Introdução
O PCB Eyelet Press Insertion Machine features a pneumatically assisted press mechanism that delivers stable insertion force across extended production cycles. The press head accommodates multiple eyelet sizes through a quick-change tooling system, allowing rapid switching between eyelet specifications. Each insertion cycle is monitored by a closed-loop force sensor that verifies the eyelet is fully seated and properly flared against the board surface, preventing incomplete insertions that could compromise electrical continuity in through-hole assemblies.
The feeding mechanism utilizes a vibration bowl sorter combined with a linear track delivery system, ensuring a continuous supply of eyelets to the insertion station without interruptions. Board clamping fixtures hold panels firmly during pressing, eliminating movement-induced offset errors. The control system stores insertion profiles for frequently produced board types, reducing setup time for recurring orders. Real-time counters and shift reports provide operators with visibility into output volume, insertion yield, and defect rates, supporting data-driven quality management.
Consistent eyelet seating reduces the risk of connection failures in environments subject to vibration, thermal cycling, and mechanical stress. The automated pressing process minimizes operator-dependent quality variation, making it suitable for manufacturers handling diverse specifications. With a design focused on uptime and low maintenance, the PCB Eyelet Press Insertion Machine supports continuous production without sacrificing insertion accuracy. For manufacturers seeking to improve through-hole assembly throughput, this machine addresses the mechanical challenges of eyelet installation on circuit boards.

PCB Eyelet Press Insertion Machine
How the PCB Eyelet Press Insertion Machine Mounts Rivets on PCB Boards
The rivet-to-PCB insertion cycle begins when a rivet exits the vibratory feed track and drops into the press head collet, which grips the body and aligns it coaxially with the press ram. The PCB is secured by a pneumatic hold-down fixture preventing lateral movement during the downward stroke. The ram engages, pushing the rivet through the pre-drilled aperture at a controlled velocity. Once the rivet head contacts the board surface, the ram continues with increased force to ensure full shank penetration. The lower die captures the rivet tail and forms a controlled flare that expands the barrel beyond the hole dimension, creating a mechanical lock that resists pull-out forces during thermal cycling and vibration.
Press force, ram speed, flare depth, and dwell duration are independently programmable parameters, allowing the machine to be tuned for specific rivet-and-board combinations without mechanical modification. The force monitoring subsystem samples continuously throughout the press stroke, generating a force-versus-displacement signature for each rivet. This data enables the machine to detect partial insertions, missing rivets, and board delamination in real time, segregating affected units before they enter soldering. The multi-rivet magazine supports sequential insertion of different rivet sizes within a single board program without tooling pauses.
The commercial advantage of automating PCB Eyelet Press Insertion Machine with this level of process control is a measurable increase in assembly yield and a decrease in warranty-related field failures. Manual rivet installation introduces force variability that operator training cannot fully eliminate. This PCB Eyelet Press Insertion Machine delivers deterministic insertion outcomes, where each riveted joint is verified by instrumented data rather than visual inspection alone. For facilities running high-mix through-hole assemblies, the PCB Eyelet Press Insertion Machine’s fast setup and programmable force profiles reduce changeover downtime, while sustained insertion accuracy lowers per-unit manufacturing cost across all batch sizes.

Rivet Component
Especificações
| Modelo | YT-7000 |
| Dimensão total | 2.080 mm (C) × 1.230 mm (L) × 1.600 mm (A) |
| Peso | 1.000 kg |
| Ar | 6 ± 0,5 kg/cm² (Consumo de ar: 656 N/min) |
| Poder | 220 V CA, monofásico, 50/60 Hz, 1,4 kW |
| Ruído | 80 dB |
| Operating Environment | 5-40 u |
| Umidade | 10-90%RH (pode ser usado desde que não haja partículas de cristal no ar) |
| Requisitos relativos ao ambiente circundante | Sem gás corrosivo |
| Dimensão de deslocamento da bancada de trabalho | X 680 mm, Y 370 mm (multidirecional); X 580 mm, Y 370 mm (bilateral) |
| Velocidade de deslocamento da bancada de trabalho | 22,5 m/min |
| Placa de circuito impresso (PCB) | 490×350 (máx.) |
| Velocidade de encaixe | 200 unidades/min |
| Tempo de instalação da placa de circuito elétrico | 4s |
| Componente inserido | Rebites comuns de 1,6 a 3,5 mm, rebites longos e rebites Lacerivet |
| Quantidade de plugues | 3 cabeças |
| Modo de correção de furos | De acordo com o sistema de ângulos da máquina |
| Sistema de Controle Computadorizado | Sistema operacional Windows |
| Sistema de exibição | LCD colorido de 17 polegadas |
| Sistema de alimentação | Sistema de alimentação vibratório de grande porte |

Rivet Component
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