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Wear protection for bulk material handling systems

Wear protection solutions for abrasive bulk materials and high-wear components – tailored to the specific application and operating conditions.

Efficient solutions for wear-intensive processes

Where abrasive, sharp-edged or high-temperature bulk materials are handled – whether in the building materials, glass, chemical, energy or recycling industries – both personnel and equipment are exposed to significant mechanical and thermal loads. Without targeted protection measures, downtime and operating costs increase.

DI MATTEO delivers system technology specifically engineered for wear-intensive applications. Robust designs, replaceable wear linings and application-optimised materials ensure long service intervals, economical operation and predictable maintenance.

Benefits

  • Extended service life: Wear-resistant linings protect machinery and plant components against wear.
  • Individually configured: Solutions aligned with material characteristics, process requirements and mechanical loads.
  • Predictable maintenance: Reduced downtime through engineered wear protection concepts.
  • WeartecPRO®: Our proprietary system for efficient and economical wear protection.
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dHRwOi8vY3JsLmFkb2JlLmNvbS9hZG9iZXJvb3RnMi5jcmwwDgYDVR0PAQH/BAQDAgGGMFcGA1UdIARQME4wTAYJKoZIhvcvAQIDMD8wPQYIKwYBBQUHAgEWMWh0dHBzOi8vd3d3LmFkb2JlLmNvbS9taXNjL3BraS9wcm9kX3N2Y2VfY3BzLmh0bWwwHQYDVR0OBBYEFNCtQorwehQHJcaXwEOoI4XotS0jMB8GA1UdIwQYMBaAFKYc4W1UJEyoj0hyv26pjNXk7DHUMA0GCSqGSIb3DQEBCwUAA4ICAQCRlqhDU07OWLmha2+YptYEMFr3tEE9vhBLlnlN7oeKRW9S8UVEGJUNwGnw4HMy2IIeGGc6pn2h+s6ZV6xJ8CdjgMT8Zp5OtaNNe5O/qH37EETsDxN79lUDolWAnO9GT1Ln1fT25z7n+ilSPQ5EMUzKsTRslqJMVQeTOYWNYX80+eFeoT8/0s6NZLsxodw4l+pBRdyvI5g2g/vgxTYPQjdjBeqIIPBZfW5PI6WJwesJW65tXaqd1GNmkkDPlO3ZcS8qj0TONxpCfrDsjTm+OpX9k2Yvyljuz/GLssmw9hpwwOa9gSIOhVrR1hSCoWkrHQ1KWeaedPREi0AdlQ0NXClPmf7AxCZN8e4fkNovduPXyTnI43nN8PFMsUmySUxb9RtyWOH87KuJjBVkgX2PbIRvCxnQ6RrzElMbzKfw/oDRs8Psq/mm3OqVxGE8JqEH7yl3mLa7OQEk6bAMjqEoORkxudGTf0beyV72Iu5MlklIZ9L3J7XLIObmURgVhJfzmBfubLwfRGm1aaScfeyCL/38T0jKtKqYklDi1A3VbWPBSMn8sCcS7cOrbRLQtm1Y6qES+zE5Lvt/HnsVAeB1caQuxP+Fblc7a4xQb6sRmy6FmVWFbqwC1yzeXbSo9ki2+zd3OezgyfNmWgoEj3MwlbQXMNi9Vq8kA9Hf4rayLs28fqNmc2lnVHN0oWl0c3RUb2tlbnOBoWN2YWxZDlgwgg5UMAMCAQAwgg5LBgkqhkiG9w0BBwKggg48MIIOOAIBAzEPMA0GCWCGSAFlAwQCAQUAMIGBBgsqhkiG9w0BCRABBKByBHAwbgIBAQYJYIZIAYb9bAcBMDEwDQYJYIZIAWUDBAIBBQAEIEde/Ql6OEiFoFJcHdH00G0InTjSwfkcK3KvNuIo3fWBAhABbyFEAPl3AyXTKgWISrMUGA8yMDI1MTAxNTEwMzc0N1oCCHQlxEDIKx3poIIL2jCCBR4wggMGoAMCAQICEAkZDcEsnIfbMv0KtVC97UswDQYJKoZIhvcNAQELBQAwaTELMAkGA1UEBhMCVVMxFzAVBgNVBAoTDkRpZ2lDZXJ0LCBJbmMuMUEwPwYDVQQDEzhEaWdpQ2VydCBUcnVzdGVkIEc0IFRpbWVTdGFtcGluZyBSU0E0MDk2IFNIQTI1NiAyMDI1IENBMTAeFw0yNTA2MTEwMDAwMDBaFw0zNjA5MTAyMzU5NTlaMF8xCzAJBgNVBAYTAlVTMRcwFQYDVQQKEw5EaWdpQ2VydCwgSW5jLjE3MDUGA1UEAxMuQWRvYmUgU0hBMjU2IEVDQzI1NiBUaW1lc3RhbXAgUmVzcG9uZGVyIDIwMjUgMTBZMBMGByqGSM49AgEGCCqGSM49AwEHA0IABDqZydXZSO9L84jXxrJwIPPeIspw7/k8jP1iwxb5ZO0PbiN3ijVubsdbzV38sK17hnS0u5hnGOEdH2EnsUwRqfKjggGVMIIBkTAMBgNVHRMBAf8EAjAAMB0GA1UdDgQWBBQgdqGjbnEVj3SVDa6kLKQ2P1gZFTAfBgNVHSMEGDAWgBTvb1NK6eQGfHrK4pBW9i/USezLTjAOBgNVHQ8BAf8EBAMCB4AwFgYDVR0lAQH/BAwwCgYIKwYBBQUHAwgwgZUGCCsGAQUFBwEBBIGIMIGFMCQGCCsGAQUFBzABhhhodHRwOi8vb2NzcC5kaWdpY2VydC5jb20wXQYIKwYBBQUHMAKGUWh0dHA6Ly9jYWNlcnRzLmRpZ2ljZXJ0LmNvbS9EaWdpQ2VydFRydXN0ZWRHNFRpbWVTdGFtcGluZ1JTQTQwOTZTSEEyNTYyMDI1Q0ExLmNydDBfBgNVHR8EWDBWMFSgUqBQhk5odHRwOi8vY3JsMy5kaWdpY2VydC5jb20vRGlnaUNlcnRUcnVzdGVkRzRUaW1lU3RhbXBpbmdSU0E0MDk2U0hBMjU2MjAyNUNBMS5jcmwwIAYDVR0gBBkwFzAIBgZngQwBBAIwCwYJYIZIAYb9bAcBMA0GCSqGSIb3DQEBCwUAA4ICAQBKnP4qzrnk6bae64mNkuAvegVfF4WZ752PCIF1U+QchK/h9ENe079SAU7s66f6zo6g2tgpDobFpEtS7bcOasJ4TK8F0TlFf8IAS0rjvc+wOyjxzW2aSOoNIfODENGzChf8QdYixJGuMkzxFYHsp3co+NrSO5m2QVWknOqOT92on1RqrKIp8qsJGLAiktTUJ0FEWePq7ElN+HTLvHOv6tY48dUwk17MXneImj3CL5BI5fZ57pmtt0oBgdY7ywz4RkbS/M1pZ6pQ3UuVODntDU8qkoLGIKYqCqzEZeZJxaKxk/OMS5Q7KssP04mPK9c7xJ4e9/rE8XCGcITeBzZ52wftAJV2wnc6kpnsky5vAjYbCoj0yDAacokbfmT7y9AT0wvOJUPfSLjLyPI5J0xp95cdi8bHRoYDAI5szZ7MZKad1Vav0M+HVwZqY0CuNNSRxZEXTKjRTMnB0bXhVCo+XmeWP/a0uqTbToNPYWwgxAoJrjZQlsiFLaF0vGcc3xKmSnJ5TraBThVPllFZqqZu/D7hAUiAdChY94w7A2lUep9YChxva/tuyiaC8qgx3nmSMaNudy3rnGKQRpIx7lOUaM2Z+jNurUELw4sX16oDovhlbVmJ5Ekg/RgGL0SJBfmYfQs3I1YD8K6BiB31vHNEcX71GhVfxqvzfcR8GkY+xFIeTDCCBrQwggScoAMCAQICEA3HrFcF/yGZLkBDIgw6SYYwDQYJKoZIhvcNAQELBQAwYjELMAkGA1UEBhMCVVMxFTATBgNVBAoTDERpZ2lDZXJ0IEluYzEZMBcGA1UECxMQd3d3LmRpZ2ljZXJ0LmNvbTEhMB8GA1UEAxMYRGlnaUNlcnQgVHJ1c3RlZCBSb290IEc0MB4XDTI1MDUwNzAwMDAwMFoXDTM4MDExNDIzNTk1OVowaTELMAkGA1UEBhMCVVMxFzAVBgNVBAoTDkRpZ2lDZXJ0LCBJbmMuMUEwPwYDVQQDEzhEaWdpQ2VydCBUcnVzdGVkIEc0IFRpbWVTdGFtcGluZyBSU0E0MDk2IFNIQTI1NiAyMDI1IENBMTCCAiIwDQYJKoZIhvcNAQEBBQADggIPADCCAgoCggIBALR4MdMKmEFyvjxGwBysddujRmh0tFEXnU2tjQ2UtZmWgyxU7UNqEY81FzJsQqr5G7A6c+Gh/qm8Xi4aPCOo2N8S9SLrC6Kbltqn7SWCWgzbNfiR+2fkHUiljNOqnIVD/gG3SYDEAd4dg2dDGpeZGKe+42DFUF0mR/vtLa4+gKPsYfwEu7EEbkC9+0F2w4QJLVSTEG8yAR2CQWIM1iI5PHg62IVwxKSpO0XaF9DPfNBKS7Zazch8NF5vp7eaZ2CVNxpqumzTCNSOxm+SAWSuIr21Qomb+zzQWKhxKTVVgtmUPAW35xUUFREmDrMxSNlr/NsJyUXzdtFUUt4aS4CEeIY8y9IaaGBpPNXKFifinT7zL2gdFpBP9qh8SdLnEut/GcalNeJQ55IuwnKCgs+nrpuQNfVmUB5KlCX3ZA4x5HHKS+rqBvKWxdCyQEEGcbLe1b8Aw4wJkhU1JrPsFfxW1gaou30yZ46t4Y9F20HHfIY4/6vHespYMQmUiote8ladjS/nJ0+k6MvqzfpzPDOy5y6gqztiT96Fv/9bH7mQyogxG9QEPHrPV6/7umw052AkyiLA6tQbZl1KhBtTasySkuJDpsZGKdlsjg4u70EwgWbVRSX1Wd4+zoFpp4Ra+MlKM2baoD6x0VR4RjSpWM8o5a6D8bpfm4CLKczsG7ZrIGNTAgMBAAGjggFdMIIBWTASBgNVHRMBAf8ECDAGAQH/AgEAMB0GA1UdDgQWBBTvb1NK6eQGfHrK4pBW9i/USezLTjAfBgNVHSMEGDAWgBTs1+OC0nFdZEzfLmc/57qYrhwPTzAOBgNVHQ8BAf8EBAMCAYYwEwYDVR0lBAwwCgYIKwYBBQUHAwgwdwYIKwYBBQUHAQEEazBpMCQGCCsGAQUFBzABhhhodHRwOi8vb2NzcC5kaWdpY2VydC5jb20wQQYIKwYBBQUHMAKGNWh0dHA6Ly9jYWNlcnRzLmRpZ2ljZXJ0LmNvbS9EaWdpQ2VydFRydXN0ZWRSb290RzQuY3J0MEMGA1UdHwQ8MDowOKA2oDSGMmh0dHA6Ly9jcmwzLmRpZ2ljZXJ0LmNvbS9EaWdpQ2VydFRydXN0ZWRSb290RzQuY3JsMCAGA1UdIAQZMBcwCAYGZ4EMAQQCMAsGCWCGSAGG/WwHATANBgkqhkiG9w0BAQsFAAOCAgEAF877FoAc/gc9EXZxML2+C8i1NKZ/zdCHxYgaMH9Pw5tcBnPw6O6FTGNpoV2V4wzSUGvI9NAzaoQk97frPBtIj+ZLzdp+yXdhOP4hCFATuNT+ReOPK0mCefSG+tXqGpYZ3essBS3q8nL2UwM+NMvEuBd/2vmdYxDCvwzJv2sRUoKEfJ+nN57mQfQXwcAEGCvRR2qKtntujB71WPYAgwPyWLKu6RnaID/B0ba2H3LUiwDRAXx1Neq9ydOal95CHfmTnM4I+ZI2rVQfjXQA1WSjjf4J2a7jLzWGNqNX+DF0SQzHU0pTi4dBwp9nEC8EAqoxW6q17r0z0noDjs6+BFo+z7bKSBwZXTRNivYuve3L2oiKNqet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Integrated wear protection

