Spunbond nonwoven fabric is an important material in sanitary napkin manufacturing, particularly where manufacturers need a combination of softness, liquid permeability, strength, flexibility, breathability, and stable high-speed processing.
However, selecting the right spunbond fabric for sanitary napkins is not simply a matter of choosing a particular GSM.
A sanitary napkin is a multi-layer hygiene product. Different layers perform different functions, and the ideal nonwoven specification depends on whether the material is being used as a topsheet, side component, backsheet-related structure, acquisition layer, or another supporting component.
For most skin-contact applications, the material selection process should focus on:
Softness
Hydrophilicity
Liquid penetration
Rewet performance
Surface uniformity
GSM
Thickness
Tensile strength
Elongation
Air permeability
Bonding pattern
Raw material quality
Machine running performance
The most important principle for buyers is:
Select spunbond fabric according to the function of the sanitary napkin component, not GSM alone.
A sanitary napkin normally contains multiple functional layers.
A simplified structure may include:
Topsheet
Acquisition or distribution layer
Absorbent core
Backing or leakage-control layer
Adhesive and release-paper system
Side or wing components
Not every sanitary napkin uses spunbond fabric in exactly the same location.
The most common reason manufacturers consider spunbond nonwoven fabric for sanitary pads is that PP spunbond can provide a lightweight, uniform, flexible material with controlled surface and mechanical properties.
For skin-contact applications, the topsheet is especially important because it influences:
Surface softness
Liquid entry
Skin contact
Wetness perception
Overall comfort
This makes the topsheet one of the most specification-sensitive components of the product.
Polypropylene (PP) is widely used for spunbond nonwoven hygiene materials.
PP offers several useful characteristics:
Low density
Lightweight construction
Good processability
Good fiber-forming capability
Chemical resistance
Good mechanical performance for its weight
Ability to produce fine continuous filaments
Compatibility with thermal bonding
For sanitary napkin applications, buyers should also distinguish between polymer selection and fabric treatment.
For example, two fabrics may both be PP spunbond but have very different performance because one is:
Hydrophilic
while the other is:
Hydrophobic
For a liquid-receiving topsheet, this distinction can be critical.
There is no single universal GSM for sanitary napkin materials.
As a general commercial reference, lightweight spunbond fabrics in approximately 8–30 GSM may be considered for different hygiene components.
For topsheet applications, manufacturers often evaluate the lower end of this range, while acquisition, support, or structural components may require higher basis weights.
| Application | General reference GSM | Main consideration |
|---|---|---|
| Lightweight topsheet | 8–15 GSM | Softness and liquid passage |
| Standard topsheet | 10–18 GSM | Balance of softness and strength |
| Acquisition/distribution component | 15–30 GSM | Liquid handling and structure |
| Side/wing component | 15–30 GSM | Strength and flexibility |
| Structural/support component | 20–40+ GSM | Mechanical support |
These are reference ranges rather than fixed industry standards.
The actual GSM should be validated against the sanitary napkin design and production process.
A common purchasing mistake is to compare suppliers only by GSM.
For example:
Supplier A: 12 GSM
Supplier B: 12 GSM
This does not mean the two materials are equivalent.
Their performance may differ because of:
Fiber diameter
Fiber orientation
Polymer quality
Bonding pattern
Bonding area
Thermal bonding conditions
Hydrophilic treatment
Fabric thickness
Web uniformity
Surface characteristics
For sanitary napkin applications, the buyer should therefore compare the complete technical specification.
A 12 GSM fabric with excellent uniformity and softness may be more suitable than a 15 GSM fabric with poor surface characteristics.
Hydrophilicity is one of the most important considerations when selecting a topsheet material.
A conventional PP surface is naturally hydrophobic.
For a sanitary napkin topsheet, however, the material generally needs to facilitate liquid movement from the surface toward the absorbent structure.
This is why manufacturers may specify hydrophilic spunbond nonwoven fabric.
The treatment can modify the surface's interaction with liquid.
When evaluating a supplier, buyers should ask:
Is the fabric hydrophilic?
What type of hydrophilic treatment is used?
Is treatment applied uniformly?
What is the initial wetting performance?
How stable is the treatment during storage?
How does the fabric perform after repeated liquid exposure?
Is treatment compatibility confirmed for the intended application?
The key point is:
Hydrophilic treatment and liquid permeability should be evaluated together with GSM.
The purpose of a sanitary napkin topsheet is not to absorb menstrual fluid itself.
Its role is primarily to allow liquid to move efficiently into the underlying absorbent structure while maintaining a comfortable surface.
