세계의 플라스틱 기어 시장 : 기어 유형, 재질, 기어 사이즈, 제조 공정, 지역별(-2040년)
Global Plastic Gear Market Research Report Information By Gear Type, By Material Type, By Gear Size, By Manufacturing Process, By Region Market Forecast till 2040
상품코드:1866194
리서치사:Market Research Future
발행일:2025년 10월
페이지 정보:영문 343 Pages
라이선스 & 가격 (부가세 별도)
한글목차
세계의 플라스틱 기어 시장 규모는 2040년말에는 15억 7,945만 8,500달러 규모에 달하며, 약 5.9%의 안정된 CAGR을 유지할 것으로 예측됩니다.
현대 전자제품의 경량 부품 채택 확대
스마트폰, 노트북, 웨어러블 기기 등 소형, 경량, 고내구성 부품에 대한 수요가 지속적으로 증가함에 따라 CE 제품 제조가 플라스틱 기어 시장에 큰 영향을 미치고 있습니다. 이러한 요구를 충족시키기 위해 제조업체들은 나일론이나 폴리아세탈과 같은 고성능성 플라스틱을 선택하고 있습니다. 이 소재들은 방청성과 경제성뿐만 아니라 소음 감소 효과와 우수한 성능을 겸비하고 있습니다.
지역별 분석
북미와 유럽은 자동차 및 의료 제조 분야의 기술 혁신에 힘입어 세계 최대 플라스틱 기어 시장으로 성장했습니다. 아시아태평양, 특히 중국과 일본의 급속한 산업 발전은 이 지역의 주요 성장 동력이 되고 있습니다. 한편, 남미와 중동 및 아프리카은 산업 및 지속가능한 생산에 대한 투자가 증가함에 따라 단계적 발전 단계에 있습니다.
경량 부품의 혁신이 시장 모멘텀을 주도
아시아 및 북미를 중심으로 전 세계에서 전자제품 제조가 급증함에 따라 플라스틱 기어는 현대의 가볍고 효율적인 장비에 필수적인 부품이 되었습니다. 정숙성과 신뢰성을 겸비한 그 특성은 현재의 소형화, 고밀도 설계 동향에 부합합니다. 플라스틱 기어가 앞으로도 시장에서 우위를 유지하기 위해서는 내하중과 낮은 내열성 등의 문제를 극복해야 합니다.
주요 리포트 속성
2024년 시장 규모 : 6억 3,212만 2,700달러
2040년 시장 규모 : 15억 7,945만 8,500달러
CAGR(2025-2040년) : 약 5.9%
기준연도 : 2024년
시장 예측 기간 : 2025-2040년
세계의 플라스틱 기어 시장을 조사했으며, 시장의 정의와 개요, 시장 성장에 대한 각종 영향요인의 분석, 시장 규모 추이·예측, 각종 구분·지역/주요 국가별 내역, 경쟁 환경, 주요 기업의 개요 등을 정리하여 전해드립니다.
The global plastic gears market is anticipated to attain a valuation of USD 1,579,458.5 thousand, a steady CAGR of around 5.9% by the end of 2040. This global plastic gear market study covers a thorough analysis of overall market size, complemented by detailed insights into vendor offerings, product innovations, and competitive strategies.
Growing Adoption of Lightweight Components in Modern Electronics
The production of consumer electronics has a significant influence on the plastic gear market as the demand for compact, lightweight, and durable components of devices like smartphones, laptops, and wearables is constantly rising. To fulfill the requirements, producers choose high-performance plastics such as nylon and polyacetal, which not only provide noise abatement, corrosion resistance, and economic benefits, but performance as well.
Detailed Classification by Gear Type, Material, Size, and Process
By Gear Type
Spur Gears: Provide reliable motion in simple mechanisms.
Helical Gears: Known for reduced vibration and quiet running.
Worm Gears: Ideal for compact designs needing torque control.
Bevel Gears: Used to alter motion between angled shafts.
Planetary Gears: Support high torque in limited space applications.
Others: Include non-standard gears for custom operations.
By Material Type
Polyacetal (POM): Strong, stable, and self-lubricating polymer.
Polyamide (Nylon): Excellent for lightweight and silent gears.
Polycarbonate (PC): Durable plastic suited for precision gear sets.
PET: Cost-effective material for moderate performance needs.
PPS: Offers excellent heat and chemical resistance.
Others: Blend materials engineered for specific gear functions.
By Gear Size
Micro Gears: Designed for medical and electronic devices.
Small Gears: Used in household appliances and handheld tools.
Medium Gears: Ideal for machinery requiring moderate torque.
Large Gears: Serve industrial and automation systems.
By Manufacturing Process
Single Cavity Mold: Delivers precise results in low-volume production.
Multi Cavity Mold: Boosts productivity for commercial manufacturing.
3D Printing: Offers flexibility and quick design adaptation.
Extrusion and Forming: Provides reliable shape consistency for large batches.
Regional Analysis
North America and Europe have the largest global plastic gear market, which is supported by innovations in the automotive and healthcare manufacturing sectors. The rapid industrial development in the Asia-Pacific region, especially in China and Japan, makes the area a major driver of growth, whereas South America and MEA are at the stage of gradual evolution with more and more investments being made into industrial and sustainable production.
Innovation in Lightweight Components Driving Market Momentum
The surge of global electronics production, mainly in Asia and North America, has made plastic gears the essential parts of modern, light, and efficient devices. Their feature to operate quietly and reliably is in line with present miniaturization and design trends. If plastic gears want to keep their advantage on the market, they have to solve problems such as low load capacity and heat resistance.
