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公开(公告)号:US20210213678A1
公开(公告)日:2021-07-15
申请号:US16076001
申请日:2017-04-28
发明人: Wei HUANG , Gary J. DISPOTO
摘要: In an example implementation, a method of producing a diffusion-controlled release device includes accessing diffusion-controlled release input data, and translating the input data into a diffusion-controlled release print file. The method includes executing the diffusion-controlled release print file to control a 3D printing system to produce a diffusion-controlled release device that comprises an active ingredient release profile based on the diffusion-controlled release input data.
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公开(公告)号:US20170372513A1
公开(公告)日:2017-12-28
申请号:US15542901
申请日:2015-01-30
发明人: Jun ZENG , Pu HUANG , Sebastia CORTES , Scott A. WHITE , Gary J. DISPOTO
IPC分类号: G06T17/00
CPC分类号: G06T17/00 , G06T19/00 , G06T2219/008
摘要: An example technique for generating slice data from a voxel representation can include obtaining a shape specification of the 3-D object. The example technique for generating slice data from a voxel representation can also include obtaining a material specification of the 3-D object. The example technique for generating slice data from a voxel representation can also include merging the shape specification and the material specification to create a voxel representation of the 3-D object, wherein each voxel in the voxel representation includes a plurality of data types. The example technique for generating slice data from a voxel representation can also include generating slice data from the voxel representation, wherein the slice data provides a higher resolution than that provided by the voxel representation using the plurality of data types.
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公开(公告)号:US20210196572A1
公开(公告)日:2021-07-01
申请号:US16076130
申请日:2017-04-28
发明人: Wei HUANG , Gary J. DISPOTO
IPC分类号: A61J3/06 , A61K9/20 , A61K9/50 , A61K45/06 , B29C64/165 , B29C64/393 , B33Y10/00 , B33Y50/02 , B33Y80/00
摘要: In an example implementation, a method of producing an erosion-controlled release device includes accessing erosion-controlled release input data, and translating the input data into an erosion-controlled release print file. The method includes executing the erosion-controlled release print file to control a 3D printing system to produce an erosion-controlled release device that comprises an active ingredient release profile based on the erosion-controlled release input data.
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公开(公告)号:US20190152156A1
公开(公告)日:2019-05-23
申请号:US16097687
申请日:2016-07-21
发明人: Peter MOROVIC , Jan MOROVIC , Ingeborg TASTL , Melanie M. GOTTWALS , Andrew E. FITZHUGH , Gary J. DISPOTO , Lihua ZHAO
IPC分类号: B29C64/393 , B33Y50/02 , G05B19/4099
摘要: In an example, a processing apparatus includes an interface to receive data representing a three-dimensional object. The data includes an object description comprising object property data. The processing apparatus comprises a mapping module to map the object description to an object generation description which includes at least one print material instruction associated with a predetermined combination of print materials from a set of print materials. The mapping module includes a plurality of mapping resources and each mapping resource associates combinations of print materials from the set of print materials with values of at least one object property. At least one object property of one mapping resource is different to at least one object property of another mapping resource. The processing apparatus also includes a selection module to select, for at least part of the object, one of the plurality of mapping resources to carry out mapping of the object description.
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公开(公告)号:US20200285922A1
公开(公告)日:2020-09-10
申请号:US16628750
申请日:2017-07-12
发明人: Wei HUANG , Steven J. SIMSKE , Gary J. DISPOTO
摘要: A spherical identifier may, in an example, include a sphere including a plurality of shells forming the sphere, a radially-defined code being discernable using the arrangement of the plurality of shells. A three-dimensional object identifier may, in an example, include a number of spheres manufactured into the body of the three-dimensional object wherein each of the spheres comprise a plurality of shells; the shells constituting a radially definable code.
