빠른 답변: 구매 담당자가 작업 중입니다 waterborne epoxy topcoats usually get a cleaner first shortlist when they stop treating every visible finish problem like one vague silicone-additive request and instead separate three different jobs. 클루미아그® 3512 should move first when the real bottleneck is anti-sticking, blocking resistance, or finished-surface handling in a waterborne epoxy route. 클루미아그® 3467 deserves the earlier screen when the topcoat still shows a compatibility-first crater, fisheye, or pullback problem in the visible film. 클루미크릴® DF-D9904BR is the cleaner first move when the topcoat already can form a film but still is carrying microbubbles, foam carry-through, or pinholes that block an honest surface read.
That is the commercially useful split. This page stays inside the CHLUMICRYL® coating-and-ink-additives direction and does ~ 아니다 drift back to the older photoinitiator cluster. It also is not a duplicate of Longchang’s already-live waterborne topcoat page or the narrower waterborne epoxy anti-sticking page. It is a tighter waterborne epoxy topcoat buyer page for teams that need to decide whether the first sample round should solve finished-film handling, visible crater cleanup, or process-side air management.
Why waterborne epoxy topcoats deserve their own additive page
A waterborne epoxy topcoat sits in a narrower decision lane than a broad waterborne topcoat article. The buyer usually is not asking for a general coating-family overview anymore. The project already is inside an epoxy finish route, and the practical question is which additive deserves the first trial when the cured or near-cured film still sticks in handling, breaks into crater-like defects, or traps enough air to distort the final appearance read.
That creates a different selection problem from the already-live waterborne primer or waterborne industrial pages. A primer page is earlier and more substrate-entry focused. A general topcoat page covers a wider mix of resin routes. A waterborne epoxy topcoat page needs to answer a more specific B2B question around finished-surface handling, compatibility-first visible-film stability, 그리고 air-release discipline inside an epoxy finish process.
General industry framing is kept conservative here. Waterborne epoxy topcoats are commonly valued for visible finish quality, cleanability, and cost-effective surface protection, which makes blocking resistance, crater-sensitive appearance, and trapped-air cleanup practical buying questions rather than decorative side issues. Product-level claims below stay anchored to current Longchang-supported product pages.
What the current company-supported evidence actually separates
- 클루미아그® 3512 롱창의 지원을 받습니다. 다성분 변성 폴리실록산 route positioned directly as a 수성 에폭시 접착 방지제. The current company page supports a recommended dosage of 0.1% ~ 1.0%, direct addition or dilution, dilution with alkanes and aromatics, and use across UV, 용매 및 수성 시스템. That makes it the cleaner first route when the buyer is already inside a waterborne epoxy topcoat and the complaint is about blocking, sticking, or poor finished-surface separation.
- 클루미아그® 3467 롱창의 지원을 받습니다. 다성분 변성 폴리실록산 ~을 위한 UV, 용매 및 수성 시스템. The current company-supported route keeps together 수준 측량, 반분화구, 기판 습윤, and a clear note that it 시스템 호환성을 우선시합니다.. Supported dosage is 0.05% ~ 1.0% of total formulation for solvent systems, 0.5%에서 5%까지 of resin amount for resin modification, and 0.5%에서 5%까지 of total formulation for water-based systems.
- 클루미크릴® DF-D9904BR 지원됩니다 polyether modified polysiloxane compound, silica-free, for 수계 시스템. Longchang directly positions it to prevent microbubbles and pinholes in the coating film of water-based coatings and inks. The supported dosage range is 0.1% ~ 1.0%, and the product page recommends co-solvent-first, high-shear incorporation instead of casual late after-addition.
That is enough company-supported separation to build a real buyer page. The point is not to pretend one additive solves every epoxy-topcoat complaint. The point is to help the buyer choose the first better screening route based on what the waterborne epoxy topcoat actually is failing to do.
