Produktbeskrivelse
Produktbeskrivelse
D45 Model Motor
This compact 45mm diameter motor, featuring a worm gear reducer box, is designed for efficiency and durability. Despite its small size and lightweight design, it offers high load torque, minimal noise, and a long lifespan. Perfect for applications like automatic table and chair lifting, as well as automatic curtains.
Key Features:
- 45mm diameter motor
- Worm gear reducer box
- High load torque
- Low noise
- Long service life
Manufacturer Information:
Produktbeskrivelse:
HangZhou Xihu (West Lake) Dis. Motor Co., Ltd. presents the Auto Smart Electric Motor Gear 45mm. A compact, efficient, and customizable speed reducer for industrial applications. Smooth operation and durable design.
| Model | Spænding Unit: VDC | No load speed Unit: rpm | Noload current Unit: mA | Stall torque Unit: kg.cm | Gearforhold |
| D45-40 | 12V | 150 rpm | 60mA | 6.4 kg.cm | 40:1 |
| D45-65 | 12V | 90 rpm | 60mA | 10 kg.cm | 65:1 |
| D45-150 | 12V | 40 rpm | 60mA | 24 kg.cm | 150:1 |
| D45-200 | 12V | 30 rpm | 60mA | 25 kg.cm | 200:1 |
| D45-260 | 12V | 23 rpm | 60mA | 25 kg.cm | 260:1 |
| D45-340 | 12V | 18 rpm | 60mA | 25kg.cm | 340:1 |
| D45-600 | 12V | 10 rpm | 60mA | 25 kg.cm | 600:1 |
| D45-1000 | 12V | 6 rpm | 60mA | 25kg.cm | 1000:1 |
D52 Electric Motor for Household Appliances
This D52 electric motor, manufactured by HangZhou Xihu (West Lake) Dis. Motor Co., Ltd., is ideal for various household appliances such as electric drying racks, ice breakers, lifting tables, and mechanical equipment. Its compact size, high torque, and easy installation make it a versatile choice for your needs. Moreover, the output shaft size can be customized to suit your specific requirements.
Funktioner:
- Small size
- Large torque
- Easy to install
Customizable output shaft size
| Products Type | Spænding | Magt | No Load | Load | Gearforhold | Motor length | |||
| Speed | Current | Speed | Current | Drejningsmoment | |||||
| VDC | W | RPM | EN | RPM | EN | N.M | mm | ||
| D52R-2440-270 | 24 | 40 | 270±20 | ≤0.8 | 200±20 | ≤4.5 | ≥1.5 | 2:34 | 64 |
| D52R-2430-110 | 24 | 30 | 110±10 | ≤0.8 | 75±5 | ≤4.0 | ≥3.5 | 1:45 | 64 |
| D52R-2415-55 | 24 | 15 | 55±5 | ≤0.8 | 38±5 | ≤3.0 | ≥3.0 | 1:51 | 64 |
| Remarks | |||||||||
Detaljerede billeder
Produktparametre
52mm Worm Gear Motor with Encoder
Introducing the efficient BLDC gear motor from HangZhou Xihu (West Lake) Dis. Motor Co., Ltd. This motor is designed for industrial use, providing quiet, durable, and powerful performance. With a customizable speed reducer, this motor is perfect for a wide range of versatile applications.
Introducing our Encoder Equipped 52mm Worm Gear Motor
A compact and efficient BLDC gear motor designed for versatile industrial applications. Manufactured by HangZhou Xihu (West Lake) Dis. Motor Co., Ltd., this motor features a customizable speed reducer that delivers durable and powerful performance.
Certificeringer
Emballage og forsendelse
Installation Instructions
Firmaprofil
Welcome to HangZhou Xihu (West Lake) Dis. Motor Co., Ltd.
Specializing in AC and DC motors for various applications such as kitchen appliances, air flow products, and more. With 16 years of experience, we provide quality motion solutions tailored to customer needs. Our offerings include superior customer service, high-quality products, innovative designs, and competitive prices. Compliant with EU and American standards, ensuring safety and social responsibility. Partner with us for your next project and experience CHINAMFG in motor solutions.
Introducing the Encoder Equipped 52mm Worm Gear Motor by HangZhou Xihu (West Lake) Dis. Motor Co., Ltd.
