缓冲包装用什么改性PP?气柱袋与气泡膜两条赛道怎么分

应用领域 发布时间: 2026-09-12 4533 阅读

Which modified PP is used for cushioning packaging? Let's clarify one thing first: the base materials for air column bags and bubble wrap are PE-based and PA/PE co-extruded films, not modified PP. This article discusses the division of the two tracks — the film type relies on barrier layers to maintain pressure, while the foamed type and rigid structure type fall under the PP system; it also provides a criteria table, verification sequence, and boundaries.

The air column bag deflated after just two weeks.

A purchaser who exports alcohol said this to me. The latter part is: if a box falls, the few air columns at the corners all burst, and the bottles still break.

Two complaints, two mechanisms. Deflation is a slow leak of gas, bursting is when the membrane is pierced or the edge seal breaks first. Looking at them separately, you can only then talk about material selection.

But what should be mentioned first is that the base material of air column bags and bubble film is not modified PP.

The main materials of bubble wrap are low-density polyethylene (LDPE) and linear low-density polyethylene (LLDPE); the base material of inflatable column bags is a multilayer co-extruded film of PE and PA (nylon), with the nylon layer acting as a gas barrier and the PE layer for heat sealing. What determines whether it 'can last until delivery' is the gas barrier layer, not the total thickness.

Modified PP has no place in these two types of film parts. Its place is in two other tracks: foamed cushioning parts and rigid structural cushioning parts.

The film substrate in this direction follows the channel between petrochemical plant film materials and film blowing factories, and is not a product of modified pelletizing lines; what can participate are the modified particles in the barrier co-extrusion layer, the modified side of the foaming system, and compatibilizers.

1. The six dimensions of operating conditions for cushioning packaging: Pressure holding is calculated weekly, not 'just fill it up'.

Conclusion first: the most easily overlooked dimension in six dimensions is 'lifespan' — the lifespan of a buffer part is not calculated by years, but by the number of weeks 'from inflation to unboxing.' When this cycle changes, the pressure maintenance threshold changes accordingly.

DimensionActual operating conditionsRequirements for the materials
TemperatureIn summer, the temperature inside containers can remain above 60°C for long periods; the commonly used range for air column films is usually −20°C to 60°C for one grade; cold chain items are transported at −18°C level.High temperatures accelerate gas permeation; low temperatures require the membrane not to become brittle
LoadCommon single-column static load capacity ≥50 kg, excellent grade ≥70 kg; stacking usually 3 layers or more for several weeksPressure resistance relies on the column diameter and internal pressure design, as well as the creep resistance of the membrane.
MediumMarine transport with high humidity (RH 85%), contents of oils and solvents, metal edges and bottle cap teethMoisture-resistant, content-resistant, puncture-resistant
LifespanFrom inflation to receipt, calculated by week: within 7 days, 7–28 days, and over 28 days; public information shows a specification of '50μm grade nylon co-extruded film keeping air at room temperature for more than 60 days' (Grade B, single source)The pressure-holding threshold is determined by the longest section.
AppearanceYou need to see the contents clearlyTransparency and Haze (GB/T 2410)
ComplianceFood components comply with GB 4806.7-2023; electronic components should be anti-static, with surface resistance generally agreed to be in the range of 10⁶–10⁹ Ω.Compliance is an entry requirement, not an extra credit.

Table Note: Load-bearing, temperature range, and gas retention duration are paraphrased from publicly available corporate technical data (Class B), used to indicate scale; specific thresholds must be included in the acceptance criteria.

First look at "lifespan," because it will modify the weights of the other five dimensions. The same bag being shipped by express for 7 days and by sea for 60 days does not have the same pressure retention threshold—the former is evaluated based on a 24-hour pressure drop, while the latter requires separate thresholds according to 7-day and 28-day retention rates. Pressure retention data must also include the test conditions to be meaningful.

2. Comparison of material routes: thin film, foam, and rigid structure categories, each track managing a segment of goods

Conclusion first: The three routes are not solving the same problem, so there is no 'which is better,' there is only 'which segment your batch of goods falls into.'

