Complete Solution

Build a Particle Size Analysis Workstation

Particle size analysis is not one tool — it is a short workflow. A test sieve does the separating, a forced-air oven removes moisture first, a pan + lid collects the fractions, and a stack of mesh sizes turns one sieve into a graded breakdown.

Xin Tester supplies every piece from a single catalogue. Below we lay out the four components, the five-step workflow, and three ready bundles so you can specify the exact set instead of guessing which sieve to buy.

3–2800 meshtest sieve range we stock
4 partssieve · oven · pan+lid · stack
1 catalogueno multi-vendor sourcing
Xin Tester 304 stainless steel test sieve set, 3 to 2800 mesh
Xin Tester test sieves (6 cm to 40 cm, 3–2800 mesh) and forced-air drying ovens used together for a complete particle size analysis bench.
Why a bundled set, not a single sieve

Particle size decides whether the material passes or fails

Gradation controls concrete strength, powder flow, soil compaction and mineral recovery. A lone sieve only separates one cut. The four-part set covers drying, sieving, collecting and grading — so the result is repeatable and defensible, not a one-off guess.

Distributiongraded fractions, not a single cut
Consistencyrepeatable runs batch to batch
Performancepredictable material behaviour
The workflow, end to end

Five steps from sample to fractions

Each step maps to a component in the set. Skip one and the result drifts — most "bad sieving" is actually a missing drying or collection step.

01

Sample Prep & Splitting

Take a representative aliquot and split to the test portion; break lumps by hand.

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02

Oven Drying to Constant Mass

Forced-air oven at method temperature (commonly 105–110 °C) until mass is stable — removes moisture that causes clumping.

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03

Dry Tare Weighing (M₀)

Weigh the dry sample to get M₀; every later fraction is expressed against this dry mass.

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04

Sieve Stacking & Agitation

Nest coarsest-on-top with pan + lid; shake/agitate until practically no more passes.

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05

Fraction Mass Balance Check

Weigh each retained fraction; totals should reconcile with M₀ within method tolerance.

Four parts, one catalogue

The components of the set

Two are the core instruments; the other two are the collection and grading pieces that make a result usable. For the full aperture table, frame sizes and mesh chart, see our Test Sieve Precision Guide.

Xin Tester 304 stainless steel test sieve detail
Core · separating

Test Sieve

304 stainless frame and mesh, 6 cm to 40 cm, 3–2800 mesh. The tool that actually separates by aperture.
From $24.68 / unit
View sieve range →
Xin Tester forced-air drying oven, 250 C laboratory incubator and heater
Pre-treatment

Forced-Air Drying Oven

15 L–240 L, 250 °C. Removes moisture that otherwise agglomerates fine powder and ruins the cut.
From $656.70 / unit
View oven →
Stainless steel lab sieve receiving pan and lid set
Collection

Pan + Lid Set

Receiving pan with lid closes the bottom of a stack and keeps each fraction isolated and labelled.
Same-page option
Add pan + lid →
Nestable stackable lab sieve design for graded distribution
Grading

Multi-Size Stack

Pair several meshes (e.g. 6 cm / 10 cm / 20 cm) to turn one sieve into a graded distribution.
From $7.99 / sieve
Shop the range →
Featured from the catalogue

Two instruments we actually carry

The sieve and the oven are the backbone of the set. Both are stocked in several sizes and configurations.

Full 304 stainless steel test sieve 20 cm deep body
Flagship sieve

Full 304 SS Test Sieve, 8″ / 20 cm (3–2800 mesh)

Deep 6.5 cm body, full 304 stainless. The default single sieve for most gradation work.
From $24.68 / unit
Specify this sieve →
Xin Tester forced-air drying oven 15 L to 240 L
Pre-treatment

Forced-Air Drying Oven, 15 L–240 L

250 °C forced-air heating. Drys samples before sieving so fine powder does not clump.
From $656.70 / unit
Specify this oven →
Pure 304 stainless steel 4-inch (10 cm) test sieve set
Compact sieve

Pure 304 SS Test Sieve, 4″ / 10 cm (4–500 mesh)

Small-bench sieve for limited sample volume or narrow cut checks.
From $22.11 / unit
View 10 cm sieve →
20 cm nylon lab sieve with PVC frame, 6 to 800 mesh
Non-metal option

20 cm Nylon Sieve, PVC Frame (6–800 mesh)

PVC frame with nylon mesh for metal-ion-sensitive samples (food, pharma, biology).
From $14.33 / unit
View nylon sieve →
Ready configurations

Three bundles, one purchase list

Prices are indicative starter configurations — final cost follows the exact sizes and mesh counts you specify. Confirm the build with us before ordering.

