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Wesentliche für Metallstempel: Massenproduktion für Automobile, Elektronik und Konsumgüter dauernswerte

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May 05 2025
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Das Kernprinzip des Metallstempels besteht darin, mit hoher Präzisionsform Metallblöcken in eine bestimmte Form zu drücken, mit den Vorteilen von Hocheffizienz, niedrigem Verbrauch und guter Konsistenz. In diesem Basis-Vogel-Vorgang. Prozesse, Gerätetypen und Anwendungsanforderungen für das Metallstempeln in verschiedenen Branchen.

Was sind die Advantage von Advantestagen von Advantestagen von Advantestagen von Advantestage von Advantestage Vo. Stempeln?

1. Data-V-7b79c893 = ""> Präzision und Konsistenz

Metallstempel Schimmelpilz adoptiert CNC-Bearbeitungstechnologie, Toleranzgenauigkeit ± 0,005mm, 2. Data-Len = "26" data-v-7b79c893 = ""> Produktivität

Metallstempel können schnell umgeschaltet werden, und mit Hilfe von automatisierten Pressen kann ein Gerät Hunderte von Teilen pro Stunde produzieren. Produktion wie Haushaltsgerätehülsen und 3C -Produktstrukturkomponenten.

3.Cost Vorteile

Die Form kann tausende Male wiederverwendet werden, die Kosten für die Einheit im Laufe der Zeit verdünnen und erreicht die Materialnutzungsrate über 85%. 

4. Complex Form-Verarbeitungsfähigkeit

Durch mehrere progressive Formen kann der Prozess des Stanzens, des Biegens und der Dehnung abgeschlossen werden, um eine dreidimensionale Form von komplexen Strukturen wie unregelmäßige, gepflegte Komponenten zu ermitteln, z. href = "https://jsrpm.com/industry/automotive"> Batterieschale von neuen Energiefahrzeugen .

5.cross-iNDUStriation metall Stempel Unterstützung für benutzerdefinierte Designs. Durch Einstellen von Formparametern.

What is the basic process of metal Stempeln?

1.Design and mold Machen Sie

Nachdem der Kunde die CAD-Dateien als erforderlich eingereicht hat, das 2. Materialauswahl und Schneiden

gemäß den technischen Anforderungen aus mehr als 50 Metallmaterialien (z. B. Edelstahl, Aluminium, Kupfer usw.), um die entsprechende Platte auszuwählen. Js. Abfragen nach Produktspezifikationen werden hochgeladen und die Entscheidungszeit verkürzt.

High-speed stamping

In automatischer Stempelgeräte, Stempeln, Biegung, Dehnung und anderen Verfahren werden in einem einzigen Stempel des Metallprozesses abgeschlossen.  JS 'intelligente Produktionslinie liefert in 1-2 Wochen eine schnelle Lieferung.

4. Data-V-7B79C893 = ""> Oberflächenbehandlung und Qualitätsinspektion

Nach dem Stempeln, Entfernen von Burr, Plattieren, Sprühen und anderen Wertschöpfungsdiensten. JS uses more than 30 quality inspection standards, combined Mit künstlichen Intelligenz -Vision -Inspektionssystem auf über 98% Produktqualifikationsrate und reduzieren Sie die Nacharbeit.

5. Data-V-7B79C893 = ""> Nachhaltige Produktion

Verwenden des Abfallrecyclingsystems wird der Energieverbrauch im Stempelprozess um 15%reduziert, was den Anforderungen des Umgebungsschutzes entspricht. In den Prozess, JS-V-7B79C893 =" "> In den Prozess, JS-V-7B79C893 =" "> In den Prozess, Js-V-7b79c893 =" " Bestellungen.

Was sind die Arten der Arten von Metall-Stamping-Stamping-Arten von Metall-Stamping-Stamping. Ausrüstung?

