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Worn leather brogue boots crossed on stone steps, the lugged rubber outsole edges catching the light

Sole Systems

Six sole families, one supplier.

Rubber, foamed rubber, TPR, injection and two ways of marrying a rubber outsole to an EVA midsole. Specify the performance the shoe needs and the material decision follows from it.

Construction

One material, two, or two made as one.

The six systems in section. A table makes the combination sole and the one-piece sole look like the same product; they are not, and the difference is the line across the middle of the fourth drawing. Proportions are schematic: section depth is set by your last and your brief, not by us.

RB

Rubber Outsole

  • Vulcanised rubber

One material, tread cut into it. Everything the sole does, the compound does.

RB-F

Rubber Foam Sole

  • Foamed rubber

Still one material. The foam is blown through the whole section, which is where the weight goes.

TPR

TPR Sole

  • Thermoplastic rubber

One material, injected rather than cured. Fast cycles, and regrind goes back in.

BOND LINE
RB+EVA

Rubber / EVA Combination Sole

  • EVA midsole
  • Rubber outsole

Two parts moulded separately and bonded. The join is an interface; it is what peel testing is for.

NO BOND LINE
RB+EVA-1P

One-Piece Moulded RB + EVA

  • EVA section
  • Rubber section

Same two materials, formed in one mould as one part. No interface, so nothing to delaminate.

IP

IP Injection Sole

  • Injection phylon

Injected into a closed tool, so the dimension repeats. One material, high volume.

Material Selection

Rubber, TPR or an EVA midsole?

Most sourcing conversations open with the wrong question, which of the shoe materials is best. There is no best; there is only what the shoe has to survive, at what weight, for what price. Here is how the four sole families actually trade off against each other.

MaterialHardnessDensityAbrasionStrengthsTrade-off
Vulcanised rubber30–90 Shore A (typically 50–65)Highest of the fourBest wear lifeAbrasion, wet grip, heat resistanceHeaviest; steel tooling and longer cure cycles
Foamed rubber40–65 Shore ALower than solid rubberGoodRubber wear behaviour at reduced weightLess dimensionally stable than solid rubber
TPR40–80 Shore A (40–55 casual, 50–65 urban)LightDIN/ISO 40–160 mm³Fast cycles, clean colour, sprue regrindLoses grip and flexibility at low temperature
EVA sole stock20–35 Shore C80–120 kg/m³DIN/ISO 120–400 mm³Lightest, best cushioning and reboundCompression set over time; poor as a bare outsole

The windows Hongsole holds

Our own figures, not the category’s, measured on the compounds we run in production, by what the sole has to do.

ApplicationHardnessDensity
Rubber outsole, casual / lifestyle60–65 Shore A1.15 g/cm³
Rubber outsole, safety / work65–70 Shore A1.15 g/cm³
Foamed rubber outsole60–65 Shore A0.40 g/cm³
TPR outsole60–65 Shore A1.00 g/cm³
EVA sole, casual / slipper55–60 Shore C0.25 g/cm³
EVA midsole, sport / running40–45 Shore C0.20 g/cm³

Rubber and TPR are specified in Shore A; EVA in Shore C. The two scales are not interchangeable, and a spec sheet that mixes them will not survive a technical review.

Rubber/EVA combination and IP injection soles are quoted per programme: the two layers carry different targets, so a single figure would tell you nothing. Send the brief and we will confirm the window against your compound.

Choosing between the big three?Read EVA vs rubber vs TPR soles: how to choose →

Applications

Find your shoe, then the sole follows.

Six footwear categories, the sole systems that suit each, and the tests that decide whether a sole passes for that use. Start here if you know the shoe better than the material.

Running & Athletic

Cushioning under the forefoot, rubber only where the shoe wears

Sole systems
Rubber / EVA combination · one-piece moulded
Tests that gate it
Abrasion ISO 4649 · flex ISO 17707 · outsole-midsole peel SATRA TM404

Outdoor & Hiking

Deep lug geometry, wet rock grip, cold flexibility

Sole systems
Vulcanised rubber
Tests that gate it
Footwear slip SATRA TM144 · abrasion ISO 4649 · low-temperature flex

Work & Safety

Slip, heat and fuel-oil exposure; long wear life on hard floors

Sole systems
Vulcanised rubber · rubber / EVA combination
Tests that gate it
EN ISO 20345:2022 (slip now mandatory, SR marks the enhanced test) · HRO · FO

Casual & Lifestyle

Weight, colour fidelity and unit cost at seasonal volumes

Sole systems
TPR · foamed rubber
Tests that gate it
Colour hold · shrinkage & yellowing · abrasion

Court & Indoor

Grip without transferring pigment to the floor

Sole systems
Non-marking rubber
Tests that gate it
Non-marking / scuff (SATRA TM223) · abrasion

School & Children's

Light, latex-free, softer compounds for younger age groups

Sole systems
TPR
Tests that gate it
Hardness SATRA TM205 · chemical compliance (REACH SVHC, Prop 65)

Not sure which system fits?

Describe the shoe and what it has to survive. We come back with a material recommendation before you commit to tooling.

Ask an engineer