Детали продукта
Фирменное наименование: PFT
Сертификация: ISO9001,AS9100D,ISO13485,ISO45001,IATF16949,ISO14001,RoHS,CE etc.
Номер модели: OEM
Условия оплаты & доставки
Количество мин заказа: 1 шт
Цена: 0.19
Время доставки: 5 дней
Условия оплаты: L/C, D/A, D/P, T/T, Western Union, Moneygram
Технология обработки: |
КПН -поворот |
Шероховатость: |
Ра0.3-Ра0.8 |
Упаковка: |
Картон, деревянный корпус и т.д. |
Поверхностная обработка: |
Анодирование, полировка, цинковое покрытие, покрытие никеля, хромирование |
Тип: |
Другие услуги по механической обработке |
Измерение: |
индивидуально |
Формат рисования: |
2d/(pdf/cad) 3d (iges/step) |
Оборудование: |
3/4/5 Центральная обработка оси |
Материал: |
Алюминий, латунь, нержавеющая сталь, сталь, пластик |
Программное обеспечение проектирования: |
UG CAM CAD, STP, Solidworks и так далее |
Контроль качества: |
Проверка на 100% перед отправкой |
Тип потока: |
Метрический, НПТ, BSP, BSPT, UNC, UNF и т.д. |
Ключевые слова: |
Служба обработки фрезеровки |
Размер продукта: |
индивидуально |
цвета доступны: |
Pantone/RAL и другие изготовленные на заказ цвета |
Технология обработки: |
КПН -поворот |
Шероховатость: |
Ра0.3-Ра0.8 |
Упаковка: |
Картон, деревянный корпус и т.д. |
Поверхностная обработка: |
Анодирование, полировка, цинковое покрытие, покрытие никеля, хромирование |
Тип: |
Другие услуги по механической обработке |
Измерение: |
индивидуально |
Формат рисования: |
2d/(pdf/cad) 3d (iges/step) |
Оборудование: |
3/4/5 Центральная обработка оси |
Материал: |
Алюминий, латунь, нержавеющая сталь, сталь, пластик |
Программное обеспечение проектирования: |
UG CAM CAD, STP, Solidworks и так далее |
Контроль качества: |
Проверка на 100% перед отправкой |
Тип потока: |
Метрический, НПТ, BSP, BSPT, UNC, UNF и т.д. |
Ключевые слова: |
Служба обработки фрезеровки |
Размер продукта: |
индивидуально |
цвета доступны: |
Pantone/RAL и другие изготовленные на заказ цвета |
In the world of manufacturing, jigs and fixtures are fundamental tools that ensure precision, consistency, and efficiency in production lines. These specialized devices hold, support, and guide workpieces during various operations, from drilling and welding to assembly and inspection. For manufacturing engineers and production managers, understanding the latest advancements in jig and fixture manufacturing is crucial for optimizing production quality and reducing operational costs. This article combines practical industry experience with technical data to provide comprehensive insights into selecting, designing, and implementing effective fixturing solutions for modern production environments.
In manufacturing, jigs and fixtures are tools used to hold workpieces securely in place during machining, assembly, or inspection processes. While these terms are often used interchangeably, they have distinct functions:
The primary purpose of both jigs and fixtures is to:
Jigs and fixtures contribute significantly to manufacturing efficiency and product quality. Their implementation offers numerous advantages:
Jigs and fixtures can be categorized based on their design, function, and application requirements:
Table: Comparison of Fixture Types Based on Production Requirements
Fixture Type | Best For | Typical Accuracy | Relative Cost |
---|---|---|---|
Plate Fixtures | Low-volume production | ±0.010" | Low |
Modular Fixtures | Medium-volume, mixed production | ±0.005" | Medium |
Permanent Fixtures | High-volume dedicated production | ±0.002" | High |
Hydraulic Fixtures | High-speed mass production | ±0.001" | Very High |
CNB-Integrated Fixtures | Precision machining of complex parts | ±0.0005" | Highest |
Effective jig and fixture design requires balancing multiple engineering considerations:
The materials and manufacturing methods for jigs and fixtures have evolved significantly:
Recent research demonstrates the growing application of additive manufacturing in fixture production:
A 2025 case study compared three fixturing methods for CNC machining of aluminum parts produced by Laser Powder Bed Fusion (LPBF):
The findings highlight a trade-off between cost, lead time, and accuracy when selecting fixturing methods.
Successful implementation of jigs and fixtures requires careful planning and execution:
To evaluate the effectiveness of jig and fixture implementation, monitor these critical metrics:
Table: Key Performance Indicators for Fixture Implementation
KPI Category | Specific Metrics | Benchmark Values | Measurement Frequency |
---|---|---|---|
Quality Metrics | Scrap/rework rate | Reduction of 25-35% | Weekly |
Dimensional consistency | Cpk improvement of 0.5-1.0 | Daily | |
Efficiency Metrics | Setup time reduction | 60-80% improvement | Per shift |
Cycle time reduction | 15-30% improvement | Weekly | |
Economic Metrics | Return on investment | Payback period <6 months | Quarterly |
Labor cost reduction | 20-40% reduction | Monthly | |
Operational Metrics | Tool life improvement | 30-50% extension | Monthly |
The future of jig and fixture technology is evolving rapidly with several emerging trends: