Improving the strength and softness of crust leather through pressure treatment
Introduction
Retanning and fatliquoring have a major impact on the characteristics of leather, whereas dyeing and the finishing concentrate on the appearance of the leather. Various retanning agents and fatliquoring agents have been developed to improve the softness and mechanical strength of leather, parameters that are important to the buyers of leather. However, although chemicals can be added to a process to improve the leather quality, doing so increases production costs, as well as contributing to effluent production.
The addition of chemicals to leather can significantly change the structural parameters of leather, such as the porosity, dispersion of fibres and fibre diameter. These in turn impact on the tensile and tear strength of the leather, which are important characteristics of leather.
The performance of leather is greatly affected by its pore structure, and compression is an important method to improve the pore structure of the material and increase performance, but this method is rarely used in the leather industry. Hot pressing is widely used in many other industries to improve the porosity, structure and strength of the materials being manufactured.
This research was carried out to investigate crust leather properties under different pressures and to analyse its microstructure.
Experimental
Leather samples were subjected to a 1-hour treatment at pressures of 0 MPa, 7.5 MPa, 15 MPa, 22.5 MPa, 30 MPa, and 37.5 MPa using a single-layer hot press at 25°C. After 48 hours of standard air conditioning at 20°C and 65% humidity, the mechanical properties of the samples were tested.
Tensile strength, tear strength, elongation at break and softness were determined using standard methods.
The morphology of the crust leather fibre structure was determined through a scanning electron microscope at magnifications of 100× and 500×. The pore structure of samples was ascertained using a mercury intrusion porosimeter and automatic physical adsorption instrument.
Results
The thickness of crust leather samples subjected to varying pressures are shown in Table I. Sample thicknesses were reduced with increasing pressure. The thickness changed rapidly at the beginning from 2.03 to 1.72 mm under 7.5 MPa, while the thickness remained 1.58 mm under 15-22.5 MPa. The pressure was further increased to 30-37.5 MPa, and as a result, the thickness was also reduced to 1.36 mm.

Table 1. Crust leather thickness as a result of the applied pressure. (Image source: JALCA 120, 107 – 114 (2025)
The longitudinal and transverse tensile strength are displayed in Figure 1a. The longitudinal and transverse tensile strengths typically displayed an increasing trend as pressure increased. Longitudinal tensile strength increased by 108%, from 32.6 to 67.9 MPa, while transverse tensile strength increased from 23.8 to 47.8 MPa. This could be due to the increase in fibre density under high pressure. Figure 1b displays the longitudinal and transverse tear strength of crust leather. In contrast to the tensile strength, the tear strength first reduced, then improved, and then decreased. It reached its maximum value (L: 310 N/mm; T: 367 N/mm) at 30 MPa external pressure, while the tear strength reduced at 37.5 MPa, which could be associated with the early tear curves’ inflection point (Figure 1e, f). Furthermore, the elongation at break (Figure 1c) first reduced, then increased, and resembled the untreated sample following treatment with 22.5 MPa. The elongation at break and tear strength displayed the opposite tendency, while the tensile strength in the L direction was higher than that in the T direction.
The lower pressure treatment resulted in a reduction in the softness of the crust leather to only 3.2 mm, whereas the softness of the crust leather treated with 30 MPa was comparable to the untreated sample (>5mm), as shown in Figure 1d. This demonstrates that the mechanical properties of crust leather can be improved by proper pressure without reducing its softness.

(Image source: JALCA 120, 107 – 114 (2025)
Conclusion
In this study, the crust leather was treated with different pressures, and the mechanical properties of the treated samples were investigated, including tensile strength, tear strength, elongation at break, and softness. With the increase of pressure, the tensile strength of crust leather progressively enhanced, while the elongation at break, tear strength, and softness all decreased first and then increased. The structural evaluation of the samples (data not shown in this summary due to article length limitations) showed that, without the use of chemicals, external pressure changed the fiber structure, causing the fibers to be closely packed and affecting D-spacing and fibril diameter. The tensile strength of the crust leather was enhanced by the small pores formed in the leather, which also improved the fiber density. With the change of pressure, the crust leather showed a significant variation in mechanics and structure.
