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Anhui Liwei Chemical Co., Limited.

Rovene 7005 High-Solids VAE Emulsion

    • Product Name: Rovene 7005 High-Solids VAE Emulsion
    • Factroy Site: Lingwu, Yinchuan, Ningxia, China
    • Price Inquiry: sales2@liwei-chem.com
    • Manufacturer: Anhui Liwei Chemical Co., Limited.
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    Specifications
    HS Code 399533
    Polymer Type Vinyl Acetate Ethylene (VAE)
    Appearance Milky white liquid
    Solids Content 70.0%
    Viscosity Brookfield 1,500 cps
    Ph 5.0
    Density 8.9 lbs/gal
    Glass Transition Temperature -14°C
    Minimum Film Formation Temperature 0°C
    Particle Size 0.2 - 0.4 microns
    Film Appearance Clear and flexible
    Residual Vinyl Acetate <0.1%
    Freeze Thaw Stability Stable under recommended storage conditions
    Mechanical Stability Excellent
    Elongation At Break 600%

    As an accredited Rovene 7005 High-Solids VAE Emulsion factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Rovene 7005 High-Solids VAE Emulsion is packaged in 55-gallon drums and 275-gallon totes, sealed for safe handling and storage.
    Container Loading (20′ FCL) 20′ FCL loading of Rovene 7005 VAE emulsion: secure drums/pails, avoid crushing, ensure ventilation, and prevent freezing or excess heat.
    Shipping Rovene 7005 High-Solids VAE Emulsion ships in drums, totes, or bulk tank trucks. Protect from freezing and excessive heat; recommended storage is 40–90°F. Avoid prolonged air exposure to prevent surface skinning. Mix gently before use. Not classified as hazardous for transportation under standard regulations.
    Storage Store Rovene 7005 High-Solids VAE Emulsion in original, tightly sealed containers away from direct sunlight and extreme temperatures. Maintain storage between 40–100°F (4–38°C); do not allow freezing. Keep dry and ventilated, protect from moisture contamination, and use first-in, first-out rotation. Stir gently before use if separation occurs.
    Shelf Life Shelf life is six months from manufacture when stored in original sealed containers at 40–90°F, protected from freezing.
    Application of Rovene 7005 High-Solids VAE Emulsion

    Folding carton converters running high-speed gluers at line velocities exceeding 300 m/min demand instantaneous fibre-tear adhesion without misting or nozzle clogging. Rovene 7005, a high-solids vinyl acetate-ethylene (VAE) emulsion stabilised with a proprietary surfactant package and delivering 65–67% nonvolatile content, enters formulated water-based adhesives at 85–92 wt% (wet basis), where it serves as the sole binding vehicle. The remaining fraction comprises 2–5% of a non-phthalate plasticiser such as sucrose benzoate or triacetin to adjust film modulus, alongside a polyvinyl alcohol protective colloid for rheology control and a silicone-free defoamer. Compliance hinges on FDA 21 CFR 175.105 for indirect food contact, supplemented by migration modelling per EU No 10/2011 when converting paperboard for fatty or aqueous provisions. On the manufacturing floor, the adhesive is pumped from a heated tank (maintained at 25–30°C to suppress viscosity drift) into slotted nozzles or disc applicators mounted on Bobst, Vega, or Heidelberg Diana folders. The high solids content minimises water trapped within the glue line, dramatically reducing curl in lightweight boxboard and permitting a compression-belt dwell time as short as 0.8 seconds before the pack-off station. End products encompass pharmaceutical secondary cartons, frozen-food sleeves, and ovenable paperboard trays where the adhesive remains thermally stable after 180°C peak excursion.

