Produktbeschreibung
| Basic Info. of Our Customized CNC Machining Parts | |
| Quotation | According To Your Drawings or Samples. (Size, Material, Thickness, Processing Content And Required Technology, etc.) |
| Toleranz | +/-0.005 – 0.01mm (Customizable) |
| Surface Roughness | Ra0.2 – Ra3.2 (Customizable) |
| Materials Available | Aluminum, Copper, Brass, Stainless Steel, Titanium, Iron, Plastic, Acrylic, PE, PVC, ABS, POM, PTFE etc. |
| Oberflächenbehandlung | Polishing, Surface Chamfering, Hardening and Tempering, Nickel plating, Chrome plating, zinc plating, Laser engraving, Sandblasting, Passivating, Clear Anodized, Color Anodized, Sandblast Anodized, Chemical Film, Brushing, etc. |
| Processing | Hot/Cold forging, Heat treatment, CNC Turning, Milling, Drilling and Tapping, Surface Treatment, Laser Cutting, Stamping, Die Casting, Injection Molding, etc. |
| Testing Equipment | Coordinate Measuring Machine (CMM) / Vernier Caliper/ / Automatic Height Gauge /Hardness Tester /Surface Roughness Teste/Run-out Instrument/Optical Projector, Micrometer/ Salt spray testing machine |
| Drawing Formats | PRO/E, Auto CAD, CHINAMFG Works , UG, CAD / CAM / CAE, PDF |
| Our Advantages | 1.) 24 hours online service & quickly quote and delivery. 2.) 100% quality inspection (with Quality Inspection Report) before delivery. All our products are manufactured under ISO 9001:2015. 3.) A strong, professional and reliable technical team with 16+ years of manufacturing experience. 4.) We have stable supply chain partners, including raw material suppliers, bearing suppliers, forging plants, surface treatment plants, etc. 5.) We can provide customized assembly services for those customers who have assembly needs. |
| Available Material | |
| Edelstahl | SS201,SS301, SS303, SS304, SS316, SS416, etc. |
| Stahl | mild steel, Carbon steel, 4140, 4340, Q235, Q345B, 20#, 45#, etc. |
| Messing | HPb63, HPb62, HPb61, HPb59, H59, H62, H68, H80, etc. |
| Copper | C11000, C12000,C12000, C36000 etc. |
| Aluminium | A380, AL2571, AL6061, Al6063, AL6082, AL7075, AL5052, etc. |
| Eisen | A36, 45#, 1213, 12L14, 1215 etc. |
| Plastic | ABS, PC, PE, POM, Delrin, Nylon, PP, PEI, Peek etc. |
| Others | Various types of Titanium alloy, Rubber, Bronze, etc. |
| Available Surface Treatment | |
| Edelstahl | Polishing, Passivating, Sandblasting, Laser engraving, etc. |
| Stahl | Zinc plating, Oxide black, Nickel plating, Chrome plating, Carburized, Powder Coated, etc. |
| Aluminum parts | Clear Anodized, Color Anodized, Sandblast Anodized, Chemical Film, Brushing, Polishing, etc. |
| Plastic | Plating gold(ABS), Painting, Brushing(Acylic), Laser engraving, etc. |
Häufig gestellte Fragen:
Q1: Are you a trading company or a factory?
A1: We are a factory
Q2: How long is your delivery time?
A2: Samples are generally 3-7 days; bulk orders are 10-25 days, depending on the quantity and parts requirements.
Q3: Do you provide samples? Is it free or extra?
A3: Yes, we can provide samples, and we will charge you based on sample processing. The sample fee can be refunded after placing an order in batches.
Q4: Do you provide design drawings service?
A4: We mainly customize according to the drawings or samples provided by customers. For customers who don’t know much about drawing, we also provide design and drawing services. You need to provide samples or sketches.
Q5: What about drawing confidentiality?
A5: The processed samples and drawings are strictly confidential and will not be disclosed to anyone else.
Q6: How do you guarantee the quality of your products?
A6: We have set up multiple inspection procedures and can provide quality inspection report before delivery. And we can also provide samples for you to test before mass production.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Zertifizierung: | CE, RoHS, GS, ISO9001 |
|---|---|
| Standard: | DIN, ASTM, GOST, GB, JIS, ANSI, BS |
| Customized: | Customized |
| Material: | Metal |
| Anwendung: | Metal Recycling Machine, Metal Cutting Machine, Metal Straightening Machinery, Metal Spinning Machinery, Metal Processing Machinery Parts, Metal forging Machinery, Metal Engraving Machinery, Metal Drawing Machinery, Metal Coating Machinery, Metal Casting Machinery |
| Tolerance: | +/-0.005 – 0.01mm |
| Proben: | US$ 1/Piece 1 Stück (Mindestbestellmenge) | |
|---|
| Anpassung: | Verfügbar | Kundenspezifische Anfrage |
|---|
Can spline shafts be customized for specific machinery and equipment?
