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Techflow Pack has been a professional automatic packaging machine manufacturer since 2006.

What Carton Sealing Methods Are Used for Pet Food Sachet Case Packing?

2026-09-03
The choice of carton sealing method in a pet food sachet case packaging line is intrinsically linked to the carton style selected for the application. At TECHFLOW PACKAGING SOLUTIONS, we primarily work with two carton formats—RSC cartons (Regular Slotted Containers) and wraparound cartons—each requiring a distinct sealing technology: adhesive tape sealing and hot-melt glue sealing, respectively.

Tape Sealing for RSC Cartons is the traditional method employed with pick-and-place case packers. In this process, the RSC carton is pre-erected into a rectangular tube with open top and bottom flaps. After the robot gripper places the sachet matrix inside, the flaps are folded closed by mechanical flap folders, and the seams are sealed using pressure-sensitive adhesive tape (usually BOPP tape with acrylic adhesive).The tape application is performed by automatic tape heads mounted on the case packer or on a downstream case sealer machine. This method is cost-effective, reliable, and provides adequate sealing strength for dry storage and distribution environments. However, tape sealing may not be ideal for cold-chain or high-humidity storage, as adhesive performance can degrade under extreme moisture. For pet food products destined for warehouse clubs or big-box retailers in Asia and North America, tape-sealed RSC cartons remain the industry standard due to their low material cost and high-speed compatibility.

Hot-Melt Glue Sealing for Wraparound Cartons is the dominant method used with wraparound case packers. Wraparound cartons start as flat corrugated blanks. The sachet bundle is placed onto the blank, and the machine folds the side, top, and bottom flaps around the product, overlapping the edges. A hot-melt adhesive application system—consisting of a heated glue tank, hoses, and precision glue guns—applies molten thermoplastic adhesive (typically EVA-based hot-melt with a melting point of 150°C to 180°C) to the flap overlap zones. Pressure rollers then compress the glued areas to form a permanent bond. Hot-melt sealing creates a rigid, tamper-evident case that is highly resistant to moisture and rough handling. It also eliminates the need for tape, giving the carton a cleaner retail appearance. For premium pet food brands selling in European supermarkets or pet specialty stores, hot-melt sealed wraparound cartons convey quality and sustainability because they use less corrugated material.

TECHFLOW PACK integrates both sealing technologies into our pet food case packaging lines and can even configure hybrid systems where tape is used for the bottom seal and hot-melt for the top seal, depending on client requirements. We also offer glue detection systems (ultrasonic or vision-based) to verify that hot-melt beads are present and correctly positioned on every carton, ensuring 100% seal integrity before cases exit the machine.
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What Special Requirements Apply to the Gripper Tools of Pet Food Sachet Case Packers?
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Related questions
1
Is a Checkweigher Mandatory on a Pet Food Sachet Case Packaging Line?
Yes, absolutely. An in-line checkweigher (also referred to as a weight inspection machine, weight checker, or dynamic weighing system) is an essential, non-negotiable component of any fully automatic pet food sachet case packaging line. At TECHFLOW PACKAGING SOLUTIONS, we mandate checkweigher integration on every pet food line we deliver because the consequences of underfilled or overfilled cases extend far beyond simple product giveaway—they encompass regulatory compliance, brand reputation, retailer chargebacks, and consumer safety.

Pet food sachets are produced at high speeds—often 200 to 400 sachets per minute—and despite the precision of upstream counting systems, errors can occur. A sachet may be miscounted due to overlapping in the sorting machine, a counting sensor may be occluded by film dust, or an operator may have accidentally loaded the wrong recipe into the HMI. Without real-time verification, these errors propagate into the finished case. An underweight case containing fewer sachets than labeled constitutes false advertising and can trigger regulatory penalties under FDA, EU FEDIAF, or local pet food labeling laws. Conversely, an overweight case gives away free product, eroding profit margins over millions of units.

The checkweigher is installed immediately after the case sealing station. As each sealed case passes over the checkweigher conveyor, a high-speed load cell (strain gauge or electromagnetic force restoration type) measures the gross weight with precision typically reaching ±1g to ±5g, depending on case size. The measured weight is compared against the target weight and acceptable tolerance limits programmed into the checkweigher controller. If a case falls outside the acceptable range—either underweight or overweight—the checkweigher triggers a pneumatic reject mechanism (a pusher arm or drop-down conveyor segment) that diverts the non-conforming case to a locked reject bin or a dedicated rework conveyor.

