In today's rapidly changing market environment of the apparel and electronics industries, the "Small Orders and Quick Response" model has become a key strategy for companies to respond to personalized needs and shorten delivery cycles. This trend has put forward higher requirements for production materials, especially for seemingly simple but crucial auxiliary materials such as die-cut tape. This article will explore the special needs for die-cut tape under the small order quick response model, analyze the adaptability of tape under the trend of smart sewing equipment in the Greater Bay Area Garment Exhibition, and show how Dongguan Yihong New Materials Co., Ltd. meets customers' personalized needs through innovative solutions.1. New Demand for Die-cut Tape in the Small Order Quick Response ModelThe small order quick response model in the apparel and electronics industries has completely changed the traditional production process and put forward unprecedented precision and flexibility requirements for die-cut tape. In the apparel industry, in order to respond to rapidly changing fashion trends, brand owners have reduced the order volume from the traditional thousands of pieces to hundreds or even dozens of pieces, but the design requirements are more complex. In this model, die-cut tape needs to meet three core needs:1) Precision die-cutting capability becomes the primary condition. Modern clothing design increasingly uses special-shaped pieces and special splicing processes, and traditional standard tapes cannot fit perfectly. For example, the positioning and splicing of digital printed clothing requires precision die-cut tapes with an error of less than 0.5mm to ensure pattern continuity11. The electronics industry also faces challenges. With the miniaturization of components, the shielding and protection tapes of FPC flexible circuit boards often require cutting accuracy of 0.1mm.2) Quick style change adaptability is another key requirement for small orders and quick response. Garment factories may switch dozens of styles every day, and each production line handles an average of 15-20 different orders per week. This requires die-cut tapes to quickly adapt to the application requirements of different fabric properties (such as elastic knits, heavy denim or light silk) and different parts (collars, cuffs, hems)2. The electronics industry requires tapes to switch quickly between different components of PCB boards to ensure the shielding effect and avoid residues that affect subsequent processes.3) Material performance optimization is particularly important under the pressure of short delivery time. Small batch production cannot dilute the startup costs of traditional die-cutting processes, so cost-effective customization solutions have become a necessity. According to industry data, the use of pre-cut tape can increase efficiency by 3 times compared to traditional manual cutting and reduce material waste by 40%12. Especially for high-end functional clothing, the tape needs to be able to be cleanly peeled off after completing the positioning function without damaging the expensive fabric.The latest trends at the Greater Bay Area Garment Exhibition show that digital workflow integration has become the new standard for die-cut tapes. Cutting-edge clothing companies embed tape specification parameters directly into CAD pattern files to achieve seamless connection from design to production. For example, the smart sewing system displayed by an exhibitor can automatically identify the type of tape and adjust the pressing parameters, reducing the change time from 30 minutes to 5 minutes.2、Tape technology innovation under the trend of smart sewingThe 2025 Greater Bay Area Garment Exhibition, with the theme of "Houjie Restarts and Carries Forward the Past and Opens the Future", focused on displaying the latest technologies of smart sewing equipment. These innovative equipment put forward new adaptation requirements for die-cutting tapes. At the exhibition, AI algorithm-driven smart sewing machines can achieve precise sewing and adaptive adjustment of complex patterns, with an efficiency increase of 30%. This highly automated production environment requires tapes to have more reliable performance consistency.High-precision positioning tapes have become a key auxiliary material for smart sewing. The new generation of hanging systems requires the tape to maintain stable viscosity under high-speed operation (15-20 meters per minute) to avoid the displacement of cut pieces. The visual positioning system launched by a company at the exhibition relies on special marking tapes for precise alignment of cut pieces, with an error control within ±0.3mm. This tape needs to have a high-contrast color (such as fluorescent orange) and moderate viscosity (about 300g/inch), which is easy to identify and does not leave residual glue.High-temperature resistant die-cutting tapes adapt to the efficient ironing process in smart sewing. The temperature of modern automatic ironing equipment can reach 200-250℃, and traditional tapes are prone to deformation or gelling in this environment. The polyimide-based