A compact, efficient, and customizable motor designed for industrial applications. The Encoder Equipped 52mm Worm Gear Motor offers precision and reliability, making it ideal for a wide range of industrial uses.
Customer photo
Ofte stillede spørgsmål
Q1. What about the payment way?
A1. By TT at sight or trade assurance. 30% down payment should be paid after contract is valid, 70% balance should be paid before shipment.
Q2. How long is the guarantee?
EN2. We offer you high quality motorer with 12 months guarantee and reply you as soon as possible within 5 hours.
Q3. If the motor some parts is broken 1 day, how can we get help from you?
EN3. We will send you spare parts free of charge If they are in warranty, not including easy-broken parts. For easy-broken parts, we will only charge a cost fee.
Q4.How does your factory do regarding quality control?
EN4.We have CE certificate and we have a special QC department in charge of products’ quality. If you also need other certificates, we also can help to apply.
Q5. What is your packaging?
EN5. Our conventional packaging is: After doing the anti-rust treatment, wrap the plastic film around the machine and then fix the motor on the wooden bracket.
Q6. How can we check the motor before delivery?
EN6. We can provide online checking when testing the motor on site. We will take and prepare detailed testing videos for your checking before the delivery. We accept third-party testing. Except above points,we will provide detailed testing report.
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| Anvendelse: | Universal, Industrial, Household Appliances, Car, Power Tools, DC Worm Gear Motor |
|---|---|
| Operating Speed: | Low Speed |
| Excitation Mode: | Excited |
| Fungere: | Driving |
| Casing Protection: | Open Type |
| Number of Poles: | 2 |
| Tilpasning: | Tilgængelig |
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Hvad er tegnene, der indikerer et behov for udskiftning eller vedligeholdelse af snekkehjul, og hvordan kan de diagnosticeres?
Proper diagnosis of worm wheel condition is crucial for determining whether replacement or maintenance is necessary. Here’s a detailed explanation of the signs indicating a need for worm wheel replacement or maintenance and how they can be diagnosed:
- Overdreven slid: Overdreven slitage på snekkehjulet kan identificeres ved visuel inspektion eller måling. Tegn på slid omfatter grubetæring, ridser eller overfladeruhed på tænderne. Et slidt snekkehjul kan udvise en ændring i tandprofilen eller en reduktion i tandtykkelsen. Regelmæssige inspektioner og målinger af tandhjulets tænder kan hjælpe med at diagnosticere overdreven slitage og afgøre, om udskiftning eller vedligeholdelse er nødvendig.
- Unormal støj eller vibration: Usædvanlig støj eller vibrationer under drift kan indikere problemer med snekkehjulet. Overdreven slitage, forkert justering eller beskadigelse af tandhjulene kan forårsage uregelmæssigt gearindgreb, hvilket resulterer i støj eller vibrationer. Overvågning og analyse af støj- og vibrationsniveauer ved hjælp af sensorer og diagnostiske værktøjer kan hjælpe med at diagnosticere kilden til problemet og afgøre, om vedligeholdelse eller udskiftning af snekkehjulet er nødvendig.
- Øget modreaktion: Slør refererer til afstanden mellem tænderne på snekken og snekkehjulet. En forøgelse af sløret kan indikere slid, tandskader eller forkert justering af snekkehjulet. For stort slør kan resultere i reduceret effektivitet, nedsat positionsnøjagtighed og øget støj. Slør kan diagnosticeres ved at måle rotationssløret eller bevægelsen mellem snekken og snekkehjulet. Hvis sløret overstiger acceptable grænser, kan det indikere behov for vedligeholdelse eller udskiftning.
- Reduceret effektivitet eller ydeevne: Et fald i den samlede effektivitet eller ydeevne af det mekaniske system kan tyde på problemer med snekkehjulet. Reduceret effektivitet kan skyldes forskellige faktorer, herunder slid, forkert justering eller beskadigelse af tandhjulet. Overvågning af nøgleindikatorer for ydeevne såsom strømforbrug, hastighed eller drejningsmoment kan hjælpe med at identificere eventuelle væsentlige ændringer, der kan pege på problemer med snekkehjulet. Hvis effektiviteten eller ydeevnen falder til under acceptable niveauer, kan vedligeholdelse eller udskiftning være nødvendig.
