LY/T 1667-2019 English PDFUS$104.00 · In stock
Delivery: <= 3 days. True-PDF full-copy in English will be manually translated and delivered via email. LY/T 1667-2019: Machinery for forestry -- Operator protective structures -- Laboratory tests and performance requirements Status: Valid LY/T 1667: Historical versions
Basic dataStandard ID: LY/T 1667-2019 (LY/T1667-2019)Description (Translated English): Machinery for forestry -- Operator protective structures -- Laboratory tests and performance requirements Sector / Industry: Forestry Industry Standard (Recommended) Classification of Chinese Standard: B90 Classification of International Standard: 65.060.80 Word Count Estimation: 5,558 Date of Issue: 2019-10-23 Date of Implementation: 2020-04-01 Issuing agency(ies): State Forestry and Grassland Administration LY/T 1667-2019: Machinery for forestry -- Operator protective structures -- Laboratory tests and performance requirements---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order. (Forestry machinery Laboratory tests and performance requirements for driver protection structures) ICS 65.060.80 B 90 LY People's Republic of China Forestry Industry Standard Replacing LY/T 1667-2006 Forestry machinery driver protection structure Laboratory tests and performance requirements Machinery for forestry-Operator protective structures-Laboratory tests and performance requirements (ISO 8084..2003, IDT) 2019-10-23 released 2020-04-01 implemented Published by the National Forestry and Grassland Administration ForewordThis standard was drafted in accordance with the rules given in GB/T 1.1-2009. This standard replaces LY/T 1667-2006 "Laboratory Tests and Performance Requirements for Forestry Machinery Driver Protection Structures", and The main technical changes compared to 1667-2006 are as follows. -The content of normative references has been modified (see Chapter 2, Chapter 2 in.2006); -Modified terms and definitions (see Chapter 3, Chapter 3 of.2006); --- Modified the content of the test method (see 4.3.3,.2006 version 4.3.3). This standard adopts the translation method equivalent to the international standard ISO 8084..2003, "Performance Requirements", also incorporates the content of the amendment ISO 8084..2003/Amd.1..2015. The documents of our country that have consistent correspondence with the international documents referenced normatively in this standard are as follows. --GB/T 8420-2011 The size of the earthmoving machinery driver and the minimum movement space of the driver (ISO 3411..2007, IDT) --GB/T 17772-2018 Regulations for laboratory-approved deflection limit of earth-moving machinery protective structures (ISO 3164..2013, IDT) --GB/T 19365-2012 Forestry machinery mobile and self-propelled forestry machinery terms, definitions and classifications (ISO 6814..2009, IDT) Please note that some elements of this document may involve patents. The issuer of this document is not responsible for identifying these patents. This standard is proposed and managed by the National Forestry Machinery Standardization Technical Committee (SAC/TC 61). This standard is drafted by. Harbin Forestry Machinery Research Institute of State Forestry and Grassland Bureau, Anhui Sanpu Intelligent Heavy Industry Co., Ltd. Participating in the drafting of this standard. Zibo Jifu Fire Technology Co., Ltd., Jinjiang City, Fujian Province, Sanli Motorcycle Co., Ltd., Yangzhou Weibang Park Forest Machinery Co., Ltd., Zhuhai Qiaoli Forestry Machinery Technology Co., Ltd., Lvyou Machinery Group Co., Ltd., Fujian Forestry Scientific Research Institute, Guangxi Liugong Machinery Co., Ltd., SAIC-GM-Wuling Automobile Co., Ltd. Chongqing Branch, CCCC First Office Civil Engineering Construction Building Research Institute Co., Ltd. The main drafters of this standard. Li Yingzhen, Hu Xianfeng, Liu Kezhi, Liu Qingguo, Ke Zhongyu, Jiang Chunlin, Zhuo Honghua, Gurry, Brunswick, Tang Baoqi and Meng Lingchen. This standard replaces LY/T 1667-2006. The previous releases of LY/T 1667-2006 are. --LY/T 1592-2001. Laboratory tests and performance requirements for driver protection structures for forestry machinery1 ScopeThis standard specifies laboratory test methods and performance requirements for forestry machinery driver protection structures (OPS). It works for ISO 6814 Mobile forestry machinery as defined in the following, which is engaged in harvesting, combined operations, consolidation, and skidding. The design of OPS gives the driver a Reasonable protection to keep drivers from penetrating objects such as saplings, branches and broken winch wire ropes and puncture injuries in forestry production Damage, except for the protection of small projectiles such as chain teeth. OPS that meets this performance standard cannot be absolutely protected in all possible environments Operator safety, but the purpose is to minimize the operator's injuries under normal operating conditions.2 Normative referencesThe following documents are essential for the application of this document. For dated references, only the dated version applies to this document. For undated references, the latest version (including all amendments) applies to this document. ISO 3411 Body size of earthmoving machinery drivers and their minimum movement space (Earth-moving machinery- Physical dimensions of operators and minimum operator space envelope) ISO 3164 Laboratory-Specified Deflection Limits for Earthmoving Machinery Protective Structures (Earth-moving machinery- Laboratory evaluations of protective structures-Specifications for deflection-limiting volume) ISO 6814 Machinery for forestry-Mobile and self-propelled machinery-Terms, definitions and classification)3 terms and definitionsThe following terms and definitions apply to this document. 