tape developed by Yihong New Materials can withstand short-term high temperatures of 300℃ and maintain dimensional stability during rapid ironing, which is particularly suitable for the early shaping of high-end suits. Exhibition data shows that companies using such high-temperature tapes can increase the efficiency of the ironing process by 25% and reduce energy consumption by 15%.Flexible electronic tapes show cross-industry application potential. At the Greater Bay Area Expo, smart wearable devices became the focus. Such products require tapes to meet both the flexibility of textiles and the insulation of electronic components. The smart temperature-controlled clothing displayed by an exhibitor uses ultra-thin conductive tapes (thickness of only 0.05mm) to connect heating elements, which not only ensures conductivity but also maintains the feel of the fabric. This cross-border application places higher demands on tape suppliers and requires a deep understanding of the dual standards of the textile and electronics industries.Real-time quality monitoring of intelligent production also promotes innovation in tape functions. Some leading companies have begun to embed RFID chips or readable barcodes in tapes to achieve full-process traceability through data collection during the sewing process. For example, a quality inspection system displayed by a certain brand at the exhibition can automatically detect whether the tape is correctly attached and detect process deviations in a timely manner. This intelligent application enables small-batch production to also ensure high-end quality consistency.3、Customized solutions and practical cases of Yihong New MaterialsDongguan Yihong New Materials Co., Ltd. has developed a complete set of customized die-cutting tape service system to meet the special needs of the small-order quick-reply market, helping customers maintain their competitive advantage in flexible production. The company meets personalized needs through three dimensions: material innovation, process optimization, and service upgrade.Innovation in material combination is Yihong's core advantage. The company has more than 50 substrate and adhesive formulas in stock, which can be freely combined according to application scenarios. For example, for the quilting positioning of high-end down jackets, a low-viscosity (about 150g/inch) high-rebound (elongation>200%) polyurethane foam tape has been developed to ensure that the cut pieces do not shift and avoid damage to the fluffy tufts when they are removed. For electronic products, static dissipative tapes are provided with a surface resistance of 10^6-10^9Ω/sq to effectively protect sensitive components.The digital rapid proofing system greatly shortens the customization cycle. Yihong introduced a CAD/CAM integrated platform. After customers provide drawings in DXF or IGES format, physical samples can be obtained within 24 hours. After a well-known women's clothing brand adopted this service, the development cycle of new styles was shortened from 2 weeks to 3 days, which is particularly suitable for the rapid follow-up of online celebrity clothing. The company has also established a material database and recommends the optimal tape solution through algorithms, such as automatically matching weak solvent adhesives for silk fabrics to avoid penetration and leaving marks.In terms of successful cases, Yihong's cooperation with a listed electronics company is quite representative. The company produces flexible OLED screens and needs a tape that can temporarily fix precision parts and can be peeled off without residue after laser cutting. The Yihong team has developed a three-layer composite structure: PET base film + microsphere acrylic glue + silicone release layer, realizing the full process solution of "strong temporary fixation-precision laser cutting-clean removal", helping customers to increase the yield rate to 99.3%.In the field of clothing, Yihong solved the problem of printed cutting alignment for a children's clothing brand in the Greater Bay Area. Traditional practices rely on manual alignment, which is inefficient and has large errors. The translucent grid positioning tape provided by Yihong, combined with specially designed alignment marks, enables novice workers to complete precise splicing within 30 seconds, thereby increasing customer production efficiency by 40% and reducing the rework rate to less than 2%.In the future, as the small-order quick-response model is further deepened, Yihong New Materials plans to invest more resources in the development of intelligent tape systems, including innovative products such as process monitoring tapes embedded with sensors and programmable color-changing indicator tapes, to continue to create differentiated value for customers. The company will also strengthen strategic cooperation with smart equipment manufacturers in the Greater Bay Area to ensure that die-cutting tape solutions are compatible with the most cutting-edge production technologies and jointly promote the improvement of the flexible manufacturing ecosystem.
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