RouteMain materialWhat does it rely on to work?Compatible load and drop heightThe position of PP
① Film-type cushioningSingle-layer PE (LDPE/LLDPE) film; or multilayer co-extruded film of PE and PA (typically 7 layers: PE-PE-TIE-PA-TIE-PE-PE), EVOH can also be used as the gas barrier layerThe inflatable air columns and bubbles provide cushioning stroke; the pressure holding relies on the gas barrier property of the gas layer.Light to medium-heavy (a few kilograms to over ten kilograms), the drop height is determined according to the packaging level and the weight of a single itemBasically no position (TIE layer compatibilizer direction)
② Foam CushioningEPP bead-molded parts, foamed PP sheetsThe foam pore structure compresses to absorb energy, with the plateau region controlling the transmission of the peak value.Medium to heavy, reusable parts; high drop height or repeated impactPP series home court
③ Rigid structure cushioningPP hollow board, PP honeycomb board (glass fiber reinforced panel can be added)Structural stiffness and plane compression depend on the structure rather than the deformation of the material itselfLarge flat surfaces, high stacking, turnover scenarios requiring rigidityPP series home court

Text version of the conclusion: The watershed is 'deformation space' and 'whether it is reused.' Small space, a single pass tends to be thin-film type; sufficient space and reusable tend to be foam type; if flat and crisp is required, it goes for rigid structure type. Among the three routes, modified PP stands on the latter two.

2.1 The true positioning of PP: the film does not rely on it, the bubbles and structure rely on it

The pressure-holding ability of air column bags comes from the gas barrier layer, not from the PE layer. The barrier property of PE is average; what resists slow leakage is the nylon layer or EVOH layer incorporated in the composite. According to publicly available corporate technical data: compared with ordinary single-layer PE film, multilayer co-extruded nylon structures reduce oxygen permeability by more than 65% (Grade B, single source). Therefore, "thickening" is not the correct solution for pressure retention.

The substrate of this channel is determined jointly by the membrane material grade from the petrochemical plant and the film-blowing factory. Customers are buying film rolls or finished bags, with performance targeting the whole roll — it cannot be connected to the modified granulation line, nor should it be.

The foaming approach relies on the cell structure, not on the material's strength or hardness. Public industry data provide a comparable magnitude: at the same density, EPP products can reach a compressive strength of over 1.5 MPa, while traditional foams are usually around 0.5 MPa; after more than ten thousand cycles of compression, the rebound rate can still maintain over 95% (Grade B). The rigid structure approach is similar—according to publicly available product data, PP honeycomb panels have a compressive strength around the 1.5 MPa level (Grade B), and stacking is evaluated according to the static load stacking method of GB/T 4857.3-2008.

Daring to challenge a common practice: thinking that 'the thicker the film, the longer it maintains pressure' is the most widespread mistake with this type of part. The determining factor for maintaining pressure is the gas barrier property of the barrier layer (gas permeability coefficient), not the total thickness. Increasing thickness only slightly delays the absolute amount of leakage while simultaneously increasing material usage, weight, cost, and haze. There are only two effective approaches: increase the barrier layer (PA/EVOH composite) or switch to a foamed cushioning part with a cellular structure.

3. ★ Selection Criteria Table: Pressure holding is the first criterion, with verification methods provided for all seven indicators

Conclusion first: the first item on this table is the first criterion for the air column bag—holding pressure; what should be paid more attention to is the third column, 'how to measure,' not 'what to measure.'

