很多采购第一次接触EMAA,都会犯同一个错:把它当成EAA的升级版,或者干脆跟EMMA搞混。下单的时候看价格便宜就走了,上机做发泡材料才发现——泡孔不均匀、回弹不对、跟基材粘不牢。退货的时候供应商说"这就是EMAA,没错啊",你拿着化验单才发现,酯基挂的东西根本不是你要的那一档。
说白了,采购以为自己在买材料,其实在买运气。EMAA这个品类,名字跟EAA、EMMA、EMA只差一两个字母,但分子链上挂的是甲基丙烯酸——带羧基的那种。这个羧基能不能被金属离子中和、中和到什么程度,直接决定它是普通EMAA还是离聚物。今天把这个品类讲透。
EMAA是什么,离聚物又是怎么回事
EMAA,乙烯-甲基丙烯酸共聚物。乙烯为主链,甲基丙烯酸为共聚单体,分子链上带着羧基(-COOH)。这个羧基是关键——它能跟锌、钠、镁等金属离子发生中和反应,形成离子键交联的三维网络,这就是离聚物(Ionomer)。
普通EMAA和离聚物的区别在哪?普通EMAA就是共聚态,羧基游离着,加工性能接近EVA,柔软、有粘性。离聚物是把一部分羧基用金属离子中和掉,形成离子簇——这些离子簇在室温下像物理交联点,材料强度和韧性大幅提升;加热时离子键松开,又能像热塑性塑料一样加工。
做发泡材料和缓冲材料的为什么用EMAA?因为它的泡孔结构均匀、回弹性好、触感细腻,而且跟PE、PP、尼龙都有不错的粘接性。高端化妆品瓶盖的内衬、高尔夫球的外壳、运动鞋的中底发泡层,都是离聚物EMAA的天下。
全球格局方面,这个品类高度集中。陶氏的Surlyn是离聚物的开创品牌,埃克森美孚的Iotek是主要竞品,SK化学在亚洲市场占据重要份额。三家加起来占全球大部分产能。
副牌从哪来,跟回料怎么分
EMAA副牌,跟其他乙烯共聚物副牌一样,是同一厂家同一牌号中出厂检验未完全达标的批次。但EMAA有个特殊点:它的关键指标不只是熔指和含量,还有中和度——金属离子中和了多少比例的羧基。中和度差几个百分点,材料的软硬度和回弹就变了。
四大来源不变:装置开停车头尾料、牌号切换过渡料、工艺波动批次、副线尾料。EMAA的副牌主要风险在中和度和酸含量两项——这两项小幅浮动,做发泡材料的泡孔均匀性就受影响。
跟回料的边界要划清:EMAA副牌是原厂原生聚合粒子,分子链没受过二次热历史;回料是发泡制品边角料重新造粒,羧基可能已经分解,金属离子也可能流失了一部分,做出来的泡孔粗细不均。你品你细品,这不是便宜不便宜的问题,是根本不是一个东西。
陶氏:Surlyn,离聚物这个品类的开山鼻祖
Surlyn这个品牌,最早由杜邦在上世纪60年代商业化,2019年杜邦把包装与特种塑料业务卖给了陶氏(Dow),Surlyn现在归陶氏所有。不管主人换了几轮,Surlyn的牌子在离聚物领域就是标杆——化妆品瓶盖、高尔夫球、安全玻璃中间膜、食品包装热封层,到处都是它。
Surlyn的牌号体系按酸含量和中和金属分:钠中和偏透明、硬一点;锌中和偏柔韧、粘接性好。做发泡缓冲材料的,一般选锌中和的中酸含量牌号,泡孔细腻回弹好。Surlyn的副牌来源,主要是北美和新加坡装置的牌号切换过渡料——从中等酸含量切到高酸含量,中间过渡段酸含量小幅飘移,但中和金属和离子键结构没变。
挑Surlyn副牌,先确认是钠中和还是锌中和——这一项搞错了,做出来的发泡材料手感完全不对。再测酸含量和熔指,对上你的发泡工艺窗口就行。包装分大包装和小包装,大包装适合连续发泡生产线,小包装适合打样。
埃克森美孚:Iotek,Surlyn之外的第二选择
埃克森美孚的Iotek,是离聚物市场里Surlyn的主要竞品。牌号覆盖钠中和和锌中和,酸含量从低到高都有。Iotek的特点是加工窗口宽,挤出发泡时对温度波动的容忍度比Surlyn略高——这对做缓冲材料的厂来说很实在,意味着车间温度不用卡得那么死。