1. Data-Len = "28" Daten-V-7B79C893 = ""> Hydraulikstempelgeräte: Angetrieben von Hydrauliksystem, Es ist geeignet, dass das Stempeln von Machungen mit hoher Provision von großem Metall von Machung geeignet ist. Struktur.

2.Hydraulic stamping equipment: Das Hydrauliksystem bietet einen stabilen Druck, der zum Stempeln von Metalljobs geeignet ist, die hohe Präzision erfordern, z. IT-DAHLE-DATE-VIGNE-SANDEL-SANGING AGHELT UND THELAGE DIE DAHLE DIE DAHLE DATE-VIGNEDREGEGEGEBNET UND THELAGE DIE DAHLE ABLETUNG UND THELAGE. von Platten.

3. data-v-7b79c893="">Mechanical stamping presses: Driven by a crankshaft connecting rod mechanism, suitable for high-speed, large stamping metal production, such as home appliance shell, 3C product metal brackets, etc. IT von hoher Data-V-7b79c893 =" ". Stabilität.

4. Data-V-7B79C893 = ""> cnc-Stempelmaschinen: 5.Servo Stempel drückt: Verwendung von Servosmotoren zur Kontrolle des Stempelschlags und zum Druck genau. Es eignet sich zum Stempeln von Metallverarbeitung von Aluminium-, Magnessium-Legierungsstücken.

6. data-v-7b79c893="">Shearing machines: Es ist speziell zum Schneiden von Metallblättern in einer geraden Linie ausgelegt und wird häufig an der Vorderseite einer Stempellinie verwendet, um Spulen oder große Größe zu verarbeiten.

7. data-v-7b79c893="">Bend machine: Es ist eine häufig verwendete Methode bei der Faltung oder 3D-Strukturverarbeitung von Blechblechen, um Biegung und Bildung durch Schimmeldrücke zu erreichen.

8. Data-Len = "21" Daten-V-7B79C893 = ""> feines Blanking Pressungen: Durch die Kombination aus Stamping- und Scherungstechnologie, ein burr-freier und qualitativ hochwertiger Stamping-Metallprozess, applybox und applybox- und applybox- und applybox- und applyboxe/modsstry/indusstry/industrustry-equipment "> applybox- applybox- und applybox- und applybox- und applybox- und applyboxe/applyboxy/indusstry/indusstry/industruy-teure-equipment"> applybox und applybox. Andere Präzisionskomponenten.

9. Data-Len = "31" Data-V-7B79C893 = ""> Laser-assistierte Stempelsysteme: Die Verarbeitungseffizienz des Stempelmetalls wird durch die Kombination aus Laservorbereitung und Stempeln verbessert, insbesondere für die Präzisionsverarbeitung von unregelmäßigen Oberflächen oder hochfestigen Stahl.

Was ist der Unterschied zwischen Metal-V-7b7b79c893 = "> Was ist der Unterschied zwischen den Unterschiedsunterschied zwischen Metall und SHED-VALL-VALL-V-7B7B791". Herstellung?

1. Data-Len = "17" Data-V-7b79c893 = ""> Prozessprinzipien

2. Data-V-7B79C893 = ""> Ausrüstung und Schimmelpilzabhängigkeit

3. Data-Len = "27" Data-V-7b79c893 = ""> Materialdeformationsgrad

  • Metallstempel realisiert die komplexe Struktur durch tiefe plastische Verformung und erfordert eine hohe materielle Duktilität des Materials.
  • Blech fabrication  is mainly shallow bending or cutting, suitable for the production of sheet non-standard Teile.

