Sleeve Labeling Machine
For automatic sleeve labeling machines, here are some perfect performances, please refer to them:
- High labeling speed
- Wide application
- Full automatic
- PLC controlled
Description For Sleeve Labeling Machine
Sleeve labeling machines work by applying a sleeve label, which is a thin film made of PVC, PET, or other materials, around the product. The label is then heated and shrunk onto the product using steam, hot air, or infrared radiation. This creates a tight, secure fit that conforms to the contours of the product, enhancing its appearance and providing tamper evidence.
Compared with other types of labeling machines, They can handle a wide range of container shapes and sizes and can apply full-body or partial-sleeve labels with high accuracy and consistency. Sleeve labels also offer more space for branding and product information, as they can cover the entire surface of the container.
In addition, sleeve labeling machines can be integrated into existing production lines, and can operate at high speeds, making them suitable for mass production. They can also be customized to meet specific labeling requirements, such as applying tamper-evident seals or printing barcodes and other product information on the label.
Do You Know Working Principle For Sleeve Labeling Machine?
A sleeve labeling machine is used to apply shrink sleeves or labels to containers, bottles, or other products. The working principle of a sleeve labeling machine involves the following steps:
- Feeding: The containers are fed into the labeling machine through a conveyor belt.
- Labeling: The shrink sleeves or labels are dispensed from a roll and cut to the desired length. The labels are then placed over the containers and held in place by vacuum suction or mechanical arms.
- Shrinkage: The labeled containers are then passed through a heating tunnel where heat is applied to the sleeves. The heat causes the sleeves to shrink and conform to the shape of the container.
- Cooling: After the sleeves have been shrunk, the labeled containers are passed through a cooling tunnel to cool down the containers and ensure that the sleeves remain securely in place.
The sleeve labeling machine uses a combination of heat and pressure to shrink and apply the label to the container. This process creates a seamless and visually appealing finish for the container, which enhances its overall appeal and brand recognition. The machine can be used for a wide range of container shapes and sizes, making it a versatile labeling solution for various industries such as food and beverage, cosmetics, and pharmaceuticals.
Technical Data
- Tab1
Power | 3.0kw |
Production speed | 150 bottles per min |
Applicable Diameter Container | φ28 mm ~ φ120 mm |
Applicable Label Length | 30~250 mm |
Applicable Thickness Label | 0.03~0.13 mm |
Dimension of Host Machine | 2100*850*2000mm |
Features

Versatility
One of the biggest advantages of sleeve labeling machines is their ability to handle a wide range of container shapes and sizes. This makes them a versatile labeling solution for manufacturers who need to label a variety of products, from bottles and jars to cans and containers. Sleeve labels can also be applied to irregularly shaped containers, giving manufacturers more flexibility when it comes to packaging design. Additionally, sleeve labeling machines can apply full-body or partial sleeve labels, giving manufacturers more options for branding and product information.
Tamper-Evidence
Sleeve labeling machines are designed to provide tamper evidence, which is a critical safety feature for many products, particularly those in the food, beverage, and pharmaceutical industries. Sleeve labeling machines can apply tamper-evident labels that must be cut or destroyed in order to open the product. This provides an extra layer of security for consumers and helps ensure the integrity of the product. Tamper-evident labeling is also required by regulatory bodies in many countries, making sleeve labeling machines a popular choice for manufacturers who need to comply with these regulations.


High-Quality Graphics
Sleeve labeling machines can produce labels with high-quality graphics and images that give products a premium look and feel. Sleeve labels offer more space for branding and product information than traditional labels, and can be printed with vibrant colors and fine details. This is particularly important for products that rely on a visual appeal to attract consumers, such as beverages, cosmetics, and household products. Sleeve labels can also be printed with variable data, such as batch numbers, expiry dates, and barcodes, making them a versatile labeling solution for manufacturers who need to include this information in their products. Overall, the ability to produce high-quality graphics and images is a key feature of sleeve labeling machines that sets them apart from traditional labeling machines.
