结皮操作对皮革物理性能的影响

Q4 Engineering Leather and Footwear Journal Pub Date : 2018-12-28 DOI:10.24264/LFJ.18.4.4
K. M. Nalyanya, R. Rop, A. Onyuka, Zephania Birech, A. Sasia
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引用次数: 7

摘要

. 皮革的物理特性是决定其应用领域性能特征的重要质量参数。然而,从兽皮到皮革的转化过程涉及一系列影响这些机械性能的化学和物理/机械变化。关于加工对皮革机械性能的影响,已有许多研究发表。然而,整个结壳操作(鞣制后)对机械性能的影响没有记录。本研究报告了结皮操作(复鞣、染色和加脂)对最终皮革机械性能的影响。结果表明,复鞣工艺提高了材料的撕裂强度和抗拉强度,提高了开裂和破裂时的膨胀率和收缩温度。经复鞣的皮壳革的感官特性如丰满度有了改善。但复鞣后均匀性系数和伸长率显著降低。染色后织物的断裂伸长率、开裂伸长率、爆裂伸长率、收缩温度和均匀系数均有所提高,而拉伸强度和撕裂强度均有所下降。同样,加脂样品在断裂值和膨胀值处记录了更高的伸长率。相反,加脂工艺降低了拉伸强度、撕裂强度、收缩温度和均匀系数。在鞣制、再鞣制、染色和加脂过程中测试的所有样品表明,在5万次弯曲时没有损坏。从断裂力学和损伤力学的角度探讨了这些影响
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Effect of Crusting Operations on the Physical Properties of Leather
. Physical properties of leather form vital quality parameters that determine the performance characteristics in their areas of applications. However, the transformational processing of hide to leather involves a series of both chemical and physical/mechanical changes that affect these mechanical properties. Many researches have been published regarding the effect of processing on the mechanical properties of leather. However, the effect of entire crusting operations (post tanning) on the mechanical properties is not documented. This study reports the findings of the effect of crusting operations (retanning, dyeing and fatliquoring) on the mechanical properties of the final leather. Results have shown that retanning process improves tear and tensile strengths, distensions at crack and burst, and shrinkage temperature. An improvement in the organoleptic properties such as fullness was recorded in retanned crust leather. However, the uniformity coefficient and percentage elongation significantly decreased after retanning. Dyeing raises the elongation at break, distensions at crack and burst, shrinkage temperature and uniformity coefficient whereas both tensile and tear strengths decreased after dyeing. Similarly, fatliquored samples recorded higher elongation at break values, and distension values. Conversely, tensile and tear strengths, shrinkage temperature and uniformity coefficient decreased as a result of fatliquoring process. All the samples tested at tanning, retanning, dyeing and fatliquoring processes indicated no damage at 50,000 flexes. The study discussed these effects using transmission of fracture and damage mechanics in leather
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来源期刊
Leather and Footwear Journal
Leather and Footwear Journal Engineering-Industrial and Manufacturing Engineering
CiteScore
0.90
自引率
0.00%
发文量
14
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