Patent classifications
B23Q3/02
SUBSTRATE PROCESSING APPARATUS
A substrate processing apparatus 10 having a lower jig plate 46 for arranging a substrate 2 as an object to be pressurized, a support member 45 including an installation portion 52 for installing columnar members 50 supporting the lower jig plate 46, in which the columnar members 50 are placed to the installation portion 52 in accordance with a in-plane distribution of a load applied to the lower jig plate 46.
Modular fixture plate system for positioning a workpiece during a manufacturing and/or inspection process
A modular fixture plate system comprising: at least one interlocking fixture plate comprising at least one of a male end and a female end, wherein the male end comprises at least one male projection and the female end comprises at least one female recess; and a docking plate comprising at least one of at least one male projection and at least one female recess; wherein at least one male projection or female recess of the at least one interlocking fixture plate is interlocked with a mating one of the at least one male projection or the at least one female recess of the docking plate.
Modular fixture plate system for positioning a workpiece during a manufacturing and/or inspection process
A modular fixture plate system comprising: at least one interlocking fixture plate comprising at least one of a male end and a female end, wherein the male end comprises at least one male projection and the female end comprises at least one female recess; and a docking plate comprising at least one of at least one male projection and at least one female recess; wherein at least one male projection or female recess of the at least one interlocking fixture plate is interlocked with a mating one of the at least one male projection or the at least one female recess of the docking plate.
SUBSTRATE PROCESSING APPARATUS, SUBSTRATE PROCESSING SYSTEM AND SUBSTRATE PROCESSING METHOD
A substrate processing apparatus includes a pair of first substrate chucks each configured to hold a substrate from below while allowing a first main surface of the substrate to face upwards; a pair of second substrate chucks each configured to hold the substrate from below while allowing a second main surface of the substrate opposite to the first main surface to face upwards; a rotary table which is configured to be rotated about a rotation axis; a first processing unit equipped with a first processing tool configured to process the first main surface of the substrate held by the first substrate chuck; and a second processing unit equipped with a second processing tool configured to process the second main surface of the substrate held by the second substrate chuck.
Shape holding fixture and method for manufacturing aircraft panel
To simplify the structure of a holding fixture which holds the shape of the aircraft panel and conveys the aircraft panel, an object is to ensure shape accuracy required in the manufacturing process and hold an aircraft panel in an appropriate shape, in combination with a holding fixture. A shape holding fixture includes: a plurality of support units configured to be positioned on a lower surface side of an aircraft panel, and provided at intervals along a one-axis direction, the aircraft panel being held by a holding fixture configured to grip an edge portion of the aircraft panel; and a shape holding unit provided to each of the plurality of support units, including a rod which supports the aircraft panel from the lower surface side of the aircraft panel, and configured to adjust a position where the rod comes into contact with the aircraft panel to support the aircraft panel, corresponding to the shape of the aircraft panel.
Biasing positioning element
The positioning pin has a pin body and a biasing element. The pin body defines a slit through which at least a portion of the biasing element is able to extend through. The pin body can be configured to be at least partially inserted into a working surface hole and help position an object. The biasing element has an engagement element that is able to bias the working object in a direction of the slit.
Mobile project center system
A mobile project center system is presented that includes a center track having a pair of center supports and a pair of legs connected to the center support. A pair of benchtops are connected to the center track and move between an extended position and a retracted position. A pair of braces connect to each benchtop and provide support between the benchtop and the legs. These braces are locked and unlocked using a brace lock controlled by a brace control positioned just below the benchtops. A shelf extends between the opposing pairs of legs that transitions from a folded position and an extended position. The benchtop includes a plurality of openings in a grid pattern that facilitate attachment of various devices such as a joinery block. The system is used to perform a number of operations and converts between a plurality of configurations.
SHAPE HOLDING FIXTURE AND METHOD FOR MANUFACTURING AIRCRAFT PANEL
To simplify the structure of a holding fixture which holds the shape of the aircraft panel and conveys the aircraft panel, an object is to ensure shape accuracy required in the manufacturing process and hold an aircraft panel in an appropriate shape, in combination with a holding fixture. A shape holding fixture includes: a plurality of support units configured to be positioned on a lower surface side of an aircraft panel, and provided at intervals along a one-axis direction, the aircraft panel being held by a holding fixture configured to grip an edge portion of the aircraft panel; and a shape holding unit provided to each of the plurality of support units, including a rod which supports the aircraft panel from the lower surface side of the aircraft panel, and configured to adjust a position where the rod comes into contact with the aircraft panel to support the aircraft panel, corresponding to the shape of the aircraft panel.
HANDLING OF A WIND TURBINE BLADE
Disclosed is a root end element for attachment to a root end of a wind turbine blade, a root end manipulator configured to manipulate a wind turbine blade, and a blade manipulation system comprising the root end element and the root end manipulator. The root end element being configured to support the root end of the wind turbine blade.
UNIVERSAL INTERCHANGEABLE PLATE SYSTEM FOR TOOL HEAD ASSEMBLIES
A universal plate system for mounting tool heads and/or components on manufacturing machines includes a fixed plate assembly on the x-carriage of the manufacturing machine. A mobile plate assembly is configured to removably attach to the fixed plate assembly, to provide mechanical support and electrical connectivity to a tool head assembly mounted to the mobile plate assembly. The mobile plate assembly can be easily detached from the fixed plate assembly and replaced with a different mobile plate assembly having a different tool head assembly mounted thereon. Mating of the mobile plate assembly to the fixed plate assembly provides the mechanical and electrical connection between the manufacturing machine and the newly mounted tool head assembly, thus permitting quick changes of the tool head assembly to be made.