At TECHFLOW PACK, we design the reject station with lockable access to prevent tampering, and we integrate a feedback signal from the checkweigher to the upstream counting machine. If the checkweigher detects a trend of underweight cases—suggesting that the counting machine is consistently underfeeding—the system can automatically adjust the count setting or alert the operator. Rejected cases are then subjected to manual re-inspection, where operators open the case, count the sachets, identify the root cause, and repack the product correctly.

Beyond quality control, checkweighers provide valuable production data. They log every weight measurement with timestamps, enabling statistical process control (SPC) analysis and traceability. In the event of a customer complaint, the manufacturer can retrieve the exact weight record for the batch in question. For these reasons—regulatory compliance, economic protection, and data-driven quality assurance—a checkweigher is not an optional accessory but a mandatory safeguard on every TECHFLOW PACK pet food sachet packaging line.
2
What Special Requirements Apply to the Gripper Tools of Pet Food Sachet Case Packers?
The gripper tool (end effector) on a pet food sachet case packer must be meticulously engineered to address the unique physical properties of flexible pet food pouches, which are typically constructed from multi-layer laminated films (PET/PE, PET/AL/PE, or PP/EVOH/PE) and filled with moist, oily, or gravy-based products. At TECHFLOW PACKAGING SOLUTIONS, we design gripper systems that balance holding force, product protection, and hygiene compliance.

For pick-and-place case packers, the standard gripper technology is the vacuum suction cup array. Because pet food sachets are lightweight (often 50g to 150g each) and have relatively flat top surfaces after sealing, vacuum gripping is highly effective. However, several special requirements must be considered. First, the suction cup material must be compatible with the packaging film and resistant to oils and fats that may migrate to the surface. TECHFLOW PACK specifies FDA-compliant silicone or NBR (nitrile rubber) suction cups that resist degradation from pet food residues. Second, the vacuum generator (pump or venturi ejector) must be sized to provide adequate flow rate and vacuum level—typically -0.6 to -0.8 bar—to hold the entire sachet matrix securely during robot acceleration. Third, the gripper frame must be constructed from 304 or 316 stainless steel to withstand washdown procedures required in pet food facilities.

When handling very small sachets or slick metallized films, standard bellows suction cups may not provide sufficient grip area. In these cases, TECHFLOW PACK integrates foam vacuum pads (sponge grippers) that conform to minor surface irregularities and distribute vacuum force across a larger area, preventing drops. The foam material is selected for open-cell structure and oil resistance.

For wraparound side-loading case packers, the "gripper" function is performed by a pneumatic side-push device rather than a vacuum tool. This mechanism consists of a servo-driven or pneumatic pusher plate that contacts the side of the collated sachet bundle and slides it into the wraparound carton blank. The pusher plate surface is typically covered with a low-friction, food-grade polymer (such as UHMW-PE) to prevent film scuffing or tearing. The pusher must apply sufficient force to overcome the friction between the sachets and the carton blank, but not so much as to crush the flexible pouches. TECHFLOW PACK calibrates the pusher force and speed curves based on product sample testing, ensuring that even gravy-filled sachets are inserted without seal rupture or corner damage.

In both cases, quick-change gripper designs are essential for multi-format pet food packaging lines. TECHFLOW PACK's grippers feature tool-less release mechanisms and RFID tool identification, allowing operators to swap between vacuum cup configurations and pusher plates in under five minutes.
3
What Are the Common Collation Methods for Pet Food Sachets?
Collation—the process of arranging individual pet food sachets into the precise matrix required for case packing—is a critical determinant of line speed, accuracy, and format flexibility. At TECHFLOW PACKAGING SOLUTIONS, we deploy two primary collation methodologies depending on the chosen case packing technology: vision-guided robotic collation for pick-and-place systems, and dual-servo mechanical collation for wraparound side-load systems.

For pick-and-place robotic case packers, collation is often performed using a machine vision system paired with a high-speed industrial robot. In this advanced configuration, sachets exit the sorting machine in a single lane and enter a broad accumulation conveyor. An overhead high-resolution industrial camera (typically a GigE vision camera with LED strobe lighting) captures images of the randomly spaced sachets. Vision software running on an industrial PC or smart camera processes these images in real time, identifying the exact position, orientation, and centroid coordinates of each sachet. The robot controller receives this coordinate data via Ethernet and commands the robot gripper to dynamically pick up sachets from their detected positions—not from fixed mechanical stations. This vision-guided collation is extraordinarily flexible because it does not require mechanical guides or pusher lugs to be repositioned when changing pack patterns. Whether the recipe calls for a 3×4 matrix or a 5×6 matrix, the robot simply adjusts its pick coordinates via software. This method is ideal for multi-SKU pet food packaging lines where frequent changeovers are necessary.