Iotek的装置在美国和欧洲都有,副牌料以工艺波动批次为主。做发泡片材的厂拿Iotek副牌替代Surlyn正牌,材料成本能降一截,泡孔均匀性略逊于Surlyn正牌,但做普通缓冲垫和内衬完全够用。注意一点:Iotek和Surlyn虽然都是锌中和离聚物,但羧基的分布密度不同,发泡倍率要重新调配方,不能直接照搬Surlyn的工艺参数。
SK化学:韩国力量,亚洲市场的关键玩家
SK化学(SK Global Chemical)是亚洲离聚物市场的重要供应商,在韩国和中国都有装置。它的EMAA和离聚物牌号主要面向包装和发泡应用,价格比陶氏和埃克森美孚略低,在亚洲市场占有一席之地。
SK化学的副牌特点是批次新——亚洲装置开停车频繁,过渡料流入副牌渠道的比例不低。做缓冲材料的厂拿SK化学副牌做内村和非外观件,成本优势明显。但要注意,SK化学的离聚物牌号体系跟Surlyn、Iotek不完全对应,上机前一定要打小样确认发泡倍率和回弹率,别直接按Surlyn的配方比例替换。
三个坑,做发泡料的别踩
第一个坑:钠中和当锌中和买。这是离聚物副牌最离谱的坑。钠中和的Surlyn偏透明偏硬,锌中和的偏柔韧偏粘。做发泡缓冲材料要的是回弹和柔软,结果买了钠中和的货,发泡片硬得像塑料板,缓冲性能全废。验样时加一句:确认中和金属类型。
第二个坑:酸含量对不上发泡倍率。EMAA的酸含量直接决定泡孔成核密度。酸含量高的,泡孔细但密;酸含量低的,泡孔粗但少。副牌酸含量如果飘了两三个点,你原来的发泡配方就控不住泡孔结构。收货前测酸含量,对上你的发泡工艺窗口。
第三个坑:把普通EMAA当离聚物买。有些供应商拿未中和的EMAA共聚料冒充离聚物副牌卖。未中和的EMAA加工性能接近EVA,没有离子交联,发泡材料的回弹和强度差一大截。最简单的判断方法:离聚物的熔体强度明显高于普通EMAA,上机一跑就知道——普通EMAA发泡时熔体承不住泡,泡孔会破。
科隆仓库现货|EMAA合作
主推品牌:陶氏、埃克森美孚、SK化学。
主要牌号:Surlyn、Iotek、SK化学EMAA/离聚物。
包装规格:小包副牌与箱装副牌走小包装,大包料/吨包料走吨袋,按车间用量分包装备货。
仓库现货:EMAA仓库现货通常在2000-5000吨,其中小包副牌备货300-600吨、箱装副牌备货150-300吨、大包料/吨包料备货1500-4100吨。
供应保障:批次留样可溯,每批留底备查。
选型口诀和一个宿迁的案子
挑EMAA副牌,记住这五条:
一认中和金属,钠还是锌,发泡缓冲选锌。
二测酸含量,对上你的发泡成核窗口。
三查熔体强度,离聚物和普通EMAA上机一跑就分。
四对熔指,发泡挤出工艺卡的是这个。
五分包装,连续线用大包装,打样用小包装。
宿迁有家做家电缓冲内衬的客户,之前用正牌Surlyn锌中和牌号做发泡片,材料成本居高不下。后来换了一批埃克森美孚Iotek的锌中和副牌,酸含量实测18.2%(标称19%),熔指实测2.8(标称2.6),两项都在工艺窗口内。上机发泡,泡孔均匀性跟正牌差距不大,回弹率略降3%,但做家电内衬这个等级完全够用。材料成本每吨省了八百多,一年下来光这一项省了十几万。
正牌EMAA离聚物一柜压着几十万货款,回料EMAA一撕就破不密封,副牌EMAA正好补在化妆品内盖和食品密封层要韧性、又要控本的空档上。宁波市科隆新材料有限公司做进口离聚物副牌料多年,Surlyn、Iotek、SK化学的货源都在跟,类似的案子每年接不少。
做发泡材料的、做缓冲内衬的、做化妆品瓶盖内衬的,谁还没被EMAA坑过?是钠锌中和搞错了硬得像板?还是酸含量飘了泡孔粗细不均?或者拿普通EMAA当离聚物买,回弹根本不达标?
