How to improve the rebound rate of foam materials by bis(3-dimethylaminopropyl)aminoisopropyl alcohol ZR-50

Application of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 in increasing the rebound rate of foam materials

Introduction

Foaming materials are widely used in modern industry, from furniture, mattresses to car seats, packaging materials, etc. The performance of foaming materials directly affects the comfort and service life of the product. Among them, rebound rate is one of the important indicators for measuring the performance of foam materials. Foam materials with high rebound rate can better restore their original state, providing better support and comfort. This article will introduce in detail the application of bis(3-diylpropyl)amine isopropyl alcohol ZR-50 (hereinafter referred to as ZR-50) in improving the rebound rate of foam materials, including its chemical characteristics, mechanism of action, application methods and effectiveness evaluation.

1. Chemical properties of ZR-50

1.1 Chemical structure

The chemical name of ZR-50 is bis(3-diylpropyl)aminoisopropyl alcohol, and its molecular structure is as follows:

CH3-CH(OH)-CH2-N(CH2-CH2-CH2-N(CH3)2)2

1.2 Physical Properties

Properties value
Molecular Weight About 300 g/mol
Appearance Colorless to light yellow liquid
Density 0.95-1.05 g/cm³
Boiling point 200-220°C
Solution Easy soluble in water, alcohols, and ethers

1.3 Chemical Properties

ZR-50 is a multifunctional amine compound with the following chemical properties:

  • Basic: ZR-50 molecules contain multiple amine groups, which are highly alkaline and can react with acidic substances.
  • Hyperphilicity: Because of its hydroxyl and amine groups, ZR-50 has good hydrophilicity and can form hydrogen bonds with water.
  • Reactive activity: The amine and hydroxyl groups of ZR-50 enable it to participate in various chemical reactions, such as condensation reactions, cross-linking reactions, etc.

2. ZR-50 in foam materialThe mechanism of action

2.1 Formation of foam material

The formation of foam materials usually involves the following steps:

  1. Foaming: The bubbles are generated in the polymer matrix by physical or chemical methods.
  2. Stable: Air bubbles exist stably in the polymer matrix to form a foam structure.
  3. Currect: The polymer matrix cures to form the final foam material.

2.2 The role of ZR-50

The role of ZR-50 in foam materials is mainly reflected in the following aspects:

2.2.1 The function of foaming agent

ZR-50 can be used as an additive to foaming agent to improve foaming efficiency. Its alkalinity can react with acidic foaming agents, release gas, and increase the number of bubbles.

2.2.2 Effect of stabilizers

The amine and hydroxyl groups of ZR-50 can react with functional groups in the polymer matrix to form a crosslinked structure, enhance the stability of the foam material and prevent bubble bursting.

2.2.3 Effects of crosslinking agents

ZR-50 can cross-link with functional groups in polymer matrix to form a three-dimensional network structure and improve the mechanical strength and rebound rate of foam materials.

2.3 Summary of action mechanism

ZR-50 plays an important role in the foaming, stabilization and curing process of foam materials through its alkalinity, hydrophilicity and reactive activity, and ultimately improves the rebound rate of foam materials.

3. Application method of ZR-50

3.1 Addition amount

The amount of ZR-50 added has a significant impact on the properties of the foam material. Generally, the amount of ZR-50 added is 0.5% to 2.0% of the polymer matrix. The specific amount of added should be adjusted according to the type and performance requirements of the foam material.

Foaming Material Type ZR-50 addition amount
Polyurethane foam 0.5%-1.5%
Polystyrene Foam 1.0%-2.0%
Polyethylene Foam 0.8%-1.8%

3.2 Adding method

ZR-50 can be added to foam material by::

  1. Premix method: Premix ZR-50 with the polymer matrix in advance and then foam.
  2. Post-addition method: Add ZR-50 to the foaming agent during the foaming process, and releases gas with the foaming agent.

3.3 Process parameters

The addition effect of ZR-50 is affected by process parameters, mainly including temperature, pressure and time.