External pressure on the crust leather improved the fibre structure without the use of chemicals or a reduction in softness, resulting in closely packed fibres that increased tensile strength, decreased average pore diameter, and enhanced specific surface area and fibre density.
This research shows that it may be possible to improve the strength and softness properties of crust leather simply by treating the crust leather with a pressure plate for 1 hour at a temperature of 25ºC and may well be a clean method for producing high-performance crust leather or leather products.
This article is a summary of the paper “Effect of Pressure Treatment on Structure and Mechanics of Crust Leather”. Journal of the American Leather Chemists Association (JALCA) Vol 120, 107 - 114 (2025).
Footwear Industry Articles
- Vermont sale completedJohannesburg, Gauteng, SA – After 39 years, former owner Mandy Owen has sold her shares in Vermont Leathercraft Manufacturers (Pty) Ltd to Creek Lab (Pty) Ltd, and officially handed over the business to Prashant Bhaga.In a message on LinkedIn, she wrote: “I would like to thank my husband, Graham, for his invaluable contributio ...moreSAFLEC AGM 2026: A year marked by resilienceOn behalf of the Board of Directors, it is my pleasure to welcome all our members and stakeholders to the 24th Annual General Meeting of the South African Leather & Footwear Export Council (SAFLEC).The Annual General Meeting provides us with an opportunity not only to reflect on the performance of the Council over the past financial y ...moreHow FootJoy’s superbly crafted shoes influenced my lifeAn Informative & Nostalgic Letter written in April 2025 to two executives at Acushnet (USA) – A leading golf corporation which includes FootJoy Shoes.RE: FootJoy & II recall the very first pair of FootJoy golf shoes my late father bought for me in July 1976. This wasn’t my first interaction with the brand that I had al ...more
Leather Industry Articles
- ISTT offers free entry level leather course to encourage trainingGrahamstown, E. Cape, SA – The International School of Tanning Technology (ISTT) is offering one of its short online courses, Introduction to the Leather Industry, for free.The course is suitable for entry level tannery staff.It is also suitable for anyone in footwear, leather goods, furniture and upholstery manufacturing, retailing ...moreSADC Leather Forum unites 16 member states to strengthen the regional leather industryThe Southern African Development Community’s Regional Leather Forum met in Durban, South Africa, in August. Nerisha Jairaj and Jacob Nyathi explain different aspects. ...more‘FMD is here to stay – we have to learn to live with it and manage it’Pretoria, Gauteng, SA – FMD is no longer a series of isolated outbreaks; it has become a national systemic risk, and we need to shift our mindset from emergency response to living with and managing FMD responsibly. The pressure is already showing in the numbers. Our latest figures show cattle slaughter down 12% and sheep slaughter d ...more
PPE Industry Articles
- Global stage for occupational safety innovations: exhibitor registration for A+A 2027 has begunDüsseldorf, Germany – The next A+A fair will be held from 19 to 22 October 2027.Since 16 June 2026 exhibitors have been able to register for A+A 2027. Companies and organisations from around the world are invited to introduce their innovations and solutions for safety and health at work and sustainable prevention to an int ...moreIndoor air quality monitoring: protecting people, processes, and productivity in South AfricaIndoor air quality (IAQ) is becoming an increasingly important topic across South Africa as industries place greater focus on occupational safety, environmental controls, and operational reliability. While air quality concerns were once mainly associated with mining, heavy industry, or healthcare environments, businesses across multiple s ...moreSAPEMA demands action against retailer Curve Gear over selling noncompliant safety footwearThe Southern African Protective Equipment Marketing Association (SAPEMA) has reported retailer Curve Gear to the National Regulator for Compulsory Standards (NRCS) for selling “possibly noncompliant” safety footwear.The allegation is because Curve Gear’s safety footwear doesn’t carry mandatory marking: Its NRCS app ...more






