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26″ Hyper HBC Cruisers Manual
The following manual is only a guide to assist you and is not a complete or comprehensive manual of all aspects of maintaining and repairing your bicycle. The bicycle you have purchased is a complex object. Hyper Bicycles recommends that you consult a bicycle specialist if you have doubts or concerns as to your experience or ability to properly assemble, repair, or maintain your bicycle. You will save time and the inconvenience of having to go back to the store if you choose to write or call us concerning missing parts, service questions, operating advice, and/or assembly questions. 177 Malaga Park Dr. Malaga, NJ 08328 Call Toll Free SERIAL NUMBER LOCATION 1-866-204-9737 Local 417-206-0563 Bottom View Fax: 775-248-5155 Monday-Friday 8:00AM to 5:00PM (CST) For product related questions email us at: [email protected] For customer service questions email us at: [email protected] IMPORTANT NOTICE WRITE YOUR SERIAL NUMBER HERE serial number Keep your serial number handy in case of damage, loss or theft. B I C Y C L E O W N E R ’ S M A N U A L Contents SAFETY Safety Equipment 2 Mechanical Safety Check 3 Riding Safety 5 IMPORTANT NOTE TO PARENTS 5 Rules of the Road 7 Rules of the Trail 9 Wet Weather Riding 10 Night Riding 10 Bicycling in Traffic 12 ASSEMBLY, MAINTENANCE May not be May not be AND ADJUSTMENT exactly as exactly as illustrated illustrated Fenders 30 NEW OWNER Warranty 36 Purchase Record 37 VISIT US ONLINE@ M A X W E I G H T : 2 7 5 l b s www.hyperbicycles.com This manual contains important safety, performance If you have a problem, do not return to the store, and maintenance information. -
Page. CLAIMS of the PRINCIPLE of RPTATION of TURBINE ONE
Page. CLAIMS OF THE PRINCIPLE OF RPTATION OF TURBINE ONE. What to claim is: 1. Rotation is obtained of the cross axial and axial bearing mounted turbine rotors, by shielding the returnblades partially or completely and uncovering the pushblades partially or completely. 2. Rotation of horizontal and vertical mounted rotor operable in bearings comprising at least three rotor blades radial and axially projecting its form expending from the hub. Cross-axial rotation of turbine rotors by means of shielding vane, or wind screen shielding the return blades partially or completely and uncovering the pushblades partially or completely for fluid to be channelled cross axially trough the intakes and impact coaxial and horizontally on the transverse projecting turbine rotor blades causing rotation of the prime mover, drivetrain by the converting kinetic energy into mechanical energy and into electric energy by means of a constant transmission turbine gearbox and lubricant system mechanical coupled in rotational mode with the electric generator rotor, comprising a cylindrical permanent or electromagnet coupled electrically to the exciter electrically connected with the disk magnet and axially opposing stator coils or disk or plates or massive electric conductive material disk or cylinder. 3. Rotation of the horizontal and vertical turbine rotor is obtained in clockwise direction and in counterclockwiswise direction. Generating AC current or dc current. Defines the rotor by at least two axial halves exposed axially for cross-axial flow axial flow and/or for perpendicularly flow turbine rotors. A left and right axial halve, or upper and lower axial halve which form the returnblades section and the pushblades intake and exhaust sections. -
IEEE ROBIO 2018 Conference Paper
2018 IEEE International Conference on Robotics and Biomimetics (ROBIO 2018) Kuala Lumpur, Malaysia 12-15 December 2018 Pages 1-819 IEEE Catalog Number: CFP18581-POD ISBN: 978-1-7281-0378-5 1/3 Copyright © 2018 by the Institute of Electrical and Electronics Engineers, Inc. All Rights Reserved Copyright and Reprint Permissions: Abstracting is permitted with credit to the source. Libraries are permitted to photocopy beyond the limit of U.S. copyright law for private use of patrons those articles in this volume that carry a code at the bottom of the first page, provided the per-copy fee indicated in the code is paid through Copyright Clearance Center, 222 Rosewood Drive, Danvers, MA 01923. For other copying, reprint or republication