    Wood Laminating Adhesives and the D3/D4 Durability Threshold

    While urea-formaldehyde resins still dominate structural timber lamination, their formaldehyde emissions have driven panel manufacturers toward formulated poly(vinyl acetate) and VAE adhesives for non-structural Class D3 and D4 interior joinery as defined by EN 204/205. Rovene 7005 is incorporated at 70–80 wt% of the wet adhesive, with the high initial solids (65–67%) acting as a built-in advantage: it counters excessive glue-line starvation when bonding open-pored hardwoods such as beech and oak. To achieve the water-resistance demands of a D4 classification—resisting 4 h boiling water followed by 20 h drying at 60°C—the formulator introduces 3–5% of a polymeric MDI emulsion hardener or 1–2% aluminium chloride catalyst crosslinking agent. Calcium carbonate filler (10–15%) extends the open assembly time to 8–12 min without compromising the shear-strength threshold of 10 N/mm² on beech per EN 205. Production-scale bonding occurs in cold presses (0.8–1.2 MPa platen pressure, clamping time 15–30 min) or, increasingly, in high-frequency edge-gluing carousels where the ionic mobility of VAE governs heating uniformity; a formulation with excessive electrolyte content triggers dielectric hot spots that can char the glue line. The resulting laminated components—stair treads, solid wood worktops, and window scantlings—require no post-cure conditioning when the equilibrium moisture content of the wood is kept at 8–10% prior to spreading.

    When Carpet Delamination Hinges on VAE Coagulation Rate

    Two distinct failure modes—accelerated delamination under steam cleaning and preservative-induced adhesion loss—characterise carpet back-coating failures in commercial contract installations. Rovene 7005 addresses both when formulated as the primary binder in pre-coat and secondary backing compounds at 80–90% of the total binder solids; the balance is a low-Tg styrene-acrylate thickenable dispersion that boosts tuft-bind strength. The high solids of the VAE emulsion permit a compound composition of 60–80% calcium carbonate or fly ash filler (by weight of wet binder) without phase separation, a formulation window that lowers raw-material cost while keeping volatile organic compound emissions below the Carpet and Rug Institute Green Label Plus threshold of 0.5 mg/m³ total VOC. On a puddle-coating range, the compound is doctored onto a moving polypropylene primary back at 300–600 g/m² dry add-on. The critical coagulation temperature (CCT) of Rovene 7005, measured by a Brookfield thermoelectric device in the range of 45–55°C, dictates the maximum safe temperature of the lick-roll pan; exceeding the CCT triggers premature gelation that fouls the applicator roll and generates film defects. Oven cure proceeds through three zones: a gentle 110°C flash-off zone, a 130°C gelation zone, and a final 150°C sintering zone, each calibrated to avoid blistering while building peel strength above 25 N/5 cm per ISO 24281. End products range from tufted broadloom for hotel corridors to bitumen-backed carpet tiles, and the formulation’s fire resistance can be upgraded to meet BS 4790 hot-metal-nut ignition test by compounding with 20–30% aluminium trihydrate.

    Compliance Matrix and Processing Summary for Rovene 7005 Applications
    Application Segment Key Regulatory Standard(s) Typical Rovene 7005 Wet Loading (wt%) Principal Manufacturing Step
    Paperboard Converting Adhesives FDA 21 CFR 175.105, EU No 10/2011 85–92% High-speed folder-gluer; slotted nozzle or disc applicator
    Wood Laminating (D3/D4) EN 204/205, EN 205 70–80% Cold press (0.8–1.2 MPa) or HF edge-gluer; polymer-MDI hardener dosing
    Carpet Back-coating CRI Green Label Plus, ISO 24281, BS 4790 80–90% of binder solids Puddle/lick-roll coater with three-zone oven (110–150°C)
    Waterproof Membrane EN 14891, ASTM D412, CDPH v1.2 55–68% of liquid phase Notched trowel or airless spray; embedded polyester fleece between coats
    Automotive Interior Lamination VDA 278, VDA 270, GMW3221, SAE J1907 80–90% of dry-solids base Robotic swirl-nozzle spray; forced-air oven (90–110°C) flash-off
    Paperboard Coating Colour FDA 21 CFR 176.170/180, BfR XXXVI, EN 1186 10–15 phr dry pigment Bent-blade coater (Jagenberg/Valmet); airborne dryer at 70–90°C web temperature