Yes, spline shafts can be customized to suit specific machinery and equipment requirements. Here’s a detailed explanation:
1. Size and Length:
Spline shafts can be customized in terms of size and length to fit the dimensions of the machinery or equipment. Manufacturers can design spline shafts with the appropriate diameter, overall length, and spline length to ensure a proper fit within the system.
2. Spline Profile:
The spline profile can be customized based on the specific application. Different spline profiles, such as involute, serrated, or helical, can be used to optimize torque transmission, load distribution, and engagement characteristics based on the requirements of the machinery or equipment.
3. Number of Splines:
The number of splines on the shaft can be customized to match the mating component. The number of splines determines the engagement area and affects the torque-carrying capacity of the spline shaft. By adjusting the number of splines, manufacturers can tailor the spline shaft to the specific torque and load requirements of the machinery or equipment.
4. Material Selection:
The choice of material for spline shafts can be customized based on the operating conditions and environmental factors of the machinery or equipment. Different materials, such as alloy steels or stainless steels, can be selected to provide the necessary strength, durability, corrosion resistance, or other specific properties required for the application.
5. Surface Treatment:
The surface of spline shafts can be customized with various treatments to enhance their performance. Surface treatments like heat treatment, coating, or plating can be applied to improve hardness, wear resistance, or corrosion resistance based on the specific requirements of the machinery or equipment.
6. Tolerances and Fit:
Tolerances and fit between the spline shaft and mating components can be customized to achieve the desired clearance or interference fit. This ensures proper engagement, smooth operation, and optimal performance of the machinery or equipment.
7. Special Features:
In certain cases, spline shafts can be customized with additional features to meet specific needs. This may include the incorporation of keyways, threads, or other specialized features required for the machinery or equipment.
Manufacturers and engineers work closely with the machinery or equipment designers to understand the specific requirements and tailor the spline shafts accordingly. By considering factors such as size, spline profile, number of splines, material selection, surface treatment, tolerances, fit, and any special features, customized spline shafts can be developed to ensure optimal performance and compatibility with the machinery or equipment.
It is important to consult with experienced spline shaft manufacturers or engineering professionals to determine the most suitable customization options for a particular machinery or equipment application.
Können Keilwellen in der Luft- und Raumfahrttechnik eingesetzt werden?
Ja, Keilwellen werden aufgrund ihrer Fähigkeit, Drehmoment zu übertragen und präzise Drehbewegungen zu ermöglichen, häufig in der Luft- und Raumfahrtindustrie eingesetzt. Hier erfahren Sie, wie Keilwellen in der Luft- und Raumfahrtindustrie verwendet werden:
1. Flugzeugtriebwerke:
Keilwellen werden in Flugzeugtriebwerken für verschiedene Zwecke eingesetzt. Sie befinden sich im Nebenaggregatgetriebe des Triebwerks, wo sie das Drehmoment vom Triebwerk auf Hilfskomponenten wie Kraftstoffpumpen, Hydraulikpumpen, Generatoren und Anlasser übertragen. Keilwellen kommen auch in den Systemen zur variablen Triebwerksgeometrie zum Einsatz, die die Position von Bauteilen wie variablen Statorleitschaufeln oder variablen Einlassleitschaufeln steuern.
2. Flugsteuerungssysteme:
Keilwellen spielen eine entscheidende Rolle in den Flugsteuerungssystemen von Flugzeugen. Sie werden in den Aktuatoren und Steuermechanismen eingesetzt, die Landeklappen, Querruder, Höhenruder, Seitenruder und andere Steuerflächen betätigen. Keilwellen ermöglichen eine präzise und effiziente Übertragung der Steuereingaben vom Cockpit auf die jeweiligen Steuerflächen und tragen so zur Manövrierfähigkeit und Stabilität des Flugzeugs bei.
3. Fahrwerk:
Keilwellen werden in den Fahrwerksystemen von Flugzeugen eingesetzt. Sie finden sich in Bauteilen wie dem Fahrwerksaktuator, der das Fahrwerk aus- und einfährt, und dem Steuermechanismus für das Bugrad. Keilwellen in Fahrwerksystemen müssen hohen Belastungen standhalten, zuverlässig funktionieren und präzise Bewegungen für sichere und sanfte Starts und Landungen gewährleisten.
