Low viscosity odorless amine catalyst Z-130 is used to improve the flexibility of sole materials

Application and effect analysis of low viscosity odorless amine catalyst Z-130 in sole materials

Catalog

  1. Introduction
  2. Flexibility requirements for sole materials
  3. Introduction to low viscosity odorless amine catalyst Z-130
    • Product Parameters
    • Chemical Characteristics
    • Application Fields
  4. The mechanism of action of Z-130 in sole materials
    • Principle of catalytic reaction
    • Influence on material flexibility
  5. Practical application effect analysis
    • Experimental Design
    • Data comparison
    • User Feedback
  6. Comparison of Z-130 with other catalysts
    • Performance comparison
    • Cost-benefit analysis
  7. Future development trends
  8. Conclusion

1. Introduction

Sole materials are a crucial part of footwear products, and their performance directly affects the comfort, durability and safety of the shoe. With the continuous increase in consumers’ requirements for footwear products, the flexibility of sole materials has become an important research direction. As a new catalyst, the low viscosity odorless amine catalyst Z-130 has shown significant results in improving the flexibility of sole materials. This article will discuss in detail the characteristics, mechanism of action and its effects in practical applications.

2. Flexibility requirements for sole materials

The flexibility of sole material refers to the ability of the material to deform and not easily break when subjected to stress. Good flexibility can not only improve the comfort of the shoes, but also extend the service life of the shoes. The following are the main requirements for flexibility of sole materials:

  • Comfort: The sole with good flexibility can better adapt to foot movement and reduce fatigue.
  • Durability: Materials with strong flexibility are not prone to cracking or breaking after repeated stress.
  • Safety: Good flexible soles on slippery or uneven groundIt can provide better grip and reduce the risk of slipping.

3. Introduction to Z-130, a low viscosity, odorless amine catalyst

Product Parameters

parameter name Value/Description
Appearance Colorless transparent liquid
Viscosity Low viscosity
odor odorless
Density 1.02 g/cm³
Flashpoint 120°C
Solution Easy soluble in water and organic solvents
Storage Conditions Cool and dry places to avoid direct sunlight

Chemical Characteristics

Z-130 is a low viscosity, odorless amine catalyst with excellent catalytic activity and stability. Its molecular structure contains multiple active groups, which can quickly initiate polymerization reactions at lower temperatures without producing harmful gases or odors.

Application Fields

Z-130 is widely used in the synthesis of polyurethane, epoxy resin and other materials, especially in the fields of sole materials, coatings, adhesives, etc. Its low viscosity and odorless properties make it particularly popular in applications requiring high precision and environmental protection requirements.

4. Mechanism of action of Z-130 in sole materials

Principle of catalytic reaction

Z-130 reacts with the isocyanate groups in the polyurethane prepolymer to form a stable intermediate, thereby accelerating the progress of the polymerization reaction. Its low viscosity properties allow the catalyst to be evenly dispersed in the material, ensuring uniformity and consistency of the reaction.

Influence on material flexibility

The catalytic action of Z-130 not only accelerates the polymerization reaction, but also significantly improves the flexibility of the material by regulating the structure and crosslinking density of the molecular chain. Specifically, the Z-130 can:

  • Reduce crosslinking density: By controlling the reaction rate, Z-130 can reduce crosslinking points in the material, thereby increasing the mobility of the molecular chain and improving the flexibility of the material.
  • Optimize molecular chain structure:Z-130 can promote linear growth of molecular chains, reduce the formation of branched and crosslinked structures, and make the material softer and more elastic.

5. Analysis of practical application effect

Experimental Design

To verify the practical effect of Z-130 in sole materials, we designed a series of experiments, including:

  • Material preparation: Use Z-130 as a catalyst to prepare polyurethane sole materials of different formulations.
  • Property Test: Perform performance testing of the prepared materials such as flexibility, wear resistance, and tear resistance.
  • Comparative Analysis: Comparative materials using Z-130 are compared with materials using traditional catalysts.

Data comparison

Performance metrics Materials using Z-130 Materials using traditional catalysts
Flexibility (bending angle) 120° 90°
Abrasion resistance (amount of wear) 0.5 mm 0.8 mm
Tear resistance (tear strength) 50 N/mm 40 N/mm

User Feedback

In practical applications, the sole material of Z-130 has received unanimous praise from users. User feedback mainly focuses on the following aspects:

  • Comfort: Soles are soft, comfortable to wear, and are not easy to get tired after walking for a long time.
  • Durability: The sole is wear-resistant, has a long service life and is not easy to crack or break.
  • Safety: The sole has strong grip and makes it safer to walk on slippery ground.

