世界のアディティブマニュファクチャリング用レーザークラッディング材料市場インサイト及び予測(コバルト基合金、ニッケル基合金、鉄基合金、その他)

◆英語タイトル:Global Laser Cladding Material for Additive Manufacturing Market Insights, Forecast to 2028

QYResearchが発行した調査報告書(QY22JLX01349)◆商品コード:QY22JLX01349
◆発行会社(リサーチ会社):QYResearch
◆発行日:2022年7月(※2025年版があります。お問い合わせください。)
◆ページ数:112
◆レポート形式:英語 / PDF
◆納品方法:Eメール(受注後3営業日)
◆調査対象地域:グローバル
◆産業分野:化学&材料
◆販売価格オプション(消費税別)
Single User(1名様閲覧用)USD4,900 ⇒換算¥744,800見積依頼/購入/質問フォーム
Multi User(5名様閲覧用)USD7,350 ⇒換算¥1,117,200見積依頼/購入/質問フォーム
Enterprise License(同一法人内共有可)USD9,800 ⇒換算¥1,489,600見積依頼/購入/質問フォーム
販売価格オプションの説明はこちらでご利用ガイドはこちらでご確認いただけます。
※お支払金額は「換算金額(日本円)+消費税+配送料(Eメール納品は無料)」です。
※Eメールによる納品の場合、通常ご注文当日~2日以内に納品致します。
※レポート納品後、納品日+5日以内に請求書を発行・送付致します。(請求書発行日より2ヶ月以内の銀行振込条件、カード払いに変更可)
※上記の日本語題名はH&Iグローバルリサーチが翻訳したものです。英語版原本には日本語表記はありません。
※為替レートは適宜修正・更新しております。リアルタイム更新ではありません。

❖ レポートの概要 ❖

COVID-19のパンデミックにより、アディティブマニュファクチャリング用レーザークラッディング材料のグローバル市場規模は2022年にUS$xxxと推定され、調査期間中のCAGRはxxx%で、2028年までに再調整された規模はUS$xxxになると予測されています。この医療危機による経済変化を十分に考慮すると、2021年にアディティブマニュファクチャリング用レーザークラッディング材料の世界市場のxxx%を占める「コバルト基合金」タイプは、2028年までにUS$xxxの規模になり、パンデミック後の修正xxx%CAGRで成長すると予測されています。一方、「航空」セグメントは、この予測期間を通じてxxx%のCAGRに変更されます。
アディティブマニュファクチャリング用レーザークラッディング材料の中国市場規模は2021年にUS$xxxと分析されており、米国とヨーロッパの市場規模はそれぞれUS$xxxとUS$xxxです。米国の割合は2021年にxxx%であり、中国とヨーロッパはそれぞれxxx%とxxx%です。中国の割合は2028年にxxx%に達し、対象期間を通じてxxx%のCAGRを記録すると予測されています。日本、韓国、東南アジアはアジアで注目市場であり、今後6年間のCAGRはそれぞれxxx%、xxx%、xxx%になる見通しです。ヨーロッパのアディティブマニュファクチャリング用レーザークラッディング材料市場については、ドイツは2028年までにUS$xxxに達すると予測されており、予測期間中のCAGRはxxx%になる見通しです。

アディティブマニュファクチャリング用レーザークラッディング材料のグローバル主要企業には、Oerlikon Metco、Hoganas AB、Praxair S.T. Technology、Wall Colmonoy、FST、Sentes-BIR、DURUM Verschleißschutz GmbH、Kennametal Stellite、AMC Powders、Hongbo Laser、Henan Igood Wear-resisting Technologyなどがあります。2021年、世界のトップ5プレイヤーは売上ベースで約xxx%の市場シェアを占めています。

アディティブマニュファクチャリング用レーザークラッディング材料市場は、種類と用途によって区分されます。世界のアディティブマニュファクチャリング用レーザークラッディング材料市場のプレーヤー、利害関係者、およびその他の参加者は、当レポートを有益なリソースとして使用することで優位に立つことができます。セグメント分析は、2017年~2028年期間のタイプ別および用途別の販売量、売上、予測に焦点を当てています。