Therefore, buyers should consider:
Strike-through time
Liquid penetration
Repeated strike-through
Surface wetness
Rewet
Hydrophilicity
Pore structure
Increasing GSM does not automatically improve these characteristics.
In some cases, a carefully engineered lightweight fabric may provide better liquid passage than a heavier material.
Therefore:
Do not solve a liquid-permeability problem simply by increasing GSM.
First determine whether the real problem is related to:
Hydrophilic treatment
Fiber structure
Bonding
Fabric density
Surface characteristics
Underlying absorbent structure
Softness is particularly important for materials that come into direct or close contact with sensitive skin.
For this reason, sanitary napkin manufacturers often evaluate the fabric's:
Hand feel
Surface smoothness
Flexibility
Friction
Bending behavior
Local stiffness
Fiber protrusion
Softness can be affected by the bonding process.
If bonding is too aggressive, the fabric can become:
Stiffer
Less flexible
Less soft to the touch
If bonding is insufficient, however, the fabric may not have adequate mechanical integrity.
The goal is therefore optimized bonding, not simply maximum bonding.
Spunbond fabrics are commonly thermally bonded.
The bonding process affects:
Tensile strength
Tear resistance
Softness
Thickness
Air permeability
Surface feel
Dimensional stability
Important manufacturing variables include:
Bonding temperature
Pressure
Bonding area
Embossing pattern
Line speed
For hygiene materials, the bonding design needs to balance mechanical integrity with softness and permeability.
A very high bonding area may improve strength but can reduce flexibility and alter liquid or air transport.
Sanitary napkin materials are processed at high speed.
The fabric may pass through:
Unwinding
Guiding
Folding
Cutting
Lamination
Elastic or adhesive application
Ultrasonic bonding
Packaging
Therefore, sufficient tensile strength is required.
Buyers should normally evaluate:
MD tensile strength
CD tensile strength
MD elongation
CD elongation
The machine direction is particularly important because the material experiences continuous tension while being unwound and processed.
However, excessive tensile strength should not automatically be treated as a sign of better topsheet quality.
The material needs the right balance between strength, softness and flexibility.
Elongation describes how much the material can stretch before breaking under a specified test condition.
For sanitary napkin components, elongation can influence:
Conformability
Flexibility
Processing stability
Folding
Movement with the product structure
A fabric with extremely low elongation may feel and behave more rigidly.
A fabric with excessive elongation may create problems during high-speed processing if dimensional control becomes difficult.
Therefore, MD and CD elongation should be evaluated according to the finished-product design.
GSM and thickness are different measurements.
GSM = mass per unit area
Thickness = physical thickness of the fabric
A higher GSM fabric often contains more material, but thickness also depends on:
Fiber diameter
Fiber arrangement
Fabric density
Bonding
Compression
Production conditions
Thickness can influence:
Softness
Bulk
Surface structure
Liquid transport
Compression behavior
Finished-product thickness
For premium sanitary napkins where comfort and thinness are important, manufacturers should measure actual thickness instead of assuming it from GSM.
Breathability can contribute to the comfort of hygiene products.
For a spunbond fabric, air permeability is affected by:
Fiber structure
Fabric density
GSM
Thickness
Bonding pattern
Porosity
A lightweight fabric does not automatically have excellent air permeability, and a heavier fabric does not automatically have poor air permeability.
The actual specification should be tested.
For sanitary napkin buyers, air permeability can be particularly relevant when evaluating overall product comfort and the interaction between multiple layers.
GSM directly affects material consumption.
If a supplier quotes the fabric by kilogram, the approximate material cost per square meter can be calculated as:
Cost per m² = GSM ÷ 1000 × Price per kg
For example, using an illustrative price of US$2.00/kg:
| GSM | Approximate cost/m² |
|---|---|
| 10 GSM | US$0.020 |
| 12 GSM | US$0.024 |
| 15 GSM | US$0.030 |
| 18 GSM | US$0.036 |
| 20 GSM | US$0.040 |
| 25 GSM | US$0.050 |
| 30 GSM | US$0.060 |
These figures are only examples.
Actual supplier prices depend on:
PP resin cost
Order quantity
GSM
Width
Hydrophilic treatment
Color
Packaging
Production efficiency
Market conditions
For high-volume sanitary napkin production, even a small GSM reduction can produce meaningful annual material savings.
But the reduction should only be made after confirming finished-product performance.
A practical selection process can start with several candidate GSM levels.
