TABLE OF CONTENTS
1 EXECUTIVE SUMMARY 18
2 MARKET INTRODUCTION 21
2.1 DEFINITION 21
2.2 SCOPE OF THE STUDY 21
2.3 MARKET STRUCTURE 22
3 RESEARCH METHODOLOGY 23
4 MARKET DYNAMICS 30
4.1 OVERVIEW 30
4.2 DRIVERS 31
4.2.1 GROWING DEMAND FOR AUTOMATION 31
4.2.2 RISING DEMAND FOR HIGH QUALITY PRODUCTS 31
4.3 RESTRAINTS 33
4.3.1 LACK OF SKILLED LABOUR 33
4.4 OPPORTUNITIES 34
4.4.1 GROWING DEMAND FOR 3D PRINTERS IN INDUSTRIAL MANUFACTURING 34
4.4.2 GROWING BENEFITS OF FIBER LASER CUTTING OVER TRADITIONAL CO2 LASERS 34
4.5 CHALLENGES 35
4.5.1 MULTIPLE DOWNSIDES OF LASER CUTTING 35
4.6 COVID-19 IMPACT ANALYSIS 36
4.6.1 IMPACT ON SEMICONDUCTOR COMPONENT MANUFACTURERS 36
4.6.2 IMPACT ON THE GLOBAL CNC FIBER LASER MARKET 36
4.6.2.1 IMPACT ON SUPPLY CHAIN 37
4.6.2.2 PRICE VARIATION OF KEY RAW MATERIALS 37
4.6.2.3 PRODUCTION SHUTDOWN 37
4.6.2.4 IMPACT ON MARKET DEMAND 38
4.6.3 IMPACT ON CNC TECHNOLOGY 39
5 MARKET FACTOR ANALYSIS 41
5.1 VALUE CHAIN ANALYSIS 41
5.1.1 RESEARCH & DEVELOPMENT CENTERS 41
5.1.2 MATERIAL, COMPONENT, AND PARTS SUPPLIERS 41
5.1.3 CNC FIBER LASER/LASER MANUFACTURERS 41
5.1.4 SYSTEM INTEGRATORS 42
5.1.5 END-USE APPLICATIONS 42
5.2 PORTER’S FIVE FORCES 43
5.2.1 THREAT OF NEW ENTRANTS 43
5.2.2 BARGAINING POWER OF SUPPLIERS 44
5.2.3 THREAT OF SUBSTITUTES 44
5.2.4 BARGAINING POWER OF BUYERS 44
5.2.5 INTENSITY OF RIVALRY 44
6 GLOBAL CNC FIBER LASER MARKET, BY PRODUCT 45
6.1 OVERVIEW 45
6.1.1 GLOBAL CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 46
6.2 CNC CO2 LASER CUTTER 46
6.3 CNC CRYSTAL LASER CUTTER 46
6.4 CNC FIBER LASER CUTTER 46
7 GLOBAL CNC FIBER LASER MARKET, BY TYPE 47
7.1 OVERVIEW 47
7.1.1 GLOBAL CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 48
7.2 STATIONARY GANTRY TYPE 48
7.3 MOVABLE GANTRY TYPE 48
8 GLOBAL CNC FIBER LASER MARKET, BY APPLICATION 49
8.1 OVERVIEW 49
8.1.1 GLOBAL CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 50
8.2 WOOD WORKING 50
8.3 STONE WORKING 50
8.4 METAL WORKING 51
8.5 OTHERS 51
9 GLOBAL CNC FIBER LASER MARKET, BY END USER 52
9.1 OVERVIEW 52
9.1.1 GLOBAL CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 53
9.2 AUTOMOTIVE 53
9.3 BUILDING & CONSTRUCTION 53
9.4 CONSUMER ELECTRONICS 54
9.5 AEROSPACE & DEFENSE 54
9.6 MEDICAL 54
9.7 ENERGY & POWER 55
9.8 FURNITURE 55
9.9 TRANSPORTATION 55
9.10 OTHERS 55
10 GLOBAL CNC FIBER LASER MARKET, BY REGION 56
10.1 OVERVIEW 56
10.1.1 GLOBAL CNC FIBER LASER MARKET, BY REGION, 2021 VS 2030 (USD MILLION) 56
10.1.2 GLOBAL CNC FIBER LASER MARKET, BY REGION, 2018–2030 (USD MILLION) 57
10.2 NORTH AMERICA 58
10.2.1 NORTH AMERICA: CNC FIBER LASER MARKET, BY COUNTRY, 2018–2027 (USD MILLION) 59
10.2.2 NORTH AMERICA CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 59
10.2.3 NORTH AMERICA CNC FIBER LASER MARKET, BY PRODUCT, 2018–2027 (USD MILLION) 60
10.2.4 NORTH AMERICA CNC FIBER LASER MARKET, BY APPLICATION, 2018–2027 (USD MILLION) 61
10.2.5 NORTH AMERICA CNC FIBER LASER MARKET, BY END USER, 2018–2027 (USD MILLION) 62
10.2.6 US 63
10.2.6.1 US CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 63
10.2.6.2 US CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 63
10.2.6.3 US CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 64
10.2.6.4 US CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 64