【種類別セグメント】
コバルト基合金、ニッケル基合金、鉄基合金、その他

【用途別セグメント】
航空、自動車・輸送、発電、石油化学加工、医用生体工学、その他

【掲載地域】
北米:アメリカ、カナダ
ヨーロッパ:ドイツ、フランス、イギリス、イタリア、ロシア
アジア太平洋:日本、中国、韓国、インド、オーストラリア、台湾、インドネシア、タイ、マレーシア
中南米:メキシコ、ブラジル、アルゼンチン
中東・アフリカ:トルコ、サウジアラビア、UAE

【目次(一部)】

・調査の範囲
- アディティブマニュファクチャリング用レーザークラッディング材料製品概要
- 種類別市場(コバルト基合金、ニッケル基合金、鉄基合金、その他)
- 用途別市場(航空、自動車・輸送、発電、石油化学加工、医用生体工学、その他)
- 調査の目的
・エグゼクティブサマリー
- 世界のアディティブマニュファクチャリング用レーザークラッディング材料販売量予測2017-2028
- 世界のアディティブマニュファクチャリング用レーザークラッディング材料売上予測2017-2028
- アディティブマニュファクチャリング用レーザークラッディング材料の地域別販売量
- アディティブマニュファクチャリング用レーザークラッディング材料の地域別売上
- 北米市場
- ヨーロッパ市場
- アジア太平洋市場
- 中南米市場
- 中東・アフリカ市場
・メーカーの競争状況
- 主要メーカー別アディティブマニュファクチャリング用レーザークラッディング材料販売量
- 主要メーカー別アディティブマニュファクチャリング用レーザークラッディング材料売上
- 主要メーカー別アディティブマニュファクチャリング用レーザークラッディング材料価格
- 競争状況の分析
- 企業M&A動向
・種類別市場規模(コバルト基合金、ニッケル基合金、鉄基合金、その他)
- アディティブマニュファクチャリング用レーザークラッディング材料の種類別販売量
- アディティブマニュファクチャリング用レーザークラッディング材料の種類別売上
- アディティブマニュファクチャリング用レーザークラッディング材料の種類別価格
・用途別市場規模(航空、自動車・輸送、発電、石油化学加工、医用生体工学、その他)
- アディティブマニュファクチャリング用レーザークラッディング材料の用途別販売量
- アディティブマニュファクチャリング用レーザークラッディング材料の用途別売上
- アディティブマニュファクチャリング用レーザークラッディング材料の用途別価格
・北米市場
- 北米のアディティブマニュファクチャリング用レーザークラッディング材料市場規模(種類別、用途別)
- 主要国別のアディティブマニュファクチャリング用レーザークラッディング材料市場規模(アメリカ、カナダ)
・ヨーロッパ市場
- ヨーロッパのアディティブマニュファクチャリング用レーザークラッディング材料市場規模(種類別、用途別)
- 主要国別のアディティブマニュファクチャリング用レーザークラッディング材料市場規模(ドイツ、フランス、イギリス、イタリア、ロシア)
・アジア太平洋市場
- アジア太平洋のアディティブマニュファクチャリング用レーザークラッディング材料市場規模(種類別、用途別)
- 主要国別のアディティブマニュファクチャリング用レーザークラッディング材料市場規模(日本、中国、韓国、インド、オーストラリア、台湾、インドネシア、タイ、マレーシア)
・中南米市場
- 中南米のアディティブマニュファクチャリング用レーザークラッディング材料市場規模(種類別、用途別)
- 主要国別のアディティブマニュファクチャリング用レーザークラッディング材料市場規模(メキシコ、ブラジル、アルゼンチン)
・中東・アフリカ市場
- 中東・アフリカのアディティブマニュファクチャリング用レーザークラッディング材料市場規模(種類別、用途別)
- 主要国別のアディティブマニュファクチャリング用レーザークラッディング材料市場規模(トルコ、サウジアラビア)
・企業情報
Oerlikon Metco、Hoganas AB、Praxair S.T. Technology、Wall Colmonoy、FST、Sentes-BIR、DURUM Verschleißschutz GmbH、Kennametal Stellite、AMC Powders、Hongbo Laser、Henan Igood Wear-resisting Technology
・産業チェーン及び販売チャネル分析
- アディティブマニュファクチャリング用レーザークラッディング材料の産業チェーン分析
- アディティブマニュファクチャリング用レーザークラッディング材料の原材料
- アディティブマニュファクチャリング用レーザークラッディング材料の生産プロセス
- アディティブマニュファクチャリング用レーザークラッディング材料の販売及びマーケティング
- アディティブマニュファクチャリング用レーザークラッディング材料の主要顧客
・マーケットドライバー、機会、課題、リスク要因分析
- アディティブマニュファクチャリング用レーザークラッディング材料の産業動向
- アディティブマニュファクチャリング用レーザークラッディング材料のマーケットドライバー
- アディティブマニュファクチャリング用レーザークラッディング材料の課題
- アディティブマニュファクチャリング用レーザークラッディング材料の阻害要因
・主な調査結果

