Cold-curing mixtures based on biopolymer lignin complex for casting production in single and small-series conditions

IF 1.4 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY AIMS Materials Science Pub Date : 2023-01-01 DOI:10.3934/matersci.2023047
Falah Mustafa Al-Saraireh
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Abstract

This study proves that lignin-based biopolymer materials can be employed as starting materials for the synthesis of novel casting binders that fulfill the current level of characteristics. The optimal concentration of the binder in the mixture was experimentally determined to be 5.8%–6.2%. It has been demonstrated in practice that the employment of ammonium salts as a technical lignosulfonate (TLS) modifier can result in the provision of cold (room temperature) curing of a mixture based on them. It was proposed to use as a technological additive that boosts the strength characteristics of a mixture of substances carboxymethyl cellulose (CMC). In a variety of adhesive materials, it is utilized as an active polymer base. The concentration limits for using CMC in the mixture are set at 0.15%–0.25%. To improve the moldability of the combination, it was suggested that kaolin clay be used as a plasticizing addition. The concentration limits for using a plasticizing additive are set at 3.5%–4.0%. The produced mixture was compared to the analog of the alpha-set method in a comparative analysis. It was discovered that the proposed composition is less expensive, more environmentally friendly, and enables the production of high-quality castings. In terms of physical, mechanical, and technological properties, the created composition of the cold curing mixture is not inferior to analogs from the alpha-set method. For the first time, a biopolymer-based binder system containing technical lignosulfonate with the addition of ammonium sulfate and carboxymethyl cellulose was used in the production of cast iron castings on the case of a cylinder casting weighing 18.3 kg from gray cast iron grade SCh20. Thus, it has been proved possible for the first time to replace phenol-based resin binders with products based on natural polymer combinations. For the first time, a cold-hardening mixture based on technological lignosulfonates has been developed without using hardeners made of very hazardous and cancer-causing hexavalent chromium compounds. But is achieved through a combination of specialized additives, including kaolin clay to ensure the mixture can be manufactured, ammonium sulfate to ensure the mixture cures, and carboxymethyl cellulose to enhance the strength properties of the binder composition. The study's importance stems from the substitution of biopolymer natural materials for costly and environmentally harmful binders based on phenolic resins. This development's execution serves as an illustration of how green technology can be used in the foundry sector. Reducing the amount of resin used in foundry manufacturing and substituting it with biopolymer binders based on technological lignosulfonates results in lower product costs as well as the preservation of the environment. Using lignin products judiciously can reduce environmental harm by using technical lignosulfonates, or compounds based on technical lignin. The combination is concentrated on businesses with single and small-scale manufacturing because it is presumable that this is merely the beginning of the investigation. This study confirms the viability of creating a cold-hardening combination based on technical lignosulfonates in practical applications and supports this with the castings produced, using the creation of a gray cast iron cylinder casting as an example.

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基于生物高聚物和木质素复合物的冷固化混合物,用于单件和小批量铸造生产
& lt; abstract>本研究证明木质素基生物高分子材料可以作为合成满足当前性能水平的新型铸造粘合剂的起始材料。实验确定了混合料中粘结剂的最佳浓度为5.8% ~ 6.2%。实践证明,使用铵盐作为技术木质素磺酸盐(TLS)改性剂可以提供基于它们的混合物的冷(室温)固化。提出将其作为提高羧甲基纤维素(CMC)混合物强度特性的工艺添加剂。在各种粘结材料中,它被用作活性聚合物基。CMC在混合料中的使用浓度限定为0.15% ~ 0.25%。为了提高复合材料的可塑性,建议添加高岭土作为塑化剂。塑化添加剂的使用浓度限定在3.5%-4.0%。在比较分析中,将生成的混合物与α集方法的类比进行了比较。人们发现,所提出的成分更便宜,更环保,能够生产高质量的铸件。在物理,机械和技术性能方面,所创建的冷固化混合物的组合物并不逊于α集方法的类似物。首次将含有技术木质素磺酸盐、添加硫酸铵和羧甲基纤维素的生物聚合物粘合剂系统用于生产重18.3 kg的灰铸铁铸件,铸件由SCh20级灰铸铁制成。因此,首次证明用基于天然聚合物组合的产品取代酚醛树脂粘合剂是可能的。第一次,一种基于技术木质素磺酸盐的冷硬化混合物已经开发出来,而不使用由非常危险和致癌的六价铬化合物制成的硬化剂。但它是通过特殊添加剂的组合来实现的,包括高岭土粘土,以确保混合物可以制造,硫酸铵,以确保混合物固化,以及羧甲基纤维素,以提高粘合剂组合物的强度特性。这项研究的重要性源于生物聚合物天然材料取代了基于酚醛树脂的昂贵且对环境有害的粘合剂。这一发展的执行作为绿色技术如何在铸造部门使用的一个例证。减少铸造制造中使用的树脂量,并用基于技术木质素磺酸盐的生物聚合物粘合剂代替,可以降低产品成本,并保护环境。明智地使用木质素产品可以通过使用技术木质素磺酸盐或基于技术木质素的化合物来减少对环境的危害。此次合并主要集中在单一和小规模生产企业,因为这可能只是调查的开始。该研究证实了在实际应用中创建基于技术木质素磺酸盐的冷硬化组合的可行性,并以生产的铸件为例,以灰口铸铁圆筒铸件的创建为例,支持了这一点。& lt; / abstract>
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来源期刊
AIMS Materials Science
AIMS Materials Science MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.60
自引率
0.00%
发文量
33
审稿时长
4 weeks
期刊介绍: AIMS Materials Science welcomes, but not limited to, the papers from the following topics: · Biological materials · Ceramics · Composite materials · Magnetic materials · Medical implant materials · New properties of materials · Nanoscience and nanotechnology · Polymers · Thin films.
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