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Precision application: Sleeve labeling machines use advanced technology to ensure that labels are applied with precision and accuracy. This includes sensors and control systems that ensure that labels are applied in the correct position, with the correct tension, and at the correct speed. This precision application allows sleeve labeling machines to operate at high speeds without sacrificing accuracy.
High-speed conveyor systems: Sleeve labeling machines are equipped with high-speed conveyor systems that can transport containers through the labeling process quickly and efficiently. These conveyor systems can be customized to accommodate a variety of container shapes and sizes, and are designed to minimize downtime and maximize throughput.
Automated label handling: Sleeve labeling machines often include automated label handling systems that can handle large volumes of labels quickly and efficiently. This can include label splicers that allow for continuous labeling, as well as label dispensers and cutters that can apply labels to containers at high speeds.
Modular design: Many sleeve labeling machines are designed with a modular design, which allows for easy maintenance and upgrades. This modular design can also help to reduce downtime, as individual components can be replaced or repaired quickly and easily.
Sleeve labeling machines are often used in conjunction with other machines in a packaging line to create a complete labeling and packaging system. Some common machines that are used with sleeve labeling machines include:
- Filling machines: Filling machines are used to fill containers with products such as liquids, powders, or granules. The filled containers are then transported to the sleeve labeling machine to be labeled.
- Capping machines: Capping machines are used to cap containers with lids or other closures. After the containers are filled and labeled by the sleeve labeling machine, they are transported to the capping machine to be sealed.
- Shrink tunnels: Shrink tunnels are used to heat-shrink the sleeve labels onto the containers. After the labels are applied by the sleeve labeling machine, the containers are transported to the shrink tunnel to be heated and sealed.
- Inspection machines: Inspection machines are used to check the quality of the labels and containers after they have been labeled and packaged. These machines may include sensors, cameras, or other inspection tools to detect defects or errors in the labeling or packaging process.
- Conveyor systems: Conveyor systems are used to transport containers between the various machines in the packaging line. These systems may include belts, rollers, or other types of transport mechanisms to move the containers along the production line.
Adjusting a sleeve labeling machine for different label sizes is a relatively straightforward process. Here are the basic steps:
Determine the label size: Before adjusting the machine, you’ll need to know the size of the labels you’ll be using. This will include the height and circumference of the labels.
Adjust the machine settings: Once you have the label size information, you can adjust the settings on the sleeve labeling machine. This may involve adjusting the height and width of the label guide, as well as the position of the cutting blade.
Test the machine: Once the machine settings have been adjusted, you should test the machine with a few sample labels to ensure that the labels are being applied correctly. This may involve making further adjustments to the machine settings until the labels are being applied accurately and with the desired tension.
Repeat for different label sizes: If you’ll be using different label sizes in the future, you’ll need to repeat the above steps to adjust the machine for each new label size.
It’s important to note that some sleeve labeling machines may have different adjustment processes depending on the specific machine model and manufacturer. For this reason, it’s recommended to refer to the user manual that comes with your machine for detailed instructions on how to adjust the machine for different label sizes. Additionally, many sleeve labeling machines may come with support from the manufacturer, who can provide guidance on how to adjust the machine settings for different label sizes.
Sleeve labeling machines use a variety of mechanisms to ensure the accurate placement of labels on each bottle. One common method is to use sensors that detect the position of the bottle as it moves along the conveyor. These sensors can detect the height, diameter, and shape of each bottle, allowing the machine to adjust the label placement accordingly.
Another key feature of sleeve labeling machines is their ability to precisely control the shrinkage of the sleeve label. This is typically achieved by using a combination of heat and steam to shrink the label onto the bottle. By carefully controlling the temperature and timing of the heat and steam, the machine can ensure that the label conforms perfectly to the shape of the bottle, with no wrinkles or creases.
In addition to these mechanisms, many sleeve labeling machines also feature advanced software that allows for precise label placement and adjustment. This software can be used to set up labeling parameters for different bottle sizes and shapes, as well as to fine-tune the label placement during operation.