![]() |
市场调查报告书
商品编码
1622113
全球热流道市场规模(按类型、应用、地区、范围和预测)Global Hot Runner Market Size By Type (Valve gate hot runner, Open gate hot runner), By Application (Automotive Industry, Electronic Industry), By Geographic Scope And Forecast |
2024 年热流道市场规模价值为 37.8304 亿美元,预计到 2031 年将达到 63.6817 亿美元,2024 年至 2031 年的复合年增长率为 7.42%。塑胶和聚合物复合材料行业的扩张正在推动热流道市场的成长。随着射出成型塑胶产量的增加,热流道得到了发展并吸引了新的客户。全球热流道市场报告对市场进行了全面的评估。它对关键细分市场、趋势、市场推动因素、市场阻碍因素、竞争格局以及在市场中发挥关键作用的因素进行了全面的分析。
全球热流道市场的定义
50 多年前,热流道技术引进塑胶产业,彻底改变了射出成型製程。这项技术提高了操作效率、减少了废品并提高了零件品质。用于在射出成型模具内输送熔融塑胶的系统称为热流道系统。换句话说,射出成型机的热流道系统通常由电动加热元件组成,用于将熔融的塑胶输送到塑胶射出成型模具的模腔中。
树脂类型、注射速度、填充率和零件只是影响热流道熔体通道尺寸的几个变数。透过温度控制器(可以是独立控制器,也可以是注塑机的控制器)将注塑模具中的热流道系统和机筒中的树脂加热到加工温度,然后将树脂注入模具中。树脂进入进料口,通过歧管向下流动,被多个喷嘴分流,最后通过注射点(或浇口)进入最终的模腔,在那里製成最终产品。
现代模具中的喷嘴数量可以从 1 个到 192 个以上,具体取决于所生产的塑胶零件的类型。然而,随着具有先进热控制的热流道技术的发展,注塑机变得更加方便,因为它们可以处理更多种类的树脂。与冷流道模具相比,热流道部件单独加热,以确保树脂在整个模具中保持所需的温度。热流道加热的每个组件的温度也可以获得精确控制,以确保製程适合每种树脂的要求,从而获得最佳的零件品质。热流道现在能够生产极其复杂的零件。
全球热流道市场概况
与其他材料相比,塑胶在产品保质期内具有许多优势,因此越来越多地被应用于建筑、汽车、电子和医疗等各个行业。塑胶成型件越来越多地被製程工业和离散工业所采用,用于各种产品和包装应用。需求的增加推动了对改进製造流程和更高品质产品的需求。借助整个过程的即时数据、更少的错误、技术改进、数位化流程和网路化系统,您可以在更短的时间内实现更高的品质。
工业4.0和物联网极大地帮助了自动化和塑胶成型工艺,这也促进了热流道市场的扩大。工业投资的激增以及汽车和医疗保健领域对注塑塑胶製品的强劲需求正在推动全球热流道市场的扩张。此外,塑胶加工和包装的自动化趋势有望透过提高产量和效率来推动热流道市场的扩张。为了确保能源效率,领先的製造商也在生产电动阀式热流道,这有助于扩大市场。
市场吸引力
透过提供市场吸引力的图片,您可以获得有关领先全球热流道市场的地区的资讯。我们涵盖了推动特定区域产业成长的关键影响因素。
波特五力模型
波特五力模型是用来理解产业内竞争对手行为和策略定位的架构。波特五力模型可用于评估全球热流道市场的竞争格局、衡量特定细分市场的吸引力并评估投资潜力。
Hot Runner Market size was valued at USD 3783.04 Million in 2024 and is projected to reach USD 6368.17 Million by 2031, growing at a CAGR of 7.42% from 2024 to 2031. The expansion of the plastic and polymer composite industries is what is fueling the growth of the Hot Runner Market. Hot runner is developing and attracting a new clientele as a result of the increase in the production of plastics using the injection molding method. The Global Hot Runner Market report provides a holistic evaluation of the market. The report offers a comprehensive analysis of key segments, trends, drivers, restraints, competitive landscape, and factors that are playing a substantial role in the market.