IndicatorThreshold Value (Typical)Verification Method · Standard NumberCommon FailuresCommon solution
Pressure holding (pressure decay after inflation)According to the 'time standard', the allowable pressure drop is 'agreed as follows: the common public enterprise standard for a 24-hour natural leakage rate is ≤5%, and the premium grade is ≤3% (Grade B); for long-term periods, the retention rate for 7 days / 28 days is determined separately.After filling to the specified internal pressure, let it sit and read the value, recording the pressure drop at 24 hours / 7 days / 28 days; state adjustment according to GB/T 4857.2-2005The delivered goods are already deflated; the batch pressure reduction is highly variableAdd a resistance gas layer; improve the consistency between edge sealing and the valve diaphragm
Puncture ResistanceThere is no unified national standard threshold; it must be agreed upon in the acceptance conditions according to the sharpness of the contents and the membrane structure.Puncture test (spherical or conical puncture head penetrates at a constant speed, recording the maximum force), referring to ASTM F1306 caliber (Class B)Corner gas column explosion; leakage at edges and cornersMulti-layer structure: outer layer PE thickened; reinforced corners
Tensile strength and elongation at breakAccording to public company standards, MD ≥28 MPa, TD ≥26 MPa is grade B; what really matters for film components is the elongation at break.GB/T 1040.3-2006 (Test conditions for films and sheets; 2026 version has been released, effective from 2026-12-01); interlayer peeling according to GB/T 8808Burst when inflating; delamination between layersSelect a PE system that matches the stretch and elongation rate; review the TIE layer
low-temperature flexibilityRe-test tensile strength and elongation after low-temperature pretreatment; reference standard: PP type low-temperature parts often follow the requirement of ≥93 J/m for −20°C cantilever beam notched impact (Grade B)Retested after low-temperature pretreatment; compared with GB/T 1843 cantilever beam methodBrittle cracking during winter transport; film becomes hard and does not reboundSwitch to a system that is more resistant to low temperatures and move towards higher ethylene content.
Drop and Stacking (Full Carton)The drop height is determined according to the packaging grade and the weight of a single item, commonly 0.9–1.2 m grade; stacking is based on 1.5 times the rated load for 24 hours, with deformation ≤5% as the agreed standard.Drop according to GB/T 4857.5-1992; stacking according to GB/T 4857.3-2008 or GB/T 4857.4-2008; horizontal impact according to GB/T 4857.11-2005The single item passed the test, but the entire box still failed.First, prepare the test outline according to GB/T 4857.17-2017, then arrange the items.
Anti-static (electronic components)Surface resistance is usually specified at the 10⁶–10⁹ Ω range; in public materials, anti-static bubble wrap also has a 10⁹–10¹¹ Ω range specification.Refer to GB/T 1410 caliberElectrostatic breakdown device, cannot be seen from the outsideAnti-static system: first determine who will bear it
Food Contact Compliance (Food Parts)Total migration ≤10 mg/dm², etc. (GB 4806.7-2023)GB 4806.7-2023The entire batch was returned due to missing compliance documentsFood-grade raw materials Finished product inspection report

Text version conclusion: Pressure holding is a veto item—it’s just that, without it, all subsequent full-box tests don’t need to be done. Low-temperature flexibility is most often missed: ambient temperature data looks fine, but a batch of goods is exposed in winter. The last two items are entry requirements: without anti-static data or compliance documents, no matter how good the performance is, the supplier cannot be listed.

4. Common Failures and Root Causes: Four Phenomena, Two Arising from 'Assumptions'

Conclusion first: Among the four types, three are not due to 'insufficient membranes,' but rather due to incorrect criteria, wrong methods, or incorrect timing.

Failure 1: The goods were already deflated upon arrival. The root cause should be checked in three areas — the air barrier structure, the edge sealing and the valve membrane, and whether the pressure-holding threshold is set according to the longest transportation cycle. Check the first two areas first, then discuss replacing the membrane; reversing the order would waste several rounds of replacement.

Failure Type 2: It bursts with a single drop, with the break concentrated at the corners. The root cause is mainly puncture, not tension. Corners are areas of combined stress and puncture concentration, and increasing tensile strength does not solve the problem.

Failure Three: Concentrated outbreak of cargo damage during the cold season. The root cause is that the film hardens and the elongation rate decreases at low temperatures, consuming the cushioning stroke. It must be redone under low-temperature conditions, not just applying a discount to the room temperature data.

Failure Four (Daring to challenge a common practice): Believing that 'as long as the cushioning component doesn't break, it's fine.' The function of the cushioning component is to reduce the impact acceleration to a level that the protected item can withstand. Only testing 'whether it breaks or not' will miss the worst-case scenario—packaging remains intact and the air column hasn't burst, but the peak acceleration transmitted to the product has already exceeded the limit, and the contents inside are already damaged. Whole-box testing should record both whether the packaging is damaged and whether the contents are damaged.

