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市場調査レポート
商品コード
1446330
地震対策ベッド市場の評価:材料 (木材・スチール・その他)・機能 (早期警報システム・緊急対応装置)・エンドユーザー (住宅・商業施設)・地域別の機会および予測 (2017~2031年)Anti-earthquake Bed Market Assessment, By Material [Wood, Steel, Others], By Features [Early Warning System, Emergency Response Equipment], By End-user [Residential, Commercial], By Region, Opportunities, and Forecast, 2017-2031F |
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カスタマイズ可能
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地震対策ベッド市場の評価:材料 (木材・スチール・その他)・機能 (早期警報システム・緊急対応装置)・エンドユーザー (住宅・商業施設)・地域別の機会および予測 (2017~2031年) |
出版日: 2024年03月08日
発行: Market Xcel - Markets and Data
ページ情報: 英文 220 Pages
納期: 3~5営業日
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世界の地震対策ベッドの市場規模は、2023年の7億5,150万米ドルから、2024年から2031年の予測期間中は5.3%のCAGRで推移し、2031年には11億3,594万米ドルの規模に成長すると予測されています。
同市場は地震時の安全性に関する意識と懸念の高まりにより、着実な成長を遂げています。地震が人命や財産に重大な被害をもたらすことから、革新的なソリューションに対する需要が高まっています。地震対策用ベッドは、地震発生時に安全な睡眠環境を提供するように設計されており、地震対策の重要な要素となっています。
特に地震が発生しやすい地域での都市化の進展と、工学および材料科学の進歩が市場の主な促進要因となっています。メーカーは、鉄骨フレーム、ゴムやエラストマーのショックアブソーバー、アンカーシステムなどの技術を活用して、地震に耐えるベッドを開発しています。さらに、建築基準法や規制の採用が増加し、耐震構造を要求していることも市場の成長を高めています。
製品開発における革新
地震対策ベッド市場における革新的な製品の開発には、地震発生時の安全性と快適性を高めることを目的とした幅広いイノベーションが含まれます。メーカー各社は、揺れの影響を効果的に緩和できる多層構造の衝撃吸収システムを備えたベッドを開発するため、斬新な材料や工学技術を模索しています。さらに、調節可能な安定機構により、ユーザーはさまざまなレベルの地震に対してベッドの反応をカスタマイズすることができ、快適性を損なうことなく最適な保護を確保することができます。
地震を早期に検知するセンサーも革新的な技術であり、地震活動が検知されると、ベッドは自動的にロック機構や調節可能なサポートなどの安全機能を作動させることができます。モバイルアプリケーションによる遠隔監視や制御などのスマートな機能性は、ユーザーに利便性と安心感を提供します。
新たな地域への拡大の可能性
新たな地域へ進出により、メーカーは未開発の市場へ参入し、世界で増加する地震安全ソリューションの需要に対応できるようになると期待されています。世界各地で地震が発生する中、地震への備えと軽減措置の重要性に対する認識が高まっており、従来の地震多発地域以外にも地震対策ベッドのニーズが高まっています。
当レポートでは、世界の地震対策ベッドの市場を調査し、市場の定義と概要、市場規模の推移・予測、各種区分・地域別の詳細分析、産業構造、市場成長への影響因子の分析、ケーススタディ、競合情勢、主要企業のプロファイルなどをまとめています。
Global anti-earthquake bed market was valued at USD 751.5 million in 2023, expected to reach USD 1135.94 million in 2031, with a CAGR of 5.3% for the forecast period between 2024 and 2031. The market has witnessed steady growth due to increasing awareness and concerns regarding earthquake safety. With seismic events causing a significant harm to lives and property, the demand for innovative solutions has increased. Anti-earthquake beds are designed to provide a secure sleeping environment during seismic events, which have become a crucial component of earthquake preparedness measures.
Increasing urbanization, especially in earthquake-prone areas, coupled with advancements in engineering and materials science, are the primary drivers of the market. Manufacturers are leveraging technologies such as steel frames, rubber or elastomer shock absorbers, and anchoring systems to develop beds capable of withstanding seismic forces. Additionally, the increasing adoption of building codes and regulations require seismic-resistant structures, which has increased the market's growth.