For example:
10 GSM → 12 GSM → 15 GSM → 18 GSM
The manufacturer can compare:
| Property | 10 GSM | 12 GSM | 15 GSM | 18 GSM |
|---|---|---|---|---|
| Softness | Test | Test | Test | Test |
| Hydrophilicity | Test | Test | Test | Test |
| Strike-through | Test | Test | Test | Test |
| Rewet | Test | Test | Test | Test |
| MD tensile | Test | Test | Test | Test |
| CD tensile | Test | Test | Test | Test |
| Air permeability | Test | Test | Test | Test |
| Machine running | Test | Test | Test | Test |
| Finished napkin performance | Test | Test | Test | Test |
| Cost/m² | Calculate | Calculate | Calculate | Calculate |
The final decision should be based on the total performance-to-cost ratio.
Raw material selection becomes particularly important for hygiene products.
Two fabrics can have identical GSM but different:
Strength
Softness
Appearance
Odor
Fiber consistency
Processing stability
For applications involving direct skin contact, manufacturers should establish appropriate raw-material and compliance requirements for their target market.
When requesting a quotation, buyers should clearly specify whether they require:
Virgin PP
or
Recycled PP
They should not assume that the term "PP spunbond" automatically means the same raw-material specification across suppliers.
White is commonly used for visible sanitary napkin components because it provides a clean appearance.
For white hygiene fabric, buyers may evaluate:
Color consistency
Whiteness
Surface uniformity
Black spots
Gel particles
Fiber contamination
Oil contamination
Roll defects
Appearance consistency becomes particularly important for large-volume automated production.
A supplier should be able to maintain stable appearance across production batches.
GSM is only one part of the purchasing specification.
A sanitary napkin manufacturer also needs to specify:
Fabric width
Roll length
Roll diameter
Core diameter
Core material
Winding direction
Joint requirements
Packaging method
Width should be compatible with the production machine and the specific product design.
An incorrect width can create:
Material waste
Additional slitting
Machine adjustment
Lower production efficiency
Therefore, buyers should provide the supplier with their machine-compatible width requirements before quotation.
A professional RFQ could look like this:
Application: Sanitary napkin topsheet
Material: PP spunbond nonwoven
GSM: 10–15 GSM, supplier recommendation welcome
Treatment: Hydrophilic
Color: White
Width: XXX mm
MD/CD tensile: Required specification
MD/CD elongation: Required specification
Liquid permeability: Required
Softness: High
Roll length: XXX m/roll
Core: XXX mm
Monthly quantity: XXX tons
Packaging: Export standard
The phrase "supplier recommendation welcome" is useful.
It allows an experienced manufacturer to propose an alternative GSM if the requested specification is not the most economical solution.
Before placing a bulk order, sanitary napkin manufacturers should ask:
Is the fabric made from virgin PP?
What type of PP resin is used?
Is the fabric suitable for hygiene applications?
What is the nominal GSM?
What is the GSM tolerance?
How is GSM uniformity controlled?
Is the material hydrophilic?
What is the treatment method?
How stable is the hydrophilic effect?
What are the MD/CD tensile values?
What are the MD/CD elongation values?
What is the tear strength?
What is the thickness?
What is the air permeability?
What is the surface structure?
What bonding pattern is used?
Can you provide samples from normal production?
Can you support a machine trial?
What is the standard roll length?
What core diameter is available?
How do you control GSM uniformity?
How do you inspect surface defects?
Can you provide batch inspection records?
Can production batches be traced?
Testing the nonwoven fabric alone is not enough.
A material can perform well in a laboratory but behave differently when incorporated into a complete sanitary napkin.
A more reliable validation process is:
Raw material → spunbond fabric → machine trial → finished sanitary napkin → performance testing
The manufacturer should evaluate the final product for relevant characteristics such as:
Liquid acquisition
Rewet
Leakage control
Surface dryness
Comfort
Dimensional stability
Structural integrity
The exact tests should be selected according to the product design and applicable market requirements.
The lowest GSM may reduce material consumption but can create insufficient strength or machine-running problems.
The correct target is:
Lowest qualified GSM, not lowest possible GSM.
Two suppliers may quote different prices/kg while offering different GSM.
Always calculate:
Cost/m² = GSM × Price/kg ÷ 1000
For a topsheet application, buying a fabric based only on GSM and price can lead to poor liquid penetration.
Hydrophilicity should be explicitly specified and tested.
The phrase "PP spunbond" describes a material category, not a complete technical specification.
Fiber structure, bonding, treatment and raw material can differ considerably.