5. Verification sequence: first check the appearance and transparency, pressure holding is placed at the fifth level

Conclusion first: the verification sequence is three stages: 'Material Entry Items → Finished Product Pressure-Holding Items → Complete Box System Items'; if the sequence is reversed, the most expensive failure will occur in the last step.

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① Appearance and Transparency Haze and Light Transmittance (GB/T 2410); Presence of Crystal Points or Wrinkles on the Film Surface

↓ Unable to see the contents clearly or abnormal membrane surface → Return to co-extrusion structure and rapid cooling process

② Tensile and Elongation at Break GB/T 1040.3-2006, performed in both longitudinal and transverse directions; elongation is more critical than strength

↓ Insufficient elongation → Return to PE system and layer ratio

③ Puncture Resistance According to the puncture test caliber; re-measure at the actual contact position of the corner

↓ However → Revert to outer structure and column diameter design

④ Low-temperature flexibility Retest tensile strength and elongation after low-temperature pre-treatment

↓ Excessive attenuation → Revert to a system more resistant to low temperatures

⑤ Inflation and pressure maintenance: Inflate to the specified internal pressure, keep at constant temperature and humidity, and read the pressure drop at 24 hours / 7 days / 28 days

↓ Pressure drop exceeds the threshold → Return to gas barrier layer structure, edge sealing, and valve diaphragm

⑥ Full carton drop and stacking GB/T 4857.5-1992 Drop test; GB/T 4857.3-2008 / 4857.4-2008 Stacking test

↓ Interior damage → Return ③ and ⑤, reallocate the number of columns and internal pressure

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The two most commonly skipped steps: skip ①② and go straight to making the finished bag ⑤, leaving side issues with the materials to be exposed on the finished product side; skip ⑤ and go straight to ⑥, where a single failure results in the cost of the entire batch of samples.

6. Reverse honesty: These types of demands should be directly directed to petrochemical plants and membrane manufacturers; we can't handle them.

Conclusion first: The main body in this direction is not on the modified granulation line. It's more useful to clarify this sentence first than to just directly accept an order.

The situation that occurredWhy did it fall to another channelWho should I find?
Only purchase base film materials (single-layer PE film, PA/PE coextruded film, EVOH coextruded film)Film material is a grade system designed by petrochemical plants for blown film, not the product form of the pelletizing line.Petrochemical Plant / Membrane Material Trader
Require full-process blown film production (formulation — film blowing — slitting — bag making)The flow channel, rapid cooling, and winding in film blowing are a separate set of equipment systems from granulation.Blown Film Factory / Bag Making Factory
Require 'full roll performance commitment' (full roll pressure, full roll haze, full roll thickness tolerance)The object of the commitment is the film roll itself, and the responsible party can only be the film manufacturer.Film factory
Require food contact compliance documents or full-box transportation certification (GB 4806.7-2023 report, ISTA 3A type procedure)One corresponds to the terminal product, one corresponds to the packaging systemFilm Factory / Bag Manufacturing Factory / Testing Organization

We do not take on this part, nor do we pretend we can. Explaining this clearly to the client actually makes them more willing to hand over the part we can handle. For EPP beads or steam-formed parts, go through the foam material factory and the foam forming factory.

There are three areas that can be involved: ① The gas barrier co-extrusion layer and compatibilizer direction — using compatibilizers such as maleic anhydride-grafted polyolefins for the adhesive (TIE) layers in multilayer co-extrusion; ② The modification side of the foaming system — in terms of foamed substrate and high melt strength, while bead pre-foaming, aging, and in-mold forming fall within the professional scope of foaming factories; ③ The substrate of rigid structural panels, as well as the directions of anti-static and weather-resistant functional masterbatches.

A piece of experience: For inquiries in this type of extension direction, first distinguish whether the customer wants film rolls or particles. For those who want film rolls, directly refer them to the film factory; for those who want particles, that's when it comes to our turn.

7. Material Change Risk List: Film extrusion and co-extrusion, it’s the flow channel that moves, not the mold

Conclusion first: The risk of material change for film parts is concentrated in the 'co-extrusion structure' and 'cooling and winding' areas, which are a different list from the shrinkage rate and gate of injection-molded parts.

