Produktbeskrivning
Description:
Model : RV063 +PC071
Ratio: 30
Output Speed :46.7 RPM
PC helical gear Size :71 .
Other General information:
RV series Small worm gear box is a new-generation of products developed by our factory on the basis of perfecting WJ series products with compromise of advanced technology both at home and abroad. Small worm aluminium box appearance adopts advanced square box type structure. Its outer body is made of high quality, aluminium alloy die casting into forming. Small worm gearbox has the characteristics of small volume, light weight, high in radiating efficiency, large in output torque, smooth in running, stable transmission with low noise. It is beautiful and durable and it’s suitable for omni-bearing installation. It’s widely applied in light industry, chemicals, food, packing, pharmaceuticals etc.
Hot sale RV gear motor Characteristics:
1. Nmrv Small worm gear box
2. High quality bearings prevent leaks, contribute to flexibility in mountin-g and increase reducer life
3. NEMA and IEC motors inputs
4. Double-lip oil seals
5. O-rings are used to prevent leaks
6. Standard hollow output bore and optional plug in shafts provide greater flexibility.
7. Automated manufacturing process from an ISO9001 certified company assures quality, reliable gearing.
NMRV Small worm gear box Technical data:
Output torque: 4 – 1379 N. M
Model: RV 30-130
Speed ratio: 7.5 – 100
Input power 0.06 – 9.2 kw
Förpackning och frakt
Product package: Standard package, Package is wooden case, Or according to required.
Our Services:
Nmrv worm speed reducer Warranty Terms:
1,12 månaders garanti kommer att erbjudas.
2. We will react during 24 hours after received the email required to ensure the recovery of buyer’s production line first.
3. Ingenjörerna kommer att tillhandahålla utbildning för drift och underhåll för att göra arbetarna bättre förstådda
4. Gratis reservdelsbyte under garantiperioden.
Om oss:
Smart equipment company has started its own gearbox business since 1995, now smart equipment own
2 gearbox production factories, and we attach importance to the research and development of new product
Vi erbjuder ett brett utbud av växellådor, inklusive R/S/K/F-växellåda, P-planetväxellåda,
RV-snäckväxel, HB industriell växellåda, anpassad växellåda etc., med en stark
Fördel med industriella växellådor och anpassade växellådor, vi följer ett strikt kvalitetskontrollsystem från början till slut.
Our mission is to design and offer the reliable solution to your gearbox need, and to promote sustainable and shared development with customers by providing honest, responsible, prompt services.
Product classification
Gearbox for different Model
WP series worm gearbox
R series helical gear reducer
S series helical-worm gear reducer
K series helical-bevel gear reducer
F series parallel shaft helical gear units
T spiral bevel gearbox
SWL, JW worm screw jack
H, B rigid tooth flank gearbox
Bucket Elevator Drives
P planetary gear units
RV Worm reducer
Cycloid reducer
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| Ansökan: | Industry |
|---|---|
| Hårdhet: | Hardened |
| Installation: | Horisontell typ |
| Layout: | Koaxial |
| Kugghjulsform: | Konisk kugghjul |
| Steg: | Tresteg |
| Anpassning: | Tillgänglig | Anpassad förfrågan |
|---|
Självlåsande egenskaper i en snäckväxel
Ja, snäckväxlar uppvisar självhämmande egenskaper, vilket kan vara fördelaktigt i vissa tillämpningar. Självhämmande avser en mekanisms förmåga att förhindra överföring av rörelse från utgående axel tillbaka till ingående axel när systemet är i vila. Snäckväxlar har i sig självhämmande egenskaper på grund av snäckväxelns och snäckhjulets unika design.
Självlåsningsbeteendet uppstår från spiralens vinkel på snäckaxeln. I en korrekt konstruerad snäckväxel är snäckans spiralvinkel sådan att den skapar en mekanisk fördel som motstår bakåtrörelse. När växellådan inte är aktivt driven skapar friktionen mellan snäckans gängor och snäckhjulets tänder en låsande effekt.
This self-locking feature makes worm gearboxes particularly useful in applications where holding a load in position without external power is necessary. For instance, they are commonly used in situations where there’s a need to prevent a mechanism from backdriving, such as in conveyor systems, hoists, and jacks.
However, it’s important to note that while self-locking properties can be beneficial, they also introduce some challenges. The high friction between the worm gear and worm wheel during self-locking can lead to higher wear and heat generation. Additionally, the self-locking effect can reduce the efficiency of the gearbox when it’s actively transmitting motion.
When considering the use of a worm gearbox for a specific application, it’s crucial to carefully analyze the balance between self-locking capabilities and other performance factors to ensure optimal operation.
How to Calculate the Efficiency of a Worm Gearbox
Calculating the efficiency of a worm gearbox involves determining the ratio of output power to input power. Efficiency is a measure of how well the gearbox converts input power into useful output power without losses. Here’s how to calculate it:
- Step 1: Measure Input Power: Measure the input power (Pin) using a power meter or other suitable measuring equipment.
- Step 2: Measure Output Power: Measure the output power (Pout) that the gearbox is delivering to the load.
- Step 3: Calculate Efficiency: Calculate the efficiency (η) using the formula: Efficiency (η) = (Output Power / Input Power) * 100%
For example, if the input power is 1000 watts and the output power is 850 watts, the efficiency would be (850 / 1000) * 100% = 85%.
It’s important to note that efficiencies can vary based on factors such as gear design, lubrication, wear, and load conditions. The calculated efficiency provides insight into how effectively the gearbox is converting power, but it’s always a good practice to refer to manufacturer specifications for gearbox efficiency ratings.
Types of Worm Gear Configurations and Their Uses
Worm gear configurations vary based on the arrangement of the worm and the gear it engages with. Here are common types and their applications:
- Single Enveloping Worm Gear: This configuration offers high torque transmission and efficiency. It’s used in heavy-duty applications like mining equipment and industrial machinery.
- Double Enveloping Worm Gear: With increased contact area, this type provides higher load capacity and improved efficiency. It’s used in aerospace applications, robotics, and precision machinery.
- Non-Throated Worm Gear: This type has a cylindrical worm without a throat. It’s suitable for applications requiring precise motion control, such as CNC machines and robotics.
- Throated Worm Gear: Featuring a throat in the worm, this configuration offers smooth engagement and higher load capacity. It’s used in conveyors, elevators, and automotive applications.
- Non-Modular Worm Gear: In this design, the worm and gear are a matched set, resulting in better meshing and efficiency. It’s utilized in various industries where customization is essential.
- Modular Worm Gear: This type allows interchangeability of worm and gear components, providing flexibility in design and maintenance. It’s commonly used in conveyors, mixers, and material handling systems.
Selecting the appropriate worm gear configuration depends on factors such as load capacity, efficiency, precision, and application requirements. Consulting gearbox experts can help determine the best configuration for your specific needs.
editor by CX 2024-01-29