Technischer Leitfaden

China wholesaler Industrial Conveyor Stainless Steel Precision Short Link Roller Chain Bushing Pin Chain Polishing Plating Transmission Chain

Product Description Stainless Steel Chain For Food Processing Conveyor (180SS) We supply all model stainless steel chain. (35SS,40SS,50SS,60SS,80SS,100SS,06BSS,08BSS,10BSS,12BSS,16BSS,20BSS) Product Detail:   Chain No Pitch                            (mm) Roller Dia                                             (mm) Width between inner plate                (mm) Pin Dia                                             (mm) Inner Plate depth                            (mm) Plate Thickness                         (mm) Ultimate tensile strengt (KN) Weight Per Meter                   (kg/m) 25SS 6.35 3.3 3.18 2.31 6.0 0.8 2.5 0.15 35SS 9.525 […]

April 9, 2024Bearbeitet von Cxm

Produktbeschreibung

Stainless Steel Chain For Food Processing Conveyor (180SS)

We supply all model stainless steel chain.

(35SS,40SS,50SS,60SS,80SS,100SS,06BSS,08BSS,10BSS,12BSS,16BSS,20BSS)

Product Detail:

 

Chain
No
Pitch                            (mm) Roller Dia                                             (mm) Width between inner plate                (mm) Pin Dia                                             (mm) Inner Plate depth                            (mm) Plate Thickness                         (mm) Ultimate tensile strengt
(KN)
Weight Per Meter                   (kg/m)
25SS 6.35 3.3 3.18 2.31 6.0 0.8 2.5 0.15
35SS 9.525 5.08 4.77 3.58 9.0 1.3 5.5 0.33
40SS 12.7 7.95 7.85 3.96 12.2 1.5 9.7 0.63
41SS 12.7 7.77 6.25 3.58 9.91 1.3 6.0 0.46
50SS 15.875 10.16 9.4 5.08 15.09 2.06 15.3 1.03
60SS 19.05 11.91 12.57 5.94 18.0 2.44 21.8 1.51
80SS 25.4 15.88 15.75 7.92 24.0 3.26 38.9 2.6
100SS 31.75 19.05 18.9 9.53 30.0 4.0 59 3.94
120SS 38.1 22.23 25.22 11.1 35.7 4.8 72.5 5.72
140SS 44.45 25.4 25.22 12.7 41.0 5.6 94.0 7.7

We own the sophisticated equipment and the advanced technology, such as: 
1. CAD Designer
2. Wire Cutting Machine
3. Chain Running In Machine
4. Conveyor Furance
5. Ball Drift
6. Shot Peened Parts
7. Design Of Link Plate Waist
Packaging accprding to the customers’ demands
To make the clients’ satifaction is our big goal and subject.

Company Profile:

Company Detail:

GOODLUCK is 1 of a professional exporter with exporting POWER TRANSMISSION PARTS: Roller chains, s. S. Chains, agricultural chains, steel detachable chains, special chains, sprockets, s. S. Sprockets, HRC couplings, pulleys, bushes etc. All these products have been supplied regularly to World Wide for over 15 years. 

Contact Detail:
Sofia (Sales Manager)
 
  /* 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

Material: Edelstahl
Struktur: Roller Chain
Oberflächenbehandlung: Polieren
Anpassung:
Verfügbar

|

Kundenspezifische Anfrage

.shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}

Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

Initial Payment



Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

Förderband

Wie berechnet man die maximal zulässige Zugkraft in einer Förderkette?

Die maximal zulässige Zugkraft in einer Förderkette kann anhand der folgenden Schritte berechnet werden:

1. Bestimmen Sie die Kettenteilung:

– Messen Sie den Abstand zwischen den Mittelpunkten zweier aufeinanderfolgender Kettenbolzen. Dieses Maß wird als Kettenteilung bezeichnet und üblicherweise in Zoll oder Millimetern angegeben.

2. Ermitteln Sie die Kettengeschwindigkeit:

– Ermitteln Sie die Betriebsgeschwindigkeit der Förderkette. Die Kettengeschwindigkeit wird üblicherweise in Fuß pro Minute oder Metern pro Sekunde angegeben.

3. Berechnen Sie die Kettenzugkraft:

– Ermitteln Sie das Gesamtgewicht bzw. die Gesamtkraft, die von der Förderkette bewegt werden muss. Dies umfasst das Gewicht des Förderguts sowie alle zusätzlichen Lasten oder Kräfte, die auf die Kette wirken.

4. Berechnen Sie die erforderliche Spannung:

– Verwenden Sie die folgende Formel zur Berechnung der erforderlichen Spannung:

Spannung = (Kettenzug × Kettengeschwindigkeit) / (Kettenteilung × Wirkungsgrad)

– Der Wirkungsgrad berücksichtigt Verluste aufgrund von Reibung und anderen Faktoren und wird typischerweise als Dezimalzahl zwischen 0 und 1 ausgedrückt.

