machinery, or noise-sensitive environments. This contributes to the adaptability of mechanical systems in different settings that require low noise levels.

Overall, worm wheels contribute significantly to the adaptability and versatility of mechanical systems in diverse settings. Their variable speed ratios, directional reversibility, compact design, high torque transmission, mechanical advantage, and noise reduction capabilities enable them to meet specific requirements and perform a wide range of tasks in different applications.

How do worm wheels contribute to the adaptability and versatility of mechanical systems in different settings?

Worm wheels play a significant role in enhancing the adaptability and versatility of mechanical systems across various settings. Here’s a detailed explanation of how worm wheels contribute to these aspects:

  • Variable Speed Ratios: Worm wheels allow for the transmission of motion between the worm and the wheel with variable speed ratios. By changing the number of teeth on the worm wheel or the pitch diameter of the worm, different speed ratios can be achieved. This flexibility in speed control enables mechanical systems to adapt to different operating conditions, accommodate varying load requirements, and provide the desired output speeds for specific applications.
  • Directional Reversibility: One of the key advantages of worm wheels is their ability to transmit motion in both clockwise and counterclockwise directions. By reversing the direction of the worm’s rotation, the motion can be transmitted in the opposite direction through the worm wheel. This feature contributes to the adaptability of mechanical systems, allowing for bidirectional operation and versatility in various applications where reversible motion is required.
  • Kompaktni dizajn: Worm wheels offer a compact and space-efficient design due to their high gear ratio capabilities. The worm’s helical shape allows for a large reduction in speed within a relatively small package size. This compact design is advantageous in applications where space is limited or where a high gear reduction is required without occupying excessive space. The compactness of worm wheels enhances the adaptability of mechanical systems in diverse settings, including compact machinery, automotive applications, or tight spaces.
  • High Torque Transmission: Worm wheels are known for their ability to transmit high torque. The sliding action between the worm and the worm wheel creates a large contact area, enabling efficient torque transfer. This high torque transmission capability makes worm wheels suitable for applications requiring high torque output, such as lifting mechanisms, conveyor systems, or heavy-duty machinery. The ability to handle high torque contributes to the versatility and adaptability of mechanical systems in different settings.
  • Mechanical Advantage: Worm wheels provide a mechanical advantage by converting a small rotational input force into a larger rotational output force. This mechanical advantage is a result of the gear ratio between the worm and the worm wheel. It allows mechanical systems to generate higher output forces or torques than what is applied at the input. This feature is valuable in applications where increased force or torque amplification is required, enabling systems to adapt to varying load demands and perform tasks that would otherwise be challenging or impractical.
  • Noise Reduction: Worm wheels are known for their quiet operation due to the sliding contact between the worm and the worm wheel teeth. This sliding action reduces the impact and noise associated with gear meshing compared to other types of gears, such as spur gears or bevel gears. The noise reduction capability of worm wheels makes them suitable for applications where noise control is important, such as in precision equipment, office machinery, or noise-sensitive environments. This contributes to the adaptability of mechanical systems in different settings that require low noise levels.

Overall, worm wheels contribute significantly to the adaptability and versatility of mechanical systems in diverse settings. Their variable speed ratios, directional reversibility, compact design, high torque transmission, mechanical advantage, and noise reduction capabilities enable them to meet specific requirements and perform a wide range of tasks in different applications.


editor by Dream 2025-02-05

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