- Lækage eller kontaminering: Lækage af smøremiddel eller tilstedeværelse af forurening omkring snekkehjulet kan indikere tætningsfejl eller beskadigelse af gearhuset. Inspicering af gearhuset for tegn på olielækage, snavs eller fremmedpartikler kan hjælpe med at diagnosticere potentielle problemer. Hvis snekkehjulet ikke er tilstrækkeligt smurt, eller hvis der er forurenende stoffer til stede, kan det føre til accelereret slid, øget friktion og reduceret gearlevetid. Det er vigtigt at adressere den grundlæggende årsag til lækagen eller forureningen, og det kan involvere vedligeholdelse eller udskiftning af snekkehjulets komponenter.
- Uregelmæssig bevægelse eller positionering: If the mechanical system exhibits irregular motion, inconsistent positioning, or unintended movements, it may indicate problems with the worm wheel. Misalignment, wear, or damage to the gear teeth can cause irregular gear meshing, resulting in unpredictable motion or positioning errors. Monitoring and analyzing the system’s motion or positional accuracy can help diagnose any abnormalities that may require maintenance or replacement of the worm wheel.
It’s important to note that proper diagnosis of worm wheel condition often requires a combination of visual inspection, measurement, analysis of sensor data, and expertise in gear systems. Regular inspections, preventive maintenance, and monitoring of key performance indicators can help detect early signs of issues and determine the appropriate course of action, whether it involves maintenance or replacement of the worm wheel.
Hvordan påvirker valget af snekkehjul gearsystemernes samlede ydeevne og pålidelighed?
The choice of worm wheels has a significant impact on the overall performance and reliability of gearing systems. Here’s a detailed explanation of how the selection of worm wheels affects these aspects:
- Materialevalg: Materialevalget til snekkehjul er afgørende for deres ydeevne og pålidelighed. Forskellige materialer, såsom stål, bronze eller plast, tilbyder varierende niveauer af styrke, holdbarhed og slidstyrke. Valget af det passende materiale bør tage hensyn til faktorer som belastningskrav, driftsforhold og kompatibilitet med andre komponenter i systemet. Valg af materialer af høj kvalitet, der er egnede til den specifikke anvendelse, kan forbedre gearsystemets samlede ydeevne og pålidelighed.
- Nøjagtighed og tolerance: Snekkehjul fremstilles med forskellige niveauer af nøjagtighed og tolerance. Højere præcision og strammere tolerancer resulterer i forbedret tandhjulsindgreb, reduceret slør og forbedret positionsnøjagtighed. Valget af snekkehjul med den passende nøjagtighed og tolerance til applikationen er afgørende for at opnå den ønskede ydeevne og pålidelighed. I applikationer, hvor præcis bevægelseskontrol, høj positionsnøjagtighed eller lavt slør er afgørende, kan valg af snekkehjul med overlegen nøjagtighed forbedre systemets ydeevne og pålidelighed betydeligt.
- Geardesign og geometri: Design og geometri af snekkehjul spiller en afgørende rolle for deres ydeevne og pålidelighed. Faktorer som tandprofil, spiralvinkel, antal tænder og tandoverfladefinish påvirker gearets indgrebsegenskaber, belastningsfordeling, effektivitet og støjniveauer. Optimal geardesign og geometri bør vælges baseret på de specifikke applikationskrav og driftsforhold. Valg af snekkehjul med veldesignede gearprofiler og passende geometriske parametre kan bidrage til en jævnere drift, effektiv kraftoverførsel og forbedret pålidelighed af gearsystemet.
- Smøring og vedligeholdelse: Valget af snekkehjul kan påvirke smørekravene og vedligeholdelsesintervallerne for gearsystemet. Nogle materialer eller belægninger kan kræve specifikke smøremidler eller smøreteknikker for at sikre korrekt drift og levetid. Derudover kan visse snekkehjulsdesign have funktioner, der letter smøremiddelretention og -fordeling, forbedrer gearsmøringen og reducerer slid. Overvejelser af smøre- og vedligeholdelsesaspekter under valget af snekkehjul kan forbedre gearsystemets samlede ydeevne, effektivitet og pålidelighed.