10.2.7 CANADA 65
10.2.7.1 CANADA CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 65
10.2.7.2 CANADA CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 65
10.2.7.3 CANADA CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 66
10.2.7.4 CANADA CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 66
10.2.8 MEXICO 67
10.2.8.1 MEXICO CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 67
10.2.8.2 MEXICO CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 67
10.2.8.3 MEXICO CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 68
10.2.8.4 MEXICO CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 68
10.3 EUROPE 69
10.3.1 EUROPE: CNC FIBER LASER MARKET, BY COUNTRY, 2018–2030 (USD MILLION) 70
10.3.2 EUROPE CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 70
10.3.3 EUROPE CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 71
10.3.4 EUROPE CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 72
10.3.5 EUROPE CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 73
10.3.6 GERMANY 74
10.3.6.1 GERMANY CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 74
10.3.6.2 GERMANY CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 74
10.3.6.3 GERMANY CNC FIBER LASER MARKET, BY APPLICATION, 2018–2027 (USD MILLION) 75
10.3.6.4 GERMANY CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 75
10.3.7 FRANCE 76
10.3.7.1 FRANCE CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 76
10.3.7.2 FRANCE CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 76
10.3.7.3 FRANCE CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 77
10.3.7.4 FRANCE CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 77
10.3.8 UK 78
10.3.8.1 UK CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 78
10.3.8.2 UK CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 78
10.3.8.3 UK CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 79
10.3.8.4 UK CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 79
10.3.9 SPAIN 80
10.3.9.1 SPAIN CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 80
10.3.9.2 SPAIN CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 80
10.3.9.3 SPAIN CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 81
10.3.9.4 SPAIN CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 81
10.3.10 REST OF EUROPE 82
10.3.10.1 REST OF EUROPE CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 82
10.3.10.2 REST OF EUROPE CNC FIBER LASER MARKET, BY PRODUCT, 2018–2027 (USD MILLION) 82
10.3.10.3 REST OF EUROPE CNC FIBER LASER MARKET, BY APPLICATION, 2018–2027 (USD MILLION) 83
10.3.10.4 REST OF EUROPE CNC FIBER LASER MARKET, BY END USER, 2018–2027 (USD MILLION) 83
10.4 ASIA-PACIFIC 84
10.4.1 ASIA-PACIFIC: CNC FIBER LASER MARKET, BY COUNTRY, 2018–2027 (USD MILLION) 85
10.4.2 ASIA-PACIFIC CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 86
10.4.3 ASIA-PACIFIC CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 87
10.4.4 ASIA-PACIFIC CNC FIBER LASER MARKET, BY APPLICATION, 2018–2027 (USD MILLION) 88
10.4.5 ASIA-PACIFIC CNC FIBER LASER MARKET, BY END USER, 2018–2027 (USD MILLION) 89
10.4.6 CHINA 89
10.4.6.1 CHINA CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 89
10.4.6.2 CHINA CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 90
