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Cladding Product List and Ranking from 7 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

Cladding Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. 林電化工業 Okayama//Machine elements and parts
  2. シリコロイラボ Hyogo//Ferrous/Non-ferrous metals
  3. グローバルインフォメーション Kanagawa//Service Industry
  4. 大阪富士工業 Hyogo//Manufacturing and processing contract
  5. 富士高周波工業 Osaka//Manufacturing and processing contract

Cladding Product ranking

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. Laser cladding 林電化工業
  2. Silicone Laser Cladding (Laser Overlay Processing) シリコロイラボ
  3. Silicoroy Laser Cladding (WC Dispersion: Detailed Investigation) シリコロイラボ
  4. Global Market Report on Rain Screen Cladding グローバルインフォメーション
  5. 4 Laser Cladding Case Studies Vol. 01-06 富士高周波工業

Cladding Product List

1~15 item / All 21 items

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Silicone Laser Cladding (Laser Overlay Processing)

Using metal powder of the extracted hardened silicone alloy! Evaluation tests conducted using laser cladding.

Laser cladding technology can minimize the thermal impact on the base material, allowing for low dilution, low distortion, fine, and thin-layer buildup. By applying the high corrosion resistance, high hardness, wear resistance, and good fluidity of "Silicoloy" to laser cladding, we aim to establish a new process design. This time, we conducted evaluation tests using metal powder of the precipitation-hardened Silicoloy through laser cladding. For more details, please download and view the catalog. 【Test Conditions (Partial)】 ■ Beam Shape: 5mm × 5mm ■ Laser Output: 2700W ■ Base Material: SUS304, 50mm × 50mm × 10mm ■ Metal Powder: Silicoloy XVI (Gas Atomized) *For more details, please refer to the PDF materials or feel free to contact us.

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  • Special Steel
  • stainless

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Silicoroy Laser Cladding (WC Dispersion: Detailed Investigation)

Investigation of the optimal conditions for laser cladding when the WC powder addition is set at 20% and 30%!

It has been found that the addition amount of WC (tungsten carbide) to the Silicoroy XVI powder should be below 30%. This time, we investigated the appropriate conditions for laser cladding when the WC powder addition amounts were set at 20% and 30%. For details of the tests, please download the catalog and take a look. 【Test Conditions (Partial)】 ■ Beam Shape: 5mm × 5mm ■ Laser Output: 1000, 1150, 1250, 1500, 1750, 2000, 2500, 2700 ■ Base Material: Silicoroy A2, 50mm × 50mm × 13mm ■ Metal Powder: Silicoroy XVI (gas-atomized) ■ Powder Particle Size: -106/+63μm ■ Test Content: 1-layer build-up, 2-layer build-up, 3-layer build-up *For more details, please refer to the PDF document or feel free to contact us.

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  • Special Steel
  • stainless

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Laser Cladding Case Studies Vol. 01-06

Case Studies of Laser Cladding Solving Customer Challenges with the Latest Technology

We will introduce examples of laser cladding, which uses a laser as a heat source to melt powders or wires and build up or coat the surface of a substrate with the same or different materials. 【Example Lineup】 ■ High-speed laser cladding ■ Wide laser cladding ■ Laser cladding for shafts with keyways ■ Repair laser cladding for shafts with keyways ■ Repair of center pin laser cladding ■ Repair of drill hole laser cladding

  • Other molds
  • Processing Contract

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High-Speed Laser Cladding Case Study

This is a technology that enables stable thin-walled structures, which was difficult to achieve in the past!

【Conventional Issues】 In overseas markets, high-speed laser cladding technology is being considered as an alternative to hard chrome plating. It has been very difficult to stably build up a thin film (around 100μm) using conventional laser cladding technology. 【Advantages of Laser Cladding】 By utilizing our high-power semiconductor lasers and clad nozzles, we have achieved stable laser cladding with a build-up thickness of approximately 100μm and a dense microstructure. 【Specifications】 Dimensions: φ20 Base material: SUS304 Cladding powder: Stellite #6 Cladding height: 100μm

  • Processing Contract

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Keyway Shaft Laser Cladding Case Study

Cost reduction in post-processing through meat buildup repair using laser cladding!

