CN102636363A - Connecting device for multiple specifications of shift fork type hydraulic steering engine test stands - Google Patents
Connecting device for multiple specifications of shift fork type hydraulic steering engine test stands Download PDFInfo
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- CN102636363A CN102636363A CN2012100962197A CN201210096219A CN102636363A CN 102636363 A CN102636363 A CN 102636363A CN 2012100962197 A CN2012100962197 A CN 2012100962197A CN 201210096219 A CN201210096219 A CN 201210096219A CN 102636363 A CN102636363 A CN 102636363A
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Abstract
The invention relates to a hydraulic steering engine test stand, and in particular relates to a connecting device for multiple specifications of shift fork type hydraulic steering engine test stands. The connecting device for multiple specifications of shift fork type hydraulic steering engine test stands mainly comprises a test platform, a left loading edge steering handle assembly, a right loading edge steering assembly, a plane thrust ball bearing, a loading middle steering handle assembly and a plurality of hinge pins, wherein the left and right loading edge steering handle assemblies comprise two loading support plates, an upper edge steering support plate, a middle steering support plate, a lower edge steering support plate and an edge steering shaft. By virtue of the design, the connecting device can be used for solving the defect that the traditional connecting device can only connect four specifications of shift fork type hydraulic steering engines, the connecting device is capable of connecting 21 specifications of shift fork type hydraulic steering engines to carry out detection. The connecting device can be used for greatly enhancing the utilization rate of the test platform, and greatly reducing the detection cost of products, and is suitable for large-volume production and detection of multiple specifications of shift fork type hydraulic steering engines.
Description
Technical field
The present invention relates to a kind of hydraulic sterring engine testboard bay, be specially a kind of many specifications of fork type hydraulic sterring engine test-bed coupling arrangement.
Background technology
Former fork type hydraulic sterring engine test-bed can only make an experiment to the fork type hydraulic sterring engine of the single steering mechanism of three kinds of tiller patterns (single rudder, Twin Rudders, three rudders) of 4 specifications, the steering wheel test specification very little, the stand utilization factor is low, product detects cost and obviously strengthens.
Summary of the invention
The object of the invention: provide a kind of single steering mechanism or two steering mechanism fork type hydraulic sterring engine that can connect three kinds of tiller patterns (single rudder, Twin Rudders, three rudders) of at least 21 kinds of different model specifications to carry out the device that complete machine detects.
The technical scheme that realizes above-mentioned purpose is: a kind of many specifications of fork type hydraulic sterring engine test-bed coupling arrangement comprises that mainly test platform, a left side load tiller assembly and some bearing pins in limit tiller assembly, right loading limit tiller assembly, thrust ball bearing with flat seat, the loading; A said left side loads limit tiller assembly and comprises that two load support plate, top rudder support plate, middle limit rudder support plate, following rudder support plate and limit rudderpost; Two load the side lower end position that support plate becomes to be arranged in up and down the limit rudderpost; Two load support plates two pin-and-holes with respect to the different centre distance of limit rudderpost are arranged respectively, and two pin-and-hole size, positions that load on the support plate are corresponding, top rudder support plate with in, following rudder support plate is fixed in the upper end position of the opposite side of limit rudderpost; Top rudder support plate is the position up; Middle limit rudder support plate is in the centre position, and following rudder support plate is at lower position, and top rudder support plate is provided with a pin-and-hole; In, following two limit rudder support plates have two pin-and-holes with respect to the different centre distance of limit rudderpost respectively; In, the pin-and-hole on following two limit rudder support plates size, position be corresponding, said the right tiller assembly and left side rudder assembly are in a symmetrical arrangement and structure is identical with respect to tiller assembly in loading, the limit rudderpost of left and right load plate assembly passes through thrust ball bearing with flat seat respectively and is fixedly connected with test platform; The tiller assembly is made up of tiller in locating shaft and the loading in the said loading, and tiller is provided with two pin-and-holes with respect to locating shaft identical central distance in the loading, and the locating shaft of tiller assembly is fixedly connected with test platform through thrust ball bearing with flat seat in the loading.
Use through this device; Solved and to have connected 4 kinds of specification fork type hydraulic sterring engines originally and detect; Can detect 21 kinds of different size fork type hydraulic sterring engines; Improved the stand utilization factor greatly, product detects cost significantly to be reduced, and is more suitable for the production in enormous quantities and the detection of many specifications fork type hydraulic sterring engine.
