CN207281436U - A kind of laterally homogeneous illumination identification structure of detonator - Google Patents
A kind of laterally homogeneous illumination identification structure of detonator Download PDFInfo
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- CN207281436U CN207281436U CN201720955670.8U CN201720955670U CN207281436U CN 207281436 U CN207281436 U CN 207281436U CN 201720955670 U CN201720955670 U CN 201720955670U CN 207281436 U CN207281436 U CN 207281436U
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- detonator
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- emitting area
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Abstract
The utility model discloses a kind of laterally homogeneous illumination identification structure of detonator, including to penetrating illumination structure, penetrating illumination structure for described pair includes upper illumination component and lower illumination component, have tagged detonator to be installed between the upper illumination component and the lower illumination component, the upper illumination component and the lower illumination component have the light-emitting area that face penetrates or relative to detonator axis deflection oblique light-emitting area to penetrating and towards the detonator direction;It according to the utility model by using illumination can be identified to detonator, can produce, thus avoid the problem that unclear to the None- identified of mark or identification to avoid glare.
Description
Technical field
Civilian explosive device field is the utility model is related to, structure is identified more particularly to detonator illumination.
Background technology
Industrial explosive materials (hereinafter referred to as civilian explosive device) refer to it is for non-military purpose, be included in industrial explosive materials product
The igniting such as all kinds of gunpowder, explosive and its product of famous-brand clock and detonator, initiating equipment, based on industrial basis, energy industry
The energy, civilian explosive device plays an important role in the economic construction and infrastructure construction in China, economic construction of China
During being in high speed development with infrastructure construction, thus the quantity of required civilian explosive device is extremely surprising, for such thing
The management of product is subject to the attention and concern of governments at all levels increasingly.
At present, in civilian explosive device field, especially explosives and detonators etc. manage water using in frequent civilian explosive device field
It is flat still to fall behind, it is basic at present to be managed using the mark of manual entry civilian explosive device, so that inefficiency, makes mistakes frequently,
It is even more impossible to interconnect, can not also carry out significantly more efficient management, thus can bring civilian explosive device easily occur false claiming, more neck,
People inconsistent the problems such as waiting corresponding with thing, and then the civilian explosive device leakage thus brought is extremely serious, with internet and
Traffic develops rapidly, various information and flow of material also accelerate with it is convenient, thus the circulation transboundary for civilian explosive device is brought
Civilian explosive device loss circulation is also more convenient, and the security risk thus brought also is on the rise, it is therefore necessary to finds a kind of safety
Reliably, the method for guarantor and the one-to-one precise relation of civilian explosive device, is lost in circulation to solve the quick-fried product of the people of getting worse
Problem.
Utility model content
The utility model is intended at least solve one of technical problem existing in the prior art, particularly detonator uniform illumination
The structure of identification.
In order to overcome the problems referred above, the utility model proposes a kind of structure of detonator uniform illumination identification, including to penetrating light
According to structure, penetrating illumination structure for described pair includes upper illumination component and lower illumination component, has tagged detonator and is installed on described
Between illumination component and the lower illumination component, the upper illumination component and the lower illumination component have the light-emitting area that face is penetrated
Or relative to detonator axis deflection oblique light-emitting area to penetrating and towards the detonator direction.
Conventional artificial progress detonator coding typing is transformed to by using illumination shooting style by the utility model,
It recognisable primer can fast and effectively identify, and be connected by relevant device and database system, can be more efficient to thunder
The civilian explosive devices such as pipe carry out information management, can ensure the various flow directions to civilian explosive device quantity type, and real time position prison
Control such as is loss at the effective management and control of carry out, can effectively be ensured the strict control and control of civilian explosive device, be ensure that country and the common people
Safety.
Further, the illumination component light-emitting area up and down is plane or the illumination component up and down is multiple illuminating part groups
Into.
Further, it is elongated structure and in the same direction with the detonator axis along its length, institute that described pair, which is penetrated illumination structure,
State and the light-emitting area for penetrating illumination structure is penetrated or tiltedly to penetrating towards the detonator and upper and lower face, the transmitting light of the luminous surface launching
At least partly it is irradiated to the highest position for observing the detonator side.
Further, the illumination system is visible ray illumination system or non-visible light illumination system.
