Abstract:
An alignment jig (10) configured to support and orient a load (500). The alignment jig (10) may form part of an alignment system (300). The alignment jig (10) comprises a first base unit (100) configured to carry a first support unit (200), the first support unit (200) being configured to support the load (500) and to space the first base unit (100) apart from the load (500). The first support unit (200) is moveable relative to the first base unit (100). The first base unit (100) comprises a first base unit actuation system (110) operable to act on the first support unit (200) along a first base unit operational axis X1. The first support unit (200) comprises a first support unit actuation system (210) operable to act on the load (500) along a first support unit operational axis Y1.
Abstract:
A plurality of portable lifts are dynamically configured to form a lift system for raising and lowering of vehicle. Each portable lift is added to the lift system and communicates wirelessly with a centralized control module. Some systems guide the user through a sequenced association of lifts in particular relative positions around the vehicle, while others use automatic position-detection techniques to determine those relative positions without explicit user input. Some systems allow definition of subsystems that can be operated together. Flexible controls may selectively allow operation of individual lifts, pairs or subsystems of lifts, or the full system at once. Controls on each lift may communicate commands for other lifts by way of the centralized control module.
Abstract:
The invention relates to a straightening bench for a vehicle chassis and body, characterised in that it comprises: a vehicle lift with four beams, including two longitudinal beams (2a) and two crossbeams (2b) interconnected in pairs, each of the two crossbeams (2b) being linked to two lifting columns (1). Also disclosed are means (4) for fastening the vehicle to the longitudinal beams (2a) of the straightening bench, these fastening means (4) being capable of attaching a vehicle resting on its wheels to the longitudinal beams (2a).
Abstract:
The invention is a telescopic column (1) comprising: two or more tubular members (2; 3) telescopically engaging one inside the other; a drive unit (6) contained inside the tubular members (2; 3); a cover (4) attached to the end of the inner tubular member (3); a supporting plate (8) attached to the outside of the cover (4); a tubular rod (5) associated with the drive unit (6), installed inside the tubular members (2; 3) with its end (5a) associated with the cover (4); means (7) for controlling the extension and withdrawal of the tubular members (2; 3). During the withdrawal of the tubular rod (5) inside the tubular members (2; 3), a safety device (9) operatively connected to the control means (7) stops the drive unit (6) if a counteracting element (C) obstructs the lowering of the supporting plate (8).
Abstract:
Aspects of the disclosure relate to an engine support system and method. The engine support system includes a frame mounted engine support and at least one engine mounted coupler. The engine support includes a frame mount with a telescoping body and opposing arms to releasably engage a frame of a vehicle, and at least one jack assembly. Each jack assembly includes a collar coupled to and horizontally movable along the telescoping body, and a jack rod coupled to and vertically movable relative to the collar. The jack rod includes a ball mount configured to insert into the coupler at an underside of an engine block of the vehicle. Each jack assembly is configured to support and/or lift the engine block relative to the vehicle frame by vertical movement of the ball mount into the coupler and relative to the frame mount engaged with the vehicle frame.
Abstract:
Described herein is a lifting device for raising and lowering a contact member. The lifting device includes an actuator configured to move the contact member between a lowered position and a raised position, wherein in a first mode of operation of the lifting device, the actuator moves the contact member from the lowered position to the raised position without rotating the contact member about a reference axis, and in a second mode of operation of the lifting device, the actuator permits rotational motion of the contact member about the reference axis from the raised position to a modified raised position.
Abstract:
Une unité (100) de chargement ou de déchargement comportant : un châssis inférieur (10); une structure élévatrice (20) comportant : une plateforme supérieure (21) apte supporter une charge et présentant des moyens pour déplacer la charge en translation selon l'axe longitudinal (X) et au moins deux paires d'actionneurs (22) permettant le déplacement de la plateforme supérieure (21) par rapport au châssis inférieur (10), lesdits actionneurs (22) étant des actionneurs de déplacement verticaux autorisant le déplacement de la plateforme supérieure (21) en translation (TZ) selon l'axe vertical (Z) de l'unité de chargement, en rotation (RX) selon l'axe longitudinal (X) de l'unité de chargement et en rotation (RY) selon l'axe transversal (Y) de l'unité de chargement; au moins deux actionneurs de déplacement horizontaux autorisant le déplacement de la plateforme supérieure en rotation (RZ) selon l'axe vertical (Z) de l'unité de chargement (100).
Abstract:
본 발명의 자립형 파우치의 바닥부 접합장치는 바닥부분이 상부로 향하도록 된 가 봉투(71)가 진입하여 이동하도록 길이 방향을 따라 중간 부분에 슬릿(5s)이 형성되는 작업대(5)와; 작업대(5)의 양쪽 끝에 배치되어 구동원에 의해 회전되는 것으로 바닥원단(75)이 감겨진 공급보빈(7) 및 바닥원단(75)을 회수하는 회수보빈(9) 그리고 이들 공급보빈(7)과 회수보빈(9)의 각 일측에 설치되어 바닥원단(75)을 작업대(5)의 상부면에 근접하게 안내 이동시키는 제1,2안내롤러(7r,9r) 및 작업대(5)의 전방일측에 설치되어 투입되는 가 봉투(71)를 후방으로 안내 이동하는 공급롤러(6)와; 공급롤러(6)를 통해 공급되는 가 봉투(71)와 그 상측에 위치하는 바닥원단(75)을 일체로 가압하여 열 접합시키는 것으로 순차적으로 높은 온도를 갖는 제1,2,3열접합수단(10,20,30)과; 열접합수단의 일측에 설치되어 바닥부가 접합된 파우치(70)를 냉각시키는 냉각수단(40)과; 냉각수단(40)의 일측에 설치되어 냉각된 파우치(70)의 바닥부 주변을 전단하는 커팅수단(50)을 포함한다.
Abstract:
Die Erfindung betrifft ein modular aufgebautes Hohlprofil sowie einen teleskopartig ausgebildeten Träger, insbesondere eine Hubsäule, welche durch die modular aufgebauten Hohlprofile gebildet ist.
Abstract:
The present invention relates to a jack stand. The jack stand includes a base and a post for extending from the base. A top is provided for topping the post and engaging with a load. The top includes a load spreader for spreading the weight of the load to the post. Advantageously, the spreader spreads the weight of the load to the post thereby resulting in a more heavy duty jack-stand, rated for significantly higher loads, than prior jack stands which instead can fracture under heavy unbalanced loads locally travelling along one side when the loading is not evenly spread.