For wraparound side-loading case packers, the preferred collation method is the dual-servo collation system. This mechanical approach uses two independent servo-driven mechanisms to create the pack bundle. The first servo system—often a lug chain or pusher bar—segments the incoming sachet stream into groups of the required count (e.g., 12 sachets per group). The second servo system—typically a set of side squaring plates or a compression station—aligns the sachets into a tight, rectangular block with uniform edges. The dual-servo architecture allows independent control of the indexing pitch and the squaring pressure, enabling the system to handle sachets of varying thicknesses and stiffness without jamming. Because wraparound cartons require a very precise, tight bundle to ensure clean folding and gluing, the dual-servo collation system is engineered with tight mechanical tolerances and anti-scuffing surfaces.

Both methods can achieve throughputs exceeding 300 sachets per minute when properly synchronized with the upstream sorting machine. TECHFLOW PACK often integrates a buffer station between the collation module and the case packer to decouple the two processes, allowing the case packer to index while the collation system prepares the next bundle. This decoupling is essential for maintaining high OEE on automatic pet food sachet packaging lines.
4
What Are the Common Case Packing Methods for Pet Food Sachets?
The selection of a case packing method for pet food sachets is driven by regional market preferences, retail distribution channels, carton material costs, and the required production speed. At TECHFLOW PACKAGING SOLUTIONS, we categorize the mainstream methods into two principal groups: pick-and-place case packing (also known as robotic top-loading case packing) and side-push case packing (side-loading case packing), each associated with distinct carton formats and sealing technologies.

Pick-and-Place Case Packing is the dominant method in Asian markets and is increasingly adopted globally for its flexibility and gentle product handling. In this system, a robotic arm—typically a Delta robot, SCARA robot, or Cartesian gantry—equipped with a vacuum gripper tool descends over the collated sachet matrix, engages the vacuum suction cups, lifts the entire group, and places it into a pre-erected RSC carton (Regular Slotted Container, also known as an American-style carton). The RSC carton features top and bottom flaps that are sealed using pressure-sensitive adhesive tape or hot-melt glue. This method excels when handling lightweight, flexible sachets that could be damaged by mechanical pushing forces. It also accommodates multi-layer pack patterns (e.g., two layers of 12 sachets each) and allows for easy format changeovers via HMI recipe selection. TECHFLOW PACK's pick and place case packers are engineered with stainless-steel frames and food-grade gripper materials to meet pet food hygiene standards.

Side-Push (Side-Load) Case Packing is the preferred method in European and North American markets, particularly when wraparound cartons are used. In this configuration, the collated sachet bundle is pushed horizontally by a pneumatic or servo-driven pusher plate into a wraparound carton blank. The machine then folds the carton flaps around the product bundle and seals them with hot-melt adhesive. Wraparound cartons use less corrugated material than RSC cartons and offer superior retail presentation because the product is visible through the front panel. The side-push mechanism is mechanically simpler than robotic picking, offering very high speeds (up to 30 cases per minute) and exceptional reliability for single-layer or flat pack patterns. TECHFLOW PACK's wraparound side-loading case packers integrate seamlessly with our dual-servo collation systems to ensure tight, square bundles before insertion.

Some clients also explore hybrid systems that combine robotic pre-picking with side-loading for complex multi-SKU cases. Ultimately, the choice between pick-and-place and side-push depends on whether the priority is maximum flexibility (pick-and-place) or maximum material efficiency and speed (side-push). TECHFLOW PACKAGING SOLUTIONS offers both technologies and provides consultative line design services to help pet food manufacturers select the optimal case packing solution for their specific market and product portfolio.
5
What Is the Core Control Principle of the Pet Food Sachet Sorting Machine?
The pet food sachet sorting machine is a masterpiece of packaging automation engineering, and its core control principle relies on the synergistic interaction of multi-row roller differential speeds, multi-point photoelectric sensor arrays, and PLC-servo closed-loop control. At TECHFLOW PACKAGING SOLUTIONS, we design our sorting machines to handle the chaotic input conditions typical of high-speed pet food production—where sachets may arrive overlapping, curled, or randomly oriented—and transform them into a perfectly ordered, single-file output stream ready for counting and collation.