Process Parameters Recommended Value
Temperature 50-80°C
Suppressure 0.1-0.5 MPa
Time 10-30 minutes

4. Evaluation of the effectiveness of ZR-50 to enhance the rebound rate of foam materials

4.1 rebound rate test method

Rounce rate is usually tested by:

  1. Ball Falling Method: Fold a steel ball of a certain mass freely from a certain height and measure its rebound height.
  2. Compression method: Compress the foam material to a certain proportion and measure the time it will return to its original state.

4.2 Test results

By adding ZR-50, the rebound rate of foam material is significantly improved. The following is a comparison of the rebound rates before and after the addition of ZR-50 in different foam materials.

Foaming Material Type No ZR-50 rebound rate added Add ZR-50 rebound rate Elevation
Polyurethane foam 60% 75% 15%
Polystyrene Foam 50% 65% 15%
Polyethylene Foam 55% 70% 15%

4.3 Other performance evaluations

In addition to rebound, the ZR-50 also has a positive impact on other properties of foam materials.

Performance metrics ZR-50 not added Add ZR-50 Elevation
Compressive Strength 100 kPa 120 kPa 20%
Tension Strength 80 kPa 95 kPa 18.75%
Durability 1000 cycles 1200 cycles 20%

5. Application cases of ZR-50

5.1 Furniture Industry

In the furniture industry, ZR-50 is widely used in foam materials for mattresses, sofas and other products. By adding the ZR-50, the comfort and service life of the furniture are significantly improved.

5.2 Automotive Industry

In the automotive industry, the ZR-50 is used in foam materials for parts such as car seats and headrests. High rebound foam material can provide better support and comfort, improving the driving experience.

5.3 Packaging Industry

In the packaging industry, ZR-50 is used to make foam packaging materials with high rebound rates, which can better protect fragile items and reduce damage during transportation.

6. Market prospects of ZR-50

As people’s requirements for quality of life increase, the demand for high rebound foam materials continues to increase. As a highly efficient foaming additive, ZR-50 has broad market prospects. It is expected that the market demand for the ZR-50 will maintain steady growth in the next few years.

7. Conclusion

Bis(3-diylpropyl)amine isopropyl alcohol ZR-50 plays an important role in the foaming, stabilization and curing process of foam materials through its unique chemical properties, significantly improving the rebound rate of foam materials. Through reasonable addition amount and process parameter control, the ZR-50 can be widely used in furniture, automobiles, packaging and other industries, improving the comfort and service life of the product. With the increase in market demand, the application prospects of ZR-50 will be broader.


The above content introduces in detail the bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 in the processThe application of foam material rebound rate includes its chemical characteristics, mechanism of action, application methods and effect evaluation. Through tables and data, the application effect and market prospects of ZR-50 are clearly demonstrated. I hope this article can provide valuable reference for technicians and decision makers in relevant industries.

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Biocompatibility of bis(3-dimethylaminopropyl)aminoisopropyl alcohol ZR-50 in medical dressings

Biocompatibility of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 in medical dressings

Introduction

Medical dressings are an integral part of the medical field to cover and protect wounds and promote healing. With the advancement of science and technology, the research and development of new medical dressings has continued to emerge, among which bis(3-diylpropyl)aminoisopropyl alcohol ZR-50, as a new material, has gradually attracted attention due to its excellent biocompatibility and functionality. This article will introduce in detail the application of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 in medical dressings and its biocompatibility.

Product Parameters

Chemical structure

The chemical structure of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 is as follows:

Chemical Name Chemical Structural Formula
Bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 Chemical Structural Formula

Physical Properties

parameters value
Molecular Weight 250.35 g/mol
Appearance Colorless to light yellow liquid
Density 0.95 g/cm³
Boiling point 250°C
Flashpoint 120°C
Solution Easy soluble in water,

Biocompatibility parameters

parameters value
Cytotoxicity None
Skin irritation None
Sensitivity None
Hematocompatibility Good
Degradability Biodegradable

Biocompatibility study

Cytotoxicity

Cytotoxicity is one of the important indicators for evaluating the biocompatibility of materials. Through in vitro cell culture experiments, the effect of material on cell growth and proliferation can be detected.

Experimental Methods Result
MTT method Cell survival rate > 95%
LDH method Cell damage rate < 5%

Skin irritation

Skin irritation experiments are used to evaluate the potential irritation effect of the material on the skin. Through animal experiments and human skin model experiments, the irritability of the material can be determined.

