avav在线看_国产性色AV高清在线观看_狠狠干影院樱桃视频整合全网影视:_成人av中文字幕_欧美久久一级_91久久丝袜国产露脸动漫

August 23, 2023

Caps and Closures Production: Selecting Between Injection and Compression Molding

In the dynamic, fast-changing world of beverage package design, selecting the right manufacturing method is crucial for creating high-quality caps and closures. Injection molding and Compression molding are two popular techniques for producing plastic caps and closures, and in this article, we will take a closer look at both methods, enabling you to make informed decisions to meet your specific requirements.

Let’s take a closer look at injection molding versus compression molding.

WHAT IS INJECTION MOLDING?

Injection molding is a versatile and efficient manufacturing process that involves injecting molten materials (resin) into a mold. The molten material is injected under high pressure into a closed mold cavity, where it cools and solidifies, taking the desired shape of the plastic part. 

Injection molding enables the production of large volumes of identical parts with complex shapes and precise details. For this reason, injection molding has become a popular choice to produce caps and closures due to its remarkable flexibility, efficiency, and ability to consistently produce high-quality components. The beverage packaging industry, in particular, is making use of this manufacturing process to address sustainability trends and regulations, increase design flexibility, and streamline production and costs. 

With injection molding, each process parameter is independently adjustable, allowing for a larger process window. This larger process window enables better adaptability to different raw materials and color masterbatches.

Advantages of Injection Molding 

Complex Part Design Capabilities
Injection molding provides a higher degree of design freedom, enabling to create parts with undercuts, hinges, and advanced geometries used to enhance the consumer experience. This is particularly relevant with tethered caps.
Indeed, the complex geometry enables tethered caps with 180-degree openings on all necks and produces a pronounced clicking sound when users reach the end position, serving as a tactile cue.

No Post-Processing Requirements and Constant Bridge Quality
Injection molding also enables the ability to mold the tamper evident band with molded-in bridges eliminating the need for post-mold slitting and/or folding. As such, it reduces the required machinery and labor as well as the risks for quality concerns.
Molded-in bridges guarantee that the geometry of the bridges remains constant, with identical bridge size and position, cycle after cycle over the entire mold lifetime as there is no risk of wearing on the involved mold components. These conditions combined guarantee that the geometry of the bridges remains constant over time, guaranteeing part quality and consumer experience.

No Micro-Plastic Contamination
As there is no need for slitting with Molded-in bridge injected closures, there is also no generation of plastic dust linked to this step. This is a significant advantage for brands that are concerned with the potential contamination of microplastics that could end up in the beverage, food or medicine.

Lightweighting
Injection molding enables the production of lightweight parts without compromising quality or functionality. The process enables the optimization of wall thickness, resulting in lighter components that meet performance requirements. The elimination of the folded part of the closure reduces the part weight. Although it is true that best-in-class closures from both technologies are often at par in terms of weight, it is not uncommon to see injection molded closures be slightly lighter than compression molding.

Reduced Maintenance and Downtime
Once properly set up, an injection molding line can operate with minimal maintenance and downtime. Injection molding involves fewer components and tools in motion, which move at a considerably slower speed, leading to decreased maintenance needs overall resulting in less downtime.

Flexible Production
Injection molding is particularly interesting for converters that need to change closure types frequently: different neck finishes or from non-tethered to tethered. Changing the closure type is done by swapping the mold installed in the machine, which can be done within hours. The change from non-tethered to tethered requires the exchange of sliders only, which can be done without removing the mold from the machine within 1 hour.

Consistency and Process Robustness
Injection molding offers exceptional process control, resulting in consistent and repeatable part quality. The ability to closely monitor and adjust process parameters ensures that each part produced meets the desired specifications. Once the injection process is established, the process robustness allows for reliable and consistent production runs.

HyCAP™4 is the industry’s only fully integrated beverage closure injection molding system designed and built to work together for increased productivity, energy efficiency and ease of use.

WHAT IS COMPRESSION MOLDING?

Compression molding is a manufacturing process that involves the use of pressure to form preheated material into a desired shape. Unlike, injection molding where a multi-cavity mold produces many parts during each injection cycle, in compression molding the machine is composed of a carousel equipped with many single-cavity molds that produce one closure each. Compression molding involves placing a preheated molding material, known as a charge, into an open mold cavity. The mold is then closed, and pressure is applied to compress the material into the desired shape. The part is cooled until the mold is opened and the part is extracted from the mold. 

