제품 설명
제품 설명
GEAR CUTTER
HSS And Tungsten Carbide
제품 매개변수
| Parameters Of Gear Cutter | |||
| 맞춤형 지원: | Tungsten Carbide | Heat treatment | 64 – 67HRC |
| Flute | Straight And Helical Flute | 재료: | HSS, GES, TGS, Customize |
| Precision: | High Precision | Coating | TiN, TiAlN, TiCN, AlCrN and so on |
| Customize | OEM ODM Availabe | Certification | ISO9001(2008) |
| Regular Size Of Gear Cutter (Customize) | |||
| Module(mm) | Outside Diameter(mm) | Overall Diameter(mm) | Hole Diameter(mm) |
| 0.15 | 25 | 10 | 8 |
| 0.30 | 25 | 15 | 8 |
| 0.60 | 25 | 15 | 8 |
| 0.80 | 25 | 25 | 8 |
| 0.9 | 32 | 32 | 13 |
| 1.0 | 32 | 32 | 13 |
Support customization. Welcome to consult.
상세 사진
Product Details
Not afraid of high temperature
Tungsten steel alloy serration
Sharp serrations and better milling
Smooth surface without burrs
Product Display
Support customization. Welcome to consult.
Customized content:
Number of blades, coating, length, LOGO, etc.
회사 소개
회사 소개
HangZhou Easy Joint Import&Export CO.,LTD. is a company integrating industry and trade, its factory was established in 1999,specializing in the production of carbide rotary cutting tools, our products are widely used in automotive, machining, aerospace and some other fields. We have Germany,American,Japanese axis CNC tool grinder, axis CNC thread grinding machines and testing equipment, with strong R&D and testing capabilities, we have passed ISO9001-2000 quality system certification standards.
Our factory topped the China Aviation Industry Corporation Tool centralized procurement list,our products are not only famous in domestic market, but also exported to dozens contries in the world.HangZhou Easy Joint Import&Export CO.,LTD. is a company integrating industry and trade, its factory was established in 1999, specializing in the production of carbide rotary cutting tools, our products are widely used in automotive, machining, aerospace and some other fields.
We are factory, support OEM, ODM, OBM customization.
우리의 장점
High quality, Professional R&D center, Fast dispatch, Small order accepted, Global Export Expertise
인증
자주 묻는 질문
Q1: Are you a factory or trading company?
A1: We are a factory and trading company, owned 2 different factories with 400 workers in total.
Q2: How about the Shipping Method?
A2: DHL/UPS/TNT/Fedex and other air shipments and sea shipments are all workable. In 1 words, we could do any shipments you wanted.
Q3: How about the delivery date?
A3: In General, the delivery date will be 3-5 working days for normal buy quantity. But if bigger order, please check us further.HSS And Tungsten Carbide
Q4: How about the label and the logo?HSS And Tungsten Carbide
A4: Customize label and logo is workable.
Q5: How about the 최소 주문 수량 ?HSS And Tungsten Carbide
A5: Lower MOQ of 5PCS per style.HSS And Tungsten Carbide
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| 기준: | 기준 |
|---|---|
| Coating: | Coating |
| Worm: | Involute Worm |
| 샘플: | US$ 15개/개 1개 (최소 주문 수량) | 주문 샘플 |
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| 맞춤 설정: | 사용 가능 |
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| 배송비: 단위당 예상 운송비. | 배송비 및 예상 배송 시간에 관한 정보입니다. |
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| 결제 방법: |
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| 초기 납부금 전액 지불 |
| 통화: | 미국$ |
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| 반품 및 환불: | 제품 수령 후 최대 30일 이내에 환불을 신청할 수 있습니다. |
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사용 가능한 다양한 유형과 구성의 웜 기어에 대해 설명해 주시겠습니까?
There are several types and configurations of worm wheels available to suit different applications and requirements. Here’s a description of the various types and configurations:
- 단일 나사산 웜 기어: 이는 가장 일반적인 웜 휠 구조입니다. 둘레에 웜 기어와 맞물리는 단일 나사산이 있습니다. 단일 나사산 웜 휠은 높은 감속비를 제공하며 높은 토크와 저속 작동이 요구되는 용도에 사용됩니다.
- 이중 나사산 웜 기어: 이중 나사산 웜 휠은 원주에 두 개의 나사산이 있어 접촉 면적이 증가하고 하중 분산이 향상됩니다. 이러한 구조 덕분에 토크 전달 용량이 높아지고 작동이 더욱 부드러워집니다. 이중 나사산 웜 휠은 더욱 높은 토크 출력과 향상된 효율이 요구되는 분야에 사용됩니다.
- 비원통형 웜 휠: 경우에 따라 웜 휠은 원통형이 아닌 형태를 가질 수 있습니다. 예를 들어, 오목하거나 볼록한 단면을 가질 수 있습니다. 비원통형 웜 휠은 접촉 면적 증가, 하중 분산 개선 또는 특수 동작 제어와 같은 고유한 요구 사항을 충족하도록 설계된 특정 용도에 사용됩니다.