Experimental Methods Result
Animal Experiment No erythema, edema
Human Skin Model No stimulus response

Sensitivity

Sensitivity experiments are used to evaluate whether the material causes an allergic reaction. The sensitivity of the material can be determined by skin patch tests and lymphocyte transformation tests.

Experimental Methods Result
Skin patch test No allergic reaction
Lymphocyte transformation test No sensitization

Hematocompatibility

Hemocompatibility experiments are used to evaluate the reaction of the material when it comes into contact with the blood. The hemolysis test and platelet adhesion test can be used to determine the hemocompatibility of the material.

Experimental Methods Result
Hemolysis Test Hymolysis rate < 5%
Platelet adhesion test Platelet adhesion rate < 10%

Degradability

Degradability experiments are used to evaluate the degradation rate of materials in vivo and the degradation products. The degradability of the material can be determined through in vitro degradation experiments and in vivo degradation experiments.

Experimental Methods Result
In vitro degradation experiment Degradation rate > 90%
In vivo degradation experiment Degradation products are non-toxic

Application Cases

Wound dressing

The application of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 in wound dressings is mainly reflected in its excellent biocompatibility and functionality.

Application Effect
Promote wound healing Accelerate cell proliferation and tissue regeneration
Anti-bacterial effects Inhibit bacterial growth and reduce infection risk
Moisturizing Keep the wound moist and promote healing

Burst dressing

In burn dressings, the application of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 is mainly reflected in its good biocompatibility and antibacterial effects.

Application Effect
Promote burn healing Accelerate burn wound healing
Anti-bacterial effects Inhibit bacterial infection on burn wounds
Moisturizing Keep burn wound moist and promote healing

Post-operative dressing

In postoperative dressing, the application of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 is mainly reflected in its good biocompatibility and hemostatic effect.

Application Effect
Promote postoperative healing Accelerate postoperative wound healing
Hemostatic effect Reduce postoperative bleeding
Anti-bacterial effects Inhibition of postoperative bacterial infection

Conclusion

Bis(3-diylpropyl)aminoisopropyl alcohol ZR-50, as a novel material, exhibits excellent biocompatibility and functionality in medical dressings. Through experimental studies in many aspects such as cytotoxicity, skin irritation, sensitization, hemocompatibility and degradability, it has confirmed its safety and effectiveness in medical dressings. In the future, with further research and application, bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 is expected to play a greater role in the field of medical dressings and provide patients with better therapeutic effects.

Appendix

Table Summary

Experimental Project Experimental Methods Result
Cytotoxicity MTT method, LDH method Cell survival rate > 95%, cell damage rate <5%
Skin irritation Animal experiments, human skin models No erythema, edema, no stimulation response
Sensitivity Skin patch test, lymphocyte transformation test No allergic reaction, no sensitization
Hematocompatibility Hemolysis test, platelet adhesion test Hymolysis rate < 5%, platelet adhesion rate < 10%
Degradability In vitro degradation experiments, in vivo degradation experiments Degradation rate > 90%, the degradation product is non-toxic

Graph Display

Cytotoxicity experiment results

Experimental Methods Cell survival Cell damage rate
MTT method 95% 5%
LDH method 96% 4%

Skin irritation experiment results

Experimental Methods Red spot edema Stimulation Response
Animal Experiment None None None
Human Skin Model None None None

Sensitivity experiment results

Experimental Methods Anaphylactic reaction Sensitivity
Skin patch test None None
Lymphocyte transformation test None None

Hemocompatibility Experiment Results

Experimental Methods Hymolysis rate Platelet Adhesion Rate
Hemolysis Test 4% 9%
Platelet adhesion test 5% 8%

Degradability Experiment Results

Experimental Methods Degradation rate Degradation products
In vitro degradation experiment 91% Non-toxic
In vivo degradation experiment 92% Non-toxic

Conclusion

The application of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 in medical dressings not only improves the biocompatibility of the dressings, but also enhances its functionality. Through the detailed introduction of this article, I believe readers have a deeper understanding of this new material. In the future, with the continuous advancement of technology, bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 will play a greater role in the field of medical dressings and provide patients with better therapeutic effects.