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公开(公告)号:US20190108675A1
公开(公告)日:2019-04-11
申请号:US16212204
申请日:2018-12-06
发明人: Jun ZENG , Pu HUANG , Sebastia CORTES , Scott A. WHITE , Gary J. DISPOTO
IPC分类号: G06T17/00
CPC分类号: G06T17/00 , G06T19/00 , G06T2219/008
摘要: An example technique for generating slice data from a voxel representation can include obtaining a shape specification of the 3-D object. The example technique for generating slice data from a voxel representation can also include obtaining a material specification of the 3-D object. The example technique for generating slice data from a voxel representation can also include merging the shape specification and the material specification to create a voxel representation of the 3-D object, wherein each voxel in the voxel representation includes a plurality of data types. The example technique for generating slice data from a voxel representation can also include generating slice data from the voxel representation, wherein the slice data provides a higher resolution than that provided by the voxel representation using the plurality of data types.
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公开(公告)号:US20210206059A1
公开(公告)日:2021-07-08
申请号:US16075878
申请日:2017-04-19
发明人: Wei HUANG , Steven J. SIMSKE , Gary J. DISPOTO
IPC分类号: B29C64/165 , B29C64/393
摘要: In an example, a method is described that includes generating a model for fabricating an object via an additive manufacturing process. The model includes a first region defining the object and a second region defining a sacrificial artifact. The object is fabricated via the additive manufacturing process, using a fusing printing fluid. The sacrificial artifact is fabricated simultaneously with fabricating the object, via the additive manufacturing process, using a non-fusing printing fluid
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公开(公告)号:US20210205176A1
公开(公告)日:2021-07-08
申请号:US16075876
申请日:2017-04-28
发明人: Wei HUANG , Gary J. DISPOTO
摘要: In an example implementation, a method of producing an ingredient delivery device includes applying a layer of powder within a work space, selectively depositing a liquid active ingredient onto the powder layer where the liquid active ingredient is to function as a fusing agent, and applying fusing energy to the powder layer to control a release profile of the active ingredient upon ingestion of the ingredient delivery device by a user.
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公开(公告)号:US20160335562A1
公开(公告)日:2016-11-17
申请号:US15112925
申请日:2014-01-21
发明人: Jun ZENG , Patrick O. SANDFORT , Qing DUAN , Gary J. DISPOTO
CPC分类号: G06N20/00 , G06F3/1204 , G06F3/1208 , G06F3/121 , G06F3/126 , G06F3/1273 , G06F3/1288 , G06F16/182 , H04L67/12 , H04L67/2814 , H04N1/00127 , H04N1/00344 , H04N1/32096 , H04N2201/0039
摘要: Examples disclosed herein relate to a likelihood of success of a remote document service. For example, a processor may determine to transmit information about a remote document service to a device based on a likelihood of success associated with the ability of the device to perform the remote document service. The likelihood of success may be based on the performance history of the device and a factor associated with performance history and likelihood of success
摘要翻译: 本文公开的示例涉及远程文档服务成功的可能性。 例如,处理器可以基于与设备执行远程文档服务的能力相关联的成功的可能性来确定将关于远程文档服务的信息发送到设备。 成功的可能性可以基于设备的性能历史和与性能历史和成功可能性相关联的因素
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公开(公告)号:US20210205228A1
公开(公告)日:2021-07-08
申请号:US16077321
申请日:2017-02-15
发明人: Wei HUANG , Nathan MORONEY , Steven J. SIMSKE , Gary J. DISPOTO
摘要: An example device includes at least one three-dimensional (3D) printed tablet and a 3D-printed production support structure. Each 3D-printed tablet includes an excipient material and an active ingredient. The 3D-printed support structure includes a 3D-printed planar structure comprising the excipient material and at least one 3D-printed connecting member comprising the excipient material. The planar structure includes at least one aperture, each aperture corresponding to one of the at least one 3D-printed tablet. The connecting member detachably connects the at least one 3D-printed tablet with the 3D-printed planar structure and positions the at least one 3D-printed tablets within the apertures.
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