From protein and milk powder to flour alternatives to ground coffee to legal cannabis products, consumers love their powders in convenient stand-up pouches.
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CPG companies have been responding to this demand by offering their granular and powder products in this popular packaging format.
If youre considering a powder packing machine to automate the filling and sealing of your preformed pouches, chances are you are wondering how this whole thing works.
Today were taking an in-depth look at the processes involved in packaging powder products into premade bags with a pouch fill and seal machine.
Pouch filling and sealing machines accomplish two main things: Dispense product into preformed pouches and then seal the bags shut.
There are two main designs for this machine type: Rotary and inline. The differences between the two are in the machine layout.
An inline pouch machine packages products in a straight line, with the beginning and ending points of the process at opposite ends, requiring more floor space.
A rotary pouch packing machine is laid out in a circular fashion, meaning the start point of the packaging process is right next to the endpoint. This creates a better ergonomic setup for operators and requires minimal floor space. Because of their popularity for powder packaging, were taking a closer look at only the rotary design in this article.
Rotary pouch fill and seal machines can feature one, two, or four bag infeed lanes, with a simplex (single lane) model being the most in-demand for powder packaging. When packaging speed requirements are in excess of single-lane output, a company can upgrade to a machine with additional infeed lanes to meet throughput needs.
On a rotary pouch packing machine, separate static stations are laid out in a circular fashion, each one performing a distinct step in the pouch packaging process. There are usually between 6 10 stations on a rotary pouch fill and seal machine, with 8 stations being the most popular configuration. The interior portion of the machine moves in a counter-clockwise fashion, stopping briefly at each station.
A worker will load premade pouches manually at regular intervals into the bag infeed magazine, which must be carefully shingled to ensure proper loading into the pouch packing machine. These pouches will then be conveyed to the interior of the machine one-by-one by a bag feeding roller.
In , Viking designed a proprietary bag infeed featuring a robotic arm that uses vacuum suction to grasp each pouch and transfer it to the bag grippers. This innovative technology effectively eliminates the manual labor involved in loading and shingling pouches. Contact us today to see an exclusive video of this technology in action.
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A set of bag grippers, one on each side, grasps the loaded pouch and consistently holds it as it moves through each station on the powder packing machine. On the best automatic pouch fill and seal machines, these grippers are on stainless steel arms and can easily support fills of up to 10 kg, even with high use over long periods of time.
If date or lot codes are required on the finished pouch, printing or embossing equipment can be added at this station. Both inkjet and thermal printers are available, with inkjet being the preferred option. Embossing equipment creates raised characters in the seal area of the pouch.
Powder pouches are usually fitted with zipper reclosures. To fill the bag with product, this zipper must be fully opened. To do this, vacuum suction pads grip the lower part of the pouch and opening jaws catch the top part. The bag is gently opened, and at the same time, a blower blasts the inside of the pouch with clean air to ensure it is completely open. If the pouch does not have a zipper, the suction pads still engage the bottom part of the bag but only the air blower is engaged at the top of the pouch.
Most utilized for dispensing powder into bags is the auger filler. This filling apparatus uses a long screw-type mechanism to dispense discrete quantities of powder into each pouch. Different auger configurations are required depending upon if your powder product is free flow or non-free flow.
Dust is most often released at transfer points in a powder packaging system. For this reason, a dust hood is recommended (pictured at right), which is placed directly above the filling apparatus to help contain the spread of airborne particulates.
In powder packaging, there will always be some loose particulates that end up on machine surfaces. It is vitally important to clean your pouch packing machine at regular intervals to prevent build-up that could impede operation or affect product quality.
There are a few options available at this point in the powder packing process:
To ensure all remaining air is removed from the bag prior to sealing, two deflator plates gently squeeze the pouch.
To seal the bag shut, a pair of hot seal bars close over the top area of the pouch. The heat from these bars causes the sealant layers of the pouch to adhere to one another, creating a strong seam.
To flatten and strengthen the seam, a cooling bar passes over the heat sealed area of the pouch. The finished powder pouch is then discharged from the machine and deposited into a receptacle or conveyed down the line for further processing.
Interested in powder filling and sealing machines, but unsure of what to look for when shopping for this equipment type? Our experts answer 10 top questions and explain what to look for in our free pouch packing machine guide:
No matter what type of product you are packaging, it is always good to know how various packaging machines in your production line work. This helps you easily determine the source of the problem in case you encounter issues in the packaging process. We hope that this guide was able to help you get a good grip on how powder fillers and powder fillers work. You can also find more well-performed packaging machines here in Levapack.
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