간략 비교표: 어떤 경로가 먼저 화면에 나와야 할까요?
| Buyer priority in waterborne epoxy topcoats | 최적의 첫 번째 경로 | 왜 이것이 첫 번째에 있어야 하는가 | 주요 감시 지점 |
|---|---|---|---|
| Blocking, sticking, or poor finished-surface separation after drying or cure | 클루미아그® 3512 | Longchang positions it directly as a waterborne epoxy anti-sticking route with a lower-dose screen and direct-or-diluted addition logic | Avoid casual mixing with other additives and keep the anti-sticking job distinct from crater or bubble control |
| Crater-sensitive breakup, fisheyes, or pullback that still read like a compatibility problem inside the epoxy topcoat | 클루미아그® 3467 | The supported route keeps together leveling, anti-cratering, substrate wetting, and compatibility-first logic | Its current product logic prioritizes compatibility more than refined surface feel |
| The topcoat already reaches the surface, but trapped air still creates microbubbles or pinholes in the visible film | 클루미크릴® DF-D9904BR | Longchang directly positions it to prevent microbubbles and pinholes in water-based coating films | It is not a casual late after-add, and the recommended co-solvent plus high-shear route should be respected |
When CHLUMIAG® 3512 is the better first move
3512 should move first when the waterborne epoxy topcoat already is close enough on laydown, but the finished surface still shows a handling or separation problem. This is the stronger first route when coated parts, stacked panels, or finished surfaces still block, stick, or release poorly after contact.
That matters because a waterborne epoxy topcoat is often judged on what happens after film formation, not only during application. If the visible film looks acceptable at first but fails during handling or contact, a wetting-only or bubble-only route can miss the real bottleneck.
- 첫 화면 사용에 가장 적합한 방법: anti-sticking, blocking-resistance, and finished-surface handling in waterborne epoxy topcoats
- 권장 복용량: 총 제형의 0.1% ~ 1.0%
- 덧셈 논리: direct addition or dilution
- 주요 강점: direct problem-to-product fit because Longchang names it as a waterborne epoxy anti-sticking route
In short, 3512 is the better first move when the buyer already knows the topcoat issue sits in surface behavior after laydown, not in initial crater cleanup or trapped-air control.
CHLUMIAG® 3467이 더 나은 첫 번째 선택일 때
3467 should move ahead first when the topcoat can form a film, but still shows craters, fisheyes, pullback, or other signs that the real bottleneck is a compatibility-first leveling and anti-cratering problem. This route is stronger when the issue is not simply sticking after cure, but unstable visible-film formation during the application and settling window.
That distinction matters in waterborne epoxy topcoats because visible-film defects are often judged more harshly than on lower layers. Longchang’s current product page is useful here because 3467 is not positioned only as a feel additive. The supported route keeps together 수준 측량, 반분화구, 기판 습윤, 그리고 compatibility-first logic.
- 첫 화면 사용에 가장 적합한 방법: crater-sensitive and compatibility-led topcoat screening
- Water-based dosage guidance: 0.5% to 5% of total formulation on the current company page
- 주요 강점: one route that already combines anti-cratering, wetting, and system-compatibility logic
- 주요 주의사항: Longchang says this route prioritizes compatibility, so it is best screened when stability comes before a more refined feel target
So 3467 is the better first move when the waterborne epoxy topcoat still needs a compatibility-first cleanup route before the team decides whether the remaining problem is only anti-sticking or something else.
CHLUMICRYL® DF-D9904BR이 더 나은 첫 번째 선택일 때
DF-D9904BR should move ahead first when the waterborne epoxy topcoat is losing the fight to microbubbles, foam carry-through, or pinholes. In those cases, a better anti-sticking route or broader compatibility route usually will not clean up the panel enough to judge the rest of the package honestly.
Longchang’s product page is direct here. DF-D9904BR is supported specifically to prevent microbubbles and pinholes in the coating film of water-based coatings and inks, and it comes with a process note that matters commercially: the product should enter through a co-solvent step and be added under high shear rather than being treated as a late shortcut.