Vergleichselemente Metallic Stamping Sheet metal  Herstellung Einheit Kosten (Massenproduktion) ≤ 0,5 USD (bei der Herstellung von 100.000 Teilen pro Jahr $ 2-5 (kleine Charge). Produktionszeit (Sekunden) 0,5-5 (Hochgeschwindigkeitsstempel kann weniger als 0,1 Sekunden erreichen). 30-300 (abhängig vom Prozess). Schimmelpilze ($ zehntausend) 5-50 (höher für komplexe Formen). 0.1-5 (einige Teile benötigen keine Formen). Minimum Batch Economy

mehr als 10.000 Stücke.
1-100 Stück. Typischer Produktionszyklus Die Schimmelpilzentwicklung dauert 2-4 Wochen, und die Massenproduktion beginnt ab 1 Woche. Schimmelfreie Entwicklung, Einzelstückverarbeitung dauert 3-7 Tage. Materialnutzungsrate 85% -95% (progressiver Form reduziert den Abfall). 70% -90% (Schnittverlust+Eckmaterial). Abfallentsorgungskosten
niedrig (weniger Abfall, hoher Recyclingwert).
Hoch (mit vielen Schrott, die zusätzliche Verarbeitung erfordert).

5. Oberflächenqualität

Kurz gesagt, Metallstempel ist eine subtraktive+Kunststoffforming-Technologie, die von metallic stamp, while sheet metal fabrication is a combination of cutting and bending, which complement each other to meet the needs of different industries.

What are the applications of combining composite materials with metal stamping?

1.Car lightweight components

  • Application: JS helps car companies reduce weight by more over 30% maintaining crash collision safety combining metal stamping structural components, such as frame crossbeams, with carbon fiber composites. Metal stamping parts are formed by a metal stamp process that provides high rigidity support in key areas, while composite material covers non-bearing areas to reduce overall weight.
  • Technical highlights: JS's CNC machining technology can accurately control the tolerance (±0.005mm) of metal punch to ensure seamless connection with composites and reduce assembly errors.

2.Aerospace heat resistant components

  • Application example: A satellite project combines titanium alloy punch and ceramic matrix composites for use in rocket engine nozzles. Metal stamping parts can withstand high temperature and pressure environment, while the outer layer of composite material provides thermal insulation.
  • Technical highlights: JS's automated production line can complete metal stamping and composite material coating at the same time, shorten the production cycle to 60% of traditional processes and achieve a yield rate of 98%.

3.Consumer electronics cooling module

  • Application example: The high-end smartphone heat sink adopts the aluminum alloy stamping frame and graphene composite integrated design. Metal stamping parts are processed by metal stamp technology to ensure the electromagnetic shielding performance of the finished product, while composite materials effectively conduct heat.
  • Technical highlights: JS's precision machining technology can achieve 0.02mm of micropore processing to meet the density requirements heat dissipation holes, while reducing overall thickness by 0.5mm through material composite.

4.Medical devices

  • Application example: Stainless steel stamping frame and PEEK composite material for external fixation support of orthopedics. Metal stamping parts provide precise support, while composite materials reduce weight and prevent X-ray interference.
  • Technical highlights: JS's flexible manufacturing system supports small volume customization of production, up to 7 working days from design to delivery, and serves multiple international medical device manufacturers.

5.New energy storage systems

  • Application example: The battery shell adopts the composite structure of aluminum magnesium alloy punch and fiberglass composite to ensure mechanical strength and improve corrosion resistance. 
  • JS's process can reduce the weight of the casing by 18% while improving battery life through simulation.

Composite materials and metal stamping

Which industries does metal stamping help?

1.Automotive industry

This is definitely the biggest beneficiary! Think about it, how many things on a car are stamped out of metal? Doors, roofs, hoods, trunk lids and other shells (body coverings), the supporting skeletons (frames, chassis parts), and various brackets, brackets, fuel tanks, exhaust pipe parts, etc., are too numerous to count.

Stamping allows automakers to produce these key parts quickly and cheaply, and with stable quality. Now everyone is pursuing lighter and more fuel-efficient cars, and materials such as high-strength steel and aluminum alloys are also mainly handled by advanced stamping technology.

2.Home appliance industry

Many of the shells of home appliances such as refrigerators, washing machines, air conditioners, microwave ovens, ovens, and range hoods are stamped out of metal plates. Stamping ensures that these parts have regular shapes and accurate sizes, making home appliances look beautiful, easy to install, and durable to use.