3.1 Operator protective structure OPS Reduces the possibility of the driver being injured by penetrating objects such as swaying trees, branches and broken winch ropes 3.2 Roll-over protective structure ROPS Structural device used to minimize the possibility of being squeezed to the driver wearing a seat belt when the machine is overturned. Note. This structural device includes all underframes, supports, frames, sleeves, bolts, pins, suspension devices or elastics used to fix this structural device to the frame Shock absorbers, but do not include mounting members integrated with the rack. 3.3 Falling-object protective structure FOPS Structural devices that provide reasonable protection for drivers from falling objects (such as trees, rocks, etc.). 3.4 Deflection-limiting volume DLV Approximate vertical projection of a tall male driver sitting in a standard workwear and hard hat, as defined in ISO 3411.4 Laboratory testsWarning. Certain tests specified in this standard and the test procedures used may cause dangerous situations. 4.1 Equipment 4.1.1 Provide appropriate materials, equipment and fixing methods to ensure that OPS and its mechanical structure can withstand the applied force during the test. 4.1.2 Necessary test device for pushing the test object to each tested surface, including a steel with 90 mm diameter hemispherical ends Baton. When testing glass or polycarbonate, rubber or synthetic materials should be used to make non-metallic gaskets. The materials of the gaskets should be uniform and dense. It is uniform in thickness, with a thickness of 20 mm, a diameter of 90 mm, and a Shore hardness of 90 HA. 4.1.3 The accuracy of the instrument for measuring the force and structural deformation applied to the OPS shall meet the accuracy requirements given in Table 1. Table 1 Instrument accuracy requirements Parameter error Measurement size ± 5% of maximum size ± 5% of maximum pressure required to measure pressure 4.2 Preparation 4.2.1 The deflection limit (DLV) and its installation position shall meet the requirements of ISO 3164. DLV should be firmly fixed to the machine installation driving The driver ’s seat is at the same position and remains in the same position throughout the test. When a machine has multiple seats, The seat with the DLV closest to each test surface of the OPS was tested. 4.2.2 Install OPS on the test frame for testing. It is not necessary to install the OPS on the whole machine for testing, but it is necessary to ensure that the OPS and the frame are installed by the tester. The installation mode is consistent with the normal installation method. 4.2.3 All removable windows, guards and other parts that are not part of the OPS should be removed from the test frame Remove to avoid increasing the strength of OPS. 4.2.4 The glass material that does not affect the OPS structural performance during the test may be removed. 4.2.5 When the same structural component is used for multiple tests, the guard plate that has weakened or deformed after the previous test can be replaced. 4.2.6 If OPS is fixed on a complete machine, the frame should be fixed firmly so that the OPS structure can be individually stressed and absorbed independently Test energy. 4.3 Test method 4.3.1 During the test, the test device shall be perpendicular to the outer surface of the OPS, and slowly apply force to the OPS through the test device (maximum 5 mm/s, approximately static State loading), until the force reaches 17 800 N for 1 min, and then withdraw the force. 4.3.2 If the object to be tested is made of a mesh-like material, the line of force of the force during loading should pass through the center of the mesh. 4.3.3 Apply loads to the following five positions at the opening. a) central location; b) along the middle of the longest side; c) the middle position along the shortest side; d) the sharpest corners; e) The dullest corner. When testing the edges, the loading point should be 50 mm inward from the edges. The test shall be performed in the order of a, b, c, d, e. If a test load point coincides with a 90 mm diameter hemisphere centered at the previous test point, subsequent point tests are not necessary.5 Performance requirements5.1 Passing the test No matter where the OPS is tested, no part of the OPS or the test device shall enter the DLV area defined in ISO 3164 The ball head of the test device shall not pass through the surface being tested during the test. 5.2 Structural requirements 5.2.1 The driver's operating position, including the entire door, should be completely closed with solid materials such as protective screens and glass. 5.2.2 There shall be no hole on the surface of the OPS that allows a rigid straight rod with a diameter of 48 mm to enter the OPS freely. 5.2.3 All protective screens shall be provided with a hole with a maximum size of 45 mm × 45 mm, and the hole shall be covered with a wire mesh of 6 mm Similar structure. 5.2.4 Satisfactory glass materials can be used anywhere on the machine, including the front windshield. If using a wiper (wiper), The surface of carbonate glass should be hardened. 5.2.5 Protective covers or screens designed to protect OPS windows should be easy to clean manually. 5.2.6 The design of the OPS should minimize the adverse impact on the driver's sight, and provide a comfortable operating environment and necessary protective equipment as much as possible. To protect the driver from accidental injuries under normal working conditions. 5.2.7 OPS can be linked to or form part of ROPS/FOPS, but this should not address the function of ROPS or FOPS Or negatively impact performance. 5.2.8 In order to provide an emergency exit, the OPS should prepare two exit methods for emergency evacuation. ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of LY/T 1667-2019_English be delivered?Answer: Upon your order, we will start to translate LY/T 1667-2019_English as soon as possible, and keep you informed of the progress. 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