资料与数据来源
• 陶氏Surlyn产品技术资料(Dow官网及Safic-Alcan行业指南,核验日期2026-09-14)
• 埃克森美孚Iotek产品系列公开资料(ExxonMobil Chemical官网,核验日期2026-09-14)
• Dataintelo全球离聚物树脂市场报告(dataintelo.com,核验日期2026-09-14)
• Statsmarketresearch全球EAA/EMAA共聚物市场报告(statsmarketresearch.com,核验日期2026-09-14)
• 24ChemicalResearch离聚物市场竞争格局报告(24chemicalresearch.com,核验日期2026-09-14)
Many buyers make the same mistake when they first encounter EMAA: they treat it as an upgraded version of EAA, or simply confuse it with EMMA. When ordering, they see the price is cheap and leave, but when they start making foam materials, they discover—uneven foam holes, incorrect rebound, and poor adhesion to the substrate. When returning, the supplier says, "This is EMAA, that's right," but you only realize with the test report that the ester label is not the grade you wanted.
To put it bluntly, the buyer thinks they're buying materials, but they're actually buying luck. The EMAA category has names only one or two letters different from EAA, EMMA, or EMA, but the molecular chain carries methacrylic acid—the carboxyl group. Whether this carboxyl group can be neutralized by metal ions directly determines whether it is ordinary EMAA or an ionomer. Today, I'll explain this category thoroughly. What is
EMAA, and what exactly are ionomers ?
EMAA ethylene-methacrylic acid copolymer. Ethylene is the main chain, methacrylic acid is the comonomer, and the molecular chain carries a carboxyl group (-COOH). This carboxyl group is the key—it can neutralize and react with metal ions like zinc, sodium, and magnesium, forming a three-dimensional network of ionic bonds crosslinked. This is the ionomer.
What is the difference between ordinary EMAA and ionomers? Ordinary EMAA is the copolymer state, with free carboxyl groups, processing properties close to EVA, soft and sticky. Ionomers neutralize part of the carboxyl group with metal ions to form ion clusters—these ion clusters act like physical cross-linking points at room temperature, greatly enhancing material strength and toughness; When heated, ionic bonds loosen and can be processed like thermoplastics.
Why do people making foam and cushioning materials use EMAA? Because its cell structure is uniform, resilient, and has a delicate touch, and it has good adhesion to PE, PP, and nylon. EMAA is the domain of EMAA in high-end cosmetic bottle caps, golf ball shells, and midsole foam layers in sports shoes.
In terms of global landscape, this category is highly concentrated. Dow's Surlyn is a pioneering brand in ionomers, ExxonMobil's Iotek is a major competitor, and SK Chem holds a significant share in the Asian market. Together, these three companies account for most of the world's production capacity.
Where does the sub-brand come from? How do you
EMAA classify the sub-brand from recycled materials ? Like other secondary ethylene copolymer sub-brands, these are batches from the same manufacturer and grade that did not fully meet factory inspection standards. But EMAA has a special point: its key indicators are not just melt finger and content, but also neutralization—the proportion of carboxyl groups neutralized by metal ions. A few percentage points difference in neutralization changes the material's hardness and rebound.