- Lastkapacitet og effektivitet: Valget af snekkehjul påvirker gearsystemets bæreevne og effektivitet. Forskellige snekkehjulsdesign og -materialer har varierende lasteevne og effektivitetsegenskaber. Valg af snekkehjul, der kan håndtere de forventede belastninger og giver effektiv kraftoverførsel, hjælper med at forhindre for tidligt slid, overdreven varmeudvikling og gearfejl. Valg af snekkehjul med passende lasteevne og effektivitetsklassificeringer sikrer pålidelig ydeevne og forbedrer gearsystemets samlede pålidelighed.
- Kompatibilitet og systemintegration: Valget af snekkehjul bør tage hensyn til deres kompatibilitet og integration med andre komponenter i gearsystemet. Dette inkluderer faktorer som akselstørrelser, monteringskonfigurationer og grænseflade med snekken. Sikring af korrekt kompatibilitet og integration minimerer justeringsproblemer, reducerer spændingskoncentrationer og fremmer effektiv kraftoverførsel. Valg af snekkehjul, der er specifikt designet til kompatibilitet og problemfri integration i systemet, forbedrer gearsystemets samlede ydeevne, pålidelighed og levetid.
In summary, the choice of worm wheels significantly impacts the overall performance and reliability of gearing systems. Considerations such as material selection, accuracy and tolerance, gear design and geometry, lubrication and maintenance requirements, load capacity and efficiency, and compatibility with other system components all contribute to the system’s performance and reliability. By carefully selecting worm wheels that meet the specific application requirements and considering these factors, the overall performance and reliability of the gearing system can be optimized.
Can you explain the impact of worm wheels on the overall efficiency of gearing systems?
Worm wheels have a significant impact on the overall efficiency of gearing systems. Here’s a detailed explanation of their influence:
- Gearreduktion: Worm wheels are known for their high gear reduction ratios, which means they can achieve significant speed reduction in a single stage. This is due to the large number of teeth on the worm wheel compared to the number of starts on the worm. The gear reduction capability of worm wheels allows for the transmission of high torque at low speeds. However, it’s important to note that the high gear reduction also leads to a trade-off in terms of efficiency.
- Inherent Efficiency Loss: Worm gears inherently introduce some efficiency loss due to the sliding action that occurs between the worm and the worm wheel. This sliding action generates friction, which results in energy losses and heat generation. Compared to other types of gears, such as spur gears or helical gears, worm gears typically have lower efficiency levels.
- Self-Locking Property: One unique characteristic of worm wheels is their self-locking property. When the worm wheel is not being actively driven, the friction generated between the worm and the worm wheel prevents the worm wheel from rotating backward. This self-locking feature provides stability and prevents the system from backdriving. However, it also contributes to the overall efficiency loss of the gearing system.
- Lubrication and Friction: Proper lubrication of worm wheels is crucial for reducing friction and improving their efficiency. Lubrication forms a thin film between the worm and the worm wheel, reducing direct metal-to-metal contact and minimizing frictional losses. Insufficient or improper lubrication can lead to increased friction, higher energy losses, and reduced efficiency. Therefore, maintaining appropriate lubrication levels is essential for optimizing the efficiency of worm gear systems.
- Design Factors: Several design factors can impact the efficiency of worm wheels. These include the tooth profile, helix angle, material selection, and manufacturing tolerances. The tooth profile and helix angle can influence the contact pattern and the distribution of loads, affecting efficiency. The choice of materials with low friction coefficients and good wear resistance can help improve efficiency. Additionally, maintaining tight manufacturing tolerances ensures proper meshing and reduces energy losses due to misalignment or backlash.
- Driftsforhold: The operating conditions, such as the applied load, speed, and temperature, can also affect the efficiency of worm wheels. Higher loads and speeds can lead to increased friction and energy losses, reducing efficiency. Elevated temperatures can cause lubricant degradation, increased viscosity, and higher friction, further impacting efficiency. Therefore, operating within the specified load and speed limits and maintaining suitable operating temperatures are essential for optimizing efficiency.
In summary, worm wheels have a notable impact on the overall efficiency of gearing systems. While they offer high gear reduction ratios and self-locking capabilities, they also introduce inherent efficiency losses due to friction and sliding action. Proper lubrication, suitable design considerations, and operating within specified limits are essential for maximizing the efficiency of worm gear systems.
editor by CX 2024-03-27