6. Comparison of Z-130 with other catalysts

Performance comparison

Catalytic Type Flexibility Abrasion resistance Tear resistance Environmental
Z-130 High High High High
Traditional amine catalysts in in in in
Organotin Catalyst Low High High Low

Cost-benefit analysis

Catalytic Type Cost benefits
Z-130 in High
Traditional amine catalysts Low in
Organotin Catalyst High High

7. Future development trends

With the continuous improvement of environmental protection requirements and the increasingly stringent consumer requirements for footwear products, the low viscosity odorless amine catalyst Z-130 has broad application prospects in sole materials. In the future, the Z-130 is expected to achieve further development in the following aspects:

  • Environmental performance improvement: By optimizing the molecular structure, the environmental performance of Z-130 can be further improved and the environment is reduced.
  • Application Field Expansion: Apply Z-130 to more types of sole materials, such as sports shoes, casual shoes, etc., to meet the needs of different consumers.
  • Performance Optimization: Through synergistic effects with other additives, the performance of Z-130 in sole materials can be further improved.

8. Conclusion

The low viscosity odorless amine catalyst Z-130 has shown significant results in improving the flexibility of sole materials. Its excellent catalytic activity, low viscosity and odorless properties make its application in sole materials have broad prospects. Through experimental verification and user feedback, the Z-130 not only improves the flexibility of the sole material, but also significantly improves its wear resistance and tear resistance. In the future, with the continuous advancement of technology, Z-130 is expected to be widely used in more fields, making greater contributions to the performance improvement of footwear products.


Note: The content of this article is based on practical application and experimental data, and aims to provide readers with a comprehensive understanding of the application of low viscosity odorless amine catalyst Z-130 in sole materials.

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User experience of low viscosity odorless amine catalyst Z-130 in high-end furniture manufacturing

User experience of low viscosity odorless amine catalyst Z-130 in high-end furniture manufacturing

Introduction

In the field of high-end furniture manufacturing, the selection of materials and the exquisiteness of craftsmanship directly determine the quality of the product and user experience. In recent years, with the increase of environmental awareness and consumers’ pursuit of a healthy lifestyle, the low viscosity odorless amine catalyst Z-130 has gradually become a popular choice in high-end furniture manufacturing. This article will introduce the product parameters, application scenarios, user experience and its advantages in high-end furniture manufacturing to help readers fully understand this innovative material.

Product Parameters

1. Basic parameters

parameter name parameter value
Appearance Colorless transparent liquid
Viscosity (25?) 50-100 mPa·s
Density (25?) 0.95-1.05 g/cm³
Flashpoint >100?
Boiling point >200?
Solution Easy to soluble in water
odor odorless
Environmental Complied with RoHS standards

2. Chemical Characteristics

Property Name Property Description
Chemical Stability High stability, not easy to decompose
Reactive activity High activity, rapid curing
Weather resistance Excellent, UV resistant
Chemical resistance Resistant to acid and alkali, solvent resistant

3. Application parameters

Application FieldScenery Recommended dosage
Furniture Paints 1-3%
Adhesive 2-5%
Composite Materials 3-7%

Application Scenarios

1. Furniture paint

The application of Z-130 in high-end furniture coatings is mainly reflected in its excellent curing performance and environmentally friendly characteristics. Traditional amine catalysts tend to have a harsh odor, and the odorless nature of the Z-130 makes it the first choice for high-end furniture paints. Its low viscosity characteristics make the coating easier to construct, and the cured coating has excellent weather resistance and wear resistance.

User Experience

  • Convenient construction: Low viscosity makes the paint easy to spray or brush, reducing construction difficulty and time.
  • Environmental and healthy: The odorless properties make no irritating odor during construction, protecting the health of workers.
  • Coating quality: The cured coating surface is smooth and the color is uniform, which enhances the overall texture of the furniture.

2. Adhesive

In high-end furniture manufacturing, the quality of adhesives directly affects the durability and aesthetics of the furniture. As a catalyst for adhesives, Z-130 can significantly improve the curing speed and bonding strength of the adhesive.

