CN109760698A - A kind of mine variable-frequency electric locomotive being conveniently replaceable battery - Google Patents
A kind of mine variable-frequency electric locomotive being conveniently replaceable battery Download PDFInfo
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- CN109760698A CN109760698A CN201910127556.XA CN201910127556A CN109760698A CN 109760698 A CN109760698 A CN 109760698A CN 201910127556 A CN201910127556 A CN 201910127556A CN 109760698 A CN109760698 A CN 109760698A
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- elevating lever
- elevating
- sliding
- sliding block
- battery cell
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02T—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
- Y02T30/00—Transportation of goods or passengers via railways, e.g. energy recovery or reducing air resistance
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Abstract
The present invention relates to a kind of mine variable-frequency electric locomotives for being conveniently replaceable battery, including body, the first elevating mechanism, controller, idler wheel, the second sliding block and support frame, the side of the body is provided with sliding door, the body is internally provided with the first supporting block, first supporting block is provided with the first sliding block close to the side of body, the junction of first sliding block and body is provided with first sliding groove, first elevating mechanism is set to side of first supporting block far from body, and the two sides of first elevating mechanism are provided with the second elevating mechanism.This is conveniently replaceable the mine variable-frequency electric locomotive of battery, the second connection shaft rotation is driven by motor, first rotating shaft rotation can be driven when second connection shaft by belt, first rotating shaft can drive the 4th elevating lever to rotate when rotation, thus the 4th elevating lever can be driven to move down, to allow the battery cell case of the device to move down, facilitates and battery cell case is replaced.
Description
Technical field
The present invention relates to electric locomotive technical field, specially a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery.
Background technique
Mining industry is a kind of important primary industry, and metallic ore is the primary raw material of metallurgy industry, non-metallic ore
It is important industrial chemicals and construction material, may require that a kind of means of transport, generally one during the Mining Transport of mineral
Kind mine variable-frequency electric locomotive.
Electric locomotive is a kind of pulling equipment of rail vehicle transport, and power is to drive vehicle wheel rotation using traction electric machine, is borrowed
The frictional force between wheel and rail level is helped, locomotive is made to orbit, electric locomotive widely applies in mineral acquisition.
But in the market most of mine variable-frequency electric locomotive it is inconvenient when in use to the battery inside device into
Row dismounting and change can not easily be taken out battery.
Summary of the invention
The purpose of the present invention is to provide a kind of mine variable-frequency electric locomotives for being conveniently replaceable battery, to solve above-mentioned background
The existing mine variable-frequency electric locomotive that technology proposes is inconvenient when in use to dismantle more the battery inside device
The problem of changing, battery can not easily being taken out.
To achieve the above object, the invention provides the following technical scheme: a kind of mine variable-frequency electricity for being conveniently replaceable battery
Locomotive, including body, the first elevating mechanism, controller, idler wheel, the second sliding block and support frame, the side of the body are provided with
Sliding door, the body are internally provided with the first supporting block, and first supporting block is provided with first close to the side of body and slides
The junction of block, first sliding block and body is provided with first sliding groove, and first elevating mechanism is set to the first supporting block
Side far from body, the two sides of first elevating mechanism are provided with the second elevating mechanism, and support frame as described above is set to second
Side of the elevating mechanism far from the first supporting block, support frame as described above are provided with outside battery close to the side of the second elevating mechanism
Shell, the side of the battery cell case are provided with first rotating shaft, and the first rotating shaft is provided with far from the side of battery cell case
Pull ring, the controller are set to the inside of support frame, and the idler wheel is set to one of battery cell case far from the first supporting block
Side, second sliding block are set to side of the support frame close to battery cell case, second sliding block and nearly battery cell case
Junction is provided with second sliding slot.
Further, first elevating mechanism includes the first elevating lever, third sliding block, third sliding slot and sensor block, institute
It states the first elevating lever and is set to the first sliding block close to the side of battery cell case, one end of first elevating lever is provided with second
Elevating lever, the third sliding block are set to one end that the first elevating lever is connect with the second elevating lever, and the third sliding slot is opened in
The junction of first elevating lever and third sliding block, the sensor block are set to the one end of third sliding slot far from third sliding block.