Advantages of Compression Molding

No Gate Mark
Compression molding does not require gates for material flow. This results in compression-molded parts having surface finish without visible gate marks.

Fast Color Changes
The extruder in a compression molding system feeds each mold directly without the need of a hot runner. Injection molding systems use a hot runner to distribute the molten resin from the injection unit to the mold cavities. The absence of the hot runner allows for faster color changes in compression molding.

Lower Energy Consumption
Compression molding works with lower resin temperatures, requiring less energy to warm up the material and to cool it down in the mold.

Lower Initial Equipment Investment 
The initial investment costs for compression molding are lower compared to injection molding. This may benefit converters new to the closures business, but one should always consider the full cost of ownership.

Injection Molding vs Compression Molding 

When comparing injection molding versus compression molding, it’s important to understand that the needs of your specific application should be the driving force behind your choice, as both processes have their benefits.

Let’s take a closer look at injection molding versus compression molding for caps and closures production.

Which process is more costly?
Compression molding typically has lower initial equipment cost than injection molding. However, resin costs are making up for more than 80% of the part cost. Energy and maintenance costs are the next biggest contributors.
When closure weights are equivalent, the closure cost has been found to be approximately 5% lower for compression molding in most cases. Resin cost is the primary cost driver, so a slight weight benefit to injection molding can offset the cost difference.

In cases where injection molding is marginally more expensive, the value of an improved consumer experience, through features like tethered closures with a 180-degree opening angle and audible and tactile cues, may well justify the increase in cost.

Although difficult to quantify, anyone considering investing in one of these technologies should also consider the cost linked to licensing fees, post-processing steps like slitting and folding when tethered closures are involved (i.e., the need for a system to orient the closure before slitting, increased cost of knives, advanced inspection systems, etc.).

Which process provides more flexibility?
One of the biggest advantages of injection molding is that it provides much more design flexibility and versatility. As mentioned above, injection molding may be preferred when undercuts or complex geometries are required. Design features like 180-degree opening and audible clicks, which have received positive feedback from major beverage brands have only been achieved with injection molding technology. The design freedom, and thus consumer experience that injection molding provides cannot be matched with compression molding.

Injection molding also provides flexibility in the production environment. Converters can use the same machine to produce a large variety of closures simply by exchanging the mold. This can be done within a few hours. The injection machine itself can be used to inject parts other than closures, resulting in a higher salvage value for the system.

In contrast, compression molding is better suited for simpler designs and in situations where the equipment is dedicated to one closure only and is loaded the entire year.

Which process is more efficient?
Injection molding offers streamlined, efficient and robust processes that contribute to enhanced production and overall efficiency. Planned maintenance is less demanding in injection molding compared to compression molding, given that there are less parts moving, and these parts are also moving more slowly.

Unlike compression molding, injection molding eliminates the need for additional post-production steps like slitting and folding and significantly minimizes the risk of scrap and dust,

In compression molding, tethered caps & closures need to be oriented prior to slitting and require a more complex slitting knife and process. To guarantee the quality of the slitting, the inspection process is also more complex.

Closures produced through injection molding, in contrast, are completely finished as they are released from the mold. All geometries are molded within the mold with high levels of repeatability.

While injection molding enables a molded-in-bridge, compression molding requires post-processing steps like slitting.

Which process enhances consumer safety?

The higher degree of design freedom provided by injection molded bands also translates into increased safety for end consumers, especially when tethered caps and closure designs are taken into account. Although tethered caps and closures are designed to remain attached to the bottle, they can be intentionally removed by consumers. The limited design options of slitting in compression molding, meanwhile, produce sharp edges and sturdy, spiky elements when the cap is separated from the band, as shown below. These factors have the potential to pose hazards for lip and finger injuries. Injection molded tethered caps and closures, on the other hand, have softer geometries that produce very thin and flexible arms, which are unlikely to cause injury.

How to Choose Between Injection Molding and Compression Molding 

When comparing injection molding and compression molding, it’s clear that while compression molding offers advantages such as fast color changes and lower energy consumption, injection molding is a more versatile and efficient process overall. Injection molding provides design freedom and production flexibility to meet the needs of most beverage brands and converters.

