Melissa 646-076, 646-80 manual Opskrifter, Chill out-hindbærsmoothie, Jordbær-/hindbærsmoothie

Models: 646-076 646-80

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Opskrifter

Med din nye smoothieblender kan du lave et væld af lækre, mættende iskolde smoothies – det er kun fantasien, som sætter grænser. Det bedste er selvfølgelig, at du kan blande ingredienserne i og drikke din smoothie af ét og samme bæger, som kan vaskes i opvaskemaskinen ... dvs. ingen oprydning!

Nedenfor finder du et par lækre opskrifter, som sikrer dig en god start med din nye smoothieblender.

Chill out-hindbærsmoothie

50 g hindbær

1¼ dl appelsinjuice

½tsk. vaniljesukker 4 isterninger

1.Kom alle ingredienserne i drikkebægeret.

2.Lås bægeret fast, og blend, til konsistensen er jævn.

3.Drikken er klar til servering.

Jordbær-/hindbærsmoothie

35 g hindbær

25 g jordbær

100 ml vaniljeyoghurt

100 ml mælk

1 tsk. jordbærsyltetøj

1.Kom alle ingredienserne i drikkebægeret.

2.Lås bægeret fast, og blend, til konsistensen er jævn.

3.Drikken er klar til servering.

Hindbær-/banansmoothie

1 dl hindbær

½banan

½dl appelsinjuice

½spsk. vaniljesukker 2 isterninger

½dl minimælk

1.Kom alle ingredienserne i drikkebægeret.

2.Lås bægeret fast, og blend, til konsistensen er jævn.

3.Drikken er klar til servering.

Jordbær-/klementinsmoothie

1 dl jordbær

½klementin 2½ dl minimælk

1 tsk. flormelis

1.Kom alle ingredienserne i drikkebægeret.

2.Lås bægeret fast, og blend, til konsistensen er jævn.

3.Drikken er klar til servering.

Ananas-/banansmoothie

3 skiver ananas

½dl minimælk

½dl kokosmælk

½banan

5 isterninger

1.Kom alle ingredienserne i drikkebægeret.

2.Lås bægeret fast, og blend, til konsistensen er jævn.

3.Drikken er klar til servering.

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Melissa 646-076, 646-80 manual Opskrifter, Chill out-hindbærsmoothie, Jordbær-/hindbærsmoothie, Hindbær-/banansmoothie

646-076, 646-80 specifications

Melissa 646-80 and 646-076 are part of a series of advanced polycarbonate materials developed for a diverse range of applications in various industries. These materials are renowned for their exceptional strength, durability, and versatility, which make them suitable for both architectural and industrial uses.

A standout feature of Melissa 646-80 and 646-076 is their remarkable impact resistance. These polycarbonate grades can effectively withstand high-stress situations and resist shattering, which makes them ideal for safety and security applications, such as in protective barriers, safety glasses, and riot shields. Their resilience contributes to their longevity and reliability in environments where traditional materials may fail.

In terms of optical clarity, both grades offer outstanding transparency, resulting in a light transmission of over 90%. This characteristic makes them suitable for applications requiring visibility without obstructions, such as in light fixtures, signage, and glazing solutions. Additionally, the materials are compatible with various coatings and can be treated to enhance UV resistance, helping to prevent discoloration and degradation from harmful sunlight.

These polycarbonate materials also display excellent thermal stability, enabling them to perform in a wide temperature range without significant deformation. This thermal resilience is crucial for applications in automotive and aerospace industries, where materials are often subjected to extreme conditions.

The processability of Melissa 646-80 and 646-076 is another distinguishing feature. These grades can be easily molded and extruded, allowing for the fabrication of complex shapes and components. This flexibility makes them a favorite among manufacturers seeking to innovate in product design without sacrificing performance or safety.

Moreover, the eco-friendliness of polycarbonate materials cannot be overlooked. Being fully recyclable, Melissa 646-80 and 646-076 align with increasing global demands for sustainable product solutions. This sustainability aspect is increasingly important as industries strive to reduce their carbon footprint and adopt greener practices.

In summary, Melissa 646-80 and 646-076 are leading-edge polycarbonate materials characterized by their durability, impact resistance, optical clarity, and thermal stability. Their versatility and eco-friendliness make them a preferred choice across various sectors, including construction, automotive, and consumer goods, positioning them for continued growth in numerous applications.