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Zimmer BiometPatent grant

Zimmer was granted a patent for a ceramic-coated 3D-printed implant.

What happened

In August 2026 Zimmer patented a porous, bone-engaging implant design for orthopedic procedures, used to support bone growth and secure implants in the body.

Source

patents.google.comAug 25, 2026

US patent US12714568

Additively manufactured implant with ceramic coating

Abstract

An implant can be implantable into a human body and can include a metallic substrate and a ceramic layer. The metallic substrate can be formed by additive manufacturing. The metallic substrate can be engageable with a bone. The metallic substrate can include an inner surface, an outer surface, and a plurality of retention features. The inner surface can define a plurality of pores configured to promote bone ingrowth into the metallic substrate. The plurality of retention features can include a proximal portion connected to the outer surface and the proximal portion can define a proximal width. The ceramic layer can be a bearing surface that can be spray coated to the metallic substrate and formed around the retention features to interlock the ceramic layer with the metallic substrate.

patents.google.com/patent/US12714568Read the full source

Extracted by Autobound

From the Signal API record
Signal
Patent grant

What this signalsA new patent often shows where a company is putting its R&D budget.

Grant date
Aug 25, 2026
Patent number
US12714568
Assignee
Zimmer, Inc.

The full record

From the Signal API record

People

  • James D. WernleInventor
  • Steven ConradInventor
  • William Paul Rodgers, IIIInventor
  • Tayler KreiderInventor

Details

Primary CPC class
A61F 2/30907
USPTO assignee
Zimmer, Inc.
What the invention does
A 3D-printed metal implant with pores and anchoring features, covered by a ceramic layer to help it bond with surrounding bone.

Topics and mentions

Inventors

  • James D. Wernle
  • Steven Conrad
  • William Paul Rodgers
  • III
  • Tayler Kreider

Tags

  • Intellectual Property
  • Research & Development
  • Healthcare Technology
  • Bioengineering

Technologies named

  • additive manufacturing
  • ceramic coatings
  • orthopedic implants
  • bone ingrowth

Extraction

Detected
Sep 15, 2026
signal_type
patents-company
signal_subtype
patentGrant

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This page shows a preview. The full patents-company record in the Signal API and MCP can also have these 8 fields. Some fields are empty for some signals.

Company

  • linkedin_urlValue in the API
  • industriesValue in the API
  • employee_count_lowValue in the API
  • employee_count_highValue in the API
  • revenueValue in the API
  • descriptionValue in the API

Signal

  • signal_nameValue in the API
  • associationValue in the API
Show the full JSONThe record on this page and the API request

GET /v1/signals/dff5919c-9b94-5d8e-aec0-4cb9e739de94 returns this record as JSON. POST /v1/companies/enrich returns every signal for zimmerbiomet.com.

{
  "signal_id": "dff5919c-9b94-5d8e-aec0-4cb9e739de94",
  "signal_type": "patents-company",
  "signal_subtype": "patentGrant",
  "detected_at": "2026-09-15T19:14:26+00:00",
  "company": {
    "name": "Zimmer Biomet",
    "domain": "zimmerbiomet.com"
  },
  "data": {
    "cpc": [
      {
        "code": "A61F 2/30907"
      },
      {
        "code": "B33Y 40/20"
      },
      {
        "code": "B33Y 80/00"
      },
      {
        "code": "A61F 2002/30383"
      },
      {
        "code": "A61F 2002/30968"
      }
    ],
    "tags": [
      "Intellectual Property",
      "Research & Development",
      "Healthcare Technology",
      "Bioengineering"
    ],
    "detail": "In August 2026 Zimmer patented a porous, bone-engaging implant design for orthopedic procedures, used to support bone growth and secure implants in the body.",
    "summary": "Zimmer was granted a patent for a ceramic-coated 3D-printed implant.",
    "event_at": "2026-08-25",
    "inventors": [
      {
        "name": "James D. Wernle",
        "status": "resolved",
        "is_primary": true,
        "linkedin_url": "https://www.linkedin.com/in/james-wernle-0b3b8623"
      },
      {
        "name": "Steven Conrad",
        "status": "unresolved",
        "is_primary": false
      },
      {
        "name": "William Paul Rodgers, III",
        "status": "unresolved",
        "is_primary": false
      },
      {
        "name": "Tayler Kreider",
        "status": "resolved",
        "is_primary": false,
        "linkedin_url": "https://www.linkedin.com/in/tayler-kreider-370ba461"
      }
    ],
    "event_kind": "grant_date",
    "grant_date": "2026-08-25",
    "source_url": "https://patents.google.com/patent/US12714568",
    "cpc_primary": {
      "code": "A61F 2/30907"
    },
    "patent_title": "Additively manufactured implant with ceramic coating",
    "patent_number": "US12714568",
    "uspto_assignee": "Zimmer, Inc.",
    "patent_abstract": "An implant can be implantable into a human body and can include a metallic substrate and a ceramic layer. The metallic substrate can be formed by additive manufacturing. The metallic substrate can be engageable with a bone. The metallic substrate can include an inner surface, an outer surface, and a plurality of retention features. The inner surface can define a plurality of pores configured to promote bone ingrowth into the metallic substrate. The plurality of retention features can include a proximal portion connected to the outer surface and the proximal portion can define a proximal width. The ceramic layer can be a bearing surface that can be spray coated to the metallic substrate and formed around the retention features to interlock the ceramic layer with the metallic substrate.",
    "precision_class": "structural",
    "invention_explanation": "A 3D-printed metal implant with pores and anchoring features, covered by a ceramic layer to help it bond with surrounding bone.",
    "technologies_mentioned": [
      "additive manufacturing",
      "ceramic coatings",
      "orthopedic implants",
      "bone ingrowth"
    ]
  }
}

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