5.1.4.2 LIST OF POTENTIAL END-USERS (COMPANY NAME, HEADQUARTERS, END-USE, CONTACT DETAILS)
5.2 PORTER'S FIVE FORCES MODEL
5.2.1 BARGAINING POWER OF SUPPLIERS
5.2.2 BARGAINING POWER OF BUYERS
5.2.3 THREAT OF NEW ENTRANTS
5.2.4 THREAT OF SUBSTITUTES
5.2.5 INTENSITY OF RIVALRY
5.3 PRICING ANALYSIS
5.3.1 PRICING ANALYSIS OF PLASTIC GEARS, BY TYPE PER UNIT (2019-2035)
5.3.2 PRICING ANALYSIS OF METAL GEARS, BY TYPE PER UNIT (2019-2035)
5.4 ANALYSIS ON PRODUCTION OF PLASTIC GEARS
5.4.1 RESIN RAW MATERIAL USED
5.4.2 CAVITATION IN WHICH IT IS PRODUCED
5.4.3 GEAR SIZES AND GEAR TYPES
5.4.4 AVERAGE PRICES OF GEARS
5.5 LIST OF KEY PLAYERS (COMPANY NAME, REGION/COUNTRY, HEADQUARTER, TYPE OF GEAR MANUFACTURED, PRESENT & FUTURE PRODUCTION VOLUME*, RAW MATERIALS USED*, IT GEAR PRECISION*, GEAR SIZE*, GEAR PRICE*)
5.6 ANALYSIS OF INTERNATIONAL TOLERANCE (IT) GRADES
5.7 ANALYSIS ON METAL REPLACEMENT OF PLASTIC GEARS
5.7.1 GEAR LIFE FOR PLASTIC GEARS VS METAL GEARS
5.7.2 METAL GEARS VS PLASTIC GEARS
5.7.2.1 MECHANICAL TORQUE
5.7.2.2 APPLICATION
5.7.2.3 GEAR SIZE
5.7.2.4 AVERAGE PRICING
5.7.2.4.1 AVERAGE PRICING OF PLASTIC GEAR
5.7.2.4.2 AVERAGE PRICING OF METAL GEAR
5.7.2.5 KEY PLAYERS
5.7.3 GLOBAL METAL GEAR VS PLASTIC GEAR SIZE, IN USD MILLION & UNITS (2019-2040)
5.7.3.1 GLOBAL METAL GEAR MARKET SIZE, IN USD MILLION (2019-2040)
5.7.3.2 GLOBAL METAL GEAR MARKET SIZE, IN UNITS (2019-2040)
5.7.3.3 GLOBAL PLASTIC GEAR MARKET SIZE, IN USD MILLION (2019-2040)
5.7.3.4 GLOBAL PLASTIC GEAR MARKET SIZE, IN UNITS (2019-2040)
5.8 R&D UPDATE
5.8.1 CURRENT SCENARIO
5.8.2 FUTURE ROADMAP
5.8.3 CHALLENGES
5.8.4 NOVEL APPLICATIONS
5.8.5 KEY DEVELOPMENTS
5.9 REGULATORY FRAMEWORK
5.9.1 GOVERNMENTAL POLICIES
6 GLOBAL PLASTIC GEAR MARKET, BY MATERIAL TYPE
6.1 INTRODUCTION
6.2 POLYACETAL (POM / ACETAL / DELRIN)
6.3 POLYAMIDE (PA / NYLON)
6.4 POLYCARBONATE (PC)
6.5 POLYETHYLENE TEREPHTHALATE (PET)
6.6 POLYPHENYLENE SULFIDE (PPS)
6.7 OTHERS
7 GLOBAL PLASTIC GEAR MARKET, BY GEAR TYPE
7.1 INTRODUCTION
7.2 SPUR GEARS
7.3 HELICAL GEARS
7.4 WORM GEARS
7.5 BEVEL GEARS
7.6 PLANETARY GEARS
7.7 OTHERS
8 GLOBAL PLASTIC GEAR MARKET, BY GEAR SIZE
8.1 INTRODUCTION
8.2 MICRO GEARS (<10 MM)
8.3 SMALL GEARS (10-30 MM)
8.4 MEDIUM GEARS (30-100 MM)
8.5 LARGE GEARS (ABOVE 100 MM)
9 GLOBAL PLASTIC GEAR MARKET, BY MANUFACTURING PROCESS
9.1 INTRODUCTION
9.2 INJECTION MOLDING
9.3 3D PRINTING / ADDITIVE MANUFACTURING
9.4 EXTRUSION AND FORMING
9.5 OTHERS
10 GLOBAL PLASTIC GEAR MARKET, BY END-USE INDUSTRY BY APPLICATION
10.1 INTRODUCTION
10.2 AUTOMOTIVE
10.3 CONSUMER ELECTRONICS
10.4 INDUSTRIAL MACHINERY
10.5 AEROSPACE & DEFENSE
10.6 MEDICAL DEVICES
10.7 HOME APPLIANCES
10.8 OTHERS
11 GLOBAL PLASTIC GEAR MARKET, BY MATERIAL TYPE BY GEAR TYPE
11.1 INTRODUCTION
12 GLOBAL PLASTIC GEAR MARKET, BY GEAR TYPE BY END-USE INDUSTRY
12.1 INTRODUCTION
13 GLOBAL PLASTIC GEAR MARKET, BY GEAR SIZE BY END-USE INDUSTRY