10.4.6.3 CHINA CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 90
10.4.6.4 CHINA CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 91
10.4.7 JAPAN 91
10.4.7.1 JAPAN CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 91
10.4.7.2 JAPAN CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 92
10.4.7.3 JAPAN CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 92
10.4.7.4 JAPAN CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 93
10.4.8 INDIA 93
10.4.8.1 INDIA CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 93
10.4.8.2 INDIA CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 94
10.4.8.3 INDIA CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 94
10.4.8.4 INDIA CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 95
10.4.9 REST OF ASIA-PACIFIC 95
10.4.9.1 REST OF ASIA-PACIFIC CNC FIBER LASER MARKET, BY TYPE, 2018–2027 (USD MILLION) 95
10.4.9.2 REST OF ASIA-PACIFIC CNC FIBER LASER MARKET, BY PRODUCT, 2018–2027 (USD MILLION) 96
10.4.9.3 REST OF ASIA-PACIFIC CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 96
10.4.9.4 REST OF ASIA-PACIFIC CNC FIBER LASER MARKET, BY END USER, 2018–2027 (USD MILLION) 97
10.5 MIDDLE EAST & AFRICA 98
10.5.1 MIDDLE EAST & AFRICA CNC FIBER LASER MARKET, BY TYPE, 2018–2027 (USD MILLION) 98
10.5.2 MIDDLE EAST & AFRICA CNC FIBER LASER MARKET, BY PRODUCT, 2018–2030 (USD MILLION) 99
10.5.3 MIDDLE EAST & AFRICA CNC FIBER LASER MARKET, BY APPLICATION, 2018–2030 (USD MILLION) 100
10.5.4 MIDDLE EAST & AFRICA CNC FIBER LASER MARKET, BY END USER, 2018–2030 (USD MILLION) 101
10.6 SOUTH AMERICA 102
10.6.1 SOUTH AMERICA CNC FIBER LASER MARKET, BY TYPE, 2018–2030 (USD MILLION) 102
10.6.2 SOUTH AMERICA CNC FIBER LASER MARKET, BY PRODUCT, 2018–2027 (USD MILLION) 103
10.6.3 SOUTH AMERICA CNC FIBER LASER MARKET, BY APPLICATION, 2018–2027 (USD MILLION) 104
10.6.4 SOUTH AMERICA CNC FIBER LASER MARKET, BY END USER, 2018–2027 (USD MILLION) 105
11 COMPETITIVE LANDSCAPE 106
11.1 OVERVIEW 106
11.2 MARKET SHARE ANALYSIS 107
11.3 COMPETITIVE BENCHMARKING 108
11.4 MAJOR GROWTH STRATEGY IN THE GLOBAL CNC FIBER LASER MARKET 109
11.5 THE LEADING PLAYER IN TERMS OF THE NUMBER OF DEVELOPMENTS IN THE GLOBAL CNC FIBER LASER MARKET 110
11.6 KEY DEVELOPMENT ANALYSIS 111
11.7 KEY DEVELOPMENTS & GROWTH STRATEGIES 111
11.7.1 PRODUCT LAUNCHES/PRODUCT APPROVALS 111
11.7.2 MERGERS & ACQUISITIONS 111
11.7.3 PARTNERSHIPS & AGREEMENTS 112
12 COMPETITIVE LANDSCAPE 113
12.1 MCMILLANCO, LLC 113
12.1.1 COMPANY OVERVIEW 113
12.1.2 FINANCIAL OVERVIEW 113
12.1.3 PRODUCTS OFFERED 113
12.1.4 KEY DEVELOPMENTS 113
12.1.5 SWOT ANALYSIS 114
12.1.6 KEY STRATEGIES 114
12.2 ZINSER GMBH 115
12.2.1 COMPANY OVERVIEW 115
12.2.2 FINANCIAL OVERVIEW 115
12.2.3 PRODUCTS OFFERED 115
12.2.4 KEY DEVELOPMENTS 115
12.2.5 SWOT ANALYSIS 116
12.2.6 KEY STRATEGIES 116
12.3 ACCURL 117
12.3.1 COMPANY OVERVIEW 117
12.3.2 FINANCIAL OVERVIEW 117
12.3.3 PRODUCTS OFFERED 117
12.3.4 KEY DEVELOPMENTS 118
12.3.5 SWOT ANALYSIS 118
12.3.6 KEY STRATEGIES 118
12.4 GMT ENGINEERS PRIVATE LIMITED. 119
12.4.1 COMPANY OVERVIEW 119
12.4.2 FINANCIAL OVERVIEW 119
12.4.3 PRODUCTS OFFERED 119
12.4.4 KEY DEVELOPMENTS 119
12.4.5 KEY STRATEGIES 119
12.5 PRECISION WATERJET & LASER 120
12.5.1 COMPANY OVERVIEW 120