The four main sources remain unchanged: starting and stopping the unit, grade switching transition materials, process fluctuation batches, and auxiliary line tail materials. The main risks for EMAA's secondary brands lie in neutralization and acid content—if these two float slightly, the uniformity of the foam cells in the material is affected.
Draw a clear boundary with recycled materials: EMAA's sub-brand is original original polymer particles, with molecular chains that have never undergone secondary heat history; Remixed material is recycled foam product scraps re-pelletized, where carboxyl groups may have already broken down, and some metal ions may have been lost, resulting in uneven pores of different sizes. Think carefully about whether it's cheap or not, it's simply not the same thing.
Dow: Surlyn, the pioneer of the polymer category
Surlyn This brand was first commercialized by DuPont in the 1960s. In 2019, DuPont sold its packaging and specialty plastics business to Dow, and Surlyn is now owned by Dow. No matter how many times the owner changes, Surlyn's brand is the benchmark in the polymer field—cosmetic bottle caps, golf balls, safety glass interlayers, food packaging heat seals, it's everywhere.
Surlyn grade system is classified by acid content and neutralizing metal: sodium neutral is more transparent and harder; zinc neutral is more flexible and has good adhesion. For foam cushioning materials, generally, zinc-neutral grades with medium acid content are chosen, with fine cells and good rebound. Surlyn's secondary brand mainly comes from grad switching transition materials in North American and Singapore units—switching from medium to high acid content, with slight fluctuations in intermediate transition acid content, but the neutralizing metal and ionic bond structure remain unchanged.
Choose a Surlyn secondary brand, first confirm whether it's sodium-neutral or zinc-neutral—if you get this wrong, the foam material feels completely off. Then measure the acid content and melting finger, and match it to your foaming process window. Packaging comes in large and small packages; large packages are suitable for continuous foaming production lines, small packages are suitable for prototyping.
ExxonMobil: Iotek, the second choice besides Surlyn
ExxonMobil's Iotek is Surlyn's main competitor in the polymer market. Grades cover sodium neutralization and zinc neutralization, with acid content ranging from low to high. Iotek's feature is a wide processing window, and its tolerance for temperature fluctuations during extrusion foaming is slightly higher than Surlyn's—which is practical for buffer material factories, meaning workshop temperatures don't have to be so rigidly fixed.
Iotek units exist in both the US and Europe, with sub-brand materials mainly based on process fluctuation batches. Factories making foam sheets use Iotek sub-brand to replace genuine Surlyn, which lowers material costs by a considerable margin. The cell uniformity is slightly inferior to genuine Surlyn, but it is more than sufficient for ordinary cushioning pads and liners. Note: Although both Iotek and Surlyn are zinc-neutralized ionizers, their carboxyl group density differs, so the foaming ratio must be readjusted in the formula and cannot directly copy Surlyn's process parameters.
SK Chemical: A Korean Power, a Key Player in the Asian Market
SK SK Global Chemical is an important supplier in the Asian ionpolymer market, with facilities in both Korea and China. Its EMAA and polymer grades are mainly for packaging and foaming applications, with prices slightly lower than Dow and ExxonMobil, giving it a place in the Asian market.
SK Chemical's sub-brand is characterized by new batches—frequent startup and shutdown of Asian units, and a high proportion of transition materials entering the sub-brand channel. Manufacturers making cushioning materials use SK Chemical's sub-brand for Uchimura and non-exterior parts, which has a clear cost advantage. But note that SK Chemical's isopolymer grade system does not fully correspond to Surlyn and Iotek. Before installation, be sure to run a sample to confirm foaming ratio and rebound rate, and don't directly replace according to Surlyn's formula ratio.
Three pitfalls, don't step into the foam material system
First pitfall: buy sodium neutralization as zinc neutralization. This is the most outrageous pitfall of isopolymer sub-brands. Sodium-neutralized Surlyn is more transparent and hard, while zinc-neutralized is more flexible and sticky. For foaming cushioning materials, you need to be reboundful and soft, but when you buy sodium-neutralized products, the foam sheets are as hard as plastic sheets and their cushioning performance is completely useless. Add a note during sample testing: confirm the neutralizing metal type.
