MOQ: | 30000 s.q.m |
Standard Packaging: | EPE film + PE wrap + Processed wooden pallet |
Delivery Period: | 30~45 days |
Payment Method: | T/T, L/C |
Supply Capacity: | 60000kg per week |
75 micron opaque blue mono-oriented polypropylene (MOPP) film is mainly used in the production of flexible packaging materials that
require an opaque or white-colored surface. The opaque white color provides a solid background that enhances the visibility of the printed
designs, text, and graphics and makes it an ideal choice for various packaging applications.
Here are some of the common applications of 75-micron opaque white MOPP film:
1. Food Packaging:
The opaque white MOPP film is widely used in food packaging applications that require an attractive and hygienic packaging solution.
It is commonly used in packaging materials such as snack bags, confections, dry food, and baked goods.
2. Consumer Packaging:
75-micron opaque white MOPP film is used in a variety of consumer packaging applications such as cosmetic packaging, health and beauty
products, and household items.
3. Industrial Packaging:
The MOPP film is also used in industrial packaging applications such as powders, pet food, and fertilizers.
4. Labels and Stickers:
Opaque white MOPP film provides a high-quality base material for printing labels and stickers that require an opaque white background.
Overall, 75 micron opaque blue MOPP film is a versatile and cost-effective solution for various packaging and labeling applications that require
an opaque or white-colored surface. Its excellent printability, seal strength, and moisture barrier properties make it an ideal choice for many
industries.
Silicone coated monoaxially oriented polypropylene (MOPP) film and cast polypropylene (CPP) film are both commonly used in various
applications. However, there are significant differences in their physical properties, and these differences significantly impact their application
scenarios. Here are some of the significant differences in the application scenarios between these two types of films:
1. Tensile Strength:
MOPP has a higher tensile strength than CPP, which makes it ideal for applications where high strength and robustness are required.
Conversely, CPP's lower tensile strength makes it more suitable for applications where strength is not the primary consideration.
2. Puncture Resistance:
MOPP has excellent puncture resistance, which makes it more appropriate for applications where there may be the potential for physical
damage, like tapes and labels. CPP, on the other hand, may not be suitable for these applications due to its lower puncture resistance.
3. Printing Quality:
MOPP has a smoother surface than CPP, making it more ideal for printing high-quality graphics or fine details.
CPP mainly displays better print quality compared to other films.
4. Clarity:
CPP offers excellent optical clarity, making it more suitable for applications that require transparency, such as food packaging. MOPP,
on the other hand, may be less appropriate in these situations as it provides slightly hazy clarity.
5. Temperature Resistance:
MOPP offers better thermal stability, making it suitable for high-temperature applications. CPP, on the other hand, may not perform well
under high-temperature conditions.
Overall, the choice between silicone coated MOPP film and cast polypropylene (CPP) film depends on the application's specific requirements.
MOPP is a great choice for applications that require high strength, puncture resistance, and high-temperature operations. CPP's superior optical
clarity and relatively lower costs make it more suitable for applications such as flexible packaging, shrink film packaging, and label applications.
S/NO | Test Item | Unit | Executive Standard | Results | |
1 | Appearance | - |
No creases, damage, pollution or rough edges |
ok | |
2 | Width | mm | GB/T 6673-2001 | 1220 | |
3 | Thickness | μm | GB/T 6673-2001 | 75 | |
4 | Tensile strength (MD) | MPa | GB/T 1040.3-2006 | 325 | |
5 | Elongation @ break | MD | % | GB/T 1040.3-2006 | 48 |
TD | 610 | ||||
6 | Surface tension | mN/m | GB/T 14216-2008 | ≥42, Double | |
7 | Release force | Inner | gf/25mm after 20hrs.Finat 10 | 5-10 | 6 |
Outer | 10-20 | 13 | |||
8 | Subsequent Adhesion | Inner | % | ≥85 | 90 |
outer | ≥85 | 92 |
MOQ: | 30000 s.q.m |
Standard Packaging: | EPE film + PE wrap + Processed wooden pallet |
Delivery Period: | 30~45 days |
Payment Method: | T/T, L/C |
Supply Capacity: | 60000kg per week |
75 micron opaque blue mono-oriented polypropylene (MOPP) film is mainly used in the production of flexible packaging materials that
require an opaque or white-colored surface. The opaque white color provides a solid background that enhances the visibility of the printed
designs, text, and graphics and makes it an ideal choice for various packaging applications.