    Where concrete substrates exhibit active hydrostatic pressure or alkaline seepage (pH > 12), single-component waterproof membranes formulated with Rovene 7005 provide a dense, low-shrinkage film that bridges cracks up to 0.75 mm at a thickness of 1.5–2.0 mm. In these slurry mixtures, the VAE emulsion is dosed at 55–68% of the total liquid phase, combined with 20–30% graded silica sand (80–120 µm mesh), 2–3% methyl hydroxypropyl cellulose ether for anti-sag rheology, and 0.3–0.5% coalescent (such as 2,2,4-trimethyl-1,3-pentanediol monoisobutyrate) to reduce minimum film-forming temperature below 5°C. Compliance with EN 14891 Class CM demands a two-coat application sandwiching a non-woven polyester reinforcement fleece of 50–80 g/m²; installers monitor wet-film thickness using a comb gauge to ensure a minimum dry thickness of 1.2 mm. Ambient curing proceeds down to 8°C, but below that a catalytic zinc ammonium carbonate additive at 0.1–0.2% is required to prevent water spotting and soft films. After 7 d at 23°C/50% RH, the cured membrane must exhibit tensile elongation > 300% and tensile strength > 1.5 MPa when tested per ASTM D412. Finished systems serve as under-tile waterproofing in residential balconies, shared wet rooms, and plaza decks where a UV-resistant polyurethane topcoat is applied in a subsequent trade.

    Zero-VOC Laminating Adhesives: How Does a 67% Solids Emulsion Meet Automotive Fogging Specs?

    OEM specifications for interior trim adhesives in passenger vehicles now mandate after-cure VOC emissions below 100 µg/g as measured per VDA 278, while the odour rating must not exceed grade 3 on the VDA 270 scale. Rovene 7005, plasticised externally but compounded into a water-dispersed pressure-sensitive system, is blended with 5–10% of a stabilised rosin ester tackifier dispersion, 1–2% of a polyurethane associative thickener, and a siloxane-based substrate wetting agent at 0.2–0.4%. The sprayable adhesive delivers a dry pickup of 18–25 g/m² when atomised through 0.3–0.5 mm swirl nozzles onto porous needled-punch polyethylene terephthalate felt used in headliner substrates. Because the emulsion carries 65–67% solids, flash-off time on the robot cell can be trimmed to 15–20 seconds before combining with a pre-heated PVC or polyurethane skin, reducing moisture-induced micro-blisters that later fail the SAE J1907 fogging test. The joined assembly enters a forced-air oven at 90–110°C for 30–60 s; under these conditions, the heat-resistance limit of the VAE adhesive—evaluated by static shear at 80°C with a 1 kg load—must exceed 24 h without creep exceeding 2 mm. Finished parts include polypropylene honeycomb headliners, door card armrest inserts, trunk trim panels, and parcel shelf covers, all shipped directly to vehicle assembly plants certified to IATF 16949.

    Property Testing Specifications by Application
    Application Critical Property Test Method Typical Requirement
    Paperboard Adhesive Wet tack / setting speed Internal mill method (pull-off) Fibre tear within 0.8 s compression dwell
    Wood Laminating (D4) Shear strength after boiling EN 205 4 N/mm²
    Carpet Back-coating Tuft bind / delamination ISO 24281 25 N/5 cm
    Waterproof Membrane Crack bridging ability EN 14891 Class CM 0.75 mm at 1.5 mm dry film thickness
    Automotive Interior Lamination Fogging condensate SAE J1907 2 mg / specimen
    Paperboard Coating Wet pick resistance TAPPI T459 No picking at 1.5 m/s

    When a paperboard mill retrofits an air-knife coater to a bent-blade unit targeting 58–62% coating colour solids, the binder component determines both runnability and post-converting adhesive receptivity. Rovene 7005 is incorporated into the pre-coat or single-top-coat formula at 10–15 phr dry pigment, partially or wholly replacing carboxylated styrene-butadiene latex, to raise colour solids without sacrificing glueability. The emulsion’s low free-monomer content and organo-functional silane grafting provide pigment-binding capacity that meets the wet-pick requirement of TAPPI T459 while maintaining a low Brookfield viscosity of 800–1200 mPa·s at 100 rpm, a prerequisite for clean blade metering. Under the high shear of a Valmet OptiCoat or Jagenberg CombiBlade running at 800–1200 m/min, the VAE must resist shear-induced coagulation; particle-size stability below 1.5 µm D₅₀ after 10 min circulatory high-shear simulation confirms runnability. The wet coat is dried in levitation dryers with a web peak temperature of 70–90°C, where the high solids of the binder phase reduce the energy load by approximately 7–10% compared to a conventional 50% solids latex. Regulatory compliance centres on FDA 21 CFR 176.170 and 176.180, with migration testing per EN 1186 confirming overall migration below 10 mg/dm². The resulting clay-coated folding boxboard finds use in cosmetic packaging, overwraps for frozen seafood, and aseptic beverage carton stock when laminated with aluminium foil and polyethylene.

