Coated cutting tool
US-2024287680-A1 · Aug 29, 2024 · US
US10300580B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10300580-B2 |
| Application number | US-201314772858-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 17, 2013 |
| Priority date | Mar 7, 2013 |
| Publication date | May 28, 2019 |
| Grant date | May 28, 2019 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A hanging section is installed at an upper side of a cabinet, and an autorotation mechanism rotates the hanging section around an axis of the hanging section in upward/downward directions of a device. In addition, a hanger unit hanging from the hanging section is installed in a cabinet, and a pair of frame sections is parallelly installed in series to match opening directions. Then, projection machines project a shot media toward the hanger unit. In addition, a loading/unloading device installed outside the cabinet is configured such that arm constituting a part thereof can be inserted into an opening section of the frame section of the hanger unit, and a tray on which a workpiece is placed can be conveyed. The loading/unloading device loads/unloads the tray with respect to the hanger unit by advancing and retracting the arm.
Opening claim text (preview).
The invention claimed is: 1. A shot processing device having: a cabinet formed in a box shape; a hanging section installed in the cabinet, suspended from a ceiling of the cabinet, extending in upward/downward directions of the cabinet, and having an axis extending in the upward/downward directions; an autorotation mechanism including a motor and configured to rotate the hanging section around the axis of the hanging section using the motor; a hanger unit suspended from the hanging section and installed in the cabinet, and including a pair of frame sections each having an upper frame section, a lower frame section provided below the upper frame section, and a pair of side frame sections connecting both ends, of the upper frame section and both ends of the lower frame, wherein the pair of frame sections each includes an opening section defined by the upper frame section, a lower frame section, and a pair of side frame sections, and the pair of frame sections is parallelly installed so that opening sections face each other; a projection machine including rotatable impellers and configured to project a shot media toward the hanger unit using rotatable impellers; and a loading/unloading device installed adjacent to the cabinet, including an arm insertable into the opening section of the frame section of the hanger unit and a cylinder advancing and retracting the arm, wherein the arm conveys a tray on which a workpiece is placed, and loads the tray into/unloaded from the hanger unit by operation of the cylinder. 2. The shot processing device according to claim 1 , wherein in the hanger unit, upper surface sections of intermediate sections in leftward/rightward width directions of the lower frame sections of the pair of frame sections are connected by a connecting section, and the tray is able to be placed on the connecting section, the arm is provided in a pair, and the pair of arms is installed to place the tray and insertable into left and right sides of the connecting section in the opening section of the frame section, and the thickness in the upward/downward directions of a placing section on which the tray is placed in the arms is set to be smaller than a distance in the upward/downward direction between a placing surface of the tray of the connecting section and an upper surface of the lower frame section, and the loading/unloading device includes an elevating mechanism configured to elevate the arms. 3. The shot processing device according to claim 1 , having an angle position detection unit configured to detect an initial setting position such that the opening section of the frame section of the hanger unit is directed toward the arm, among rotational angle positions around the axis in the device upward/downward directions of the hanging section, and an autorotation control unit configured to control an operation of the autorotation mechanism to stop the hanging section at the initial setting position based on a detection result of the angle position detection unit. 4. The shot processing device according to claim 2 , having an angle position detection unit configured to detect an initial setting position such that the opening section of the frame section of the hanger unit is directed toward the arm, among rotational angle positions around the axis in the device upward/downward directions of the hanging section, and an autorotation control unit configured to control an operation of the autorotation mechanism to stop the hanging section at the initial setting position based on a detection result of the angle position detection unit. 5. The shot processing device according to claim 1 , having a loading-side delivery unit installed outside the cabinet and configured to place the trays in a state of stacked in a plurality of stages, a transportation conveyor installed outside the cabinet, having an upstream side in a transportation direction disposed in the vicinity of the loading-side delivery unit, disposed to cross an operation region of the loading/unloading device, and configured to transport the tray, an unloading-side delivery unit installed outside the cabinet, disposed in the vicinity of the downstream side in the transportation direction of the transportation conveyor, and configured to place the trays in the state of stacked in the plurality of stages, a dispensing device installed in the vicinity of the loading-side delivery unit and the upstream side in the transportation direction of the transportation conveyor, and configured to sequentially transfer the trays stacked in the plurality of stages of the loading-side delivery unit from the tray of an upper stage side to be placed on the transportation conveyor, and a stacking device installed in the vicinity of the downstream side in the transportation direction of the transportation conveyor and the unloading-side delivery unit, wherein the loading/unloading device loads the tray transferred by the dispensing device and transported by the transportation conveyor to the hanger unit, and unloads the tray from the hanger unit to place the tray on the transportation conveyor, and the stacking device is able to be on standby while gripping and raising the tray unloaded by the loading/unloading device and transported by the transportation conveyor, and lowers and grips the tray when another tray is transmitted to immediately under the standby position, and further places the trays in the state of stacked in the plurality of stages on the unloading-side delivery unit. 6. The shot processing device according to claim 2 , having a loading-side delivery unit installed outside the cabinet and configured to place the trays in a state of stacked in a plurality of stages, a transportation conveyor installed outside the cabinet, having an upstream side in a transportation direction disposed in the vicinity of the loading-side delivery unit, disposed to cross an operation region of the loading/unloading device, and configured to transport the tray, an unloading-side delivery unit installed outside the cabinet, disposed in the vicinity of the downstream side in the transportation direction of the transportation conveyor, and configured to place the trays in the state of stacked in the plurality of stages, a dispensing device installed in the vicinity of the loading-side delivery unit and the upstream side in the transportation direction of the transportation conveyor, and configured to sequentially transfer the trays stacked in the plurality of stages of the loading-side delivery unit from the tray of an upper stage side to be placed on the transportation conveyor, and a stacking device installed in the vicinity of the downstream side in the transportation direction of the transportation conveyor and the unloading-side delivery unit, wherein the loading/unloading device loads the tray transferred by the dispensing device and transported by the transportation conveyor to the hanger unit, and unloads the tray from the hanger unit to place the tray on the transportation conveyor, and the stacking device is able to be on standby while gripping and raising the tray unloaded by the loading/unloading device and transported by the transportation conveyor, and lowers and grips the tray when another tray is transmitted to immediately under the standby position, and further places the trays in the state of stacked in the plurality of stages on the unloading-side delivery unit. 7. The shot processing device according to claim 5 , wherein the stacking device comprises: an elevating unit configured to elevate a clamp configured to grip the tray; a clamp jaw constituting a part of the clamp and rotatable around an axis in a horizontal direction between a support posture at which the clamp jaw is able to support a bottom surface
for compacting surfaces, e.g. shot-peening (for deforming sheet metal, tubes or profiles B21D31/06; as a metallurgical treatment C21D7/00, C22F1/00) · CPC title
Abrasive blasting machines or devices; Plants · CPC title
essentially provided with means for moving workpieces into different working positions (B24C3/08 takes precedence) · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.