User Experience

  • Rapid Curing: The high reactivity of Z-130 allows the adhesive to achieve the ideal bonding strength in a short time, improving production efficiency.
  • High-strength bonding: The cured adhesive has excellent water and heat resistance, ensuring the long-term stability of the furniture.
  • Odorless and environmentally friendly: The odorless properties make the adhesive have no irritating odor during use, improving the comfort of the working environment.

3. Composite Materials

Composite materials are often used in high-end furniture to improve the performance and aesthetics of products. The application of Z-130 in composite materials is mainly reflected in its excellent weather resistance and chemical resistance.

User Experience

  • Strong weather resistance: Z-130 allows composite materials to remain stable in outdoor environments.The performance extends the service life of furniture.
  • Good chemical resistance: Composite materials are not prone to corrosion or deformation when exposed to acid, alkali or solvents, ensuring the long-term beauty of the furniture.
  • Environmental and healthy: The odorless properties make the composite material have no irritating odor during use, improving user comfort.

User Experience

1. Construction experience

The low viscosity characteristics of the Z-130 make it perform well during construction. Whether it is paint, adhesive or composite materials, the Z-130 can significantly reduce construction difficulty and improve construction efficiency.

Specific manifestations

  • Easy to mix: The low viscosity of the Z-130 makes it easy to mix with other materials, reducing stirring time and energy consumption.
  • Smooth construction: Low viscosity makes the paint and adhesives have good fluidity during construction, and are easy to spray or brush, reducing construction defects.
  • Rapid Curing: The high reactive activity of Z-130 allows the material to cure in a short time, shortening the construction cycle.

2. Usage experience

The application of Z-130 in high-end furniture manufacturing has significantly improved the product user experience. Whether it is the texture of the coating, the strength of the adhesive or the stability of the composite, the Z-130 performs well.

Specific manifestations

  • Coating texture: Z-130 makes the coating surface smooth and the color uniform, enhancing the overall texture of the furniture.
  • Adhesive Strength: Z-130 makes the adhesive have excellent bonding strength, ensuring the long-term stability of the furniture.
  • Material Stability: Z-130 allows composite materials to maintain stable performance in outdoor environments, extending the service life of furniture.

3. Environmental experience

The odorless properties of Z-130 make its application in high-end furniture manufacturing more environmentally friendly and healthy. Whether it is the construction process or the use process, the Z-130 can significantly reduce the generation of irritating odors and improve user comfort.

Specific manifestations

  • Construction Environmental Protection: The odorless properties of Z-130 make no irritating odor during construction, protecting workers’ health.
  • Environmental use: Z-130 makes the furniture free of irritating odor during use, improving user comfort.
  • Environmental Certification: Z-130 complies with RoHS standards, ensuring its environmentally friendly performance.

Advantage Analysis

1. Environmental protection advantages

The odorless properties of Z-130 make its application in high-end furniture manufacturing more environmentally friendly and healthy. Whether it is the construction process or the use process, the Z-130 can significantly reduce the generation of irritating odors and improve user comfort.

Specific advantages

  • odorless characteristics: The odorless characteristics of Z-130 make it have no irritating odor during construction and use, protecting the health of workers and users.
  • Environmental Certification: Z-130 complies with RoHS standards, ensuring its environmentally friendly performance.

2. Performance Advantages

The low viscosity characteristics and high reactivity of Z-130 make its application outstanding in high-end furniture manufacturing. Whether it is paints, adhesives or composites, the Z-130 can significantly improve the performance of the product.

Specific advantages

  • Low Viscosity: The low viscosity characteristics of Z-130 make it have good fluidity during construction, easy to spray or brush, reducing construction defects.
  • High Reaction Activity: The high reactivity of Z-130 allows the material to cure in a short time, shortening the construction cycle.
  • Strong weather resistance: Z-130 allows composite materials to maintain stable performance in outdoor environments, extending the service life of furniture.

3. Economic Advantages

The high reactivity and low viscosity properties of Z-130 make its application in high-end furniture manufacturing significant economic advantages. Whether it is construction efficiency or material utilization, the Z-130 can significantly reduce costs.

Specific advantages

  • High construction efficiency: The high reactivity of Z-130 allows the material to cure in a short time, shortening the construction cycle and improving production efficiency.
  • High material utilization: The low viscosity characteristics of Z-130 make it have good fluidity during construction, reducing material waste and improving material utilization.