Items to moveWhat needs to be confirmedWhat will happen if I don't do it?
Extrusion temperature windowThe melt temperature ranges of each co-extruded layer do not overlap, especially between the PA layer and the PE layer.Interlayer instability, crystal spots, broken membrane
Co-extrusion layer structure and flow channelWhether the number of layers, layer ratio, distributor, and die head support the target structureThe gas barrier layer is thin or discontinuous, and the pressure maintenance directly fails to meet the standard.
Cooling (quench roll)Roll temperature and line speed determine the crystallization state and surface qualityIncrease in haze, uneven film surface, narrowing of the heat-sealing window
Rewinding tensionTension must match the roll diameterWrinkles and stretching residue, local rupture occurs first when inflated
Interlayer compatibilityTIE Layer Number and Layer RatioInsufficient peel strength (GB/T 8808), delamination of composite layers
Heat Sealing and Valve MembraneConsistency between heat sealing temperature window and check valve diaphragmThe leak point starts from the edge sealing
Verification orderAppearance and haze → Tensile and elongation → Puncture resistance → Low-temperature flexibility → Inflation and pressure retention → Full-case drop and stackingAll the risks are pushed to the point of the full-scale test explosion

Text version conclusion: Changing materials involves adjustments in four areas: extrusion temperature, co-extrusion structure, cooling, and winding, among which the verification sequence should still be discussed first. Skipping the material entry step and going straight to a full-box trial means using the cost of a full-box sample to discover a problem that can be detected from the film itself.

8. One-page report comparison table: The selection of cushioning packaging can be directly pasted into the PPT

Conclusion first: there is only one criterion—to determine whether the client can use this sheet to finalize the route in a single meeting.

SceneRecommended RouteKey indicatorsVerification StandardConditions that need to be confirmed first
Glass bottles, alcoholic beverages, and other heavy items, with bottle capsFilm type: PA/PE multi-layer co-extruded air column bagPressure holding pressure drop Puncture resistance Single-column load-bearingPressure drop reading under GB/T 4857.2-2005 conditions; full box drop according to GB/T 4857.5-1992Single item weight, bottle cap teeth, transportation cycle
3C small items, light goods, short distanceFilm types: single-layer PE air column film or bubble filmElongation at break HazeGB/T 1040.3-2006; GB/T 2410Storage period, whether it needs to be transparent
Precision electronic components, require anti-static protectionFilm type: Antistatic film Air column structureSurface Resistance Pressure HoldingRefer to GB/T 1410 caliber Pressure holding and static readingIs electrostatic protection handled by the packaging or by the carrier?
Heavy, requires multiple handling, large stackingFoamed products: EPP bead molded parts / foamed PP sheetsCompressive Strength Compressive Permanent Deformation Retention Rate After RecompressionGB/T 1041-2008; re-test after recompressionNumber of reuse times, number of stacking layers
Large flat surface, requires stiffness and planar pressure resistanceRigid structures: PP hollow sheet / honeycomb panelFlat crush strength Bending modulus Creep deformation under stackGB/T 1041-2008, GB/T 9341-2008, GB/T 4857.3-2008Number of stacking layers, storage duration
Cold Chain and Low-Temperature TransportationA more stable system at low temperatures; re-test pressure holding under low temperature conditionsLow temperature flexibility Low temperature pressure holdingRetest after low-temperature pre-treatmentMinimum temperature, transport duration

Textual Conclusion: Don’t cram the three things 'pressure maintenance, puncture resistance, low temperature' into the single phrase 'good quality'—each of the three should have its own threshold and its own method. The most useful part is the last column, as it determines whether promises can be fulfilled when reported.

9. The most likely to have problems in this direction is often not the material

The two most concentrated types of failures in this area are deflated packages upon arrival and corner bag bursts, and most of the time, the cause is not 'the film isn’t good enough.' Public technical materials explain pressure retention quite directly: the ability to retain pressure depends on the barrier properties of the gas barrier layer—compared to a single-layer PE film, a multilayer nylon co-extruded structure can reduce oxygen permeability by more than 65% (B grade, single source). As for punctures, they mostly relate to structural design: column diameter, number of columns, outer layer thickness, and corner protection are more direct factors than 'switching to a more expensive film.'