Further, second elevating mechanism includes third elevating lever, and the third elevating lever is set to the first support
For block close to the side of the first elevating mechanism, the bottom of the third elevating lever is provided with the 4th elevating lever, the 4th elevating lever
Side far from third elevating lever is provided with the first connection shaft, is provided with belt on the outside of the first connection shaft, described
Belt is provided with the second connection shaft far from the side of the first connection shaft, and the second connection shaft is far from third elevating lever
Side is provided with motor.
Further, first supporting block one end be provided with section be right angled triangle structure, and first support
Block is slidably connected by the first sliding block and first sliding groove with body.
Further, there are two the quantity settings of first elevating mechanism, and 2 the first elevating mechanisms are symmetrically distributed in
The two sides of battery cell case.
Further, the section shape size of the third sliding block matches with the section shape size of third sliding slot, and
Third sliding block and third sliding slot are slidably connected.
Further, the third elevating lever, the 4th elevating lever and the first connection shaft are provided with four groups, and 4 groups of thirds
Elevating lever, the 4th elevating lever and the first connection shaft are set to the junction of the first supporting block and support frame.
Further, the junction of the third elevating lever and the 4th elevating lever is helicitic texture.
Further, the plane where the first connection shaft connect plane where shaft in same level with second
On face.
Further, the battery cell case by the second sliding block, second sliding slot and is slidably connected.
Compared with prior art, the beneficial effects of the present invention are: the mine variable-frequency electric locomotive for being conveniently replaceable battery
1, the second connection shaft rotation is driven by motor, second, which can pass through belt when connecting shaft, drives first
Shaft rotation, first rotating shaft rotate when can drive the 4th elevating lever rotate, can thus drive the 4th elevating lever to
Lower movement, so that the battery cell case of the device be allowed to move down, facilitates and battery cell case is replaced.
2, the first supporting block can be moved by the sliding between the first sliding block and first sliding groove, the first supporting block is allowed to remove
The internal body of the device, thus can be by the inside of the battery cell case moving-out device inside the device.
3, it is far slided with the second sliding block between the first elevating lever and the second elevating lever by third sliding block, passes through the first lifting
Bar is more stable when the battery cell case of the device being allowed to go up and down with the second elevating lever.
4, the first elevating lever and the second elevating lever can be allowed mobile by the sliding between third sliding block and third sliding slot, it should
First elevating mechanism of device is more stable when battery cell case being allowed to decline.
5, when sensor block of the third shoe contact to third sliding slot, sensor block can control the dress by controller
The motor set stops working, and the damage for leading to the first elevating mechanism and the second elevating mechanism can be thus rotated excessively to avoid motor
It is bad.
6, battery cell case is then pulled by the pull ring that first rotating shaft is opened, allows the second sliding block of battery cell case and second
The sliding of sliding slot is mobile, and the battery cell case to the device that thus can be convenient is dismantled.
Detailed description of the invention
Fig. 1 is schematic view of the front view of the present invention;
Fig. 2 is positive structure schematic of the present invention;
Fig. 3 is top surface structure schematic diagram of the present invention;
Fig. 4 is the schematic diagram of the section structure of the present invention;
Fig. 5 is side structure schematic diagram of the present invention;
Fig. 6 is figure external structure schematic diagram of the present invention;
Fig. 7 is figure workflow structure schematic diagram of the present invention.
In figure: 1, body, 2, sliding door, the 3, first supporting block, the 4, first sliding block, 5, first sliding groove, the 6, first elevating mechanism,
61, the first elevating lever, the 62, second elevating lever, 63, third sliding block, 64, third sliding slot, 65, sensor block, the 7, second elevating mechanism,
71, third elevating lever, the 72, the 4th elevating lever, the 73, first connection shaft, 74, belt, the 75, second connection shaft, 76, motor,
8, battery cell case, 9, first rotating shaft, 10, pull ring, 11, controller, 12, idler wheel, the 13, second sliding block, 14, second sliding slot, 15,
Support frame.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete
Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on
Embodiment in the present invention, it is obtained by those of ordinary skill in the art without making creative efforts every other
Embodiment shall fall within the protection scope of the present invention.