permission, write to IEEE Copyrights Manager, IEEE Service Center, 445 Hoes Lane, Piscataway, NJ 08854. All rights reserved. *** This is a print representation of what appears in the IEEE Digital Library. Some format issues inherent in the e-media version may also appear in this print version. IEEE Catalog Number: CFP18581-POD ISBN (Print-On-Demand): 978-1-7281-0378-5 ISBN (Online): 978-1-7281-0377-8 Additional Copies of This Publication Are Available From: Curran Associates, Inc 57 Morehouse Lane Red Hook, NY 12571 USA Phone: (845) 758-0400 Fax: (845) 758-2633 E-mail: [email protected] Web: www.proceedings.com Table of Contents Thu1-1: Robot Control and Manipulation A Pneumatically-Actuated Variable-Stiffness Robot Arm Using Parallel Flexures 1 Venkatasubramanian Kalpathy Venkiteswaran, Ruiqi Hu, Hai-jun Su Vision Based Cable Assembly in Constrained Environment 8 Chenhang Jiao, Xin Jiang, Xiang li, Prof. -
Exploring Bicycle Options for Federal Lands: Bike Sharing, Rentals and Employee Fleets
FHWA-WFL/TD-12-001 JANUARY 2012 EXPLORING BICYCLE OPTIONS FOR FEDERAL LANDS: BIKE SHARING, RENTALS AND EMPLOYEE FLEETS Technical Report published by Technology Deployment Program Western Federal Lands Highway Division Federal Highway Administration 610 East 5th St. Vancouver, WA 98661 For more information or additional copies contact: Susan Law, Planning Team Leader [email protected], 360.619.7840 Technical Report Documentation Page 1. Report No. 2. Government Accession No. 3. Recipient’s Catalog No. FHWA-WFL/TD-12-001 4. Title and Subtitle 5. Report Date January 2012 EXPLORING BICYCLE OPTIONS FOR FEDERAL LANDS: BIKE SHARING, RENTALS AND EMPLOYEE FLEETS 6. Performing Organization Code 7. Author(s) 8. Performing Organization Report No. Rebecca Gleason, Laurie Miskimins 9. Performing Organization Name and Address 10. Work Unit No. (TRAIS) Western Transportation Institute P.O. Box 174250 11. Contract or Grant No. Bozeman, MT 59717-4250 12. Sponsoring Agency Name and Address 13. Type of Report and Period Covered Federal Highway Administration Final Report Western Federal Lands Highway Division August 2009 – July 2011 610 East 5th St. Vancouver, WA 98661 14. Sponsoring Agency Code HFL-17 15. Supplementary Notes COTR: Susan Law – FHWA CFLHD/WFLHD. Advisory Panel Members: Adam Schildge – FTA, Alan Turnbull – NPS RTCA, Andrew Duvall, National Science Foundation IGERT PhD student, Brandon Jutz – FWS, Candace Rutt – CDC, Diana Allen – NPS RTCA, Franz Gimmler – non-motorized consultant, Ivan Levin – Outdoor Foundation, Jane D. Wargo – HHS, Jason Martz – NPS, Jim Evans – NPS, Nathan Caldwell – FWS, Paul DeMaio – Bike Share consultant, Tokey Boswell – NPS. This project was funded by the Fish and Wildlife Service Refuge Road Program. -
Development of a Bicycle Dynamic Model and Riding Environment for Evaluating Roadway Features for Safe Cycling
TRC-2017-02 October 31, 2018 Development of a Bicycle Dynamic Model and Riding Environment for Evaluating Roadway Features for Safe Cycling FINAL REPORT Upul Attanayake, Ph.D., P.E. Mitchel Keil, Ph.D., P.E. Abul Fazal Mazumder, M.Sc. Transportation Research Center for Livable Communities Western Michigan University Technical Report Documentation Page 1. Report No. 2. Government Accession No. 3. Recipient’s Catalog No. TRCLC 2017-02 N/A N/A 4. Title and Subtitle 5. Report Date Development of a Bicycle Dynamic Model and Riding Environment October 31, 2018 for Evaluating Roadway Features for Safe Cycling 6. Performing Organization Code N/A 7. Author(s) 8. Performing Org. Report No. Upul Attanayake, Ph.D., P.E. N/A Mitchel Keil, Ph.D., P.E. Abul Fazal Mazumder, M.Sc. 9. Performing Organization Name and Address 10. Work Unit No. (TRAIS) Western Michigan University N/A 1903 West Michigan Avenue 11. Contract No. Kalamazoo, MI 49008 TRC 2017-02 12. Sponsoring Agency Name and Address 13. Type of Report & Period Transportation Research Center for Livable Communities Covered (TRCLC) Final Report 1903 W. Michigan Ave., 8/15/2017 - 10/31/2018 Kalamazoo, MI 49008-5316 14. Sponsoring Agency Code USA N/A 15. Supplementary Notes 16. Abstract Cycling is a viable transportation option for almost everyone and enhances health, equity, and quality of life. Cycling contributes to the society by reducing fuel consumption, traffic congestion, and air and noise pollution. In recent days, cycling has been promoted as more emphasis is given to non-motorized mobility. To attract people towards cycling, safe and comfortable bikeways are needed. -