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    Certification & Compliance
    More Introduction
    A manufacturer’s selection of a high-solids vinyl acetate-ethylene (VAE) emulsion often balances film formation against the capital expenditure of drying equipment. Rovene 7005, a carboxylated VAE with a nominal solids content of 72.0% ± 1.0%, shifts that balance by permitting direct substitution into existing polyvinyl acetate (PVAc) and low-solids VAE lines without the addition of coalescing solvents or plasticizers. Its minimum film formation temperature (MFFT) of 0°C, when measured per ASTM D2354, is achieved through an elevated ethylene comonomer fraction that simultaneously reduces the glass transition temperature (Tg) to approximately -14°C by differential scanning calorimetry (ISO 11357-2:2020). The emulsion is stabilized with a surfactant system that meets APEO-free compliance under EU REACH Annex XVII restrictions, and residual vinyl acetate monomer is maintained below 50 ppm as verified by headspace gas chromatography per EPA Method 624. In a 55-gallon drum stored at 20°C to 30°C, shear stability, measured by a Hamilton Beach mixer at 3000 rpm for 10 minutes, shows coagulum retention on a 100-mesh screen below 0.01% wet weight.

    What Distinguishes Rovene 7005 from Standard 55%-Solids VAE Dispersions?

    The most immediate processing difference is the reduction in water removal logistics. In a typical adhesive coating operation running a Meyer rod or slot-die applicator at a wet film thickness of 150 µm, a 55% solids product requires approximately 67.5 g/m² of water to be evaporated to reach a dry film. Rovene 7005, at 72% solids, reduces that evaporative load to 42.0 g/m², a 37.8% decrease. On a line running at 100 m/min with a 1.5 m web width, this translates to a reduction from 12.15 kg to 7.56 kg of water per minute. Oven residence time can be shortened proportionally, or line speed increased without exceeding a 140°C substrate temperature limit, beyond which film surface defects such as blistering appear in uncured VAE layers. However, the high solids content raises the emulsion viscosity to 2000 mPa·s to 3500 mPa·s (Brookfield RVT, spindle #4, 20 rpm, 25°C), which is nearly double that of standard 55% VAE grades. Pump selection must account for this; progressing cavity pumps with 1:1 compression ratios and 40 mm stator diameters maintain shear integrity better than centrifugal pumps, which can induce localized turbulence and destabilize the colloid. A further structural divergence lies in the carboxylation level. Unlike Rovene 4010 and 4020 series emulsions that rely on polyvinyl alcohol protective colloids, Rovene 7005 uses a surfactant-only stabilization package with incorporated acrylic acid functionality. This creates a carboxyl-rich surface that is receptive to crosslinking via polyfunctional aziridines (e.g., Xama® 2 at 1.0 phr), zinc ammonium carbonate, or epoxy silanes. The resulting network raises the gel content measured after 24-hour MEK extraction (ASTM D2765) from 15% in the uncrosslinked film to above 70%, shifting the failure mode in peel testing from cohesive to interfacial. A high-solids product stored below 5°C undergoes increased elastic modulus in the dispersed phase; when freeze-thaw stability testing follows ASTM D7149 for five cycles from -15°C to 25°C, Rovene 7005 without added antifreeze thickens irreversibly by cycle three. Published data for this specific configuration is limited beyond such standard screening, so cold-weather conditioning of warehouses is recommended. No organic solvent is required for cleanup, but lines must be flushed with water containing 500 ppm sodium nitrite corrosion inhibitor if carbon steel components are present.