The digital revolution is bringing disruptive changes into manufacturing industry contributing to the emergence and development of new innovative techniques. Additive manufacturing (AM) is a state-of-the-art technology to produce complex, freeform, and previously un-manufacturable geometries by incrementally layer-by-layer fabrication processes. The AM technology, fueled by the advent of new materials, methodologies, and optimization techniques, is promised to make manufacturing smarter, more efficient, and sustainable.
Laser cladding, as a well-established AM technique with excellent capacity for smart optimization due to its integrated closed loop control, has the potential to accelerate this manufacturing revolution and is now considered as an attractive candidate for applications such as hybrid manufacturing/remanufacturing as well as 3D printing of functionally graded materials. Laser cladding has evolved into a potent three-dimensional (3D) additive manufacturing technology by stacking the deposited material layers.
This report focus on Laser Cladding Material for Additive Manufacturing market.
Market Analysis and Insights: Global Laser Cladding Material for Additive Manufacturing Market
Due to the COVID-19 pandemic, the global Laser Cladding Material for Additive Manufacturing market size is estimated to be worth US$ million in 2022 and is forecast to a readjusted size of US$ million by 2028 with a CAGR of % during the forecast period 2022-2028. Fully considering the economic change by this health crisis, Cobalt Based Alloys accounting for % of the Laser Cladding Material for Additive Manufacturing global market in 2021, is projected to value US$ million by 2028, growing at a revised % CAGR from 2022 to 2028. While Aviation segment is altered to an % CAGR throughout this forecast period.
China Laser Cladding Material for Additive Manufacturing market size is valued at US$ million in 2021, while the US and Europe Laser Cladding Material for Additive Manufacturing are US$ million and US$ million, severally. The proportion of the US is % in 2021, while China and Europe are % and % respectively, and it is predicted that China proportion will reach % in 2028, trailing a CAGR of % through the analysis period 2022-2028. Japan, South Korea, and Southeast Asia are noteworthy markets in Asia, with CAGR %, %, and % respectively for the next 6-year period. As for the Europe Laser Cladding Material for Additive Manufacturing landscape, Germany is projected to reach US$ million by 2028 trailing a CAGR of % over the forecast period 2022-2028.
The global key manufacturers of Laser Cladding Material for Additive Manufacturing include Oerlikon Metco, Hoganas AB, Praxair S.T. Technology, Wall Colmonoy, FST, Sentes-BIR, DURUM Verschleißschutz GmbH, Kennametal Stellite and AMC Powders, etc. In 2021, the global top five players have a share approximately % in terms of revenue.
In terms of production side, this report researches the Laser Cladding Material for Additive Manufacturing capacity, production, growth rate, market share by manufacturers and by region (region level and country level), from 2017 to 2022, and forecast to 2028.
In terms of sales side, this report focuses on the sales of Laser Cladding Material for Additive Manufacturing by region (region level and country level), by company, by Type and by Application. from 2017 to 2022 and forecast to 2028.
Global Laser Cladding Material for Additive Manufacturing Scope and Segment
Laser Cladding Material for Additive Manufacturing market is segmented by Type and by Application. Players, stakeholders, and other participants in the global Laser Cladding Material for Additive Manufacturing market will be able to gain the upper hand as they use the report as a powerful resource. The segmental analysis focuses on production capacity, revenue and forecast by Type and by Application for the period 2017-2028.
Segment by Type
Cobalt Based Alloys
Nickel Based Alloys
Iron Based Alloys
Others
Segment by Application
Aviation
Automotive & Transportation
Power Generation
Petrochemical Processing
Medical Engineering
Others
By Company
Oerlikon Metco
Hoganas AB
Praxair S.T. Technology
Wall Colmonoy
FST
Sentes-BIR
DURUM Verschleißschutz GmbH
Kennametal Stellite
AMC Powders
Hongbo Laser
Henan Igood Wear-resisting Technology
Production by Region
North America
Europe
China
Japan
Consumption by Region
North America
United States
Canada
Europe
Germany
France
U.K.
Italy
Russia
Asia-Pacific
China
Japan
South Korea
India
Australia
China Taiwan
Indonesia
Thailand
Malaysia
Latin America
Mexico
Brazil
Argentina
Colombia
Middle East & Africa
Turkey
Saudi Arabia
UAE