Second pitfall: Acid content does not match the foaming ratio. The acid content in EMAA directly determines the nucleation density of the cells. Cells with high acid content have fine but dense cells; Low acid content has thick but fewer bubbles. If the acid content of the secondary brand is two or three points overwhelmed, your original foaming formula cannot control the bubble structure. Measure acid content before receiving and match your foaming process window
Third pitfall: buying ordinary EMAA as a ionomer. Some suppliers sell un-neutralized EMAA copolymers as secondary brands of ionomers. Unneutralized EMAA has processing performance close to EVA, without ion crosslinking, so the foam material's resilience and strength are much lower. The simplest way to judge: the melt strength of ionizers is significantly higher than that of ordinary EMAA. Just run the machine and you'll know that ordinary EMAA foam cannot withstand bubbles and the bubble holes will burst.
Cologne warehouse in stock | EMAA cooperation
Main recommended brands: Dow, ExxonMobil, SK Chemical.
Main grades: Surlyn, Iotek, SK Chemical EMAA/ionmer.
Packaging Specifications: Small sub-labels and boxed sub-brands use small packaging; large packages/ton sub-labels use ton bags, with packaging and stock sorted according to workshop usage.
Warehouse Stock: EMAA warehouse stock is usually 2000-5000 tons, with small sub-label stocking at 300-600 tons, sub-label containers at 150-300 tons, and large packages/ton stocks at 1500-4100 tons.
Supply Assurance: Batch samples are traceable, with each batch retained as a backup for inspection.
Selection Mnemonic and a case from Suqian .
Choose EMAA secondary brands, remember these five points:
First, identify the neutral metal, sodium or zinc, and choose zinc for foaming buffer.
Second, measure acid content and match your foaming nucleation window.
Third, check melt strength, isopolymer, and ordinary EMAA for easy results.
Four pairs of melting fingers, this is the one that gets stuck in the foaming extrusion process.
Five-point packaging: use large packaging for continuous lines, small packaging for samples.
SuqianYoujia has a client making home appliance cushioning linings. Previously, they used genuine Surlyn zinc neutralization grade for foam sheets, but material costs were high. Later, they switched to ExxonMobil Iotek's zinc neutralization sub-brand, with acid content measured at 18.2% (rated 19%) and melting index measured at 2.8 (rated 2.6). Both were within the process window. When applied to the machine for foaming, the foam uniformity was not much different from genuine brands, with a slight 3% rebound rate, but this grade was more than sufficient for appliance lining. Material cost saved over 800 yuan per ton, and over the year, this item alone saved over 100,000 yuan.
Genuine EMAA polymer holds tens of thousands in bills per container. Recycled EMAA tears easily and doesn't seal, while second-brand EMAA fills the gap between cosmetic inner lids and food sealing layers that require toughness and cost control. Ningbo Kelong New Materials Co., Ltd. has been making imported polymer sub-brand materials for years, with Surlyn, Iotek, and SK Chemical all following the supply. Similar cases happen every year.
Anyone making foam materials, cushioning liners, or cosmetic bottle cap liners—who hasn't been scammed by EMAA? Did the sodium and zinc neutralization get wrong and it's hard like a board? Or is the acid content floating and uneven bubble thickness? Or is it that ordinary EMAA is bought as isopolymer, but the rebound doesn't meet standards?
Information and Data Source
• Dow Surlyn product technical information (Dow official website and Safic-Alcan industry guide, verification date 2026-09-14)
ExxonMobil Iotek product line public information (ExxonMobil Chemical official website, verification date 2026-09-14).
• Dataintelo Global Ionpolymer Resin Market Report (dataintelo.com, verified on 2026-09-14)
• Statsmarketresearch Global EAA/EMAA Copolymer Market Report (statsmarketresearch.com, verified on 2026-09-14)
• 24Chemical Research Ionpolymer Market Competitive Landscape Report (24chemicalresearch.com, verified on 2026-09-14).