Common industry criteria and solutions: For pressure holding, use the agreed allowable pressure drop based on the time criterion; the solution is to add a gas barrier layer rather than increasing thickness. For whole boxes, follow the GB/T 4857 series (drop test GB/T 4857.5-1992, stacking tests GB/T 4857.3-2008 and GB/T 4857.4-2008), first prepare the test outline and then schedule the items. For rigidity and planar pressure resistance, follow the structural route of PP hollow board and honeycomb board.

Ningbo Kolon New Material Co., Ltd. commonly supplies these segments in modified PP pellets in this area: foam substrate direction, rigid structural board substrate direction, and antistatic and compatibilizer direction. Based on the working conditions of each part, we provide recommendations for the substrate grade and modification direction, and can assist customers with sample comparison and verification sequencing. The three segments of film materials, full-roll performance commitment, and full-box certification are not within the scope we can handle.

Frequently Asked Questions

Question: Can air column bags actually be made from PP?

Answer: It can be done, but this is not how the mainstream uses it. Air column bags rely on a gas barrier layer to maintain pressure, and PA/PE co-extrusion and single-layer PE are two mature approaches. The position where PP can stand is in foam cushioning components and rigid structural panels.

Question: Why not just make the membrane thicker and maintain the pressure long enough?

Answer: Increasing the thickness changes the absolute amount of leakage, not the leakage rate. The pressure-holding rate is determined by the gas barrier layer; increasing the thickness also raises the material usage, weight, and haze, with transparency being affected first.

Question: If it passes the drop test, does that mean it's stable?

Answer: Not enough. Drop tests are the easiest tests to pass when the item is new. The real deal-breakers are pressure holding and low temperature — the former is revealed after a few weeks, the latter in winter.

Operating conditionKey criterionRegular supply
Film-type cushioning materials (air column bags, bubble wrap)Pressure holding drop, puncture resistance, elongationCompatibilizers and functional masterbatch direction (film material and blown film not included)
Foamed cushioning components (EPP, foamed PP sheets)Compressive strength, compressive permanent deformation, resilient modulusDirection of modified PP foam substrate
Rigid structure cushioning (PP hollow board, honeycomb board)Flat crush strength, bending modulus, stacking deformationDirection of modified PP sheet materials (filled / toughened)
Electronic Component Buffering and TurnoverSurface resistance 10⁶–10⁹ ΩDirection of anti-static masterbatch

Just a reminder: when something goes wrong, the most common mistake is to replace the material first. Dents, bursts, cracks, deformations—each of these has more than one cause. Identify the cause first, then replace the material; if the order is reversed, you can go through several rounds of replacement and still be in the same place.

Ten, Lastly Say Three Sentences

First, distinguish the track before talking about materials. The three routes of cushioning packaging—film type, foam type, and rigid structure type—do not solve the same problem; the substrate of the film type is not modified PP, and this is the first thing that should be clarified in this direction.

Second, pressure holding does not rely on thickness, but on the vapor barrier layer. The rework saved by this sentence alone is more than any price comparison.

Third, 'not broken' does not equal 'not damaged.' The cushioning components are assessed based on the peak acceleration transmitted to the contents; only looking at whether the packaging is damaged will miss the worst-case scenario.

About Us

A couple of days ago, I received a call, and the first sentence was, 'How heat-resistant is your PP?'

This sentence cannot be answered directly. The temperature resistance depends on the long-term continuous use temperature, not the short-term peak; it also depends on the load, the medium, and whether there is filling reinforcement. For the same sentence, the answer can range from 80°C to over 140°C.

Ningbo Cologne New Materials Co., Ltd. produces modified polypropylene (PP) granules, covering homopolymer, random copolymer, and block copolymer base materials, as well as modifications including filled, glass fiber reinforced, toughened, flame-retardant, low odor and low VOC, weather-resistant, and scratch-resistant without coating; it also deals in PP resins from major petrochemical plants, off-spec materials, and bulk materials.

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