B28B7/00

Method and assembly for forming a building element

A method of designing and engineering a building element (e.g., a staircase) that is structurally verified and may be easily certified. The method uses a parametric three-dimensional (3D) model of the building element and a constraint space definition. It ensures that the building element will fit in the building and will comply with functional, legal, and/or other requirements, such as strength, dimensional requirements, or use of certain materials. A computer system provides a user tool for easily amending the building element while visualizing it in its specific use. It also converts the amended building element to processing instructions for 3D manufacturing, such that the end product complies with the constraint space definition. A user without extensive knowledge of engineering, complex computer-aided design (CAD) programs, or 3D manufacturing can easily amend a design to his or her personal need and have the building element custom produced.

Method and assembly for forming a building element

A method of designing and engineering a building element (e.g., a staircase) that is structurally verified and may be easily certified. The method uses a parametric three-dimensional (3D) model of the building element and a constraint space definition. It ensures that the building element will fit in the building and will comply with functional, legal, and/or other requirements, such as strength, dimensional requirements, or use of certain materials. A computer system provides a user tool for easily amending the building element while visualizing it in its specific use. It also converts the amended building element to processing instructions for 3D manufacturing, such that the end product complies with the constraint space definition. A user without extensive knowledge of engineering, complex computer-aided design (CAD) programs, or 3D manufacturing can easily amend a design to his or her personal need and have the building element custom produced.

PIPE FORMING APPARATUS
20230085379 · 2023-03-16 ·

According to the present invention, there is provided a pipe forming apparatus for forming a pipe at an installation site. The apparatus includes a former upon which material is wound, and a mold for receiving the former bearing the wound material. An applicator is provided for applying curable liquid within the mold. Advantageously, the pipe is formed at site to provide for efficient formation of a pipeline. A transported ISO container providing the material and curable liquid to the site can produce 800 metres of pipeline section, compared with 60 metres in the prior art, representing a significant increase in efficiency.

SWITCHABLE MAGNET DEVICE
20230117992 · 2023-04-20 ·

A switchable magnet device comprising at least one magnet package which can be moved between an interaction position and a release position, wherein the magnet device is configured such that the at least one magnet package, when moving between the interaction position and the release position, at least in portions, performs a pivot movement about a pivot axis. An actuation device is also provided, which can be coupled to the at least one magnet package to move the at least one magnet package between the interaction position and the release position. In order to easily lift the magnet from the formwork support in a small working space, the magnet device is configured such that the at least one actuation device, at least in portions and at least temporarily during the pivot movement of the at least one magnet package, performs a linear movement in a linear movement direction.

Method for manufacturing an engineered stone and an engineered stone
11628593 · 2023-04-18 · ·

A method for manufacturing an engineered stone, the method including: providing a mixture comprising at least a stone or stone like material and a binder; compacting the mixture; curing the binder; and printing on at least a top surface of the engineered stone.

MOLDING UNIT, MOLDING MACHINE, AND MOLDING METHOD
20220324137 · 2022-10-13 · ·

A molding unit includes: a flask guide member guiding the upper flask and the lower flask; a first squeeze member and a second squeeze member disposed in such a manner as to sandwich upper and lower flasks as the upper flask and the lower flask connected with each other, the first squeeze member and the second squeeze member each capable of entering the upper and lower flasks; a squeeze cylinder including a rod having an end part fixed to the first squeeze member and a cylinder body extending and contracting the rod; and a squeeze guide member configured to fix relative positions of the second squeeze member and the cylinder body. The flask guide member is a hollow rod member, and the squeeze guide member is a rod member disposed in a movable manner inside the flask guide member.

Game Piece Mold Device
20230158707 · 2023-05-25 ·

A game piece mold device includes a pair of panels hingedly coupled together. A mold insert has front and back sections each removably couplable to the pair of panels such that pivoting of the pair of panels into a closed position is configured to form a game piece out of clay positioned between the front and back sections.

METHOD FOR INJECTING A DECORATED ITEM
20220332011 · 2022-10-20 · ·

A method for machining by laser ablation or by micro-milling a raised and/or hollow structure on an impression of an injection mould. A method for manufacturing a ceramic or cermet item by injection using the injection mould to produce an item, and in particular a watch bezel, decorated directly during the injection.

SHAPED ABRASIVE PARTICLES WITH SHARP EDGES, METHODS OF MANUFACTURING AND ARTICLES CONTAINING THE SAME

A method of manufacturing a shaped abrasive particle is disclosed. The method includes filling a cavity of a tool with an abrasive particle precursor material. The cavity has at least an interior surface that extends downward from a tool top surface at an angle. The method also includes leveling the abrasive particle precursor material such that a top surface of the abrasive particle precursor materials is flush with the tool surface, such that a sharp portion is formed along the intersection between the sloped wall of the tool cavity and the tool surface and the sharp portion is within the same plane as the tool surface. The method also includes removing a dried abrasive particle precursor from the cavity of the tool. The abrasive particle has a sharp portion formed along the intersection between the interior surface and the tool surface.

PROCESSED SLABS, AND SYSTEMS AND METHODS RELATED THERETO
20230133639 · 2023-05-04 ·

This document describes systems and processes for forming synthetic molded slabs, which may be suitable for use in living or working spaces (e.g., along a countertop, table, floor, or the like).