Wear protection is considered at the design stage of new machinery – ensuring durable, reliable and economically efficient equipment over the long term.

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Plant assessment

Existing machines are analysed with a clear focus on wear-critical areas. Based on this assessment, an application-specific action plan is developed to improve protection, reliability and operational efficiency.

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Sustainable implementation

Defined measures are implemented in a practical and process-oriented manner – extending service life, reducing material consumption and supporting resource-efficient operation.

WeartecPRO® – our wear protection programme

With WeartecPRO®, DI MATTEO offers a dedicated wear protection programme:

Linings, hard material coatings and modular wear components precisely matched to material properties and operating conditions.

The result: extended plant service life, reduced maintenance costs and increased process reliability – economical, robust and proven in industrial operation.

Technology for abrasive bulk materials

Our solutions are engineered to address the typical challenges of bulk material handling – from conveying and dosing mineral raw materials and processing cullet through to handling tribochemical and chemically aggressive residues.

Wear-resistant components, well-engineered protection concepts and decades of experience result in systems that perform reliably in demanding operating environments – robust, emission-conscious and cost-efficient.

/ Applications & use cases

Tailored wear protection with WeartecPRO®

Whether handling highly abrasive bulk materials, operating in dust-intensive environments or processing elevated-temperature materials – our systems remain durable and maintenance-friendly in continuous operation.

We combine modular bulk material handling systems with application-specific wear protection. From ceramic and hardened surface treatments to hard-faced linings and individually engineered components, each solution is tailored to the bulk material properties, throughput and process conditions.

Typical applications for our wear protection solutions:

  • Conveying and dosing of abrasive bulk materials such as clinker, fly ash, slag or cullet
  • Processing of mineral raw materials and residues in power plants, waste incineration facilities and cement, lime and gypsum works
  • Safe, low-dust discharge and process feeding of aggressive or high-temperature bulk materials
  • Preparation processes with high mechanical material stress
  • Retrofitting existing plants with wear protection components

Our technology combines robust mechanical design with efficient protection concepts – ensuring stable processes, long service intervals and predictable maintenance.

FAQ

Wear protection is particularly relevant when handling abrasive and highly wear-inducing bulk materials. Typical examples include clinker, fly ash, slag, cullet and various mineral raw materials and residues. The appropriate protection measures depend not only on the bulk material but also on the type of wear and the specific process conditions.
Wear protection is particularly relevant for components and surfaces exposed to high levels of wear. Typical areas include conveying and dosing equipment, discharge sections, transfer points and changes in material flow direction. The technically feasible and appropriate protection measures are assessed based on the specific machine design, wear conditions and operating environment.
DI MATTEO applies different wear protection concepts depending on the application. These include wear-resistant linings, ceramic and hardened surfaces, hard-wearing linings and individually engineered components. Materials and protection measures are selected and combined according to the bulk material, wear conditions and operating environment.
WeartecPRO® is a wear protection programme developed by DI MATTEO for protecting our machines and plants against wear-related loads. Our experience with abrasive bulk materials and wear-intensive applications is incorporated from the outset into the development and engineering of suitable protection measures. The objective is application-specific wear protection designed to support long service life and cost-efficient plant operation.
Existing machines and plants can also be assessed for areas subject to wear and suitable protection measures can be developed. We evaluate which retrofit measures are technically appropriate and feasible based on the existing equipment design, wear conditions and operating environment.
Key factors include the properties of the bulk material, the type and intensity of wear, conveying speed, temperature and equipment design. Based on these factors, suitable materials and protection measures are selected for the specific application.

Contact person

Svetoslav Chopov

Sales International

Contact person

Maximilian Brentrup

Sales National

Contact person

Rafael Castan

Sales International (spanish speaking areas)

Contact person

Arnim Morgenweck

Sales National

/ Available worldwide

Your personal contact

Do you have questions about our systems or are you planning a project? Contact our sales team for technical advice, detailed information and clear, engineered solutions. Globally connected, personally accessible – wherever you need us.