The Custom Bicycle
THE CUSTOM BICYCLE Michae J. Kolin and Denise M.de la Rosa BUYING. SETTING UP, AND RIDING THE QUALITY BICYCLE Copyright© 1979 by Michael J. Kolin and Denise M. de la Rosa All rights reserved. No part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopy, recording, or any information storage and retrieval system, without the written permission of the publisher. Book Design by T. A. Lepley Printed in the United States of America on recycled paper, containing a high percentage of de-inked fiber. 468 10 9753 hardcover 8 10 9 7 paperback Library of Congress Cataloging in Publication Data Kolin, Michael J The custom bicycle. Bibliography: p. Includes index. 1. Bicycles and tricycles—Design and construction. 2. Cycling. I. De la Rosa, Denise M., joint author. II. Title. TL410.K64 629.22'72 79-1451 ISBN 0-87857-254-6 hardcover ISBN 0-87857-255-4 paperback THE CUSTOM BICYCLE BUYING, SETTING UP, AND RIDING i THE QUALITY BICYCLE by Michael J. Kolin and Denise M. de la Rosa Rodale Press Emmaus, Pa. ARD K 14 Contents Acknowledgments Introduction Part I Understanding the Bicycle Frame CHAPTER 1: The Bicycle Frame 1 CHAPTER 2: Bicycle Tubing 22 CHAPTER 3: Tools for Frame Building 3 5 Part II British Frame Builders CHAPTER 4: Condor Cycles 47 CHAPTER 5: JRJ Cycles, Limited 53 CHAPTER 6: Mercian Cycles, Limited BO CHAPTER 7: Harry Quinn Cycles, Limited 67 CHAPTER 8: Jack Taylor Cycles 75 CHAPTER 9: TI Raleigh, Limited 84 CHAPTER 10: Woodrup Cycles 95 Part III French Frame Builders CHAPTER 11: CNC Cycles 103 CHAPTER 12: Cycles Gitane 106 CHAPTER 13: Cycles Peugeot 109 THE CUSTOM BICYCLE Part IV Italian Frame Builders CHAPTER 14: Cinelli Cino & C. -
Development of a Future Electrical Bicycle for the Ageing Population
eZIN Development of a future electrical bicycle for the ageing population CHRISTOS SAPLACHIDIS EMIL YXHAGE Master of Science Thesis in the Master Degree Program, Industrial Design Engineering SUPERVISOR : DAVID LAMM, MIKAEL SUNDGREN EXAMINER: ULRIKE RAHE CHALMERS UNIVERSITY OF TECHNOLOGY Department of Product- and Production Development Gothenburg, Sweden 2015 Division of Design & Human Factors eZIN Development of a future electrical bicycle for the aging population Master of Science Thesis PPUX05 eZIN Master of Science Thesis in the Master Degree Program, Industrial Design Engineering © CHRISTOS SAPLACHIDIS, EMIL YXHAGE Chalmers University of Technology SE-412 96 Goteborg, Sweden Telephone +46(0) 31-772 1000 Cover photo: Computer generated image of final concept Print: Repro Service Chalmers CHALMERS UNIVERSITY OF TECHNOLOGY Department of Product- and Production Development Gothenburg, Sweden 2015 Division of Design & Human Factors Abstract A rather important trend for modern society is the fact that average life expectancy is increased with accelerated pace. Furthermore, the burden of lifetime illness is compressed into a shorter period before the time of a person's death, a statement known as compression of morbidity. As a result, people are capable of being more and more active for longer periods and older ages. Considering as well, the fact that most jobs currently, and most likely in the future, involve a lot of office work sitting still, the need for daily exercise becomes critical in many aspects, especially at older ages. Biking can bring these facts together since it can be easily integrated into everyday living as transportation mean. At older ages though, conventional bicycles can present usage requirements and side effects that will prevent people from using them. -
A Constant Force Bicycle Transmission