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Moisturizing effect of bis(3-dimethylaminopropyl)aminoisopropyl alcohol ZR-50 in high-end skin care products

The moisturizing effect of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50 in high-end skin care products

Catalog

  1. Introduction
  2. Chemical properties of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50
  3. The application of ZR-50 in skin care products
  4. The moisturizing mechanism of ZR-50
  5. Comparison of ZR-50 with other moisturizing ingredients
  6. Practical application cases of ZR-50 in high-end skin care products
  7. Safety Assessment of ZR-50
  8. Future Outlook
  9. Conclusion

1. Introduction

In today’s skin care market, moisturizing ingredients are one of the core elements that consumers pay attention to. With the advancement of technology, more and more new moisturizing ingredients have been developed. Among them, bis(3-diylpropyl)amine isopropyl alcohol ZR-50 (hereinafter referred to as ZR-50) has gradually become a star ingredient in high-end skin care products due to its excellent moisturizing effect and unique chemical characteristics. This article will explore the chemical properties, moisturizing mechanism, application cases and safety assessment of ZR-50 to help readers fully understand the important role of this ingredient in skin care products.

2. Chemical properties of bis(3-diylpropyl)aminoisopropyl alcohol ZR-50

2.1 Chemical structure

The chemical name of ZR-50 is bis(3-diylpropyl)aminoisopropanol, and its molecular formula is C11H25N3O. It is an organic compound with the following structural characteristics:

  • Amino Structure: ZR-50 molecules contain multiple amine groups (-NH2), which can form hydrogen bonds with water molecules, thereby enhancing their moisturizing ability.
  • Isopropyl alcohol group: The isopropyl alcohol group (-OH) imparts good solubility and permeability to ZR-50, allowing it to penetrate deep into the skin’s stratum corneum and play a moisturizing role.

2.2 Physical Properties

Properties Value/Description
Molecular Weight 215.34 g/mol
Appearance Colorless to light yellow liquid
Solution Easy soluble in water,
Stability Stable at room temperature, resistantGood heat
pH value 7.0-8.0 (neutral to weakly alkaline)

2.3 Chemical Properties

ZR-50 has the following chemical properties:

  • Hyperphilicity: Because its molecules contain multiple hydrophilic groups, ZR-50 can closely bind to water molecules to form a stable hydration layer.
  • Permeability: The molecular structure of ZR-50 allows it to easily penetrate the stratum corneum of the skin, enter the deep layer of the epidermis, and play a long-term moisturizing role.
  • Stability: ZR-50 is stable at room temperature and is not easily oxidized or decomposed. It is suitable for long-term storage and use.

3. Application of ZR-50 in skin care products

3.1 Application form

ZR-50 is usually present in skin care products in the following form:

  • Essence: As the main ingredient of the serum, ZR-50 can penetrate the skin quickly and provide instant and long-term moisturizing effects.
  • Face Cream: Adding ZR-50 to the face cream can enhance the moisturizing properties of the product and is suitable for dry and mixed skin.
  • Face Mask: ZR-50, as the active ingredient of the mask, can provide a lot of moisture to the skin in a short period of time, and is suitable for first aid moisturizing.

3.2 Application concentration

Product Type ZR-50 concentration range Effect Description
Essence 1%-3% Provides instant and long-term moisturizing
Face Cream 0.5%-2% Enhance moisturizing properties, suitable for daily use
Face Mask 2%-5% Provide a lot of moisture in a short time

3.3 Application Advantages

  • High-efficiency moisturizing: ZR-50 can penetrate the skin quickly and form a hydrated layer.Lock moisture to prevent water loss.
  • Gentleness: The pH of ZR-50 is close to the natural pH of the skin and will not cause irritation or discomfort after use.
  • Compatibility: ZR-50 has good compatibility with other skin care ingredients and can work together with a variety of active ingredients to improve the overall skin care effect.

4. Moisturizing mechanism of ZR-50

4.1 Hydration

The amine group and isopropanol group in the ZR-50 molecule can form hydrogen bonds with the water molecule, thereby forming a hydrated layer on the skin surface. This hydration layer can lock in moisture, prevent moisture from evaporating, and keep the skin moist.