Further, the lower upper illumination component is the light-emitting area for having oblique angle along the detonator axis direction, described to incline
The small part that emits light into of the luminous surface launching of biassed fabric is irradiated to the highest position for observing the detonator side.
Further, the light-emitting area of the incline structure be the light-emitting area of multiple and described incline structure be plane at the same time
With having angle of inclination along the detonator axis, the transmitting light of the light-emitting area of the incline structure is in the detonator axis direction and institute
State detonator and be axially irradiated to there are drift angle and at least partly and observe the highest position of the detonator side.
Preferably, the angle of inclination is more than or equal to zero degree and is less than or equal to 30 degree.
Alternatively, the positive apparent direction of the light emitting source of the incline structure is arranged as zigzag.
Further, the laterally homogeneous illumination identification structure of the detonator further includes the camera for identifying the detonator mark.
The additional aspect and advantage of the utility model embodiment will be set forth in part in the description, partly will be from following
Description in become obvious, or recognized by the practice of the utility model.
Brief description of the drawings
The above-mentioned and/or additional aspect and advantage of the utility model will in the description from combination accompanying drawings below to embodiment
Become obvious and be readily appreciated that, wherein:
Fig. 1 shows stereogram according to the present utility model;
Fig. 2 shows front view according to the present utility model;
Fig. 3 shows left view/right view that face according to the present utility model is penetrated;
Fig. 4 shows tiltedly left view/right view to penetrating according to the present utility model;
Fig. 5 shows the light-emitting area schematic diagram of generally plane according to the present utility model;
Wherein, 1 is has tagged detonator, and 2 be upper illumination component, and 3 be lower illumination component, and 4 be shooting part, and 5 be whole
Body be plane light-emitting area, 6 light-emitting areas, 7 incline structures.
Embodiment
The embodiments described below with reference to the accompanying drawings are exemplary, is only used for explaining the utility model, and cannot manage
Solve as the limitation to the utility model.
Embodiment according to the present utility model, as shown in Figs 1-4, the utility model proposes a kind of knowledge of detonator uniform illumination
Other structure, including to penetrating illumination structure(Therein 2,3), penetrating illumination structure for described pair includes upper illumination component 2 and lower illumination
Component 3, has tagged detonator 1 and is installed between the upper illumination component 2 and the lower illumination component 3, the upper illumination portion
Part 2 and the lower illumination component 3 have the light-emitting area that face is penetrated(As shown in Figure 3)Or relative to the detonator axis(Axis side
To)The oblique light-emitting area to penetrating of deflection and towards the detonator direction(As shown in Figure 4).
Conventional artificial progress detonator coding typing is transformed to by using illumination shooting style by the utility model,
It recognisable primer can fast and effectively identify, and be connected by relevant device and database system, can be more efficient to thunder
The civilian explosive devices such as pipe carry out information management, can ensure the various flow directions to civilian explosive device quantity type, and real time position prison
Control such as is loss at the effective management and control of carry out, can effectively be ensured the strict control and control of civilian explosive device, be ensure that country and the common people
Safety.
Some embodiments according to the present utility model, the upper and lower illumination component 2,3 light-emitting areas are plane or described upper and lower
Illumination component forms for multiple illuminating parts(As shown in Figure 2).
Depending on the situation, light-emitting area can use the light-emitting area of a generally plane, as shown in figure 5, can also
Formed using the multiple light-emitting areas being made of multiple illuminating parts, at this time, multiple light-emitting areas can be adjusted to not as the case may be
Same spread pattern.
Some embodiments according to the present utility model, described pair is penetrated illumination structure(2,3 in figure)For elongated structure and along length
Spend direction and 1 axis of detonator is in the same direction, described pair is penetrated illumination structure(2,3 in figure)Light-emitting area 6 towards the detonator 1 and on
Lower face penetrates or tiltedly to penetrating(Face is penetrated as shown in figure 3, tiltedly to penetrating as shown in Figure 4), what the light-emitting area 6 was launched emits light into few
Highest position of the partial illumination to the observation detonator side.
In Fig. 3,4, shown to penetrating, light that illumination structure sent is at least part of can be irradiated to the detonator
Peak in face of the camera direction, extreme position then penetrate illumination structure close to the camera side most for described pair
The light at edge is just tangent with the peak in face of the camera direction of the detonator.
Some embodiments according to the present utility model, the illumination system are visible ray illumination system or non-visible light illumination
System.