The mechanical foundation of the sorter consists of several parallel rows of driven rollers, each powered by independent servo motors or variable-speed gear motors. These rollers are arranged in sequential zones: an infeed zone, a spreading zone, an alignment zone, and a discharge zone. The control principle exploits velocity differentials between adjacent roller rows. For example, the infeed rollers may operate at 30 meters per minute, while the intermediate spreading rollers run at 45 meters per minute, and the final alignment rollers at 60 meters per minute. This progressive acceleration naturally pulls overlapping sachets apart, much like a card dealer separating a deck. The faster downstream rollers create tension on the sachets, flattening curled edges and stretching out bunched groups.

Embedded throughout the roller bed are photoelectric sensors (through-beam and diffuse-reflective types) positioned at multiple points along the conveyor path. These sensors detect the presence, length, and spacing of each sachet in real time. The sensor data is fed into a high-speed PLC (Programmable Logic Controller), typically a Siemens S7-1500 or equivalent, which executes the sorting algorithm. When the PLC detects two sachets traveling too closely together, it momentarily reduces the speed of the upstream roller row or briefly accelerates the downstream row to inject additional spacing. If a sachet is detected as severely skewed, the PLC activates side-mounted pneumatic pusher bars or motorized guide flaps to gently nudge it back into the centerline.

The servo drives provide the precision and responsiveness required for this dynamic control. Unlike traditional AC motors with fixed speeds, servo systems can accelerate from zero to full speed in milliseconds and hold exact positional accuracy. This allows the sorting machine to handle sachets of varying lengths—from 80mm snack pouches to 250mm large-dog meal pouches—without mechanical changeovers. The entire process—flattening, position correction, spacing injection, and ordered discharge—happens continuously at throughputs exceeding 300 sachets per minute. At TECHFLOW PACK, we calibrate each sorting machine with actual client product samples to optimize roller textures, sensor sensitivity, and servo tuning curves, ensuring reliable performance even with glossy or metallized film materials that challenge conventional sensor systems.
6
Must the Orientation and Front/Back Side of Pet Food Sachets Be Determined During the Sorting Process?
Whether sachet orientation detection and front/back side identification are mandatory during the sorting process depends entirely on the client's final packaging specifications, brand positioning, and downstream retail requirements. At TECHFLOW PACKAGING SOLUTIONS, we have observed a clear correlation between product market positioning and the complexity of sorting logic required. For premium pet food brands—particularly those selling gourmet wet food, veterinary diets, or organic treats in high-end retail channels—presentation consistency is paramount. In these cases, every sachet must exit the sorting machine with identical orientation (all logos facing the same direction) and the correct face (front or back) aligned, especially when the sachets are destined for intermediate cartoning (small box packing) before case packing.

When sachets are packed into small retail cartons or display boxes prior to case packing, inconsistent orientation creates a disorderly appearance that undermines brand perception on store shelves. Consumers expect uniformity, and retailers increasingly demand shelf-ready packaging. To meet this requirement, TECHFLOW PACK integrates machine vision systems (high-resolution industrial cameras with LED illumination) above the sorting conveyor. These vision systems capture images of each passing sachet, and image processing algorithms detect the position of printed features—such as logos, barcodes, or lot numbers—in milliseconds. If a sachet is detected as upside-down or backward, the system triggers a pneumatic flipper mechanism or diverts the sachet to a reject lane for manual correction, while correctly oriented sachets continue into the collation stream.

Conversely, for economy-tier pet food products or bulk wholesale packs where sachets are loaded directly into large shipping cases without intermediate cartoning, strict orientation control may be unnecessary. In these applications, the primary objective is simply to ensure that sachets are neatly stacked, counted accurately, and packed securely. The sorting machine focuses on singulation, flattening, and spacing rather than orientation verification. This reduces equipment cost and complexity while maintaining throughput.

Ultimately, the decision to implement orientation detection should be made during the packaging line design phase. TECHFLOW PACK's engineering team works closely with pet food manufacturers to define the acceptable quality standards for each SKU. We offer scalable sorting solutions: from basic mechanical sorters without vision for generic products, to advanced vision-guided sorting stations for premium brands requiring 100% orientation compliance. This flexibility ensures that clients do not over-invest in unnecessary technology while still meeting the exacting demands of their target markets.
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