GB/T 18160-2025 PDF English
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GB/T 18160: Historical versions
| Standard ID | USD | BUY PDF | Delivery | Standard Title (Description) | Status |
| GB/T 18160-2025 | 215 | Add to Cart | Auto, 9 seconds. | Specifications of space-gyro type of rides | Valid |
| GB/T 18160-2008 | 70 | Add to Cart | Auto, 9 seconds. | Specifications of amusement rides space gyro category | Valid |
| GB 18160-2000 | 439 | Add to Cart | 4 days | Specifications of amusement rides fly tower category | Obsolete |
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GB/T 18160-2025: Specifications of space-gyro type of rides
---This is an excerpt. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.), auto-downloaded/delivered in 9 seconds, can be purchased online: https://www.ChineseStandard.net/PDF.aspx/GBT18160-2025GB NATIONAL STANDARD OF THE PEOPLE’S REPUBLIC OF CHINA ICS 97.200.40 CCS Y 57 Replacing GB/T 18160-2008 Specifications of space-gyro type of rides Issued on: AUGUST 29, 2025 Implemented on: MARCH 01, 2026 Issued by. State Administration for Market Regulation; Standardization Administration of the People’s Republic of China.
Table of Contents
Foreword... 3 1 Scope... 5 2 Normative references... 5 3 Terms and definitions... 6 4 Technical requirements... 7 5 Inspection and testing... 11 6 Packaging, transportation and storage... 14 Bibliography... 15 Specifications of space-gyro type of rides1 Scope
This document specifies the technical requirements, inspection and testing requirements, packaging, transportation and storage of space-gyro type of rides. This document applies to the design, manufacture, installation, use, modification, repair, inspection and testing of space-gyro type of rides.2 Normative references
The following documents, in whole or in part, are normatively referenced in this document and are indispensable for its application. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. GB/T 191, Packaging - Pictorial marking for handling of goods GB/T 755, Rotating electrical machines - Rating and performance GB/T 1184, Geometrical tolerancing - Geometrical tolerance for features without individual tolerance indications GB/T 1804, General tolerances - Tolerances for linear and angular dimensions without individual tolerance indications GB/T 5226.1, Electrical safety of machinery - Electrical equipment of machines - Part 1.General requirements GB/T 8923 (all parts), Preparation of steel substrates before application of paints and related products - Visual assessment of surface cleanliness GB/T 9286, Paints and varnishes - Cross-cut test GB/T 13384, General specifications for packing of mechanical and electrical product GB/T 13912, Metallic coatings - Hot dip galvanized coatings on fabricated iron and steel articles - Specifications and test methods GB/T 19804, Welding - General tolerances for welded constructions - Dimensions for lengths and angles - Shape and position GB/T 20050-2020, Inspection and testing specifications of large-scale amusement device - General principles GB/T 20306, Amusement devices terminology GB/T 34370 (all parts), Nondestructive testing of amusement equipment3 Terms and definitions
For the purpose of this document, the following terms and definitions, as well as those given in GB/T 20306, apply. 3.1 space-gyro type of rides An amusement ride in which the passenger cabin rotates around an axis with a variable dip angle and has a similar movement form. Note. Space-gyro type of rides are divided into gyro series and other types of gyro. Typical facilities of the gyro series include the Brave Man Turntable and the Double Flying Wheel. Typical facilities of other types of gyro include the Speed Windmill, the Disco Turntable and the Movie Viewing Robot Arm. A schematic diagram of common space-gyro type of rides is shown in Figure 1. [Source. GB/T 20306-2017, 2.3.1.2]4 Technical requirements
4.1 Basic requirements 4.1.1 The technical parameters of space-gyro type of rides shall at least include the dip angle, swing diameter, motion speed, running height, number of cabins, number of passengers per cabin, and number of passengers. 4.1.2 The design documents for space-gyro type of rides shall at least include design specifications, design calculations, operating and maintenance instructions and design drawings, risk assessment report, design verification test plan, nameplate, list of main load-bearing components and important welds, etc. 4.2 Mechanical and structural 4.2.1 Critical shafts (pins) of space-gyro type of rides that are difficult to inspect and test shall be designed for unlimited life. 4.2.2 Critical shafts (pins) of space-gyro type of rides (such as big-jib pins, cylinder pins, cabin suspension shafts, pressure bar shafts, etc.) and critical welds of major load- bearing components (such as big jib welds, cylinder base welds, etc.) shall be subjected to non-destructive testing. The non-destructive testing methods and requirements shall be implemented in accordance with GB/T 34370 (all parts). 