The market caters to diverse end-users, including residential consumers, institutions like hospitals and care facilities, emergency shelters, and hospitality industry. Furthermore, government initiatives aimed at promoting earthquake preparedness and resilience have provided a boost to the market expansion.
On March 11 2011, Japan was struck by the greatest earthquake recorded. The largest city in the Tohoku, which is the northern portion of the island of Honshu, Sendai was 130 kilometres (81 miles) east of the epicentre of the earthquake, which occurred beneath the Northern Pacific. The earthquake then turned into a tsunami. These casualties caused great loss of lives and property emphasizing the need for safety solutions.
While the market present challenges, such as high initial costs, the need for widespread recognition and adoption remain. However, ongoing research and development efforts are focused on enhancing bed design and affordability, resulting in market penetration.
Innovations in Product Development
Innovative product development in the anti-earthquake bed market encompasses a wide range of innovations aimed at enhancing safety and comfort during seismic events. Manufacturers are exploring novel materials and engineering techniques to create beds with multi-layered shock absorption systems that can effectively alleviate the effects of tremors. Furthermore, adjustable stability mechanisms allow users to customize the bed's response to different levels of seismic activity, ensuring optimal protection without compromising comfort.
Sensors for early earthquake detection are another area of innovation, enabling beds to automatically activate safety features such as locking mechanisms or adjustable supports when seismic activity is detected. Smart functionalities, such as remote monitoring and control via mobile applications, provide users with increased convenience and peace of mind.
Additionally, customization options allow manufacturers to tailor anti-earthquake beds to specific consumer needs and preferences, such as size, style, and additional features. These innovations enhance the safety and performance of anti-earthquake beds and boost market growth by attracting consumers seeking advanced solutions for seismic safety in their homes.
For instance, the main elements used to create structural designs for earthquake-prone areas by Japanese architect Shigeru Ban include cardboard tubes covered with polyurethane. One of Ban's designs, the Transitional Cathedral, was revealed in Christchurch, New Zealand, in 2013. The church is made of 98 big cardboard tubes that are supported by wooden beams. Also, in India, architects use bamboo to strengthen concrete and create cost-effective solutions to resist earthquakes. People across the globe are finding ways and are coming up with innovative solutions to fight the high-cost barrier of manufacturing anti-earthquake beds.
Great Scope of Expansion into New Geographical Areas
Expanding into new geographical regions is expected to enable the manufacturers to tap into untapped markets and address the increasing demand for seismic safety solutions worldwide. As earthquakes occur in various regions globally, there is a growing awareness for the importance of preparedness and mitigation measures, leading to the need for anti-earthquake beds beyond traditional earthquake-prone regions.
The first earthquake-proof bed was patented in 2010 by a Chinese inventor Wang Wenxi to provide sleep comfort to people residing in high-seismic zones. Since then, Wang Wenxi has been working on improving the designs of the bed.
Manufacturers can utilize the opportunity by conducting market research to identify regions with high seismic activity and lack of adequate earthquake preparedness infrastructure. By establishing distribution channels, partnerships, and localized marketing strategies, companies can effectively enter new markets and offer anti-earthquake bed solutions to consumers.
Technological Advancements in Bed Designs
Technological advancements in bed designs are transforming seismic safety by integrating innovative features to enhance stability, comfort, and functionality. One major advancement is the use of advanced materials with superior shock absorption properties, such as carbon fiber or high-density foams, which minimize the transmission of seismic forces to the sleeping area.
Furthermore, engineers are incorporating adjustable stability mechanisms into bed frames, allowing users to customize the level of firmness or movement suppression based on their preferences and the intensity of seismic activity. The adaptive design ensures optimal safety without compromising comfort.
Sensors and actuators within the bed's structure enable real-time monitoring of seismic activity and automatic activation of safety features, such as locking mechanisms or adjustable supports, to secure the sleeper during earthquakes. Furthermore, smart functionalities, including connectivity with mobile devices for remote monitoring and control, provide users with enhanced convenience and peace of mind.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work