Some embodiments according to the present utility model, as shown in Fig. 2, the lower upper illumination component 2,3 is along the detonator 1
Axis direction has the light-emitting area at oblique angle, and the small part that emits light into of the luminous surface launching of the incline structure is irradiated to observation station
State the highest position of detonator side.
In the present embodiment, the illumination component up and down is made of multiple light-emitting areas, and each light-emitting area is plane, but itself and edge
The detonator axis direction is there are oblique angle, in this way, can be to avoid generation glare.
Further, the light-emitting area of the incline structure 7 be the light-emitting area of multiple and described incline structure 7 be plane at the same time
With having angle of inclination along 1 axis of detonator, the transmitting light of the light-emitting area of the incline structure 7 is in 1 axis direction of detonator
Axially it is irradiated to there are drift angle and at least partly with the detonator and observes the highest position of the detonator side.
Preferably, the angle of inclination is more than or equal to zero degree and is less than or equal to 30 degree.
Alternatively, the positive apparent direction of the light emitting source of the incline structure is arranged as tooth form.
Further, the laterally homogeneous illumination identification structure of the detonator further includes the camera 4 for identifying the detonator mark.
While there has been shown and described that the experimental bench embodiment of the Hydrauservo System of the utility model, this area it is general
Logical technical staff is appreciated that:These embodiments can be carried out in the case where not departing from the principle and objective of the utility model
A variety of change, modification, replacement and modification, the scope of the utility model are limited by claim and its equivalent.
Claims (9)
1. a kind of laterally homogeneous illumination identification structure of detonator, it is characterised in that including to penetrating illumination structure, described pair is penetrated illumination knot
Structure includes upper illumination component and lower illumination component, has tagged detonator and is installed on the upper illumination component and the lower illumination portion
Between part, the upper illumination component and the lower illumination component have the light-emitting area or inclined relative to the detonator axis that face is penetrated
The oblique light-emitting area to penetrating that turns and towards the detonator direction.
2. the laterally homogeneous illumination identification structure of detonator according to claim 1, it is characterised in that the illumination component up and down
Light-emitting area is plane or the illumination component up and down is multiple illuminating part compositions.
3. the laterally homogeneous illumination identification structure of detonator according to claim 1, it is characterised in that described pair is penetrated illumination structure
For elongated structure and in the same direction with the detonator axis along its length, the described pair of light-emitting area for penetrating illumination structure is towards the detonator
And face is penetrated or tiltedly to penetrating up and down, the small part that emits light into of the luminous surface launching is irradiated to the observation detonator side most
High-order bit.
4. the laterally homogeneous illumination identification structure of detonator according to claim 1, it is characterised in that the illumination system is can
See light illumination system or non-visible light illumination system.
5. the laterally homogeneous illumination identification structure of detonator according to claim 1, it is characterised in that the lower upper illumination component
For the incline structure along the detonator axis direction with oblique angle and with light-emitting area, the luminous surface launching of the incline structure
Emit light into small part and be irradiated to the highest position for observing the detonator side.
6. the laterally homogeneous illumination identification structure of detonator according to claim 5, it is characterised in that the hair of the incline structure
Smooth surface be multiple and described incline structure light-emitting area be plane at the same time with having angle of inclination, the inclination along the detonator axis
The transmitting light of the light-emitting area of structure to be axially irradiated to there are drift angle and at least partly in the detonator axis direction and the detonator
Observe the highest position of the detonator side.
7. the laterally homogeneous illumination identification structure of detonator according to claim 6, it is characterised in that the angle of inclination is more than
It is less than or equal to 30 degree equal to zero degree.
8. the laterally homogeneous illumination identification structure of detonator according to claim 6, it is characterised in that the hair of the incline structure
The positive apparent direction of light source is arranged as zigzag.
9. the laterally homogeneous illumination identification structure of detonator according to claim 1, it is characterised in that the detonator is laterally homogeneous
Illumination identification structure further includes the camera for identifying the detonator mark.
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN109387996A (en) * | 2017-08-02 | 2019-02-26 | 广州本安信息科技有限公司 | A kind of laterally homogeneous illumination identification structure of detonator |
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Publication number | Priority date | Publication date | Assignee | Title |
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CN109387996A (en) * | 2017-08-02 | 2019-02-26 | 广州本安信息科技有限公司 | A kind of laterally homogeneous illumination identification structure of detonator |
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