One sample may not represent the consistency of a full production order.
For large-volume purchasing, evaluate samples from different production batches whenever practical.
A buyer can use the following structure when comparing suppliers:
| Specification | Buyer requirement |
|---|---|
| Application | Sanitary napkin |
| Component | Topsheet / other |
| Material | PP spunbond |
| Raw material | Virgin PP / specified |
| GSM | XX GSM |
| GSM tolerance | ±X% |
| Color | White / custom |
| Treatment | Hydrophilic |
| Width | XXX mm |
| Thickness | XXX mm |
| MD tensile | XXX N |
| CD tensile | XXX N |
| MD elongation | XX% |
| CD elongation | XX% |
| Air permeability | XXX |
| Liquid permeability | Required |
| Roll length | XXX m |
| Core diameter | XXX mm |
| Joint requirement | Defined |
| Packaging | Export standard |
| Monthly quantity | XXX tons |
This type of specification makes supplier comparison significantly easier.
For a sanitary napkin manufacturer, the supplier relationship should go beyond simply quoting a GSM and price.
A suitable spunbond supplier should be able to support:
GSM selection
Width customization
Hydrophilic treatment
Color customization
Roll specifications
Sample development
Performance testing
Machine trials
Bulk production
Quality consistency
For MINGYU, the most useful positioning is therefore not simply:
"We supply spunbond nonwoven fabric."
A stronger B2B message is:
"We help hygiene-product manufacturers select and supply PP spunbond fabric according to their required GSM, hydrophilicity, width, mechanical properties and production process."
This focuses the commercial value on material selection and production reliability, rather than only price.
When evaluating spunbond fabric for sanitary napkins, use this sequence:
Is the material for:
Topsheet?
Acquisition layer?
Side/wing?
Structural layer?
Is the priority:
Softness?
Liquid penetration?
Strength?
Breathability?
Flexibility?
Structural support?
Start with a practical range rather than one fixed number.
For topsheets, determine whether hydrophilic treatment is required.
Specify MD/CD tensile and elongation requirements.
Check:
Thickness
Air permeability
Surface uniformity
GSM consistency
Test the material on the actual machine whenever possible.
Calculate:
Cost/m² = GSM ÷ 1000 × Price/kg
The final decision should be based on the performance of the completed sanitary napkin.
A broad commercial reference is approximately 8–30 GSM depending on the component. Lightweight topsheets often use lower GSM, while structural and liquid-management components may require higher GSM.
Approximately 8–18 GSM can be used as a general reference range, but the optimal GSM depends on softness, hydrophilicity, liquid permeability, tensile strength and machine performance.
For conventional topsheet applications where liquid needs to pass through the surface, hydrophilic treatment is commonly considered important. The exact requirement depends on the product structure and liquid-management design.
No. Higher GSM increases material consumption and does not automatically provide better softness or liquid permeability. The best GSM is the lowest level that meets the required performance.
PP is widely used for spunbond hygiene materials because it can produce lightweight continuous-filament nonwovens with controlled mechanical and surface properties.
It can be suitable for some lightweight components if its softness, strength, liquid permeability, hydrophilicity and machine-running performance meet the manufacturer's requirements.
Do not compare price/kg alone. Compare GSM, GSM tolerance, raw material, hydrophilic treatment, tensile strength, elongation, thickness, air permeability, liquid performance, roll specifications, quality consistency and effective cost/m².
One approach is to optimize GSM, but cost reduction should be validated through machine trials and finished-product testing. Reducing GSM without maintaining performance can increase production losses.
At minimum, specify application, component, material, GSM, width, color, hydrophilic requirement, tensile requirements, roll specifications and quantity. For high-volume production, also define performance and quality tolerances.
Selecting spunbond fabric for sanitary napkins requires more than choosing a GSM and asking for the lowest quotation.
For many applications, lightweight spunbond materials in approximately 8–30 GSM provide a useful starting reference, with topsheets generally evaluated toward the lighter end.
But the correct specification depends on the function of the component.
For a sanitary napkin topsheet, the most important combination may be:
Low GSM + softness + hydrophilicity + liquid permeability + sufficient strength
For structural components, the priorities may shift toward:
GSM + tensile strength + flexibility + dimensional stability
The most effective purchasing strategy is therefore:
Application → performance requirements → GSM → treatment → fabric structure → machine trial → finished-product testing → cost optimization
The goal is not to buy the cheapest spunbond fabric.
The goal is to identify the most cost-efficient fabric that consistently meets the required hygiene-product performance and production requirements.
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