
Hardware screw packing equipment is designed to wrap products for protection and aesthetic enhancement. They are primarily categorized into two types: 1) integrated assembly line packaging systems, and 2) peripheral product packaging equipment. Traditional packaging machines operate by placing items at the feed inlet, followed by automated control systems to shape and size the packaging. However, conventional models suffer from limitations such as slow packaging speeds, inaccurate material handling, semi-automatic operation requiring manual intervention, and increased labor intensity.
Utility Model Content
1. The objective of this utility model is to provide an innovative packaging machine that enhances material conveying efficiency and reduces operator workload.
2. To achieve this goal, the technical solution adopted by the utility model comprises the following components: a supplemental feeding section, lifting section, weighing section, diversion section, automatic material receiving section, box discharge section, residual material discharge section, and electrical cabinet section.
3. Materials are conveyed into the supplemental feeding hopper via an elevator in the supplemental feeding section and then transported to the lifting section through a vibrator. The supplemental feeding section consists of a feeding hopper, elevator, vibrator, and inspection staircase. The integration of the hopper, elevator, and vibrator optimizes material discharge efficiency and minimizes labor input, while the staircase facilitates operational monitoring.
4. The lifting section employs a motor-driven chain mechanism to elevate materials, which are then transferred to the weighing section. This section comprises a lifting motor, chain, and material hopper. Their combined operation significantly improves discharge efficiency and reduces labor costs.
5. In the weighing section, materials are precisely measured by a combination weigher before being diverted through the diversion section. The weighing section includes the combination weigher and an adjustment platform, ensuring high measurement accuracy to enhance product quality while enabling easy machine observation and calibration.
6. The automatic material receiving section achieves automated box loading through box positioning, compression, and alignment. Completed packages are then transferred to the box discharge section.
7. Overweight residual materials are routed from the diversion section to the residual material discharge section, which consists of a support frame and a collection bin. This design allows residual materials to be recycled, further reducing labor demands.
8. The electrical cabinet section integrates a control computer and an enclosed cabinet. All components are centrally managed by the computer, achieving high system integration, simplified operational management, and full automation. This results in elevated production efficiency, guaranteed product quality, and energy-efficient performance.
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