Fig. 1-7 is please referred to, the present invention provides a kind of technical solution: a kind of mine variable-frequency motor being conveniently replaceable battery
Vehicle, including body 1, sliding door 2, the first supporting block 3, the first sliding block 4, first sliding groove 5, the first elevating mechanism 6, the second elevating mechanism
7, battery cell case 8, first rotating shaft 9, pull ring 10, controller 11, idler wheel 12, the second sliding block 13, second sliding slot 14 and support frame
15, the side of the body 1 is provided with sliding door 2, and the body 1 is internally provided with the first supporting block 3, first supporting block
3 are provided with the first sliding block 4 close to the side of body 1, and the junction of first sliding block 4 and body 1 is provided with first sliding groove 5,
First elevating mechanism 6 is set to the first side of the supporting block 3 far from body 1, the two sides setting of first elevating mechanism 6
There is the second elevating mechanism 7, support frame as described above 15 is set to side of second elevating mechanism 7 far from the first supporting block 3, the support
Frame 15 is provided with battery cell case 8 close to the side of the second elevating mechanism 7, and the side of the battery cell case 8 is provided with first
Shaft 9, the first rotating shaft 9 are provided with pull ring 10 far from the side of battery cell case 8, and the controller 11 is set to support frame
15 inside, the idler wheel 12 are set to side of the battery cell case 8 far from the first supporting block 3, and second sliding block 13 is arranged
In support frame 15 close to the side of battery cell case 8, the junction of second sliding block 13 and nearly battery cell case 8 is provided with the
Two sliding slots 14.
Preferably, first elevating mechanism 6 includes the first elevating lever 61, the second elevating lever 62, third sliding block 63, third
Sliding slot 64 and sensor block 65, first elevating lever 61 are set to the first sliding block 4 close to the side of battery cell case 8, and described
One end of one elevating lever 61 is provided with the second elevating lever 62, and the third sliding block 63 is set to the first elevating lever 61 and the second lifting
One end that bar 62 connects, the third sliding slot 64 are opened in the junction of the first elevating lever 61 and third sliding block 63, the induction
Block 65 is set to the one end of third sliding slot 64 far from third sliding block 63.
Preferably, second elevating mechanism 7 include third elevating lever 71, the 4th elevating lever 72, first connection shaft 73,
Belt 74, second connects shaft 75 and motor 76, the third elevating lever 71 are set to the first supporting block 3 close to the first elevator
The side of structure 6, the bottom of the third elevating lever 71 are provided with the 4th elevating lever 72, and the 4th elevating lever 72 is far from third liter
The side of drop bar 71 is provided with the first connection shaft 73, and the outside of the first connection shaft 73 is provided with belt 74, the skin
Side with 74 far from the first connection shaft 73 is provided with the second connection shaft 75, and the second connection shaft 75 is far from third liter
The side of drop bar 71 is provided with motor 76.
Preferably, described first supporting block, 3 one end is provided with the structure that section is right angled triangle, and the first supporting block
3 are slidably connected by the first sliding block 4 and first sliding groove 5 with body 1.
Preferably, there are two the quantity settings of first elevating mechanism 6, and 2 the first elevating mechanisms 6 are symmetrically distributed in
The two sides of battery cell case 8.
Preferably, the section shape size of the third sliding block 63 matches with the section shape size of third sliding slot 64,
And third sliding block 63 and third sliding slot 64 are slidably connected.
Preferably, the third elevating lever 71, the 4th elevating lever 72 and the first connection shaft 73 are provided with four groups, and 4 groups
Third elevating lever 71, the 4th elevating lever 72 and the first connection shaft 73 are set to the junction of the first supporting block 3 and support frame 15.
Preferably, the junction of the third elevating lever 71 and the 4th elevating lever 72 is helicitic texture.