Rochester Institute of Technology RIT Scholar Works Theses 8-1-1983 A constant force bicycle transmission Thomas Chase Follow this and additional works at: https://scholarworks.rit.edu/theses Recommended Citation Chase, Thomas, "A constant force bicycle transmission" (1983). Thesis. Rochester Institute of Technology. Accessed from This Thesis is brought to you for free and open access by RIT Scholar Works. It has been accepted for inclusion in Theses by an authorized administrator of RIT Scholar Works. For more information, please contact [email protected]. A CONSTANT FORCE BICYCLE TRANSMISSION by Thomas R. Chase A Thesis Project Submitted in Partial Fulfillment of the Requirements for the Degree of MASTER OF SCIENCE in Mechanical Engineering Approved by: Prof. Richard Budynas Thesis Adviser Prof. Dr. Bhalchandra V. Karlekar Department Head Prof. '"egible Signature Prof. Ray C. Johnson DEPARTMENT OF MECHANICAL ENGINEERING ROCHESTER INSTITUTE OF TECHNOLOGY ROCHESTER, NHJ YORK August 1983 A CONSTANT FORCE BICYCLE TRANSMISSION ABSTRACT A prototype design for a human powered automatic transmission intended for use on an ordinary touring bicycle is presented. The transmission is intended to automatically adjust the gearing of the bicycle to maintain an optimum pedal force, regardless of the current riding conditions. Therefore, the transmission eliminates the need for the cyclist to manually adjust the bicycle gearing. The entire transmission is a self-contained unit designed to bolt onto the rear wheel of an otherwise unmodified 27-inch bicycle. The transmission combines a unique adaptation of a commercially popular continuously variable traction drive with a totally mechanical integral feedback controller. The features of the traction drive unique to its application to a bicycle are outlined in detail, along with an analysis of the important traction drive design parameters. -
Pedal Force Effectiveness in Cycling: a Review of Constraints and Training Effects
View metadata, citation and similar papers at core.ac.uk brought to you by CORE provided by Research Online @ ECU Edith Cowan University Research Online ECU Publications 2013 1-1-2013 Pedal force effectiveness in cycling: A review of constraints and training effects Rodrigo Bini Patria Hume James L. Croft Edith Cowan University, [email protected] Andrew Kilding Follow this and additional works at: https://ro.ecu.edu.au/ecuworks2013 Part of the Sports Sciences Commons Bini, R., Hume, P., Croft, J. L., & Kilding, A. (2013). Pedal force effectiveness in cycling: A review of constraints and training effects. Journal of Science and Cycling, 2(1), 11-24. Availablehere This Journal Article is posted at Research Online. https://ro.ecu.edu.au/ecuworks2013/891 J Sci Cycling. Vol. 2(1), 11-24 REVIEW ARTICLE Open Access Pedal force effectiveness in Cycling: a review of constraints and training effects Rodrigo R Bini1, 2, Patria Hume1, James Croft3, Andrew Kilding1 Abstract Pedal force effectiveness in cycling is usually measured by the ratio of force perpendicular to the crank (effective force) and total force applied to the pedal (resultant force). Most studies measuring pedal forces have been restricted to one leg but a few studies have reported bilateral asymmetry in pedal forces. Pedal force effectiveness is increased at higher power output and reduced at higher pedaling cadences. Changes in saddle position resulted in unclear effects in pedal force effectiveness, while lowering the upper body reduced pedal force effectiveness. Cycling experience and fatigue had unclear effects on pedal force effectiveness. Augmented feedback of pedal forces can improve pedal force effectiveness within a training session and after multiple sessions for cyclists and non-cyclists. -
The Skate Facility Guide by Sport and Recreation Victoria
Contents Disclaimer 2 Acknowledgements 3 Preface 4 Chapter 1: History 5 An overview of the evolution and further development of skating since the 1950s. Chapter 2: The market 9 The face of the skating market, skating trends and the economic value. Chapter 3: Encouragement 15 Why and how should we encourage skating? Chapter 4: The street 18 The challenges of skating in the streets. The challenges and strategies for a planned approach to street skating. Chapter 5: Planning 24 What is required in planning for a skate facility? Chapter 6: Design 44 Factors that need consideration in skate facility design. Chapter 7: Safety and risk 78 Danger factors in skating and suggested strategies to address risk and safety management at skate park facilities. Chapter 8: What skaters can do 93 Ideas for skaters to help develop a skate park. Chapter 9: Checklists Master copies of the main checklists appearing in the