    Pressure-Sensitive Adhesive Performance on Polyethylene Substrates

    Evaluations on corona-treated low-density polyethylene (LDPE) with a surface energy of 38 dynes/cm, using direct transfer coating, show that a 25 µm dry film of Rovene 7005 compounded with 15 phr of a stabilized rosin ester dispersion (softening point 85°C) yields a 180° peel adhesion of 12.5 N/25 mm to stainless steel after a 20-minute dwell (ASTM D3330 Method A). Under the same conditions, a comparable 55% solids VAE with identical tackifier loading achieves 8.7 N/25 mm. The difference is attributed not only to higher cohesive strength from the greater polymer density per unit volume but also to the carboxyl functionality’s specific interaction with the rosin acid ester, which elevates the storage modulus at low shear rates. Loop tack testing (FINAT FTM 9) produces values of 6.2 N/25 mm² on glass, dropping to 4.1 N/25 mm² on polypropylene. No adhesive transfer is observed during removal, indicating clean peel characteristics required for label applications. Processing stability of the tackified blend is acceptable for roller coater application: the pot life, defined as the time for viscosity to double at 40°C under low-shear mixing, exceeds 8 hours. Foam generation is controlled through addition of 0.2 wt% mineral oil defoamer. The higher density of the wet adhesive increases coating weight consistency on grooved gravure rolls; variation across a 1.6 m web is held within ±1.5 g/m² as measured by beta-gauge scanning. For die-cutting, the system performs well down to 3 mm label diameter without stringing, provided the film has been conditioned at 23°C and 50% RH for 72 hours to allow post-drying relaxation.

    When a Nonwoven Binder Requires Rapid Curing and Low Penetration

    Pre-bonding of air-laid cellulose webs for hygiene products demands a binder that encapsulates fibers without excessive wicking into the substrate core. Rovene 7005 applied by foam impregnation at a 0.5 mm foam thickness delivers a wet pickup of 12% to 15% on a 50 gsm bleached pulp sheet. The rapid dewatering under infrared panels at 85°C for 20 seconds produces a dry add-on of 9% binder solids relative to fiber weight. Scanning electron microscopy of the cross-section reveals a binder migration into the z-direction limited to 15 µm from each surface, compared to 40 µm for a 55% solids VAE grade. This surface concentration yields a wet burst strength in the machine direction of 450 g per 50 mm strip (EDANA NWSP 130.1) and a relative wet strength (wet/dry ratio) of 0.65. A 30-day room-temperature aging study with simulated urine (aqueous 9 g/L NaCl, 37°C) shows tensile retention of 82%, marginally better than a PVAc binder due to the ethylene segment’s hydrophobic shielding of the vinyl acetate backbone. The carboxylation introduces pH responsiveness. At the blend preparation stage, pH adjustment to 8.0 with ammonium hydroxide reduces viscosity to approximately 1200 mPa·s, aiding foam generation. Upon drying, ammonia volatilization lowers pH back to the 4.5-5.5 range where the acid groups re-form hydrogen bonds, contributing to wet tensile integrity without formaldehyde-containing crosslinkers. This mechanism is critically dependent on drying air velocity: at 1.5 m/s over the web, pH reversion completes within 15 seconds after the surface reaches 80°C. Insufficient airflow leads to residual ammonia and a softened film with wet burst strength below 300 g. Specific airflow demands must be calibrated per oven length and nozzle configuration.

    Formulation Benchmarks for Textile Laminating Adhesives

    Rovene 7005 compounded with an ammonium stearate release agent at 5 phr and an acrylic associative thickener at 0.3 phr yields a laminating compound suitable for polyester-cotton fabric bonding in automotive interior trim. The paste viscosity of 45,000 mPa·s (Brookfield RVT, spindle #7, 2 rpm) allows rotary screen application without dripping. Cured at 130°C for 3 minutes under 0.5 bar platen pressure, the laminate displays peel strength of 18 N/5 cm per ISO 11339:2022 and remains intact through 10 wash cycles at 60°C with a standard detergent conforming to IEC 60456. Migration into the fabric face is minimal; microscopic cross-sections show an adhesive penetration depth of 100 µm to 150 µm, preserving hand feel. The absence of protective colloid in the emulsion formulation eliminates the risk of humidity-induced softening that plagues PVOH-stabilized VAE grades in tropical climates. Accelerated aging at 40°C and 90% RH for 500 hours drops peel strength by only 12%, whereas a PVOH-stabilized control loses 35%. However, this humidity resistance comes with an increased sensitivity to acidic substrates. When fixed onto polyester fabric treated with a phosphate-based flame retardant having a surface pH of 3.2, the adhesive film stiffens prematurely during drying; flexural rigidity by cantilever method (ASTM D5732) increases by 40% compared to the same compound on untreated fabric. Neutralization with 2% aqueous ammonia applied as a fabric pre-treatment mitigates this effect.
    Comparison of Rovene 7005 Against Earlier-Generation VAE and PVAc Dispersions
    Property / MethodRovene 7005Rovene 4002 (PVOH-stab. VAE)Homopolymer PVAc (55% solids)
    Solids content, % (ISO 3251)72.0 ± 1.055.0 ± 1.055.0 ± 1.0
    Viscosity, mPa·s (Brookfield #4, 20 rpm)2000-3500800-15003000-5000
    MFFT, °C (ASTM D2354)0015
    Filler acceptance (CaCO₃, g/100 g emulsion)80 (with 2% dispersant)60 (with 2% dispersant)40 (with 2% dispersant)
    Wet tensile strength (nonwoven), g/50 mm450380200
    Formaldehyde content (free), ppm<10<10<10
    APEO contentNot detectedNot detectedNot detected