Preferably, the plane where the first connection shaft 73 connect the plane at 75 place of shaft in same water with second
In plane.
Preferably, the battery cell case 8 is slidably connected by the second sliding block 13, second sliding slot 14 and 15.
When specifically used, pass through the sliding door 2 of the sliding opening device when in use first, then passes through the first sliding block
Sliding between 4 and first sliding groove 5 can move the first supporting block 3, and the first supporting block 3 is allowed to remove inside the body 1 of the device,
Thus then the inside of 8 moving-out device of battery cell case inside the device can be started into motor 76, started in motor 76
Later, motor 76 can drive the second connection shaft 75 to rotate, and can pass through 74 band of belt when the second connection shaft 75
Dynamic first rotating shaft 9 rotates, the 4th inside the second elevating mechanism 7 that can drive the device when first rotating shaft 9 rotates
Elevating lever 72 rotates, and the helicitic texture of the 4th elevating lever 72 is engaged with the helicitic texture of third elevating lever 71, in this way at the 4th liter
Drop bar 72 can allow third elevating lever 71 mobile when rotation, thus can be to third elevating lever 71 and the 4th elevating lever 72
Length summation be adjusted, the battery cell case 8 of the device can be allowed to move down when the 4th elevating lever 72 moves down,
The idler wheel 12 of 8 bottom of battery cell case can be thus allowed to contact ground, when the second elevating mechanism 7 is mobile, the device
The first elevating mechanism 6 can allow battery cell case 8 decline when it is more stable, pass through third sliding block 63 and third sliding slot 64
Between sliding the first elevating lever 61 and the second elevating lever 62 can be allowed mobile, touch third sliding slot 64 in third sliding block 63
When sensor block 65, sensor block 65 can be stopped working by the motor 76 that controller 11 controls the device, thus can be with
It avoids motor 76 from rotating the damage for excessively leading to the first elevating mechanism 6 and the second elevating mechanism 7, is then beaten by first rotating shaft 9
The pull ring 10 opened, it may be convenient to pull battery cell case 8, make battery cell case 8 mobile by idler wheel 12, in battery cell case
It is mobile by the second sliding block 13 and the sliding of second sliding slot 14 between battery cell case 8 and support frame 15 when 8 movement, this
Sample can easily to the battery cell case of the device 8 dismantle, thus can to the battery inside battery cell case 8 into
Row replacement, here it is the use processes of the mine variable-frequency electric locomotive for being conveniently replaceable battery.
It should be noted that, in this document, the terms "include", "comprise" or its any other variant are intended to non-row
His property includes, so that the process, method, article or equipment for including a series of elements not only includes those elements, and
And further include other elements that are not explicitly listed, or further include for this process, method, article or equipment institute it is intrinsic
Element.
Used herein a specific example illustrates the principle and implementation of the invention, the explanation of above example
It is merely used to help understand method and its core concept of the invention.The above is only a preferred embodiment of the present invention, it answers
When pointing out due to the finiteness of literal expression, and objectively there is unlimited specific structure, for the common skill of the art
For art personnel, without departing from the principle of the present invention, several improvement, retouching or variation can also be made, can also incited somebody to action
Above-mentioned technical characteristic is combined in the right way;These improve retouching, variation or combination, or the not improved structure by invention
Think and technical solution directly applies to other occasions, is regarded as protection scope of the present invention.
Claims (10)
1. a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery, including body (1), the first elevating mechanism (6), controller
(11), idler wheel (12), the second sliding block (13) and support frame (15), it is characterised in that: the side of the body (1) is provided with sliding door
(2), the body (1) is internally provided with the first supporting block (3), and first supporting block (3) sets close to the side of body (1)
It being equipped with the first sliding block (4), the junction of first sliding block (4) and body (1) is provided with first sliding groove (5), and described first liter
Descending mechanism (6) is set to the side of the first supporting block (3) far from body (1), and the two sides of first elevating mechanism (6) are provided with
Second elevating mechanism (7), support frame as described above (15) are set to the side of the second elevating mechanism (7) far from the first supporting block (3), institute
Support frame (15) are stated to be provided with battery cell case (8) close to the side of the second elevating mechanism (7), the battery cell case (8)
Side is provided with first rotating shaft (9), and the first rotating shaft (9) is provided with pull ring (10), institute far from the side of battery cell case (8)
The inside that controller (11) is set to support frame (15) is stated, the idler wheel (12) is set to battery cell case (8) far from first
The side of bracer (3), second sliding block (13) are set to the side of support frame (15) close to battery cell case (8), and described the
The junction of two sliding blocks (13) and nearly battery cell case (8) is provided with second sliding slot (14).