- 감싸는 웜 휠: 감싸는 형태의 웜 휠은 특수한 톱니 형상을 통해 접촉 면적을 넓히고 하중 지지력을 향상시킵니다. 웜 휠의 톱니는 웜 기어의 나선형 나사산을 감싸면서 맞물림을 강화하고 하중을 효과적으로 분산시킵니다. 감싸는 형태의 웜 휠은 뛰어난 토크 전달력과 내구성이 요구되는 고하중 환경에 주로 사용됩니다.
- 하이포이드 웜 휠: 하이포이드 웜 휠은 웜 기어의 중심선이 웜 휠의 중심선에서 벗어나 있는 하이포이드 오프셋 구조로 설계되었습니다. 이러한 구조는 더욱 부드러운 맞물림과 접촉 면적 증가를 가능하게 하여 하중 분산을 개선하고 마모를 줄입니다. 하이포이드 웜 휠은 높은 토크, 컴팩트한 설계 및 부드러운 작동이 요구되는 분야에 주로 사용됩니다.
- 재료: 웜 기어는 용도에 따라 다양한 재질로 제작될 수 있습니다. 일반적인 재질로는 강철, 청동, 황동 및 특수 합금이 있습니다. 강철 웜 기어는 높은 강도와 내구성을 제공하는 반면, 청동 및 황동 웜 기어는 뛰어난 내마모성과 자가 윤활 특성을 제공합니다. 재질 선택은 하중 용량, 작동 조건 및 비용과 같은 요소에 따라 결정됩니다.
These are some of the types and configurations of worm wheels available. The selection of a particular type depends on the specific application requirements, including torque, speed, load capacity, space constraints, and desired efficiency. It’s important to consider factors such as tooth profile, material selection, and manufacturing precision to ensure the reliable and efficient operation of the worm wheel in a given application.
What is a worm wheel, and how does it function in mechanical systems?
A worm wheel, also known as a worm gear or worm gear wheel, is an important component in mechanical systems that helps transmit motion and power between two perpendicular shafts. It consists of a circular gear called the worm wheel or worm gear, and a screw-like gear called the worm or worm screw. Here’s a detailed explanation of what a worm wheel is and how it functions in mechanical systems:
A worm wheel is a gear with teeth that are cut in a helical pattern around its circumference. It meshes with the worm, which has a threaded shaft resembling a screw. The worm gear and the worm are designed in such a way that their threads have a specific shape and orientation to ensure smooth and efficient power transmission.
The primary function of a worm wheel in mechanical systems is to provide a compact and efficient means of transmitting rotational motion and power between shafts that are oriented at right angles to each other. The interaction between the worm gear and the worm allows for high gear reduction ratios, making it suitable for applications that require large speed reductions and high torque output.
When the worm rotates, its threaded shaft engages with the teeth of the worm wheel, causing the wheel to rotate. The helical shape of the worm gear teeth allows for a sliding action between the worm and the worm wheel, resulting in a smooth and continuous transfer of motion. The gear ratio between the worm and worm wheel determines the speed reduction and torque multiplication achieved.
The unique design of the worm wheel provides several advantages in mechanical systems:
- 높은 기어 감속비: The helical threads of the worm wheel enable a significant reduction in rotational speed while increasing torque output. This makes it suitable for applications where a large reduction in speed is required, such as in machinery with heavy loads or precise positioning requirements.
- 자동 잠금 기능: The frictional force between the worm gear and the worm prevents backdriving, which means the worm wheel can hold its position even when the driving force is removed. This self-locking feature is beneficial for applications where it is necessary to prevent the transmission of motion from the output side back to the input side.
- 컴팩트한 디자인: The perpendicular arrangement of the worm and worm wheel allows for a compact and space-saving design. This is advantageous in applications where space constraints are a concern, such as in automotive, robotics, or machinery with limited available space.
- 조용한 작동: The sliding action between the worm and the worm wheel helps distribute the load over multiple teeth, reducing noise and vibration. This makes worm wheel mechanisms suitable for applications that require smooth and quiet operation, such as in precision equipment or gearboxes.
- Efficiency: Worm wheel systems can achieve high efficiency when properly designed and lubricated. However, they typically have lower efficiency compared to other types of gear systems due to the sliding motion and increased friction between the components.
Worm wheels are commonly used in various mechanical systems, including automotive transmissions, industrial machinery, elevators, printing presses, and steering systems. Their unique characteristics make them well-suited for applications that require precise control, high torque, and compact design.
It is important to note that proper lubrication, maintenance, and design considerations are crucial for ensuring the reliable and efficient operation of worm wheel systems. Regular inspections and adherence to manufacturer guidelines are essential for maximizing the lifespan and performance of worm wheel components.
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:
- Gear Reduction: 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.
- 작동 조건: 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 2024-01-09