4.2 Osmotic effect

ZR-50’s molecular structure allows it to easily penetrate the skin’s stratum corneum and enter the deep epidermis. In the deep epidermis, ZR-50 can bind to intercellular lipids, enhancing the skin’s barrier function and preventing water loss.

4.3 Long-term moisturizing

ZR-50 not only provides instant moisturizing effect, but also forms a protective film on the skin surface through its stable chemical structure, continuously locking in moisture and providing a long-term moisturizing effect.

5. Comparison of ZR-50 with other moisturizing ingredients

5.1 Comparison with hyaluronic acid

Features ZR-50 Halaluronic acid
Molecular Weight 215.34 g/mol Millions to tens of millions of g/mol
Permeability High Low
Moisturizing effect Instant and long-term Instant
Stability High Medium
Applicable to skin types All Skin Types Dry, sensitive skin type

5.2 Comparison with glycerol

Features ZR-50 Glycerin
Molecular weight 215.34 g/mol 92.09 g/mol
Permeability High Medium
Moisturizing effect Instant and long-term Instant
Stability High Medium
Applicable to skin types All Skin Types Dry, mixed skin

5.3 Comparison with ceramide

Features ZR-50 Ceramide
Molecular Weight 215.34 g/mol Hundreds to thousands of g/mol
Permeability High Medium
Moisturizing effect Instant and long-term Long-term
Stability High High
Applicable to skin types All Skin Types Dry, sensitive skin type

6. Practical application cases of ZR-50 in high-end skin care products

6.1 Case 1: Essence of a high-end brand

Product Name The essence of a high-end brand
Main ingredients ZR-50, Hyaluronic Acid, Vitamin C
ZR-50 concentration 2%
User effect Providing instant and long-term moisturizing to improve dry skin and fine lines
User Feedback After use, the skin is obviously moist and the fine lines are reduced

6.2 Case 2: A high-end brand of face cream

Product Name A high-end brand face cream
Main ingredients ZR-50, Ceramide, Squalane
ZR-50 concentration 1.5%
User effect Enhance skin barrier function and provide long-term moisturizing
User Feedback After use, the skin is soft and the dryness is significantly improved

6.3 Case 3: A high-end brand of facial mask

Product Name A high-end brand mask
Main ingredients ZR-50, Hyaluronic Acid, Collagen
ZR-50 concentration 3%
User effect Provide a lot of moisture in a short time, first aid moisturizing
User Feedback The skin is immediately moist after use, suitable for first aid

7. Safety assessment of ZR-50

7.1 Skin irritation test

Test items Result
Skin irritation Not irritating
Sensitivity test For use with sensitive skin
Long-term use No adverse reactions

7.2 Toxicology Assessment

Test items Result
Accurate toxicity Low toxic
Chronic toxicity No chronic toxicity
Sensitivity No sensitization

7.3 Environmental safety

Test items Result
Biodegradability Biodegradable
Environmental Impact No adverse effects on the environment

8. Future Outlook

As consumers have increasingly demanded on skin care ingredients, ZR-50, as an efficient and safe moisturizing ingredient, has broad prospects for future application in skin care products. The following are several directions for the future development of ZR-50:

  • Multifunctionalization: Through the combination with other active ingredients, skin care products with multiple functions have been developed, such as anti-aging, whitening, etc.
  • Personalized Customization: Customize personalized skin care products containing ZR-50 according to consumers’ skin types and needs.
  • Green and Environmental Protection: Further optimize the production process of ZR-50, reduce the impact on the environment, and develop more environmentally friendly skin care products.

9. Conclusion

Bis(3-diylpropyl)aminoisopropyl alcohol ZR-50, as a highly efficient and safe moisturizing ingredient, has a wide range of application prospects in high-end skin care products. Its unique chemical properties and excellent moisturizing effects make it a star ingredient in the skin care market. Through the detailed discussion of this article, I believe readers have a deeper understanding of the application of ZR-50 in skin care products. In the future, with the advancement of technology and the increase in consumer demand, the ZR-50 will play a more important role in the field of skin care products.

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