Global Hot Runner Market Definition
Injection molding processing capabilities were revolutionized by hot runner technology, which was introduced to the plastics industry more than 50 years ago. This technology-enhanced operational efficiencies decreased scrap and improved molded part quality. A molten plastic transporting system used within an injection mold is called a hot runner system. In other terms, an injection molding machine's hot runner system is made up of heated parts that are typically powered by electricity and employed inside plastic injection molds to transfer molten plastic into the cavities of the mold.
The type of resin, injection speed, fill rate, and the molded item is just a few of the variables that affect how big hot runner melt channels should be. The hot runner system inside the injection mold and the resin inside the machine barrel is heated to processing temperature by a temperature controller (standalone controller or controls from the injection molding machine), which then injects the resin into the mold. The resin enters the intake, descends through the manifold, divides at the numerous nozzles, and finally passes through injection points (or gates) into the final mold cavity where the final item is created.
The number of nozzles in a modern mold can range from 1 to over 192, depending on the type of plastic parts being produced. However, the processing of a wider variety of resins for injection molders became more feasible and convenient with the development of hot runner technology with sophisticated thermal controls. The hot runner components are separately heated, as opposed to a cold runner mold, to ensure that the resin maintains the desired temperature throughout the mold. To ensure that the process is suited to each type of resin's requirements and delivers the finest possible part quality, the temperature of each hot runner heated component may also be accurately controlled. Hot runners can now produce incredibly intricate pieces.
Our reports include actionable data and forward-looking analysis that help you craft pitches, create business plans, build presentations and write proposals.
Global Hot Runner Market Overview
Since plastics have so many advantages over other materials over a product's shelf life, they are increasingly being used in a wide range of industries, including construction, automotive, electronics, and medicine. In a wide range of product and packaging applications, the process and discrete industries are increasingly adopting molded plastic products. This increased demand has created a need for an improved manufacturing process and high-quality products, both of which may be accomplished by implementing automation in the production process. With the aid of real-time data about the entire process, decreasing errors, technological improvements, digitization of the process, and networked systems help to acquire high quality in less time.
The automation and plastic molding processes are greatly aided by Industry 4.0 and the Internet of Things, which is also helping the Hot Runner Market expand. The rapid increase in industrial investment and the strong demand for items made of injection-molded plastic in the automotive and healthcare sectors are driving expansion in the worldwide Hot Runner Market. Additionally, a growing trend toward automated plastic processing and packaging is expected to foster the expansion of the Hot Runner Market by boosting production and efficiency. In order to assure energy efficiency, leading manufacturers are also manufacturing electric valve gate hot runners, which is boosting the market's expansion.
Market Attractiveness
The image of market attractiveness provided would further help to get information about the region that is majorly leading in the global Hot Runner Market. We cover the major impacting factors that are responsible for driving the industry growth in the given region.
Porter's Five Forces
The image provided would further help to get information about Porter's five forces framework providing a blueprint for understanding the behavior of competitors and a player's strategic positioning in the respective industry. The porter's five forces model can be used to assess the competitive landscape in the global Hot Runner Market, gauge the attractiveness of a certain sector, and assess investment possibilities.
The Global Hot Runner Market is segmented on the basis of Type, Application, and Geography.
Based on Application, the market is segmented into Automotive Industry, Packaging Industry, Electronic Industry, Medical Industry, and Others. The segment of the automotive industry, which held the biggest market share in 2018, is anticipated to expand at a CAGR of 8.44% over the course of the forecast year. The second-largest market in 2018 was the packaging industry category, and it is anticipated to develop at a CAGR of 7.84%.
Based on Type, the market is segmented into Valve Gate Hot Runner and Open Gate Hot Runner. The market share held by Valve Gate Hot Runner in 2018 was the largest, and over the forecast period, it is expected to expand at a CAGR of 8.33%. Valve gate hot runner systems use mechanical shut-off pins that enable the hot runner nozzle to open and close at the tip to regulate the flow of plastic into the mold cavity. Better plastic parts are produced and cycle durations are shorter because of the ability to precisely control the flow of material through the gates.
Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share and market ranking analysis of the above-mentioned players.