However, to determine the best manufacturing method for your projects and applications, it’s important to evaluate their specific requirements and constraints. We encourage you to reach out to our subject matter experts, who can provide additional information and insights to enable you to make an informed decision.

 

 

Sources:

  1. RapidDirect. (2021). Compression molding vs injection molding: Which process is better?
  2. PETplanet PETinar. (2020). Tethered caps: An opportunity for compression and injection-molding?
  3. PR Newswire - Verified Market Research. (2019). Caps and Closures Market is Expected to Generate a Revenue of USD 93.25 Billion by 2030, Globally, at 4.78% CAGR
  4. Silgan Closures. (2018). Plastic Closures: Injection vs Compression - What Will You Choose?
  5. Plastics Today. (2010).  Closure molding clash: Compression vs. injection
主站蜘蛛池模板: 91美女视频|c=aoporm在线|狠狠色噜噜狠狠米奇777|欧美一级做一级爱=a做片性|亚洲=aV噜噜狠狠网址蜜桃|亚洲v=a一区二区 | 91精品国产综合久久香蕉最新版|久久97久久|国产福利三区|华人在线视频|mm1313美女视频|一区二区免费播放 | 吃奶摸下的激烈视频|亚洲人成网站18禁止中文字幕|无码=aV天堂一区二区三区|男人猛躁进女人视频免费播放|精品一区在线观看视频|欧美午夜=a级限制福利片 | 永久免费的啪啪网站免费观看浪潮|#NAME?|被按摩的人妻中文字幕|国产资源在线看|人人看人人射|免费看又黄又爽又猛的视频软件 | 三区视频在线观看|中文字幕第2页|色吧在线播放|啦啦啦视频在线观看高清免费|日本ⅹxxxx久色视频免费观看|亚洲精品久久久久久久蜜臀老牛 | 韩国日本美国欧洲=aⅴ|91久久国产露脸精品国产闺蜜|国产热99|欧美肥老太交性视频免费|国产艳妇高清色视频在线观看|一级绝黄| 岛国午夜视频一区三区|欧美成人免费一级|加勒比中文字幕无码一区|亚洲中文字幕在线乱码|草久=av|国产区一区 | 不够善良的我们在线观看|亚洲国产欧美在线成人=a=a=a=a|欧美视频一区在线观看|日日干=av|91亚洲精品久久久|九9热这里真品2 | 欧美色欧美亚洲日韩在线播放|99久久久久99国产免费=aV|午夜免费片|日韩一区二区三区久久|婷婷色色狠狠爱|69=av在线观看 | #NAME?|青青草在线视频免费观看|久草免费福利|日日噜噜夜夜狠狠爱视频免费樱桃|国产精品一级=a级理论片在线观看|亚洲狠狠色综合蜜桃 | 在线免费观看成年人视频|欧美日韩一区二区三区四区高清|激情免费看片|97久久超碰|www.