Description of drawings
Fig. 1 is a steering wheel test-bed structural representation;
Fig. 2 is the front view that a left side loads the limit tiller;
Fig. 3 is the vertical view that a left side loads the limit tiller;
Fig. 4 is the right vertical view that loads the limit tiller;
Fig. 5 be a left side load limit tiller front view B-B to cut-open view;
Fig. 6 be the right limit tiller front view A-A of loading to cut-open view;
Fig. 7 is the front view of tiller in loading;
Fig. 8 is the vertical view of tiller in loading;
Fig. 9 is the right front view that loads the limit tiller;
Figure 10 be a left side load limit tiller front view C-C to cut-open view;
Figure 11 be the right limit tiller front view D-D of loading to cut-open view;
Figure 12 be a left side load limit tiller front view E-E to cut-open view;
Figure 13 be the right limit tiller front view F-F of loading to cut-open view.
Embodiment
Arrive shown in Figure 13 like Fig. 1; A kind of many specifications of fork type hydraulic sterring engine test-bed coupling arrangement comprises that mainly test platform 1, a left side load tiller assembly 4 and some bearing pins 6 in limit tiller assembly 2, right loading limit tiller assembly 3, thrust ball bearing with flat seat 5,28 and 29, the loading.
A left side loads limit tiller assembly 2 and comprises that two load support plate 25 and 7, top rudder support plate 8, middle limit rudder support plate 9, following rudder support plate 26 and limit rudderpost 10; Two load support plate 25 and 7 one-tenth side lower end positions that are arranged in limit rudderpost 10 up and down; Two load support plate 25 and 7 two pin-and- holes 11,12,13,14 with respect to limit rudderpost 10 different centre distance are arranged respectively; Two pin-and- hole 11,12,13,14 sizes, positions that load on the support plate 25 and 7 are corresponding; Top rudder support plate 8 with in, following rudder support plate 9 and 26 is fixed in the upper end position of the opposite side of limit rudderpost 10; Top rudder support plate 8 is the position up; In limit rudder support plate 9 in the centre position, following rudder support plate 26 is at lower position, top rudder support plate 8 is provided with a pin-and-hole 15; In, following two limit rudder support plates 9 and 26 have two pin-and- holes 17,18,19,20 with respect to the different centre distance of limit rudderpost respectively; In, following two limit rudder support plates 9 are corresponding with pin-and- hole 17,18,19,20 sizes, position on 26, said the right tiller assembly 3 and left side rudder assembly 2 are in a symmetrical arrangement and structure is identical with respect to tiller assembly in loading 4, left and right load plate assembly 2 is fixedly connected with 28 test platforms 1 through thrust ball bearing with flat seat 5 respectively with 27 with 3 limit rudderpost 10.
Tiller assembly 4 is made up of tiller 22 in locating shaft 21 and the loading in the loading; Tiller 22 is provided with two pin-and- holes 23 and 24 with respect to locating shaft 21 identical central distances in the loading, and the locating shaft 21 of tiller assembly 4 is fixedly connected with test platform 1 through thrust ball bearing with flat seat 29 in the loading.
The selection of the suitable different size hydraulic sterring engine of the present invention is following:
1,160~400kNm hydraulic sterring engine: select a left and right left side to load pin-and- hole 18,20 and pin-and-hole 33,35 and a left and right left side in the middle following rudder support plate 9,26 and 38,39 of limit tiller assembly and load two of limit tiller assembly and load pin-and- hole 11,13 and pin-and- hole 31,42 in the support plates 7,25 and 40,41; And the corresponding pin-and-hole in the tiller in combining to load; Connect with corresponding bearing pin, thereby carry out system test.
2,450~500kNm hydraulic sterring engine: select a left and right left side to load pin-and- hole 17,19 and pin-and-hole 34,36 and a left and right left side in the middle following rudder support plate 9,26 and 38,39 of limit tiller assembly and load two of limit tiller assembly and load pin-and- hole 12,14, pin-and- hole 30,43 in the support plates 7,25 and 40,41; And the corresponding pin-and-hole in the tiller in combining to load; Connect with corresponding bearing pin, thereby carry out system test.
3,550~630kNm hydraulic sterring engine: select a left and right left side to load pin-and-hole 15, pin-and-hole 32 and a left and right left side in the top rudder support plate 8 and 37 of limit tiller assembly and load pin-and- hole 11,13 and pin-and- hole 31,42 in two loading support plates 7,25 and 40,41 of limit tiller assembly; And the corresponding pin-and-hole in the tiller in combining to load; Connect with corresponding bearing pin, thereby carry out system test.
4,800~900kNm hydraulic sterring engine: select a left and right left side to load pin-and-hole 15, pin-and-hole 32 and a left and right left side in the top rudder support plate 8 and 37 of limit tiller assembly and load pin-and- hole 12,14, pin-and- hole 30,43 in two loading support plates 7,25 and 40,41 of limit tiller assembly; And the corresponding pin-and-hole in the tiller in combining to load; Connect with corresponding bearing pin, thereby carry out system test.