4.2.3 The dimensional tolerances and form and position tolerances of parts and components shall comply with the requirements of the design documents. The machined parts without individual dimensional tolerances as well as form and position tolerances shall comply with the relevant requirements of GB/T 1804 and GB/T 1184. The welded structure without individual dimensional tolerance as well as form and position tolerance indications shall comply with the relevant requirements of GB/T 19804. 4.2.4 When the support arm and the turntable are connected by flange, the percentage of contact spots on the installation contact surface shall be no less than 70% and the maximum gap at the edge of the installation contact surface shall not be greater than 1 mm. 4.2.5 Critical steel structures with inner surfaces without anti-corrosion measures shall be designed as closed cavity structures. 4.2.6 The rotary joints of hydraulic and pneumatic transmissions shall rotate flexibly and seal reliably. 4.2.7 If the main load-bearing parts are blocked by decorations, the decorations shall be easy to remove. 4.3 Electrical and control systems 4.3.1 The design and installation of the electrical system shall comply with the relevant provisions of GB/T 5226.1. 4.3.2 The safety-related electrical control systems of space-gyro type of rides shall comply with the fail-safe principle. 4.3.3 When designing safety-related electrical control systems, safety-oriented measures shall at least be taken into account in the event of faults such as signal acquisition errors, control line disconnection, power supply line disconnection, short circuit, leakage, etc. 4.3.4 The safety functions of the control system should comply with the requirements of GB/T 16855.1; control systems using electrical and electronic programmable devices should comply with GB/T 20438 (all parts). 4.3.5 Space-gyro type of rides shall be equipped with video surveillance equipment, covering critical operating areas, recording operators, service personnel, passengers and equipment operation status, to ensure that operators are aware of the equipment operation status in a timely manner; the power supply line of the video surveillance equipment shall be independent of the equipment power supply line and set up separately, and the video storage period shall be no less than 10 days. 4.3.6 When the altitude of the equipment is higher than 1 000 m, the motor capacity shall be checked according to the provisions of GB/T 755; when the altitude exceeds 2 000 m, the power distribution and protection devices shall be checked. 4.3.7 Electrical cabinets, operating tables, power units (such as motors, brakes), actuators (such as solenoid valves, electric actuators, etc.), electronic components (such as limit switches, electromagnetic switches, photoelectric switches, various sensors, etc.), exposed collectors, etc. used outdoors or in places that require moisture and rain protection shall have rain protection measures; alternatively, rain and moisture-proof equipment and devices shall be used. 4.3.8 Operation buttons, control handles and operating software interfaces shall have clear Chinese labels. 4.3.9 Manual control mode shall not be used during normal operation of the disco turntable. 4.4 Safety protection devices and protective measures 4.4.1 Where there is a risk of the cabin being thrown out due to failure of a single component at the connection between the cabin and the main structure, safety measures shall be in place. 4.4.2 When two or more sets of viewing robotic arms are operating on the same track, at least two control measures shall be provided to prevent collisions. 4.4.3 The machine room of the air compressor and hydraulic station shall have good ventilation conditions to meet the normal operation requirements of the hydraulic and pneumatic systems. 4.4.4 During operation, if there is a risk of falling objects from high altitudes within the vertical projection range of the equipment, personnel isolation measures or measures to prevent falling objects from high altitudes shall be set up. 4.4.5 The dip angle of the disco turntable should not exceed 22°. 4.4.6 Disco turntables in design acceleration zone 2 and above shall be equipped with passenger restraint devices. 4.4.7 During the operation of the disco turntable, the surfaces of the equipment that can be touched by passengers shall be soft-padded. 4.4.8 The distance from the highest point of the standing surface of the disco turntable to the upper obstacle shall not be less than 2 300 mm. 4.5 Emergency rescue 4.5.1 The rescue plan for space-gyro type of rides shall cover situations such as sudden power failure, malfunction of the equipment control system, failure or jam of the transmission system resulting in inability to reset, etc. 4.5.2 Space-gyro type of rides shall have measures to prevent or address the possibility that the passenger cabin may come to a standstill at the highest point. 4.6 Surface protection ......Source: Above contents are excerpted from the full-copy PDF -- translated/reviewed by: www.ChineseStandard.net / Wayne Zheng et al.