SHIFT LEVER DEVICE

PROBLEM TO BE SOLVED: To suppress control force of a shift lever from being out of a target value. SOLUTION: In a shift lever device 10, when the shift lever 18 is operated from a C position to an N position, a pusher 24 is slid in a select sliding region 38A of a clicking portion 36 by energizing f...

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1. Verfasser: MATSUBA DAISUKE
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creator MATSUBA DAISUKE
description PROBLEM TO BE SOLVED: To suppress control force of a shift lever from being out of a target value. SOLUTION: In a shift lever device 10, when the shift lever 18 is operated from a C position to an N position, a pusher 24 is slid in a select sliding region 38A of a clicking portion 36 by energizing force. An anchor 46 is formed, at a position in the entire range of the select sliding region 38A of the clicking portion 36, by entering a secondary resin 42 to the entire inside of a through hole 44 of a primary resin 40. Thus, when the secondary resin 42 is formed, the generation of the embossing of the secondary resin 42 from the primary resin 40 can be suppressed. Accordingly, when the shift lever 18 is operated from the C position to the N position, the deformation movement of the secondary resin 42 to the primary-resin 40 side by the urging force from the pusher 24 is prevented, the reduction in the urging force applied to the shift lever 18 is prevented, and the control force of the shift lever 18 is prevented from being out of a target value. COPYRIGHT: (C)2011,JPO&INPIT
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SOLUTION: In a shift lever device 10, when the shift lever 18 is operated from a C position to an N position, a pusher 24 is slid in a select sliding region 38A of a clicking portion 36 by energizing force. An anchor 46 is formed, at a position in the entire range of the select sliding region 38A of the clicking portion 36, by entering a secondary resin 42 to the entire inside of a through hole 44 of a primary resin 40. Thus, when the secondary resin 42 is formed, the generation of the embossing of the secondary resin 42 from the primary resin 40 can be suppressed. Accordingly, when the shift lever 18 is operated from the C position to the N position, the deformation movement of the secondary resin 42 to the primary-resin 40 side by the urging force from the pusher 24 is prevented, the reduction in the urging force applied to the shift lever 18 is prevented, and the control force of the shift lever 18 is prevented from being out of a target value. 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SOLUTION: In a shift lever device 10, when the shift lever 18 is operated from a C position to an N position, a pusher 24 is slid in a select sliding region 38A of a clicking portion 36 by energizing force. An anchor 46 is formed, at a position in the entire range of the select sliding region 38A of the clicking portion 36, by entering a secondary resin 42 to the entire inside of a through hole 44 of a primary resin 40. Thus, when the secondary resin 42 is formed, the generation of the embossing of the secondary resin 42 from the primary resin 40 can be suppressed. Accordingly, when the shift lever 18 is operated from the C position to the N position, the deformation movement of the secondary resin 42 to the primary-resin 40 side by the urging force from the pusher 24 is prevented, the reduction in the urging force applied to the shift lever 18 is prevented, and the control force of the shift lever 18 is prevented from being out of a target value. 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subjects ARRANGEMENT OR MOUNTING OF PLURAL DIVERSE PRIME-MOVERS INVEHICLES
ARRANGEMENT OR MOUNTING OF PROPULSION UNITS OR OFTRANSMISSIONS IN VEHICLES
ARRANGEMENTS IN CONNECTION WITH COOLING, AIR INTAKE, GASEXHAUST OR FUEL SUPPLY OF PROPULSION UNITS, IN VEHICLES
AUXILIARY DRIVES FOR VEHICLES
INSTRUMENTATION OR DASHBOARDS FOR VEHICLES
PERFORMING OPERATIONS
TRANSPORTING
VEHICLES IN GENERAL
title SHIFT LEVER DEVICE
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