❖ レポートの目次 ❖

1 Study Coverage
1.1 Laser Cladding Material for Additive Manufacturing Product Introduction
1.2 Market by Type
1.2.1 Global Laser Cladding Material for Additive Manufacturing Market Size by Type, 2017 VS 2021 VS 2028
1.2.2 Cobalt Based Alloys
1.2.3 Nickel Based Alloys
1.2.4 Iron Based Alloys
1.2.5 Others
1.3 Market by Application
1.3.1 Global Laser Cladding Material for Additive Manufacturing Market Size by Application, 2017 VS 2021 VS 2028
1.3.2 Aviation
1.3.3 Automotive & Transportation
1.3.4 Power Generation
1.3.5 Petrochemical Processing
1.3.6 Medical Engineering
1.3.7 Others
1.4 Study Objectives
1.5 Years Considered
2 Global Laser Cladding Material for Additive Manufacturing Production
2.1 Global Laser Cladding Material for Additive Manufacturing Production Capacity (2017-2028)
2.2 Global Laser Cladding Material for Additive Manufacturing Production by Region: 2017 VS 2021 VS 2028
2.3 Global Laser Cladding Material for Additive Manufacturing Production by Region
2.3.1 Global Laser Cladding Material for Additive Manufacturing Historic Production by Region (2017-2022)
2.3.2 Global Laser Cladding Material for Additive Manufacturing Forecasted Production by Region (2023-2028)
2.4 North America
2.5 Europe
2.6 China
2.7 Japan
3 Global Laser Cladding Material for Additive Manufacturing Sales in Volume & Value Estimates and Forecasts
3.1 Global Laser Cladding Material for Additive Manufacturing Sales Estimates and Forecasts 2017-2028
3.2 Global Laser Cladding Material for Additive Manufacturing Revenue Estimates and Forecasts 2017-2028
3.3 Global Laser Cladding Material for Additive Manufacturing Revenue by Region: 2017 VS 2021 VS 2028
3.4 Global Laser Cladding Material for Additive Manufacturing Sales by Region
3.4.1 Global Laser Cladding Material for Additive Manufacturing Sales by Region (2017-2022)
3.4.2 Global Sales Laser Cladding Material for Additive Manufacturing by Region (2023-2028)
3.5 Global Laser Cladding Material for Additive Manufacturing Revenue by Region
3.5.1 Global Laser Cladding Material for Additive Manufacturing Revenue by Region (2017-2022)
3.5.2 Global Laser Cladding Material for Additive Manufacturing Revenue by Region (2023-2028)
3.6 North America
3.7 Europe
3.8 Asia-Pacific
3.9 Latin America
3.10 Middle East & Africa
4 Competition by Manufactures
4.1 Global Laser Cladding Material for Additive Manufacturing Production Capacity by Manufacturers
4.2 Global Laser Cladding Material for Additive Manufacturing Sales by Manufacturers
4.2.1 Global Laser Cladding Material for Additive Manufacturing Sales by Manufacturers (2017-2022)
4.2.2 Global Laser Cladding Material for Additive Manufacturing Sales Market Share by Manufacturers (2017-2022)
4.2.3 Global Top 10 and Top 5 Largest Manufacturers of Laser Cladding Material for Additive Manufacturing in 2021
4.3 Global Laser Cladding Material for Additive Manufacturing Revenue by Manufacturers
4.3.1 Global Laser Cladding Material for Additive Manufacturing Revenue by Manufacturers (2017-2022)
4.3.2 Global Laser Cladding Material for Additive Manufacturing Revenue Market Share by Manufacturers (2017-2022)
4.3.3 Global Top 10 and Top 5 Companies by Laser Cladding Material for Additive Manufacturing Revenue in 2021
4.4 Global Laser Cladding Material for Additive Manufacturing Sales Price by Manufacturers
4.5 Analysis of Competitive Landscape
4.5.1 Manufacturers Market Concentration Ratio (CR5 and HHI)
4.5.2 Global Laser Cladding Material for Additive Manufacturing Market Share by Company Type (Tier 1, Tier 2, and Tier 3)
4.5.3 Global Laser Cladding Material for Additive Manufacturing Manufacturers Geographical Distribution
4.6 Mergers & Acquisitions, Expansion Plans
5 Market Size by Type
5.1 Global Laser Cladding Material for Additive Manufacturing Sales by Type
5.1.1 Global Laser Cladding Material for Additive Manufacturing Historical Sales by Type (2017-2022)