4. Hubschrauberrotoren:
Hubschrauber sind auf Keilwellen im Hauptrotor angewiesen. Die Hauptrotorwelle, die die Kraft vom Hubschraubermotor auf die Rotorblätter überträgt, ist häufig mit Keilwellen versehen, um eine sichere Verbindung und effiziente Drehmomentübertragung zu gewährleisten. Keilwellen sind entscheidend für die stabile und präzise Rotation der Rotorblätter und ermöglichen so kontrollierten Auftrieb und Manövrierfähigkeit.
5. Hilfssysteme:
Keilwellen werden auch in verschiedenen Hilfssystemen der Luft- und Raumfahrt eingesetzt. Dazu gehören Systeme wie die Kraftübertragung für Bordgeneratoren, Klimaanlagen, Kraftstoffsysteme und Hydrauliksysteme. In diesen Anwendungen tragen Keilwellen zum zuverlässigen Betrieb und zur effizienten Funktion der Hilfssysteme bei.
In der Luft- und Raumfahrt werden Keilwellen so konstruiert, dass sie strenge Anforderungen an Festigkeit, Langlebigkeit, Präzision und geringes Gewicht erfüllen. Sie werden häufig aus hochfesten Werkstoffen wie Titan oder legiertem Stahl gefertigt, um den anspruchsvollen Betriebsbedingungen und Gewichtsbeschränkungen von Flugzeugen standzuhalten. Darüber hinaus werden fortschrittliche Fertigungstechniken eingesetzt, um die Maßgenauigkeit und Qualität der Keilwellen für kritische Anwendungen in der Luft- und Raumfahrt zu gewährleisten.
Der Einsatz von Keilwellen in der Luft- und Raumfahrttechnik ermöglicht eine präzise Steuerung, eine effiziente Kraftübertragung und einen zuverlässigen Betrieb und trägt somit zur Sicherheit, Leistungsfähigkeit und Funktionalität von Flugzeugen und zugehörigen Systemen bei.
What are the advantages of using spline shafts in mechanical systems?
Using spline shafts in mechanical systems offers several advantages. Here’s a detailed explanation:
1. Torque Transmission:
Spline shafts provide efficient torque transmission between the driving and driven components. The interlocking splines ensure a secure and reliable transfer of rotational force, enabling the transmission of power and motion in mechanical systems.
2. Relative Movement Accommodation:
Spline shafts can accommodate relative movement between the driving and driven components. They allow axial, radial, and angular displacements, compensating for misalignments, thermal expansion, and vibrations. This flexibility helps to maintain proper engagement and minimize stress concentrations.
3. Load Distribution:
The splines on the shaft distribute the transmitted load across the entire engagement surface. This helps to reduce localized stresses and prevents premature wear or failure of the components. The load distribution capability of spline shafts contributes to the overall durability and longevity of the mechanical system.
4. Precise Positioning and Control:
Spline shafts enable precise positioning and control of mechanical components. The splines provide accurate rotational alignment, allowing for precise angular positioning and indexing. This is crucial in applications where precise control and synchronization of movements are required.
5. Interchangeability and Standardization:
Spline shafts are available in standardized designs and dimensions. This enables interchangeability between components and facilitates easier maintenance and replacement. Standardization also simplifies the design and manufacturing processes, reducing costs and lead times.
6. High Power Transmission Capacity:
Spline shafts are designed to withstand high torque loads. The interlocking splines provide a large contact area, distributing the transmitted torque across multiple teeth. This allows spline shafts to handle higher power transmission requirements, making them suitable for heavy-duty applications.
7. Versatility:
Spline shafts can be designed and manufactured to suit various application requirements. They can be customized in terms of size, shape, number of splines, and spline profile to match the specific needs of a mechanical system. This versatility makes spline shafts adaptable to a wide range of industries and applications.
8. Reduced Slippage and Backlash:
When properly designed and manufactured, spline shafts exhibit minimal slippage and backlash. The tight fit between the splines prevents significant axial or radial movement during torque transmission, resulting in improved efficiency and precision in mechanical systems.
In summary, the advantages of using spline shafts in mechanical systems include efficient torque transmission, accommodation of relative movement, load distribution, precise positioning and control, interchangeability, high power transmission capacity, versatility, and reduced slippage and backlash. These advantages make spline shafts a reliable and effective choice in various applications where power transfer, flexibility, and precise motion control are essential.
editor by CX 2024-04-25