Claims (1)
1. many specifications of fork type hydraulic sterring engine test-bed coupling arrangement is characterized in that: comprise that mainly test platform, a left side load tiller assembly and some bearing pins in limit tiller assembly, right loading limit tiller assembly, thrust ball bearing with flat seat, the loading; A said left side loads limit tiller assembly and comprises that two load support plate, top rudder support plate, middle limit rudder support plate, following rudder support plate and limit rudderpost; Two load the side lower end position that support plate becomes to be arranged in up and down the limit rudderpost; Two load support plates two pin-and-holes with respect to the different centre distance of limit rudderpost are arranged respectively, and two pin-and-hole size, positions that load on the support plate are corresponding, top rudder support plate with in, following rudder support plate is fixed in the upper end position of the opposite side of limit rudderpost; Top rudder support plate is the position up; Middle limit rudder support plate is in the centre position, and following rudder support plate is at lower position, and top rudder support plate is provided with a pin-and-hole; In, following two limit rudder support plates have two pin-and-holes with respect to the different centre distance of limit rudderpost respectively; In, the pin-and-hole on following two limit rudder support plates size, position be corresponding, said the right tiller assembly and left side rudder assembly are in a symmetrical arrangement and structure is identical with respect to tiller assembly in loading, the limit rudderpost of left and right load plate assembly passes through thrust ball bearing with flat seat respectively and is fixedly connected with test platform; The tiller assembly is made up of tiller in locating shaft and the loading in the said loading, and tiller is provided with two pin-and-holes with respect to locating shaft identical central distance in the loading, and the locating shaft of tiller assembly is fixedly connected with test platform through thrust ball bearing with flat seat in the loading.
Priority Applications (1)
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CN2012100962197A CN102636363A (en) | 2012-04-05 | 2012-04-05 | Connecting device for multiple specifications of shift fork type hydraulic steering engine test stands |
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CN2012100962197A CN102636363A (en) | 2012-04-05 | 2012-04-05 | Connecting device for multiple specifications of shift fork type hydraulic steering engine test stands |
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CN2012100962197A Pending CN102636363A (en) | 2012-04-05 | 2012-04-05 | Connecting device for multiple specifications of shift fork type hydraulic steering engine test stands |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107389364A (en) * | 2017-06-12 | 2017-11-24 | 中国航空工业集团公司西安飞行自动控制研究所 | A kind of inertia load weighted platform |
Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
SU846401A1 (en) * | 1979-07-17 | 1981-07-15 | Предприятие П/Я А-1097 | Plunger-type actuator of ship steering engine rudder stock |
JP2000072093A (en) * | 1998-09-01 | 2000-03-07 | Japan Hamuwaaji Kk | Repairing method for rotary vane steering machine |
CN101285808A (en) * | 2008-05-29 | 2008-10-15 | 山东大学 | High crustal stress genuine three-dimensional load model trial system |
CN201429512Y (en) * | 2009-07-08 | 2010-03-24 | 武汉船用机械有限责任公司 | Steering engine loading test device |
CN202511984U (en) * | 2012-04-05 | 2012-10-31 | 江苏吉信远望船舶设备有限公司 | Multi-specification connecting device of shifting-fork type hydraulic steering gear test-bed |
-
2012
- 2012-04-05 CN CN2012100962197A patent/CN102636363A/en active Pending
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
SU846401A1 (en) * | 1979-07-17 | 1981-07-15 | Предприятие П/Я А-1097 | Plunger-type actuator of ship steering engine rudder stock |
JP2000072093A (en) * | 1998-09-01 | 2000-03-07 | Japan Hamuwaaji Kk | Repairing method for rotary vane steering machine |
CN101285808A (en) * | 2008-05-29 | 2008-10-15 | 山东大学 | High crustal stress genuine three-dimensional load model trial system |
CN201429512Y (en) * | 2009-07-08 | 2010-03-24 | 武汉船用机械有限责任公司 | Steering engine loading test device |
CN202511984U (en) * | 2012-04-05 | 2012-10-31 | 江苏吉信远望船舶设备有限公司 | Multi-specification connecting device of shifting-fork type hydraulic steering gear test-bed |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107389364A (en) * | 2017-06-12 | 2017-11-24 | 中国航空工业集团公司西安飞行自动控制研究所 | A kind of inertia load weighted platform |
CN107389364B (en) * | 2017-06-12 | 2020-04-07 | 中国航空工业集团公司西安飞行自动控制研究所 | Inertial load loading platform |
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Application publication date: 20120815 |