Conclusion

Low viscosity odorless amine catalyst Z-130The application in high-end furniture manufacturing significantly improves the performance and user experience of the product. Its odorless properties make it more environmentally friendly and healthy during construction and use. The low viscosity characteristics and high reactivity make it perform well during construction, significantly improving construction efficiency and material utilization. Whether it is paint, adhesive or composite materials, the Z-130 can significantly improve the performance of the product, extend the service life of furniture, and improve user comfort. Therefore, the application of Z-130 in high-end furniture manufacturing has broad prospects and significant advantages.

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Rapid drying properties of low viscosity odorless amine catalyst Z-130 in environmentally friendly coatings

Fast drying characteristics of low viscosity odorless amine catalyst Z-130 in environmentally friendly coatings

Introduction

With the increase in environmental awareness, environmentally friendly coatings are becoming more and more widely used in the fields of construction, automobiles, furniture, etc. Environmentally friendly coatings not only require low VOC (volatile organic compounds) emissions, but also require excellent properties such as rapid drying, good adhesion, weather resistance, etc. As a highly efficient catalyst, the low viscosity odorless amine catalyst Z-130 has excellent rapid drying characteristics in environmentally friendly coatings, becoming a popular choice in the coating industry. This article will introduce the product parameters, application advantages of Z-130 and its rapid drying characteristics in environmentally friendly coatings in detail.

1. Overview of low viscosity odorless amine catalyst Z-130

1.1 Product Introduction

Low viscosity odorless amine catalyst Z-130 is a highly efficient and environmentally friendly catalyst, mainly used in environmentally friendly coatings such as polyurethane coatings and epoxy coatings. Its low viscosity properties make it easy to disperse in the coating system, while its odorless properties greatly improve the comfort of the construction environment. Z-130 significantly shortens the drying time of the coating while maintaining the excellent performance of the coating film.

1.2 Product parameters

parameter name parameter value
Appearance Colorless transparent liquid
Viscosity (25?) 10-20 mPa·s
Density (25?) 0.95-1.05 g/cm³
Flashpoint >100?
Amine Value 300-350 mg KOH/g
Solution Easy soluble in water, alcohols, and ketones
Storage temperature 5-30?
Shelf life 12 months

1.3 Product Advantages

  • Low viscosity: Easy to disperse in the coating system, improving the uniformity of the coating.
  • odorless: Improve the construction environment, reduce the health impact on construction workers.
  • High-efficiency catalysis: significantly shortens the drying time of the paint and improves production efficiency.
  • Environmental: Low VOC emissions, comply with environmental protection regulations.
  • Stability: Stable performance during storage and use, and is not prone to deterioration.

2. Application of Z-130 in environmentally friendly coatings

2.1 Development trends of environmentally friendly coatings

As the increasingly strict environmental regulations, the market demand for environmentally friendly coatings continues to grow. Environmentally friendly coatings not only require low VOC emissions, but also require excellent performance, such as rapid drying, good adhesion, weather resistance, etc. As an efficient catalyst, Z-130 can meet these requirements and become an important part of environmentally friendly coatings.

2.2 Application of Z-130 in polyurethane coatings

Polyurethane coatings are widely used in construction, automobile, furniture and other fields due to their excellent wear resistance, chemical resistance and decorative properties. The application of Z-130 in polyurethane coatings is mainly reflected in the following aspects:

  • Rapid Drying: Z-130 significantly shortens the drying time of the paint by accelerating the chemical reaction in polyurethane coatings. For example, at room temperature, polyurethane coatings using Z-130 can reach surface dryness within 1-2 hours and practical dryness within 4-6 hours.
  • Improving the performance of the coating: Z-130 not only accelerates drying, but also improves the hardness, wear resistance and weather resistance of the coating.
  • Improve the construction environment: The odorless properties of Z-130 make the construction environment more comfortable and reduce the health impact on construction workers.

2.3 Application of Z-130 in epoxy coatings

Epoxy coatings are widely used in industrial anti-corrosion, flooring and other fields due to their excellent adhesion, chemical resistance and mechanical properties. The application of Z-130 in epoxy coatings is mainly reflected in the following aspects:

  • Rapid Curing: Z-130 significantly shortens the curing time of the coating by accelerating the curing reaction in epoxy coatings. For example, at room temperature, using Z-130’s epoxy coating can achieve surface dryness within 2-3 hours and practical dryness within 6-8 hours.
  • Improving coating performance: Z-130 not only accelerates curing, but also improves the hardness, chemical resistance and mechanical properties of the coating.
  • Improve the construction environment: The odorless properties of Z-130 make the construction environment more comfortable and reduce the health impact on construction workers.