【Conventional Issues】 Repairing by adding material involves either welding or PTA (Plasma Transferred Arc) cladding. However, these methods require adding more than 1mm of excess material relative to the finished dimensions. As a result, additional costs were incurred during post-processing. 【Advantages of Laser Cladding】 By adopting laser cladding for material repair, the post-processing after cladding has been reduced to about 0.5mm, significantly lowering the post-processing costs. Additionally, the deformation of the key groove shape has been minimized. 【Specifications】 Cladding range: φ200×approximately 55mm Base material: SUS316 Cladding powder: SUS316L Cladding height: 1.5mm

  • Processing Contract

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Keyway Shaft Repair Laser Cladding Case Study

By applying laser cladding only to the screw section, we can reduce delivery time and costs!

【Conventional Issues】 The threaded part of the shaft was machined longer than the dimensions specified in the drawing, necessitating the need to flatten the threaded section. However, remanufacturing from scratch would incur significant costs and lead times. 【Benefits of Laser Cladding】 By applying laser cladding only to the threaded part of the shaft, it was possible to machine the threaded section flat. Additionally, the keyway section was repaired without significantly altering its shape, resulting in substantial advantages in terms of lead time and cost. 【Specifications】 Filler Powder: 3.33LOWC Base Material: S45C Cladding Thickness: 1.0mm

  • Processing Contract

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Center pin laser cladding repair case study

We will layer it using laser cladding!

【Conventional Issues】 For center pins used in corrosive environments, Stellite No. 6 was considered to achieve both corrosion resistance and wear resistance, but the material is expensive and difficult to obtain, and it is also hard to machine, resulting in longer processing times. 【Advantages of Laser Cladding】 With laser cladding, we keep Stellite No. 6 in stock, so we can use it only for the tip, allowing for modifications with a lead time of 0 days. Since only the tip is processed, this also leads to a reduction in processing time. 【Specifications】 Dimensions: 400L × φ4 Overlay Powder: Stellite #6 Base Material: SS400 Overlay Thickness: 6mm Overlay Range: φ4

  • Processing Contract

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Fundamentals of Laser Cladding (23.10) Technical Seminar Materials

This is a seminar for beginners in laser cladding!

This document is the PowerPoint material for a technical seminar hosted by our company. 【Seminar Title】 Laser Cladding Technology Seminar No. 1: "Basics of Laser Cladding" 【Content】 The term laser cladding may be unfamiliar to many. First, we will explain what this technology is. This seminar is aimed at beginners in laser cladding. 1. Company Introduction 2. What is LC? 3. Other Overlay Technologies Besides LC 4. Questions About LC 5. Quality Evaluation in LC Construction 6. Parameters of LC 7. Summary 【Recommended for the following people!】 - Those who know very little about laser cladding. - Those who want basic information about laser cladding. - Those who want to know what can be done with laser cladding.

  • Processing Contract

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[Technology Introduction] Semiconductor Laser Cladding

Achieving high hardness and high purity meat layers! Introducing technology that enables thin coatings comparable to thermal spraying.

The "Semiconductor Laser Cladding" by Shin Nihon Yogyou Co., Ltd. is a construction technology that allows for buildup at a low heat input (2,500°C) compared to conventional methods. Due to the low heat input, it reduces thermal distortion and heat-affected zones. Benefits such as reduced post-processing costs from near-net shape laser cladding and performance improvements from high-quality, high-material-property surface modification layers due to low heat input and low dilution laser cladding can be expected. 【Features】 ■ Allows for buildup at low heat input (2,500°C) ■ Capable of thin buildup (0.4mm) comparable to thermal spraying ■ Reduces thermal distortion and heat-affected zones due to low heat input ■ Achieves a buildup layer with high hardness and high purity ■ Compared to PTA buildup, laser cladding has a penetration depth of 1/5 *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract

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Laser cladding

Able to form a smooth weld bead with minimal thermal distortion! Welding buildup using laser heat.

We would like to introduce our company's "Laser Cladding." The surface of the workpiece is melted by the heat of the laser. At the same time, powder coating material is fed in and melted to perform welding buildup. It features the ability to control the buildup thickness and a low dilution rate with the base material. 【Features】 ■ Ability to control buildup thickness ■ Can form smooth surface weld beads ■ Low thermal distortion ■ Low dilution rate with the base material *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing
  • Processing Contract

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Silicon Alloy Laser Cladding (Investigation of WC Dispersion: WC Addition Amount)

Investigating various properties due to the composite effect of Silicoroid XVI powder + WC powder (tungsten carbide)!

