Abstract

In the practice of using cut-to-length technology, hydraulic manipulators are widely used. Understanding manipulator cycle is important for improving existing logging technologies and developing new machine designs. The paper analyzes structure of technological cycle and operating time of manipulator in the process of loading forwarder on skid trails. Twenty-one loading processes were investigated. In the structure of technological cycle, the following elements were considered: empty movements, loaded movements, movements of manipulator links when performing operations inside load space of forwarder and special techniques such as re-grabbing logs and pulling of an incompletely closed log grip through the logs when the ends of the grabbed logs tilt and abut against the ground used during loading movement. Statistical processing of data showed that median values of samples consisting of time intervals of empty movements are in trange from 3.8 to 6 seconds, the median of samples of loaded movements is 6–16 seconds and median of samples of a pair of movements 5–9 seconds. With a 95% degree of probability, under the studied production conditions, the time of one loaded movement falls within the range of 4–14 seconds; one empty movement – in the range of 3–7 seconds. Total time of empty movements takes a share from 20 to 45% of the total loading time (on average 30%), the total time of loading movements is from 51 to 72% (on average 63%), the time of operations inside the load space is from 0 to 18% (on average 7%). Time of loaded movements, including use of special techniques, is from 13% to 64% of total time of loaded movements (or 10–53% of total number of loaded movements). The time, consisting of a pair of movements: empty and loaded, is somewhat influenced by forwarder size. Duration of one loaded movement is significantly affected by use of special techniques by the operator. Number and duration of loaded movements with these techniques is significantly influenced by: average size of loaded assortments and number of assortments carried in the grapple during one loaded movement. No significant influence of average size of assortments, number of assortments in grapple and size of the machine on empty movements was found. However, some influence on empty movements of number of loaded movements performed from one forwarder parking lot was observed. Duration and frequency of operations within the load space are weakly correlated with the size of assortments and forwarder size.

Highlights

  • Hydraulic manipulators have been widely used as processing equipment in the logging process

  • Time intervals are shown in the sequence in which they were observed during loading of the forwarder

  • The data collected under different conditions show the presence of general patterns in the structure of the technological cycle of the manipulator

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Summary

Introduction

Hydraulic manipulators have been widely used as processing equipment in the logging process. M. Piskunov Investigation of Structure of Technology Cycle Time of Hydraulic Manipulators in the Process ... Only with the help of a hydraulic manipulator, account for a significant part in the structure of the technological cycle of the forwarder. Previous studies displayed that the share of loading is 35–45%, unloading 23–32% of the total forwarder working cycle time with an average skidding distance of 650–729 m (Proto et al 2018); loading 35% (on average), unloading 31%, with an average distance of 306 and 597 m (Proto et al 2017); loading 42%, unloading 18%, with an average distance of 428 m (Strandgard et al 2017); loading and unloading 71%, with an average distance of 97 m (Ghaffarian et al 2007). In the studies carried out, the loading time includes the time spent by the forwarder on the movement along the trail between the stops at which the assortments are loaded

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