III. Rapid drying characteristics of Z-130

3.1 Rapid drying mechanism

The rapid drying properties of Z-130 are mainly attributed to its efficient catalytic action. Z-130 shortens the drying time of the paint by accelerating the chemical reaction in the paint. Specifically, Z-130 accelerates the reaction of isocyanate and hydroxyl groups in polyurethane coatings, and accelerates the reaction of epoxy groups and amine groups in epoxy coatings, thereby significantly shortening the drying time of the coating.

3.2 Advantages of rapid drying

  • Improving production efficiency: Rapid drying greatly shortens the construction cycle of the coating and improves production efficiency.
  • Reduce construction costs: Rapid drying reduces construction time and reduces construction costs.
  • Improve the performance of coating: Rapid drying allows the coating to form in a short period of time, reduces coating defects, and improves coating performance.
  • Improve the construction environment: Rapid drying reduces the volatility time of the coating in the construction environment and improves the construction environment.

3.3 Application cases for rapid drying

The following are some application cases of Z-130 for rapid drying in environmentally friendly coatings:

Application Fields Coating Type Drying time (show drying/hard work) Coating performance improvement
Building exterior wall Polyurethane coating 1-2 hours/4-6 hours Hardness, wear resistance
Car Painting Polyurethane coating 1-2 hours/4-6 hours Weather resistance, decorative
Industrial Anti-corrosion Epoxy coating 2-3 hours/6-8 hours Chemical resistance, mechanical properties
Floor Painting Epoxy coating 2-3 hours/6-8 hours Hardness, wear resistance

IV. Z-130’sNotes on using

4.1 Storage and Transport

  • Storage temperature: Z-130 should be stored in an environment of 5-30? to avoid high temperatures and direct sunlight.
  • Transportation Requirements: Z-130 should avoid violent vibrations and collisions during transportation to prevent packaging from being damaged.

4.2 Recommendations for use

  • Addition amount: The amount of Z-130 is generally 0.5-2% of the total amount of paint. The specific amount of added should be adjusted according to the type of paint and construction conditions.
  • Even mixing: When using Z-130, make sure it is mixed with the coating well to achieve the best catalytic effect.
  • Construction Environment: Z-130 is suitable for room temperature construction, and the construction environment should be well ventilated to avoid high temperature and high humidity.

4.3 Safety and Environmental Protection

  • Safe Operation: When using the Z-130, you should wear protective gloves and goggles to avoid direct contact with the skin and eyes.
  • Environmental Treatment: The waste liquid of Z-130 should be treated in accordance with local environmental regulations to avoid pollution to the environment.

V. Market prospects of Z-130

5.1 Market demand

As the increasingly strict environmental regulations, the market demand for environmentally friendly coatings continues to grow. As an efficient catalyst, Z-130 can meet the requirements of rapid drying and low VOC emissions of environmentally friendly coatings, and has broad market demand prospects.

5.2 Technology development trends

In the future, the technological development trend of Z-130 is mainly reflected in the following aspects:

  • High-efficiency Catalysis: Further improve the catalytic efficiency of Z-130 and shorten the drying time of the paint.
  • Multifunctionalization: Developing Z-130 with multiple functions, such as both catalytic and toughening functions.
  • Environmental Upgrade: Further improve the environmental performance of Z-130 and reduce VOC emissions.

5.3 Market competitiveness

Z-130 has strong competitiveness in the environmentally friendly coating market due to its advantages such as low viscosity, odorlessness, and high efficiency catalysis. In the future, with the continuous advancement of technologyAs the market demand grows, the market competitiveness of Z-130 will be further enhanced.

Conclusion

The low viscosity odorless amine catalyst Z-130 shows excellent rapid drying properties in environmentally friendly coatings and has become a popular choice in the coating industry. Its advantages such as low viscosity, odorlessness, and efficient catalysis not only improve the performance of the coating, but also improve the construction environment and comply with the requirements of environmental protection regulations. With the continuous growth of the market demand for environmentally friendly coatings, the Z-130 has broad market prospects and will play a more important role in the coating industry in the future.

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