- 첫 화면 사용에 가장 적합한 방법: persistent microbubbles and pinholes in waterborne epoxy topcoats
- 복용량 안내: 총 제형의 0.1% ~ 1.0%
- 준비 규칙: use the supported co-solvent-first, high-shear route
- Main reason to shortlist it: it solves a different first problem from anti-sticking or compatibility-first crater cleanup
This is the stronger first move when the visible topcoat defect is being limited by air management, not by a missing anti-sticking route or a broader anti-cratering route.
구매자가 샘플을 요청하기 전에 선택해야 할 사항
1. Start with the real first failure in the topcoat
If the finished film still blocks or sticks after contact, start with 3512. If the visible topcoat still breaks into crater or fisheye behavior, move 3467 forward. If the layer already forms but trapped air still is corrupting the finish read, start with DF-D9904BR.
2. Keep handling logic separate from compatibility logic
A topcoat that looks acceptable but still sticks in handling and a topcoat that still breaks into craters are not the same additive problem. Separating those routes early usually makes the first sample round cleaner.
3. Keep air-release cleanup separate from both surface routes
Microbubble and pinhole control are not just smaller versions of anti-sticking rescue or crater rescue. If trapped air is still in the film, it can distort how the team reads every later additive.
4. Respect the system watchpoints
3512 should not be treated as a vague catch-all surface additive. 3467 prioritizes compatibility more than refined feel. DF-D9904BR should not be treated as a late after-add shortcut. Those watchpoints are part of the selection logic, not footnotes.
5. Keep the first trial set small and honest
For many waterborne epoxy-topcoat projects, the cleanest first plan is one 3512 anti-sticking route, 하나 3467 compatibility route그리고 하나 DF-D9904BR bubble-control route. That usually teaches more than forcing several near-neighbor additives into the same opening screen.
이 페이지에서 추천하는 롱창 코스
- Anti-sticking-first route: 클루미아그® 3512
- 호환성 우선 접근 방식: 클루미아그® 3467
- Bubble-control route: 클루미크릴® DF-D9904BR
- 클러스터 개요: 클로미크릴® 코팅 및 잉크 첨가제
- Related broad stage page: How to Choose Additives for Waterborne Topcoats
- 관련 결함 페이지: 수성 에폭시 코팅용 점착 방지 첨가제 선택 방법
- Related broader application page: 수성 산업용 코팅용 표면 첨가제 선택 방법
- 관련 결함 페이지: How to Choose Additives for Coating Fisheyes
- 관련 결함 페이지: How to Choose Additives for Coating Pinholes
자주 묻는 질문
Which additive should I screen first if a waterborne epoxy topcoat still sticks after drying or cure?
Usually 3512, because Longchang positions it directly as a waterborne epoxy anti-sticking route with a practical 0.1% to 1.0% screen and direct-or-diluted addition logic.
When should 3467 move ahead of 3512?
3467 should move ahead when the topcoat can already form a film but still shows crater-sensitive breakup, fisheyes, or pullback that read more like a compatibility and leveling problem than a finished-surface handling problem.
When does DF-D9904BR make more sense than the other two?
It makes more sense when microbubbles, foam carry-through, or pinholes still dominate the visible defect pattern and the process can follow the recommended co-solvent-first, high-shear addition route.
Is this page the same as the waterborne epoxy anti-sticking page?
No. The anti-sticking page is a narrower defect-led page built around anti-sticking routes only. This new page is broader inside the waterborne epoxy topcoat stage and helps buyers decide whether the first issue is handling, compatibility-led crater cleanup, or trapped-air cleanup.
Need a tighter shortlist?
If your waterborne epoxy topcoat project is stuck between finished-film sticking, crater-sensitive visible-film instability, 그리고 microbubble carry-through, stop treating them as the same additive request. Start with the real bottleneck. That usually makes the next CHLUMICRYL® sample decision faster and more commercially useful.