5.1.2 Global Laser Cladding Material for Additive Manufacturing Forecasted Sales by Type (2023-2028)
5.1.3 Global Laser Cladding Material for Additive Manufacturing Sales Market Share by Type (2017-2028)
5.2 Global Laser Cladding Material for Additive Manufacturing Revenue by Type
5.2.1 Global Laser Cladding Material for Additive Manufacturing Historical Revenue by Type (2017-2022)
5.2.2 Global Laser Cladding Material for Additive Manufacturing Forecasted Revenue by Type (2023-2028)
5.2.3 Global Laser Cladding Material for Additive Manufacturing Revenue Market Share by Type (2017-2028)
5.3 Global Laser Cladding Material for Additive Manufacturing Price by Type
5.3.1 Global Laser Cladding Material for Additive Manufacturing Price by Type (2017-2022)
5.3.2 Global Laser Cladding Material for Additive Manufacturing Price Forecast by Type (2023-2028)
6 Market Size by Application
6.1 Global Laser Cladding Material for Additive Manufacturing Sales by Application
6.1.1 Global Laser Cladding Material for Additive Manufacturing Historical Sales by Application (2017-2022)
6.1.2 Global Laser Cladding Material for Additive Manufacturing Forecasted Sales by Application (2023-2028)
6.1.3 Global Laser Cladding Material for Additive Manufacturing Sales Market Share by Application (2017-2028)
6.2 Global Laser Cladding Material for Additive Manufacturing Revenue by Application
6.2.1 Global Laser Cladding Material for Additive Manufacturing Historical Revenue by Application (2017-2022)
6.2.2 Global Laser Cladding Material for Additive Manufacturing Forecasted Revenue by Application (2023-2028)
6.2.3 Global Laser Cladding Material for Additive Manufacturing Revenue Market Share by Application (2017-2028)
6.3 Global Laser Cladding Material for Additive Manufacturing Price by Application
6.3.1 Global Laser Cladding Material for Additive Manufacturing Price by Application (2017-2022)
6.3.2 Global Laser Cladding Material for Additive Manufacturing Price Forecast by Application (2023-2028)
7 North America
7.1 North America Laser Cladding Material for Additive Manufacturing Market Size by Type
7.1.1 North America Laser Cladding Material for Additive Manufacturing Sales by Type (2017-2028)
7.1.2 North America Laser Cladding Material for Additive Manufacturing Revenue by Type (2017-2028)
7.2 North America Laser Cladding Material for Additive Manufacturing Market Size by Application
7.2.1 North America Laser Cladding Material for Additive Manufacturing Sales by Application (2017-2028)
7.2.2 North America Laser Cladding Material for Additive Manufacturing Revenue by Application (2017-2028)
7.3 North America Laser Cladding Material for Additive Manufacturing Sales by Country
7.3.1 North America Laser Cladding Material for Additive Manufacturing Sales by Country (2017-2028)
7.3.2 North America Laser Cladding Material for Additive Manufacturing Revenue by Country (2017-2028)
7.3.3 United States
7.3.4 Canada
8 Europe
8.1 Europe Laser Cladding Material for Additive Manufacturing Market Size by Type
8.1.1 Europe Laser Cladding Material for Additive Manufacturing Sales by Type (2017-2028)
8.1.2 Europe Laser Cladding Material for Additive Manufacturing Revenue by Type (2017-2028)
8.2 Europe Laser Cladding Material for Additive Manufacturing Market Size by Application
8.2.1 Europe Laser Cladding Material for Additive Manufacturing Sales by Application (2017-2028)
8.2.2 Europe Laser Cladding Material for Additive Manufacturing Revenue by Application (2017-2028)
8.3 Europe Laser Cladding Material for Additive Manufacturing Sales by Country
8.3.1 Europe Laser Cladding Material for Additive Manufacturing Sales by Country (2017-2028)
8.3.2 Europe Laser Cladding Material for Additive Manufacturing Revenue by Country (2017-2028)
8.3.3 Germany
8.3.4 France
8.3.5 U.K.
8.3.6 Italy
8.3.7 Russia
9 Asia Pacific
9.1 Asia Pacific Laser Cladding Material for Additive Manufacturing Market Size by Type
