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Model Number : Customized
Brand Name : SieracTech
Packaging Details : Seaworthy Export Packaging
MOQ : 1
Delivery Time : 90 days
Payment Terms : T/T,L/C
Price : Negotiable
Supply Ability : 1 Units/Month
Certification : CE/IO
Place of Origin : China
Bottle packaging requires coordinated product feeding, carton loading, inspection, and downstream handling. Each transfer must match the product orientation, packaging format, and operating conditions of the next machine.
SieracTech engineers bottle cartoning and shrink packaging solutions around these requirements. The proposed configuration combines automatic packaging equipment with manual tray-loading and final case-packing stations, supported by conveyors, electrical distribution, and integrated controls.
Bottle dimensions, carton construction, required output, inspection functions, and available factory space determine the final equipment configuration.
Upstream bottle preparation:
Bottle Unscrambling → Ionized Air Rinsing → Filling → Capping → Bottle Labeling and Inspection
Cartoning and secondary packaging:
Bottle Transfer → Horizontal Cartoning → Tamper-Evident Labeling → Carton Coding and Inspection → Manual Grouping or Tray Loading → Shrink Wrapping → Manual Case Packing
Filling, capping, and bottle-labeling equipment are interface equipment in the reference layout. Their supply scope is confirmed separately.

The bottle unscrambler receives randomly oriented bottles and delivers them upright to the conveyor. A bottle elevator, unscrambling turntable, guides, and rejection components prepare bottles for the downstream rinsing process.
The reference machine accommodates bottle diameters or widths of 40–95 mm and heights of 80–250 mm. Actual suitability depends on bottle shape, rigidity, and handling characteristics.
The six-head air rinser cleans empty bottle interiors before filling. Bottle inversion, clean compressed air, static neutralization, and vacuum suction work together to remove loose particles.
The reference configuration lists a capacity of 60–100 bottles/min, bottle diameters of 40–110 mm, and a minimum bottle-mouth diameter of 18 mm. Cleaning performance and final operating conditions require application testing.
The horizontal cartoner uses intermittent motion, servo drives, and electronic cams to coordinate carton opening and bottle loading.
Product and carton detection control the loading sequence:
Bottle orientation, loading tools, carton guides, and closure tooling are evaluated against actual product samples and carton blanks.
The proposed configuration includes two vision inspection systems. Cameras, lighting, sensors, and inspection software can be configured to check selected packaging features, including label presence, printed codes, cap appearance, and carton identification.
Inspection positions are selected according to feature visibility. Bottle checks are performed before cartoning where necessary, while carton checks are positioned after the relevant labeling or printing operation.
The final inspection scope, defect criteria, and automatic rejection arrangements are defined during the technical review.
The labeling module uses servo-driven label dispensing and carton detection to apply self-adhesive labels to the specified carton area. Label dispensing is inhibited when no carton is present.
The seal position, label material, carton surface, and number of sealing points must be confirmed. The reference machine is described as a single-sided labeling configuration.
The film wrapper and shrink tunnel package prepared carton groups in shrink film. The wrapper detects the incoming pack and seals the film before the pack passes through the heated tunnel.
The documented application includes three-carton shrink packs, with plastic or cardboard trays specified for one bottle format. Manual platforms support grouping and tray loading.
Final pack dimensions, film selection, tray construction, and thermal settings are subject to evaluation.
Slat-chain conveyors, curved sections, and distributed drives connect the packaging operations within the available floor space.
Manual tray-loading platforms and a final packing station provide operator access for grouping, tray loading, and case packing. The final layout considers product transfers, replenishment, maintenance access, and manual handling capacity.
SieracTech’s proposed scope includes electrical distribution, a main control cabinet, cabling, pneumatic tubing, cable trays, and integrated line controls.
Engineering review defines how the equipment responds to product shortages, downstream accumulation, inspection rejection, machine faults, and production restarts. Interfaces with existing equipment are agreed before commissioning.
Documented control functions include:
The final control platform, communication method, and external interfaces are confirmed for the project.
The cartoner configuration includes guarded access, safety-door interlocks, an independent safety relay, carton-shortage alarms, and air-pressure protection.
The proposal specifies SUS304 stainless steel manual platforms and stainless steel construction for selected machine structures. Final material selection, cleaning access, and safety requirements are reviewed against the operating environment and destination requirements.
| Item | Configuration |
|---|---|
| Main application | Bottle cartoning and secondary packaging |
| Cartoning method | Horizontal intermittent motion |
| Drive system | Servo drives and electronic cams |
| Carton style | Tuck-in cartons, subject to sample evaluation |
| Inspection | Two vision systems in the proposed configuration |
| Carton labeling | Self-adhesive tamper-evident label application |
| Multipack format | Three-carton shrink packs |
| Tray loading | Manual platforms |
| Final case packing | Manual packing station |
| Line integration | Conveyors, electrical distribution, and integrated controls |
| Reference power supply | 380–415 V, three-phase, 50 Hz |
| Production speed | Confirmed according to the approved application and line configuration |
| Bottle and carton compatibility | Subject to drawings, samples, and tooling evaluation |
Actual production speed depends on product dimensions, carton quality, feeding conditions, inspection requirements, packaging configuration, and final line validation.
SieracTech can evaluate application-specific requirements for:
Customization is subject to technical evaluation and final URS confirmation.
SieracTech develops and manufactures intelligent packaging machinery and integrates mechanical equipment with electrical controls and software.
The company’s documented capabilities include R&D, solution engineering, electrical engineering, software development, machining, and equipment assembly. These capabilities support the development of handling components, machine configurations, and interfaces for customized packaging projects.
Pre-sales services include URS analysis, equipment layouts, process planning, and system planning. Sample evaluation, testing, and FAT requirements can be defined in the project agreement.
SieracTech provides installation, commissioning, operator training, and maintenance training within the agreed project scope.
Support services include remote assistance, on-site maintenance, routine inspections, service reports, and spare-parts support. Regional coverage, response commitments, warranty terms, and service costs are confirmed in the project agreement.
Send your bottle and carton drawings, packaging configuration, required production speed, and factory layout.
SieracTech’s engineering team can review product compatibility, define the equipment scope, and identify the interfaces and testing requirements for your packaging line.
Talk to a Packaging Engineer
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Bottle Cartoning and Shrink Packaging Line with Integrated Controls Images |