3.Electronic products industry

Computer cases, laptop shells, server cabinets, metal brackets inside mobile phones, connectors, heat sinks, metal shells and chassis of various electronic devices, all of which require very precise metal parts. Stamping technology, especially precision stamping, can efficiently and in large quantities produce these small parts with high size requirements and complex shapes, which is essential for the manufacture of electronic products.

4.Industrial equipment and machinery industry

Shells, protective covers, bases, brackets, gears, sprockets, conveyor belt parts, motor housings, pump body parts, etc. of various machine equipment. Stamping provides a large number of sturdy and reliable structural parts and functional parts for these industrial equipment, and is one of the basic links in equipment manufacturing.

5.Other fields

  • Aerospace: Non-load-bearing structural parts, brackets, panels, etc. inside some aircraft (very high requirements).
  • Medical equipment: Some instrument shells, brackets, surgical instrument parts, etc. (with requirements for precision and cleanliness).
  • Lighting industry: Lamp housings, reflectors, lamp holders, etc.

What are the restrictions on stamping materials for engine blades?

1.High temperature stability

Leaves need to work in a high temperature (800°C to 1100°C) gas environment for a long time, the material needs to resist creep, oxidation and low thermal expansion coefficient.

  • Typical materials: Nickel based superalloys (such as Inconel 718), titanium alloys (Ti-6Al-4V).
  • Technical response: JS company uses vacuum heat treatment and surface coating (such as DLC or ceramic coating) to improve the material's high temperature resistance.

2.Mechanical strength and fatigue life limitations

3.The contradiction between lightweight and specific strength

  • Density must be reduced while maintaining strength to increase the thrust to weight ratio of the engine.
  • Typical materials: Titanium alloy, carbon fiber reinforced composites (CFRP).
  • Technical response: JS adopts topology optimization design to embed lightweight composite reinforcement ribs in metal stamping parts to reduce weight by over 20%.

4.Material processability limitations

  • High-strength materials, such as nickel alloys, have severe job hardening and are prone to cracking, while titanium alloys exhibit significant knife stabbing.
  • Technical response: JS uses gradient stamping technology, combined with professional lubricating oil and multi-process forming technology, to reduce the risk of material tearing.

5.Corrosion resistance and oxidation limitations

  • Sulfide and chloride in gas can easily cause material corrosion and shorten blade life.
  • Typical material: Corrosionresistant alloys such as Hastelloy X, surface nitrogen treatment.
  • Technical response: JS's precision cleaning and passivation process can remove stamping residue and combine with anodic oxidation to improve corrosion resistance.

Stamping material for engine blades

How does JS's material library match the needs of the automotive industry?

Core advantages of JS material library

1.High-strength and lightweight materials

  • Typical materials: 6 series/7 series aluminum alloy, titanium alloy, carbon fiber composite.
  • Application scenarios: Body coverings, battery pack Case, suspension system Component.
  • Strengths: 30%-50% weight loss, improvement, a tensile strength over 600MPa.

2.Corrosion resistant and high-temperature resistant materials

  • Typical materials: 316L stainless steel, 625 heat resistant alloy, PEEK plastic.
  • Application scenarios: Exhaust system components, high temperature bracket for electric drive system, fuel cell bipolar plate.
  • Strengths: Spray corrosion resistance of more than 2,000 hours, long-term working temperature up to 300℃.

3.Precision processing specialized materials

  • Typical materials: Copper alloy (C18150), mold steel NAK80, optical grade PMMA.
  • Application scenarios: Sensor precision Shell, motor gears, car light reflectors.
  • Advantages: Processing tolerance ±0.005mm, surface roughness Ra <0.4μm.

4.Environmentally friendly and sustainable materials

  • Typical materials: Recycled PA66, biobased PLA, low VOC ABS.
  • Application scenarios: Interior, charging station housing, child safety seats, etc.
  • Strengths: Reduced carbon emissions by 40% and EU RoHS certification.