5. Ermitteln Sie die maximal zulässige Spannung:

Die maximal zulässige Zugkraft wird durch die Herstellervorgaben für die Förderkette bestimmt. Es ist wichtig, die Herstellerdokumentation zu konsultieren oder den Hersteller direkt zu kontaktieren, um den maximal zulässigen Zugkraftwert zu erfahren.

6. Vergleichen Sie die erforderliche Spannung mit der maximal zulässigen Spannung:

Vergleichen Sie die berechnete erforderliche Spannung mit der maximal zulässigen Spannung. Die erforderliche Spannung sollte kleiner oder gleich der maximal zulässigen Spannung sein, um einen sicheren und zuverlässigen Betrieb der Förderkette zu gewährleisten.

Durch Befolgen dieser Schritte und unter Berücksichtigung der Herstellerangaben können Sie die maximal zulässige Spannung in einer Förderkette genau berechnen und sicherstellen, dass sie innerhalb der sicheren Betriebsgrenzen liegt.

Förderband

Can a conveyor chain be used in food processing applications?

Yes, a conveyor chain can be used in food processing applications. Conveyor chains play a crucial role in the efficient and hygienic handling of food products throughout the production process. Here are some key points to consider:

1. Food-Grade Materials: Conveyor chains used in food processing applications are typically made from food-grade materials such as stainless steel or plastic. These materials are corrosion-resistant, easy to clean, and comply with food safety regulations.

2. Hygiene Considerations: Food processing environments require high standards of hygiene. Conveyor chains designed for food applications incorporate features such as smooth surfaces, open link designs, and easy disassembly for thorough cleaning. They may also have specialized coatings or treatments to prevent bacterial growth.

3. Sanitary Design: Conveyor chains for food processing applications are designed with minimal crevices or joints to prevent food particles from getting trapped. They may have self-draining capabilities to remove excess fluids or debris.

4. Product Integrity: Conveyor chains in food processing applications ensure gentle handling of delicate food products to avoid damage or contamination. They can be equipped with accessories like cleats, side guards, or modular belt systems to securely hold and transport items of various shapes and sizes.

5. High Temperature and Washdown Capabilities: Some food processing applications require conveyor chains to withstand high temperatures during cooking, baking, or sterilization processes. Specialized chains with heat-resistant materials or coatings are available. Additionally, conveyor chains used in food processing should be capable of withstanding frequent washdowns and cleaning with water or cleaning agents.

6. Compliance with Standards: Conveyor chains used in food processing applications must comply with industry-specific standards such as FDA (Food and Drug Administration) regulations, HACCP (Hazard Analysis Critical Control Point) guidelines, and other food safety certifications.

When selecting a conveyor chain for food processing applications, it is important to consider the specific requirements of the production line, including the type of food being handled, the operating conditions, and the necessary sanitary standards. Proper maintenance and regular cleaning protocols should also be implemented to ensure food safety and product integrity.

Förderband

What are the common causes of conveyor chain failures?

Conveyor chain failures can occur due to various reasons, and identifying the root cause is crucial for preventing future issues. Here are some common causes of conveyor chain failures:

  • Lack of Lubrication: Insufficient or improper lubrication can lead to increased friction and wear on the chain components, resulting in premature failure.
  • Excessive Load: Overloading the conveyor chain beyond its rated capacity can cause excessive stress and strain, leading to chain elongation, deformation, or link breakage.
  • Misalignment: Improper alignment of the conveyor chain can cause uneven loading and excessive wear on specific areas, leading to chain failure.
  • Environmental Factors: Harsh operating environments, such as high temperatures, corrosive substances, or abrasive materials, can accelerate chain wear and corrosion, leading to failure.
  • Foreign Objects: The presence of foreign objects or debris on the conveyor system can interfere with the movement of the chain, causing jamming, binding, or chain damage.
  • Poor Maintenance: Inadequate maintenance practices, such as irregular inspections, failure to address minor issues promptly, or neglecting to replace worn components, can contribute to chain failures.
  • Incorrect Installation: Improper installation, including incorrect tensioning, misalignment, or using incompatible components, can result in premature chain failure.
  • Fatigue and Wear: Continuous operation over time can lead to fatigue and wear in the chain, especially in high-speed or heavy-duty applications, resulting in eventual failure.

Regular maintenance, proper lubrication, adequate training for operators, and adherence to manufacturer guidelines can help mitigate these common causes of conveyor chain failures. Conducting routine inspections, promptly addressing issues, and replacing worn components can also significantly extend the life of the conveyor chain.

China wholesaler Industrial Conveyor Stainless Steel Precision Short Link Roller Chain Bushing Pin Chain Polishing Plating Transmission Chain  China wholesaler Industrial Conveyor Stainless Steel Precision Short Link Roller Chain Bushing Pin Chain Polishing Plating Transmission Chain
editor by CX 2024-04-09