2. a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery according to claim 1, it is characterised in that: described
One elevating mechanism (6) includes the first elevating lever (61), third sliding block (63), third sliding slot (64) and sensor block (65), and described the
One elevating lever (61) is set to the side of the first sliding block (4) close to battery cell case (8), one end of first elevating lever (61)
It is provided with the second elevating lever (62), the third sliding block (63) is set to the first elevating lever (61) and connect with the second elevating lever (62)
One end, the third sliding slot (64) is opened in the junction of the first elevating lever (61) Yu third sliding block (63), the sensor block
(65) it is set to the one end of third sliding slot (64) far from third sliding block (63).
3. a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery according to claim 1, it is characterised in that: described
Two elevating mechanisms (7) include third elevating lever (71), and the third elevating lever (71) is set to the first supporting block (3) close to first
The side of elevating mechanism (6), the bottom of the third elevating lever (71) are provided with the 4th elevating lever (72), the 4th elevating lever
(72) side far from third elevating lever (71) is provided with the first connection shaft (73), the outside of first connection shaft (73)
It being provided with belt (74), the belt (74) is provided with the second connection shaft (75) far from the side of the first connection shaft (73),
Second connection shaft (75) is provided with motor (76) far from the side of third elevating lever (71).
4. a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery according to claim 1, it is characterised in that: described
One supporting block (3) one end is provided with the structure that section is right angled triangle, and the first supporting block (3) passes through the first sliding block (4)
It is slidably connected with first sliding groove (5) and body (1).
5. a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery according to claim 3, it is characterised in that: described
There are two the quantity settings of one elevating mechanism (6), and 2 the first elevating mechanisms (6) are symmetrically distributed in the two of battery cell case (8)
Side.
6. a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery according to claim 2, it is characterised in that: described
The section shape size of three sliding blocks (63) matches with the section shape size of third sliding slot (64), and third sliding block (63) and
Three sliding slots (64) are slidably connected.
7. a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery according to claim 3, it is characterised in that: described
Three elevating levers (71), the 4th elevating lever (72) and the first connection shaft (73) are provided with four groups, and 4 groups of third elevating levers (71),
4th elevating lever (72) and the first connection shaft (73) are set to the junction of the first supporting block (3) Yu support frame (15).
8. a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery according to claim 3, it is characterised in that: described
The junction of three elevating levers (71) and the 4th elevating lever (72) is helicitic texture.
9. a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery according to claim 3, it is characterised in that: described
Plane where one connection shaft (73) connect plane where shaft (75) in same level with second.
10. a kind of mine variable-frequency electric locomotive for being conveniently replaceable battery according to claim 1, it is characterised in that: described
Battery cell case (8) is slidably connected by the second sliding block (13), second sliding slot (14) with (15).
Priority Applications (1)
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CN201910127556.XA CN109760698A (en) | 2019-02-20 | 2019-02-20 | A kind of mine variable-frequency electric locomotive being conveniently replaceable battery |
Applications Claiming Priority (1)
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CN201910127556.XA CN109760698A (en) | 2019-02-20 | 2019-02-20 | A kind of mine variable-frequency electric locomotive being conveniently replaceable battery |
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CN201910127556.XA Pending CN109760698A (en) | 2019-02-20 | 2019-02-20 | A kind of mine variable-frequency electric locomotive being conveniently replaceable battery |
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Application publication date: 20190517 |