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기계 기어 구조 부품
내구성과 효율성을 고려하여 설계된 당사의 기어 및 변속 장치 부품은 원활한 동력 전달, 마찰 감소, 강도 향상 및 오래 지속되는 성능을 보장합니다.
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기계 기어 구조 부품

기계 기어 구조 부품

간단한 설명:

Material Iron Powder, Iron alloy powder Certificate ISO9001,TS16949 Tolerance +/- 0.002mm Density Range 6-7.2/cm3(Fe) Surface Treatment Blacken, Dacromet Plated, Polishing, Sand Blasting, Electroplating Heat Treatment Ordinary Quenching, Carburizing, Ritriding, High Frequency Quenching Application Sport Equipment, Home Appliances,Transmission Parts, Vehicle,etc Performance High Precision, High Wear Resistance,Low Noise, Smooth And Steady, Cheap Processing Technic Powder Met...

재료 철분말, 철합금 분말
자격증 ISO9001, TS16949
용인 +/- 0.002mm
밀도 범위 6-7.2/cm3(철)
표면 처리 흑화, 다크로멧 도금, 연마, 샌드 블라스팅, 전기 도금
열처리 일반 담금질, 침탄, 질화, 고주파 담금질
애플리케이션 스포츠 장비, 가전제품, 변속기 부품, 자동차 등
성능 고정밀, 높은 내마모성, 낮은 소음, 부드럽고 안정적이며 저렴함
처리 기술 분말 야금
프로세스 혼합-기계성형-유압성형-검출강도 및 경도-포장 및 배송

 

생산 용량: 100000개/월
성형 생산 : 20일
배송일: 10-45일
패키지: 맞춤형/PE 백+카톤+나무 팔레트
생산 응용 분야: 분말 야금 OEM 기어, 전달 기어, 소결 기어는 기어 박스/감속기/믹서/블렌더/펌프/기계/전동 공구/오일 펌프/기어 펌프에 널리 사용됩니다.

What Are The Parts Of A Gear?
 

Gears are essential mechanical components designed to transmit torque and motion between shafts. While they may look simple, gears consist of several key parts that work together to ensure precise, efficient performance. Understanding each part helps in selecting, designing, or maintaining gears for different industrial and automotive applications.

Teeth
Gear teeth are the most recognizable feature. These are the protrusions around the circumference that mesh with the teeth of another gear to transmit motion. Tooth shape, size, and spacing (known as pitch) determine the gear's performance characteristics, such as speed, torque, and direction.

Pitch Circle
The pitch circle is an imaginary circle that passes through the points where gear teeth effectively engage. It's the reference diameter used to define gear size and calculate speed ratios between mating gears.

Root and Addendum
The root is the bottom part of the gear tooth, while the addendum is the portion that extends from the pitch circle to the tooth tip. These dimensions are critical for proper meshing and clearance between gears.

Face and Flank
The face is the surface of the tooth above the pitch circle, and the flank is the surface below it. These contact surfaces must be accurately formed for smooth and quiet gear operation.

Gear Hub and Bore
The hub is the central part of the gear that connects to the shaft. The bore is the hole in the center where the shaft is inserted. These parts ensure proper mounting and torque transfer from the shaft to the gear.

How Do Gears Work In Machines?

Gears are fundamental components in machinery, designed to transfer motion and power between rotating shafts. By meshing together, gears change the speed, direction, and torque of mechanical movement, making them essential in countless applications—from automobiles and industrial equipment to household appliances.

At their core, gears work through the interlocking of teeth. When one gear (the driver) rotates, its teeth push against the teeth of another gear (the driven gear), causing it to rotate in the opposite direction. By using different gear sizes, machines can increase torque (turning force) while reducing speed, or increase speed while reducing torque—depending on the application's needs.

For example:

Larger gears turning smaller ones increase speed but reduce torque.

Smaller gears turning larger ones reduce speed but boost torque—ideal for lifting or heavy machinery.

Gears can also change the direction of motion. Bevel gears, for instance, transmit power between perpendicular shafts, while worm gears allow motion at a 90° angle and prevent back-driving, which is useful in elevators or hoists.

In automated systems, gear ratios are carefully calculated to balance speed and power. Precision-engineered gears ensure smooth, quiet operation, energy efficiency, and extended machine life.

Whether in automotive transmissions, conveyor systems, or robotics, gears are the hidden force behind reliable, controlled motion.

 
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