Patent classifications
B28B7/22
System and methods for creating a seamless mesh exhibiting localized customization to fill a multidimensional input surface
Dynamic cellular microstructure designs customize production in an additive manufacturing construction. A seamless mesh generated from an input shape, based on available scans and/or surface designs, is supplemented with curvature data derived from the input shape. Redesign of a base shape and/or group of base shapes within a seamless mesh enable customization in localized areas of the seamless mesh. The seamless mesh may also be retopologized according to localized feature attractor points. Base shape redesign includes cellular replication, subdivision, growth, and/or modification to adjust variable material properties. Modification changes relative opacity, stretch, drape, compressive strength, plasticity, yield strength, resilience, and Poisson's ratio specific to geometry of a base shape. Each base shape can also exhibit modifiable isotropic or anisotropic properties.
SOLID OBJECT SHAPING APPARATUS, CONTROL METHOD FOR SOLID OBJECT SHAPING APPARATUS, AND CONTROL PROGRAM FOR SOLID OBJECT SHAPING APPARATUS
A solid object shaping apparatus includes a head unit that can eject a plurality of types of liquids including a first liquid, and a second liquid having an amount of colorant components which is smaller than an amount of colorant components of the first liquid, and a curing unit, and a solid object is shaped by using the plurality of unit shaping bodies, and in which the unit shaping body can be formed in a plurality of formation modes including a first formation mode in which the first liquid is ejected from the head unit, a second formation mode in which the first liquid is ejected from the head unit, then the second liquid is ejected, and a third formation mode in which the second liquid is ejected from the head unit, then the first liquid is ejected.
Formwork core for a formwork system for casting a bell-shaped body
A formwork core for a formwork system for concreting a bell body including a base frame and two corner supports detachably fastened at a variable distance. The corner supports each bear two corner connection panels, which are arranged at a right angle to each other around the corner and can be synchronously retracted and extended without touching each other. The corner supports also bear corner angle pieces, which likewise can be retracted and extended and, in the completely extended state, close the gap between the two associated corner connection panels in order to form a vertical outer shell of the formwork core. The vertical edges of the corner connection panels, which vertical edges are distant from the corner, have screw flanges facing inward. Optionally, at least one side formwork panel can be inserted between the corner connection panels one side.
Formwork core for a formwork system for casting a bell-shaped body
A formwork core for a formwork system for concreting a bell body including a base frame and two corner supports detachably fastened at a variable distance. The corner supports each bear two corner connection panels, which are arranged at a right angle to each other around the corner and can be synchronously retracted and extended without touching each other. The corner supports also bear corner angle pieces, which likewise can be retracted and extended and, in the completely extended state, close the gap between the two associated corner connection panels in order to form a vertical outer shell of the formwork core. The vertical edges of the corner connection panels, which vertical edges are distant from the corner, have screw flanges facing inward. Optionally, at least one side formwork panel can be inserted between the corner connection panels one side.
Method of making a connector head of a multipolar lead of an active implantable medical device
Forming a connector head for a generator of an active implantable medical device by providing a pin (20) having alternating smooth sections (21) for receiving an electrical contact (210) and a profiled section (22); disposing the electrical contacts on the smooth sections; injecting into a first mold a flexibly resilient material around the profiled sections of the pin to produce isolation elements between the electrical contacts; injecting in a second mold a rigid material around the pin to form the connector head with the electrical contacts and isolation elements embedded therein; and withdrawing the pin from the cavity of the connector head thus formed. The material provides precise axial and radial positioning of the different elements, and good electrical insulation.
Production of a tower
The present invention relates to a method for producing a tower segment of a concrete tower of a wind energy installation, comprising the steps: providing a segment mold having at least one formwork for defining a mold of the tower segment that is to be produced and for filling with concrete; filling the segment mold with concrete in order to form the tower segment by the subsequent hardening of the concrete; measuring the tower segment thus hardened for creating a three-dimensional, virtual actual model of said tower segment; producing said three-dimensional actual model; comparing the three-dimensional actual model with a predefined mold, in particular a stored three-dimensional, virtual target model; and determining a deviation between both virtual models and changing the segment mold, in particular changing the at least one formwork when the deviation exceeds a first predefined threshold value.
Production of a tower
The present invention relates to a method for producing a tower segment of a concrete tower of a wind energy installation, comprising the steps: providing a segment mold having at least one formwork for defining a mold of the tower segment that is to be produced and for filling with concrete; filling the segment mold with concrete in order to form the tower segment by the subsequent hardening of the concrete; measuring the tower segment thus hardened for creating a three-dimensional, virtual actual model of said tower segment; producing said three-dimensional actual model; comparing the three-dimensional actual model with a predefined mold, in particular a stored three-dimensional, virtual target model; and determining a deviation between both virtual models and changing the segment mold, in particular changing the at least one formwork when the deviation exceeds a first predefined threshold value.
Tool for making an aesthetic wall skin
A tool for use in making a solid aesthetic wall skin sheet by slush molding. The tool comprises a porous tool base, a flat screen attached to the base, and a patterned grid attached to the screen and base.
Tool for making an aesthetic wall skin
A tool for use in making a solid aesthetic wall skin sheet by slush molding. The tool comprises a porous tool base, a flat screen attached to the base, and a patterned grid attached to the screen and base.
CONCRETE SEGMENT OF A SECTION OF A WIND TURBINE TOWER, MOULD CONFIGURED TO CAST A CONCRETE SEGMENT AND METHOD OF ASSEMBLING A WIND TURBINE
The object of the invention is a concrete segment of a section of a wind turbine tower which minimizes the undesirable local effects in the connection area between adjacent concrete sections, a section comprising at least two concrete segments, a set comprising two adjacent sections and a joint disposed between the two adjacent sections, a tower comprising at least one set, a mould configured to cast a concrete segment and a method of assembling a wind turbine.