Here are some of the common applications of 75-micron opaque white MOPP film:
1. Food Packaging:
The opaque white MOPP film is widely used in food packaging applications that require an attractive and hygienic packaging solution.
It is commonly used in packaging materials such as snack bags, confections, dry food, and baked goods.
2. Consumer Packaging:
75-micron opaque white MOPP film is used in a variety of consumer packaging applications such as cosmetic packaging, health and beauty
products, and household items.
3. Industrial Packaging:
The MOPP film is also used in industrial packaging applications such as powders, pet food, and fertilizers.
4. Labels and Stickers:
Opaque white MOPP film provides a high-quality base material for printing labels and stickers that require an opaque white background.
Overall, 75 micron opaque blue MOPP film is a versatile and cost-effective solution for various packaging and labeling applications that require
an opaque or white-colored surface. Its excellent printability, seal strength, and moisture barrier properties make it an ideal choice for many
industries.
Silicone coated monoaxially oriented polypropylene (MOPP) film and cast polypropylene (CPP) film are both commonly used in various
applications. However, there are significant differences in their physical properties, and these differences significantly impact their application
scenarios. Here are some of the significant differences in the application scenarios between these two types of films:
1. Tensile Strength:
MOPP has a higher tensile strength than CPP, which makes it ideal for applications where high strength and robustness are required.
Conversely, CPP's lower tensile strength makes it more suitable for applications where strength is not the primary consideration.
2. Puncture Resistance:
MOPP has excellent puncture resistance, which makes it more appropriate for applications where there may be the potential for physical
damage, like tapes and labels. CPP, on the other hand, may not be suitable for these applications due to its lower puncture resistance.
3. Printing Quality:
MOPP has a smoother surface than CPP, making it more ideal for printing high-quality graphics or fine details.
CPP mainly displays better print quality compared to other films.
4. Clarity:
CPP offers excellent optical clarity, making it more suitable for applications that require transparency, such as food packaging. MOPP,
on the other hand, may be less appropriate in these situations as it provides slightly hazy clarity.
5. Temperature Resistance:
MOPP offers better thermal stability, making it suitable for high-temperature applications. CPP, on the other hand, may not perform well
under high-temperature conditions.
Overall, the choice between silicone coated MOPP film and cast polypropylene (CPP) film depends on the application's specific requirements.
MOPP is a great choice for applications that require high strength, puncture resistance, and high-temperature operations. CPP's superior optical
clarity and relatively lower costs make it more suitable for applications such as flexible packaging, shrink film packaging, and label applications.
S/NO | Test Item | Unit | Executive Standard | Results | |
1 | Appearance | - |
No creases, damage, pollution or rough edges |
ok | |
2 | Width | mm | GB/T 6673-2001 | 1220 | |
3 | Thickness | μm | GB/T 6673-2001 | 75 | |
4 | Tensile strength (MD) | MPa | GB/T 1040.3-2006 | 325 | |
5 | Elongation @ break | MD | % | GB/T 1040.3-2006 | 48 |
TD | 610 | ||||
6 | Surface tension | mN/m | GB/T 14216-2008 | ≥42, Double | |
7 | Release force | Inner | gf/25mm after 20hrs.Finat 10 | 5-10 | 6 |
Outer | 10-20 | 13 | |||
8 | Subsequent Adhesion | Inner | % | ≥85 | 90 |
outer | ≥85 | 92 |