Material solutions for the automotive industry

Industry demand JS material solution Automotive industry adaptation cases
Lightweight Aluminum alloy+topology optimization design. A new energy car company has lost 3.2kg of battery pack weight and increased its range by 15%.
Wear resistance POM+DLC coating. Automatic transmission valve body lifespan has been extended to 800,000 kilometers.
Electromagnetic shielding Nickel plated graphite fiber. the onboard ECU improved anti-jamming by up to 40dB.
Rapid iteration 3D printing nylon prototype. New air conditioning vents have a 60% reduction in the validation cycle.

Differentiation in JS

  • Technology integration capability: Seamless integration CNC machining, 3D printing, surface processing and other technologies to achieve integrated manufacturing of complex parts.
  • Materials Database: A physical/chemical performance database covering more than 50 materials that supports the selection of AI assisted materials.
  • Sustainability certification: 100% material traceability through IATF 16949 and ISO 14001 system certification.

JS matches the needs of the automotive industry

Summary

Metal stamping, as the cornerstone process of modern industry, has permeated dozens of fields such as automobile, electronics, healthcare, aerospace and so on. Regardless of the type of complex and irregular structures, stamp metal technology achieves one-off molding of complex structures by balancing strength, precision and cost efficiency through the synergy of high-precision molds and presses.

In the future, as smart factories and green manufacturing advance, stamp metal will continue to define the limitless possibilities of industrial manufacturing in an efficient and low-carbon manner.

Disclaimer

The content on this page is for general reference only. JS Series makes no express or implied warranties regarding the accuracy, timeliness, or applicability of the information provided. Users should not assume that the product specifications, technical parameters, performance indicators, or quality commitments of third-party suppliers are completely consistent with the content displayed on this platform. The specific design feature, material standards, and process requirements of the product should be based on the actual order agreement. It is recommended that the purchaser proactively request a formal quotation and verify product details before the transaction. For further confirmation, please contact our customer service team for professional support.

JS Team

JS is an industry leading provider of customized manufacturing services, dedicated to providing customers with high-precision and high-efficiency one-stop manufacturing solutions. With over 20 years of industry experience, we have successfully provided professional CNC machining, sheet metal manufacturing, 3D printing, injection molding, metal stamping and other services to more than 5000 enterprises, covering multiple fields such as aerospace, medical, automotive, electronics, etc.

We have a modern factory certified with ISO 9001:2015, equipped with over 100 advanced five axis machining centers to ensure that every product meets the highest quality standards. Our service network covers over 150 countries worldwide, providing 24-hour rapid response for both small-scale trial production and large-scale production, ensuring efficient progress of your project.

Choosing JS Team means choosing manufacturing partners with excellent quality, precise delivery, and trustworthiness.
For more information, please visit the official website: jsrpm.com

FAQs

1.What is the definition of metal stamping?

The process of manufacturing parts by applying pressure on metal materials by mould and press is characterized by high precision and high efficiency.

2.Key points of stamping mold design?

In order to optimize processing cost and production efficiency, attention should be paid to reasonable structure, material strength and abrasion resistance, accurate control of suitable clearance and slope removal, and ensure stamping accuracy, mold life and operation safety.

3.What are the characteristics of aerospace stamping parts?

High-strength and lightweight materials (titanium alloy/hyperalloy), precision molds, multi-process stamping are required, with high temperature resistance, high pressure resistance, micrometer level tolerances, lightweight structure, etc.

4.What are the application fields of metal stamping?

Widely used in automotive, electronics, home appliances, medical, aerospace, new energy, construction, manufacturing structural components, precision parts, lightweight components and other fields.

Resources

Progressive stamping

Cutting

Electrical enclosure

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JS

Rapid Prototyping & Rapid Fertigungxperte

Spezialisiert auf CNC -Bearbeitung, 3D -Druck, Urethanguss, Schnellwerkzeug, Injektionsform, Metallguss, Blech und Extrusion.

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