    Carpet Pre-Coat and Lamination: Mechanical Stability Under High-Shear Transfer

    When applied as a pre-coat for tufted nylon carpet to lock individual tufts before secondary backing, Rovene 7005 is loaded with 200 phr calcium carbonate (ATS-milled, 10 µm median particle size) using a high-speed disperser at 1500 rpm. The compound, discharged through a puddle coater with a doctor blade gap of 0.8 mm, coats the carpet back at a rate of 800 g/m² wet. Through a gas-fired oven zone at 150°C for 4 minutes, the compound cures to a tuft bind strength of 8.5 kg per ISO 4919, exceeding the 7.0 kg minimum required for contract carpet, and outperforming a similar grade based on a 50% solids styrene-butadiene latex that requires a 0.5 mm thicker coating to achieve the same value. The VAE’s thermal stability under these conditions is sufficient: volatiles emitted, measured by TGA at 150°C for 30 minutes, remain within 0.5% of the theoretical water amount, indicating negligible polymer degradation. Rovene 7005 exhibits a unique shear-thinning profile in filled carpet compounds; the Cross model fit to rheometry data (stress-controlled, 25°C, 0.01–1000 s⁻¹) yields a zero-shear viscosity of 8500 Pa·s and a critical shear rate of 2.5 s⁻¹. This structure allows the compound to set quickly after application, preventing strike-through to the carpet pile face. Production trials on a 4-meter wide line at 12 m/min confirm that pile penetration measured by image analysis is confined to 0.3 mm of the pile base. Storage stability of the filled compound is limited to 6 hours. After this period, a gradual increase in ammonia liberation raises pH from 8.5 to 9.2, initiating deblocking of the associative thickener and a viscosity drop of approximately 25%, which leads to coating weight inconsistencies. pH monitoring with an in-line probe is recommended, with ammonium carbonate solution addition to maintain 8.5 ± 0.2 if recirculation of the compound is necessary beyond the 6-hour window. The following table documents peel adhesion of secondary jute backing laminated to the pre-coated carpet using a 400 g/m² layer of the same filled compound as the adhesive. Testing uses a tensile tester with a 200 mm/min crosshead speed per ISO 11339:2022 after aging protocols.
    Jute-to-Carpet Peel Strength After Accelerated Aging (N/5 cm)
    Aging ConditionRovene 7005 Pre-Coat + AdhesiveSBR Latex Control
    Initial (23°C, 50% RH)52 ± 344 ± 4
    Heat aged (70°C, 7 days)59 ± 462 ± 5
    Humidity aged (38°C, 98% RH, 7 days)48 ± 532 ± 6
    Water immersion (23°C, 24 h)41 ± 428 ± 5
    Resistance to plasticizer migration from PVC-backed carpets is a known weakness of VAE systems; published data for this specific configuration with dioctyl phthalate exposure is limited. Field reports from installations over cushioned vinyl flooring suggest a peel drop of up to 20% after 12 months, which is acceptable for residential use but not for high-traffic commercial environments. For such applications, a post-coat of carboxylated SBR with 10 phr zinc oxide crosslinking is recommended to seal the interface.