9.1.1 Asia Pacific Laser Cladding Material for Additive Manufacturing Sales by Type (2017-2028)
9.1.2 Asia Pacific Laser Cladding Material for Additive Manufacturing Revenue by Type (2017-2028)
9.2 Asia Pacific Laser Cladding Material for Additive Manufacturing Market Size by Application
9.2.1 Asia Pacific Laser Cladding Material for Additive Manufacturing Sales by Application (2017-2028)
9.2.2 Asia Pacific Laser Cladding Material for Additive Manufacturing Revenue by Application (2017-2028)
9.3 Asia Pacific Laser Cladding Material for Additive Manufacturing Sales by Region
9.3.1 Asia Pacific Laser Cladding Material for Additive Manufacturing Sales by Region (2017-2028)
9.3.2 Asia Pacific Laser Cladding Material for Additive Manufacturing Revenue by Region (2017-2028)
9.3.3 China
9.3.4 Japan
9.3.5 South Korea
9.3.6 India
9.3.7 Australia
9.3.8 China Taiwan
9.3.9 Indonesia
9.3.10 Thailand
9.3.11 Malaysia
10 Latin America
10.1 Latin America Laser Cladding Material for Additive Manufacturing Market Size by Type
10.1.1 Latin America Laser Cladding Material for Additive Manufacturing Sales by Type (2017-2028)
10.1.2 Latin America Laser Cladding Material for Additive Manufacturing Revenue by Type (2017-2028)
10.2 Latin America Laser Cladding Material for Additive Manufacturing Market Size by Application
10.2.1 Latin America Laser Cladding Material for Additive Manufacturing Sales by Application (2017-2028)
10.2.2 Latin America Laser Cladding Material for Additive Manufacturing Revenue by Application (2017-2028)
10.3 Latin America Laser Cladding Material for Additive Manufacturing Sales by Country
10.3.1 Latin America Laser Cladding Material for Additive Manufacturing Sales by Country (2017-2028)
10.3.2 Latin America Laser Cladding Material for Additive Manufacturing Revenue by Country (2017-2028)
10.3.3 Mexico
10.3.4 Brazil
10.3.5 Argentina
10.3.6 Colombia
11 Middle East and Africa
11.1 Middle East and Africa Laser Cladding Material for Additive Manufacturing Market Size by Type
11.1.1 Middle East and Africa Laser Cladding Material for Additive Manufacturing Sales by Type (2017-2028)
11.1.2 Middle East and Africa Laser Cladding Material for Additive Manufacturing Revenue by Type (2017-2028)
11.2 Middle East and Africa Laser Cladding Material for Additive Manufacturing Market Size by Application
11.2.1 Middle East and Africa Laser Cladding Material for Additive Manufacturing Sales by Application (2017-2028)
11.2.2 Middle East and Africa Laser Cladding Material for Additive Manufacturing Revenue by Application (2017-2028)
11.3 Middle East and Africa Laser Cladding Material for Additive Manufacturing Sales by Country
11.3.1 Middle East and Africa Laser Cladding Material for Additive Manufacturing Sales by Country (2017-2028)
11.3.2 Middle East and Africa Laser Cladding Material for Additive Manufacturing Revenue by Country (2017-2028)
11.3.3 Turkey
11.3.4 Saudi Arabia
11.3.5 UAE
12 Corporate Profiles
12.1 Oerlikon Metco
12.1.1 Oerlikon Metco Corporation Information
12.1.2 Oerlikon Metco Overview
12.1.3 Oerlikon Metco Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.1.4 Oerlikon Metco Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.1.5 Oerlikon Metco Recent Developments
12.2 Hoganas AB
12.2.1 Hoganas AB Corporation Information
12.2.2 Hoganas AB Overview
12.2.3 Hoganas AB Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.2.4 Hoganas AB Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.2.5 Hoganas AB Recent Developments
12.3 Praxair S.T. Technology
12.3.1 Praxair S.T. Technology Corporation Information
12.3.2 Praxair S.T. Technology Overview
12.3.3 Praxair S.T. Technology Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.3.4 Praxair S.T. Technology Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.3.5 Praxair S.T. Technology Recent Developments
12.4 Wall Colmonoy
12.4.1 Wall Colmonoy Corporation Information