12.5.2 FINANCIAL OVERVIEW 120
12.5.3 PRODUCTS OFFERED 120
12.5.4 KEY DEVELOPMENTS 120
12.5.5 KEY STRATEGIES 120
12.6 HPC LASER LTD. 121
12.6.1 COMPANY OVERVIEW 121
12.6.2 FINANCIAL OVERVIEW 121
12.6.3 PRODUCTS OFFERED 121
12.6.4 KEY DEVELOPMENTS 121
12.6.5 KEY STRATEGIES 122
12.7 CTR LASERS 123
12.7.1 COMPANY OVERVIEW 123
12.7.2 FINANCIAL OVERVIEW 123
12.7.3 PRODUCTS OFFERED 123
12.7.4 KEY DEVELOPMENTS 123
12.7.5 KEY STRATEGIES 123
12.8 MANTECH MACHINERY LTD. 124
12.8.1 COMPANY OVERVIEW 124
12.8.2 FINANCIAL OVERVIEW 124
12.8.3 PRODUCTS OFFERED 124
12.8.4 KEY DEVELOPMENTS 124
12.8.5 KEY STRATEGIES 125
12.9 HGLASER ENGINEERING CO. LTD. 126
12.9.1 COMPANY OVERVIEW 126
12.9.2 FINANCIAL OVERVIEW 126
12.9.3 PRODUCTS/SERVICES OFFERED 126
12.9.4 KEY DEVELOPMENTS 126
12.9.5 KEY STRATEGIES 126
12.10 YAMAZAKI MAZAK CORPORATION 127
12.10.1 COMPANY OVERVIEW 127
12.10.2 FINANCIAL OVERVIEW 127
12.10.3 PRODUCTS/SERVICES OFFERED 127
12.10.4 KEY DEVELOPMENTS 127
12.10.5 KEY STRATEGIES 127
12.11 MITSUBISHI ELECTRIC CORPORATION 128
12.11.1 COMPANY OVERVIEW 128
12.11.2 FINANCIAL OVERVIEW 128
12.11.3 PRODUCTS/SERVICES OFFERED 129
12.11.4 KEY DEVELOPMENTS 129
12.11.5 SWOT ANALYSIS 129
12.11.6 KEY STRATEGIES 130
12.12 MESSER CUTTING SYSTEMS GMBH 131
12.12.1 COMPANY OVERVIEW 131
12.12.2 FINANCIAL OVERVIEW 132
12.12.3 PRODUCTS/SERVICES OFFERED 132
12.12.4 KEY DEVELOPMENTS 133
12.12.5 SWOT ANALYSIS 133
12.12.6 KEY STRATEGIES 133
12.13 BODOR 134
12.13.1 COMPANY OVERVIEW 134
12.13.2 FINANCIAL OVERVIEW 134
12.13.3 PRODUCTS/SERVICES OFFERED 134
12.13.4 KEY DEVELOPMENTS 134
12.13.5 KEY STRATEGIES 134
12.14 MULTICAM INC. 135
12.14.1 COMPANY OVERVIEW 135
12.14.2 FINANCIAL OVERVIEW 135
12.14.3 PRODUCTS/SERVICES OFFERED 135
12.14.4 KEY DEVELOPMENTS 135
12.14.5 KEY STRATEGIES 135
| ※参考情報 CNCファイバーレーザーは、精密加工技術の一つであり、高出力のレーザー光を利用して金属や非金属材料を切断、彫刻、溶接するための装置です。この技術の特徴は、光ファイバーを用いてレーザーを生成することで、エネルギー効率が高く、波長も短いため、多様な材料に対応可能である点です。 CNCファイバーレーザーは、その方式によっていくつかの種類に分類できます。まず、連続波レーザーとパルスレーザーに分けられます。連続波レーザーは、一定の強さで常にレーザーが発振される方式で、厚い材料を効率的に切断するのに適しています。一方、パルスレーザーは、短い期間に高いピークパワーを持つレーザーを発振し、非常に薄い材料の切断や細かい彫刻に向いています。 次に、CNCファイバーレーザーはその用途に応じて、さまざまな分野で利用されています。一般的には金属加工業界での利用が多く、ステンレス、アルミニウム、鉄などの金属材料の切断や、精密な部品加工に利用されています。また、非金属材料としてはプラスチックや木材、ガラス等の加工も行えるため、工芸や製造業、建設業など幅広い分野で応用されています。さらに、自動車や航空機、家電製品の製造においても、その精度の高さから不可欠な技術となっています。 関連技術としては、レーザー光の発振技術や、制御技術が挙げられます。特に、CNC(Computer Numerical Control)技術は、レーザーの動きを精密に制御するために不可欠です。この制御技術により、複雑な形状を持つ部品でも高い精度で加工することが可能になります。また、CAD/CAM(Computer-Aided Design/Computer-Aided Manufacturing)ソフトウェアとの連携により、デザインから加工までのプロセスが円滑に行える点も、CNCファイバーレーザーの重要な要素です。 安全性に関しても、CNCファイバーレーザーには様々な配慮がされています。レーザー光は目に見えないため、特別な防護措置が必要です。多くの装置には、安全扉やセンサーが組み込まれており、作業者の安全を確保しています。また、加工中に発生する煙や粉塵の除去システムも提供されており、作業環境を清潔に保つことが可能です。 近年では、CNCファイバーレーザーはその性能向上が急速に進んでいます。特に、より高出力のレーザー発振器の開発や、加工速度の向上が図られており、これにより生産性が大幅に向上しています。また、IoT(Internet of Things)技術の導入が進んでおり、リアルタイムでのデータ収集や解析が可能になっています。これにより、加工の効率や品質をさらに向上させるための新たなアプローチが可能です。 CNCファイバーレーザーは、今後も産業界での利用が増加していくことが予想されます。省エネルギーや環境負荷の低減といった課題に対しても適応できる技術として注目され、持続可能な製造プロセスの実現に寄与することでしょう。また、新しい材料や製品が登場する中で、CNCファイバーレーザーの柔軟性と適応力は、今後の産業革新を支える要素となると考えられています。 このように、CNCファイバーレーザーはその高い精度、効率、適応性から多岐にわたる産業での重要な技術となっており、今後も進化しながらさらなる可能性を拓いていくでしょう。 |
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