It has been found that Silicoroy XVI powder is a material that is very easy to laser cladding, but there are challenges regarding its wear resistance in abrasive wear. Therefore, this time we investigated the various properties of the composite effect of Silicoroy XVI powder + WC powder (tungsten carbide). For more details, please download and view the catalog. 【Test Conditions (Partial)】 ■ Beam Shape: 5mm × 5mm ■ Laser Output: 1250W ■ Base Material: SUS304, 50mm × 50mm × 10mm ■ Metal Powder: Silicoroy XVI (gas-atomized) ■ Powder Particle Size: -106/+63μm *For more details, please refer to the PDF materials or feel free to contact us.

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  • Special Steel
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High-performance surface modification technology "Laser Cladding" *Materials available upon request

Material prone to cracking and degradation of properties. Hardening and buildup construction that minimizes thermal impact on the base material is possible.

"Laser cladding" is a laser coating technology that allows for buildup construction while minimizing thermal effects on the base material. By utilizing the excitation heat reaction from the laser irradiation and precisely controlling its output, it suppresses cracking of the base material due to hardening in the heat-affected zone and phase transformation caused by welding thermal effects. Coatings using high-performance materials can also be finished beautifully. Currently, we are providing introductory materials for research projects in which our company is participating. You can view various application technologies of laser cladding. [Research Examples] <Mortem Pool Type Laser Coating> By supplying powder while forming a mortem pool on the base material and melting and solidifying it, a functional surface with wear resistance and corrosion resistance is formed on the component's surface. <Non-Mortem Pool Type Laser Coating> By directly heating and melting raw material powder with multiple laser beams, the melting of the substrate surface is minimized. There is almost no thermal deformation or alteration of the coating components. High output and combinations of different wavelength laser light are also possible. *For more details, please refer to the PDF materials or feel free to contact us.

  • Processing Contract

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Introduction to Laser Cladding Technology

Leave it to us for "laser cladding" to solve your customers' challenges with the latest technology!

Laser cladding is a technology for adding material with minimal distortion. It is also true that it has not yet become widespread in the Japanese market. Are there ways to reduce distortion during the material addition process? Is it possible to achieve this at a lower cost? Can we reduce the amount of rare metals used? If there are challenges with the current material addition technology, there are proposals that can be made with laser cladding. 【Laser Cladding System】 - Number of units: 3 (300W to 12,000W) - Compatible sizes: Up to 1,000kg, up to φ2,000, up to L4,000mm - Handling lots: From 1 to 1,000 units/month

  • Processing Contract

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Wide Laser Cladding Case Studies

The buildup over a large area is speeding up!

【Conventional Issues】 The nozzles for laser cladding that our company has previously used had a maximum cladding width of 6mm. As a result, it took a long time to perform cladding over large areas. 【Advantages of Wide Laser Cladding】 By utilizing our 12KW high-output semiconductor laser and the wide-compatible cladding nozzle (introduced in March 2020), we have achieved a stable cladding speed that is more than three times faster compared to previous laser cladding (according to our company's comparison). 【Specifications】 Base material: SUS304 Cladding powder: Stellite #6 Cladding width: 16mm Cladding height: 1.5mm

  • Processing Contract

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Drilled Hole Laser Cladding Repair Case Study

I will seal the wrong hole with laser cladding!

【Conventional Problem】 I attempted to drill holes in the plate but accidentally drilled in the wrong position. There are no issues with usage, but having a hole here creates an aesthetic problem. If I remake it, I won't meet the deadline. 【Benefits of Laser Cladding】 Low heat input laser cladding is applied to the hole area. Since it adheres well to S45C, once it is machined, it is completely indistinguishable visually. Considering the cost and deadline of remanufacturing, there are significant advantages. 【Specifications】 Dimensions: 350w × 500L × 20t Filler Powder: SUS316L Base Material: S45C Cladding Thickness: 0.5mm Cladding Area: φ3

  • Processing Contract

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