12.4.2 Wall Colmonoy Overview
12.4.3 Wall Colmonoy Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.4.4 Wall Colmonoy Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.4.5 Wall Colmonoy Recent Developments
12.5 FST
12.5.1 FST Corporation Information
12.5.2 FST Overview
12.5.3 FST Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.5.4 FST Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.5.5 FST Recent Developments
12.6 Sentes-BIR
12.6.1 Sentes-BIR Corporation Information
12.6.2 Sentes-BIR Overview
12.6.3 Sentes-BIR Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.6.4 Sentes-BIR Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.6.5 Sentes-BIR Recent Developments
12.7 DURUM Verschleißschutz GmbH
12.7.1 DURUM Verschleißschutz GmbH Corporation Information
12.7.2 DURUM Verschleißschutz GmbH Overview
12.7.3 DURUM Verschleißschutz GmbH Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.7.4 DURUM Verschleißschutz GmbH Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.7.5 DURUM Verschleißschutz GmbH Recent Developments
12.8 Kennametal Stellite
12.8.1 Kennametal Stellite Corporation Information
12.8.2 Kennametal Stellite Overview
12.8.3 Kennametal Stellite Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.8.4 Kennametal Stellite Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.8.5 Kennametal Stellite Recent Developments
12.9 AMC Powders
12.9.1 AMC Powders Corporation Information
12.9.2 AMC Powders Overview
12.9.3 AMC Powders Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.9.4 AMC Powders Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.9.5 AMC Powders Recent Developments
12.10 Hongbo Laser
12.10.1 Hongbo Laser Corporation Information
12.10.2 Hongbo Laser Overview
12.10.3 Hongbo Laser Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.10.4 Hongbo Laser Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.10.5 Hongbo Laser Recent Developments
12.11 Henan Igood Wear-resisting Technology
12.11.1 Henan Igood Wear-resisting Technology Corporation Information
12.11.2 Henan Igood Wear-resisting Technology Overview
12.11.3 Henan Igood Wear-resisting Technology Laser Cladding Material for Additive Manufacturing Sales, Price, Revenue and Gross Margin (2017-2022)
12.11.4 Henan Igood Wear-resisting Technology Laser Cladding Material for Additive Manufacturing Product Model Numbers, Pictures, Descriptions and Specifications
12.11.5 Henan Igood Wear-resisting Technology Recent Developments
13 Industry Chain and Sales Channels Analysis
13.1 Laser Cladding Material for Additive Manufacturing Industry Chain Analysis
13.2 Laser Cladding Material for Additive Manufacturing Key Raw Materials
13.2.1 Key Raw Materials
13.2.2 Raw Materials Key Suppliers
13.3 Laser Cladding Material for Additive Manufacturing Production Mode & Process
13.4 Laser Cladding Material for Additive Manufacturing Sales and Marketing
13.4.1 Laser Cladding Material for Additive Manufacturing Sales Channels
13.4.2 Laser Cladding Material for Additive Manufacturing Distributors
13.5 Laser Cladding Material for Additive Manufacturing Customers
14 Market Drivers, Opportunities, Challenges and Risks Factors Analysis
14.1 Laser Cladding Material for Additive Manufacturing Industry Trends
14.2 Laser Cladding Material for Additive Manufacturing Market Drivers
14.3 Laser Cladding Material for Additive Manufacturing Market Challenges
14.4 Laser Cladding Material for Additive Manufacturing Market Restraints
15 Key Finding in The Global Laser Cladding Material for Additive Manufacturing Study
16 Appendix
16.1 Research Methodology
16.1.1 Methodology/Research Approach
16.1.2 Data Source
16.2 Author Details
16.3 Disclaimer



❖ 免責事項 ❖
http://www.globalresearch.jp/disclaimer

★リサーチレポート[ 世界のアディティブマニュファクチャリング用レーザークラッディング材料市場インサイト及び予測(コバルト基合金、ニッケル基合金、鉄基合金、その他)(Global Laser Cladding Material for Additive Manufacturing Market Insights, Forecast to 2028)]についてメールでお問い合わせはこちらでお願いします。