Starter
~$40 / set
One sieve + pan + lid
  • 1 × 20 cm 304 SS test sieve
  • Receiving pan + lid
  • For single-cut checks
View complete kit →
Most chosen
Standard
~$240 / set
Sieve stack + collection
  • 3–4 sieves across the mesh range
  • Pan + lid for each cut
  • Graded distribution in one run
View complete kit →
Pro Lab
~$900 / set
Full bench with drying
  • Sieve stack (6–40 cm)
  • Forced-air drying oven
  • Pan + lid collection set
View complete kit →
Where the set is used

Four typical application scenarios

The same four-part set serves grading work from construction to mining — only the mesh range changes.

Lab test sieve application scenario, aggregate and sand testing

Aggregate & Sand Testing

Gradation of concrete and asphalt aggregates; check the 4.75 mm / 9.5 mm / 19 mm cuts.

Laboratory sieve stacking application for soil testing

Soil Testing

Particle-size distribution of soils for compaction and classification (AASHTO / USCS).

Multi-purpose stainless steel sieve food and powder application

Powder Quality Control

Batch-to-batch consistency of industrial powders, ceramics and additives.

Sieve stack separation application for mining and minerals

Mining & Mineral Testing

Run-of-mine and concentrate sizing for recovery and process control.

Sand Soil Cement Flour Powder Aggregate Mineral Ceramic
The method, step by step

Why the drying step is not optional

Most failed sieving is a moisture problem in disguise. Dry the sample, then sieve — otherwise fine powder balls up and never reaches the right pan.

01
Sample Preparation & Splitting

Take a representative sample and split to the test portion; break obvious lumps by hand without forcing them through the mesh.

02
Oven Drying to Constant Mass

Heat to the method temperature (commonly 105–110 °C) until mass is stable. Skipping this agglomerates fine powder.

03
Dry Tare Weighing (M₀)

Weigh the dry sample to obtain M₀, the reference mass every fraction is later expressed against.

04
Sieve Stacking & Agitation

Nest the sieves coarsest-on-top, add the pan + lid, and shake until practically no more passes.

05
Fraction Mass Balance Check

Weigh each retained fraction and confirm the total reconciles with M₀ within method tolerance; then compute the distribution.

Avoid the three mistakes

What goes wrong, and how the set fixes it

Challenge

Moisture in samples

Wet fine powder balls up and blocks the mesh. The forced-air oven removes it before sieving.
Challenge

Particle agglomeration

Static and fines clump. Dry + gentle hand disaggregation restores a true cut.
Challenge

Wrong sieve selection

One mesh gives one cut. The multi-size stack grades the whole distribution in one run.
Specification questions

Decisions that decide whether the set works on day one

How do I choose the sieve mesh size?

Start from the aperture you need to separate, not the mesh number. Match the target cut (e.g. 4.75 mm for coarse aggregate, 0.075 mm for fines) and pick a 304 SS sieve in that mesh. We stock 3–2800 mesh across 6 cm to 40 cm frames.

Do I need to dry the sample first?

For any fine or moisture-bearing powder, yes. Drying in the forced-air oven prevents agglomeration that would otherwise block the mesh and give a false distribution. Coarse, dry aggregate may skip this step.

Can one sieve grade a full distribution?

No — one mesh gives one cut. Nest several sieves (coarsest on top) with a pan + lid at the bottom to capture the graded fractions in a single run.

When should I use a nylon / PVC sieve?

When the sample is metal-ion-sensitive — food, pharmaceutical or biological powders. The PVC-frame nylon-mesh sieve avoids contamination that a stainless sieve could introduce.

How do I know when sieving is complete?

Stop when the mass passing a given sieve drops below 0.1% of the sample in one minute of agitation (ISO 2591-1). Past that point you are just shaking dust — extend the run and you waste time without changing the result.

How much sample can one sieve hold?

Keep the charge light — roughly ≤ 100 g for a 20 cm sieve, no more than 1–2 layers deep on the mesh. Overloading blinds the apertures and forces fine particles through by pressure instead of by size, so the cut stops being a true size separation.

Ready to specify

Still deciding? Name your sample and size range

Tell us the material and the cut you need and we will point you at the exact sieve mesh, oven size and stack — or start from a ready bundle above.

Xin Tester supplies laboratory sieving, drying and separation equipment from a single catalogue. Prices are indicative and shown as "From" because configuration (size, mesh, oven volume) changes the build. Bundle prices are starter configurations for planning only. Confirm the exact specification with us before ordering.