manual. Notes 101 References and citations made throughout the manual. Read on 103 Suggested further reading. The Skate Facility Guide 1 Disclaimer of responsibility The State of Victoria and its employees shall not be liable for any loss, damage, claim, costs, demands and expenses for any damage or injury of any kind whatsoever and howsoever arriving in connection with the use of this Skate Facility Guide or in connection with activities undertaken in recreation programs. As the information in this Skate Facility Guide is intended as a general reference source, employees of the State of Victoria and, in particular Sport and Recreation Victoria, have made every reasonable effort to ensure the information in this publication is current and accurate. -
Brand New Giant Mountain Bike for Sale Philippines
Brand New Giant Mountain Bike For Sale Philippines Find brand new and second hand mountain bike for sale. Select from 1678 results for mountain bike on OLX Philippines. Mountain Bike Philippines ➤ Mountain Bike for sale at Lazada.com.ph ➤ Great 2015 Price List✓ Good Reviews✓ Effortless New Arrivals · Top Sellers · On Sale. Price. –. Brand. Aleoca (2), DiamondBack (8), Extreme Bikes (13), Giant (9), Hubu (2) Marin Bikes Bobcat Trail 9.3 California Mountain Bike (Gray/Orange). Find brand new and second hand giant mountain bike for sale. Select from 67 results for giant mountain bike on OLX Philippines. Enjoy cycling in a whole new level with Ryan Bikes' bikes for sale. Here, the best bike brands, BRAND NEW AUTHENTIC GIANT TALON 4 2015 (27.5)PRICE: P22,000 SRP Pedals MTB Caged Drivetrain All Giant bikes are designed for best-in-class weight and ride quality. 1103 Quezon City, Philippines. Message. hand giant bike for sale. Select from 130 results for giant bike on OLX Philippines. Bookmark. Brand New 2016 GIANT Talon (27.5) 2 - Mountain Bike. SALE!!SALE!!32000 SALE PRICE 35500 REGULAR PRICE NOW ACCEPTING CREDIBesides Shell Gas Station in front of Arcadia BLDG 5 Min from the Philippine Arena. We also accept Brand New Trinx X7A (26) 2015 Mountain Bike. Brand New Giant Mountain Bike For Sale Philippines >>>CLICK HERE<<< Richard Dondie B. Fernandez I'm a newbie at biking and I would like to focus on trail biking. I would prefer the brand GIANT. Can you recommend one for me? Bikes for sale : Menand#039,s Giant Mountain Bike (, ) - Free Classified ads. -
Technical and Environmental Viability of a Road Bicycle Pedal Part Made of a Fully Bio-Based Composite Material
materials Article Technical and Environmental Viability of a Road Bicycle Pedal Part Made of a Fully Bio-Based Composite Material David Hernández-Díaz 1,* , Ricardo Villar-Ribera 2,*, Ferran Serra-Parareda 3 , Rafael Weyler-Pérez 4, Montserrat Sánchez-Romero 4, José Ignacio Rojas-Sola 5 and Fernando Julián 6 1 Serra Húnter Programme, Department of Engineering Graphics and Design, Polytechnic University of Catalonia, 08222 Terrassa, Spain 2 Department of Engineering Graphics and Design, Campus Manresa, Polytechnic University of Catalonia, 08242 Manresa, Spain 3 LEPAMAP Research Group, University of Girona, 17003 Girona, Spain; [email protected] 4 Department of Strenght Materials and Structural Engineering, Polytechnic University of Catalonia, 08222 Terrassa, Spain; [email protected] (R.W.-P.); [email protected] (M.S.-R.) 5 Department of Engineering Graphics, Design and Projects, University of Jaén, 23071 Jaén, Spain; [email protected] 6 Design, Development and Product Innovation, Department of Organization, Business, University of Girona, 17003 Girona, Spain; [email protected] * Correspondence: [email protected] (D.H.-D.); [email protected] (R.V.-R.) Abstract: Glass fibre is the most widely used material for reinforcing thermoplastic matrices presently and its use continues to grow. A significant disadvantage of glass fibre, however, is its impact on the environment, in particular, due to the fact that glass fibre-reinforced composite materials are difficult to recycle. Polyamide 6 is an engineering plastic frequently used as a matrix for high-mechanical Citation: Hernández-Díaz, D.; performance composites. Producing polyamide monomer requires the use of a large amount of Villar-Ribera, R.; Serra-Parareda, F.; energy and can also pose harmful environmental impacts.