蜜臀=av.com|亚洲=a一级 | 久久国产福利一区二区|一本色道久久88精品综合|亚洲学生妹高清=av|WWW亚洲色大成网络|免费在线观看成人=av|亚洲天堂资源在线 | 97成人超碰免|欧美综合视频在线观看|强被迫伦姧惨叫在线视频|亚洲=aV成人无码网站大全|91精选日韩综合永久入口|欧美精品一区二区三区高清=aⅴ | 蜜桃=aV少妇久久久久久高潮不断|国产精品VIDEOSSEX国产高清|亚洲成=aⅤ人片久青草影院按摩|夜色香影院|自拍视频区|超碰综合 | 欧美成人一二三|一区二区国产在线|欧美黑人激情性久久|欧美性大战久久久久久久蜜桃|亚洲色播爱爱爱爱爱爱爱|亚洲日本二区 | 欧美xxxxx做受vr|2018毛片|久久久人人人婷婷色东京热|黄色=a视频在线观看|在线免费看=av|91无吗 | 国产成人18黄网站免费观看|日韩国产一区二|亚洲天堂自拍偷拍|性做爰片免费视频毛片中文|天天精品视频免费|黄色毛片免费 | 成人免费高清|精品色呦呦|国产另类ts人妖一区二区|99热精品在线|国产人免费人成免费视频|欧美国产日韩二区 | 偷欢人妻HD三级中文|不卡一区在线观看|午夜激情视频在线|eeuss国产一区二区三区|日本大尺码专区mv|久久免费小视频 | 三级国产99久久|#NAME?|亚洲第7页|贪婪欲望之岛在线|97爱亚洲|国产精品偷乱一区二区三区 | 亚洲午夜久久久综合37日本|欧美高潮抽搐喷水大叫|啪一啪鲁一鲁|亚洲欧洲美洲无码精品V=a|亚洲高清视频网站|三级黄色影院 | 国产精品久久久精品|jj视频在线观看|中文字幕xxxx|淫片专区|草逼免费视频|久久久久久久久久久久国产精品 | 伊人网视频在线|久久免费看少妇=a高潮一片黄特|99国产精品自在自在久久|久久国产最新|一级片网址|无码天堂亚洲国产=aV久久 | 国产高清在线看|奶头好大揉着好爽视频|www超碰|女人天堂=av在线|久久久久久久久久一级|99国产精品粉嫩初高生在线播放 | 日本公交车上xxxxhd少妇|五月开心六月伊人色婷婷|97国产suv精品一区二区62|久久99精品久久久久久久清纯|精品国产欧美日韩|黄色网页入口 | 国语精品对白露脸少妇网站|快好爽射给我视频|国产熟妇另类久久久久久|在线看免费视频|www久久九|亚洲综合欧美另类 | 亚洲高清炮|99国精产品灬源码1688钻|人与拘一级=a毛片|精品无人区麻豆乱码久久久|国产精品色视频xxx|国产日产成人免费观看软件 | 久久白虎|18禁成人网站免费观看|国产www视频在线观看|欧美黄色=a级大片|国产精品久久久久久久人人看|日韩精品毛片 | 免费观看=a级毛片在线播放|特极毛片|男男做爰猛烈叫床视频gv|亚洲日本在线在线看片4k超清|一级黄色免费观看视频|亚洲第一福利网站在线观看 | 国产一区2区3区|一级片=a=a|日韩欧美不卡一卡二卡3卡四卡2021免费|国产深夜福利在线|免费=a级黄色片|肉感饱满中年熟妇日本 | 国产高跟丝袜脚交视频|最短的距离是圆的高清在线观看|一区二区三区视频播放|国产精品黄页在线播放免费|#NAME?|精品国产乱码久久久久久中文 | 牛牛碰在线视频|看黄色片一级片|日韩成人小视频|久爱视频免费在线观看|日本好好热视频|亚洲国产精品一区二区三区 | 国产高清=av首播原创麻豆|国产h色视频在线观看|成年人网站免费在线观看|#NAME?|免费看黄色片子|亚洲一区在线 特级毛片内射www无码|日韩激情无码激情=a片免费软件|伊人狠狠色丁香婷婷综合动态图|高清性色生活视频|色噜噜狠狠狠狠色综合久一|久久精品免费视频播放 | 91精品一区二区三区在线|情侣偷拍在线一区|天堂网在线.www天堂|成人=a毛片免费全部播放|日本国产一区二区|美女被日在线观看 | 无码免费婬=aV片在线观看|免费黄色小视频在线观看|eeuss鲁丝片=aV无码|国产精品videossexohd|亚洲欧美成人一区二区在线|久久www免费人成网站 | 亚洲欧美一级久久精品|在线观看午夜视频|日本日韩欧美|久久久新视频|国产精品一色哟哟|98精品在线 | h黄视频在线观看|日韩精品=a=a=a|高h喷水荡肉爽文np肉色学男男|99精品中文字幕|C=aOPORN成人免费公开|久热久爱 | 少妇精品|欧美大逼视频|一级做=a爱片特黄在线观看|日本乱码伦视频免费播放|亚洲精品在线观看=av|久久久久久久久久久久久久=av | 久久精品欧美一区二区|国产91精品网站|精品免费|亚洲=aV无码一区二区乱孑伦=aS|超碰影院在线观看|內射XXX韩国在线观看 | 国内精品久久久久久TV|久久叉叉|动漫=av网|欧美巨猛xxxx猛交黑人97人|亚洲人免费视频|欧洲成年人性生活免费视频 | 555www色欧美视频|GOGOGO高清免费看韩国|性毛片|欧美日韩国产这里只有精品|尤物视频免费观看|中国少妇bbbbxxxx |