CN101598680A - Integral type ray detecting device - Google Patents
Integral type ray detecting device Download PDFInfo
- Publication number
- CN101598680A CN101598680A CNA2008101144245A CN200810114424A CN101598680A CN 101598680 A CN101598680 A CN 101598680A CN A2008101144245 A CNA2008101144245 A CN A2008101144245A CN 200810114424 A CN200810114424 A CN 200810114424A CN 101598680 A CN101598680 A CN 101598680A
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- hoistable platform
- lower slider
- column
- lathe bed
- upper saddle
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Abstract
The invention discloses a kind of integral type ray detecting device, its design feature is that the column of pick-up unit is fixed on the lathe bed, and column becomes " L " type layout with lathe bed; Lower slider is contained on the lathe bed, horizontally moving device is installed between lower slider and the lathe bed lower slider perpendicular ray direction is moved; Upper saddle is contained on the lower slider, horizontally moving device is installed between upper saddle and the lower slider upper saddle is moved along ray; Rotary table is installed on the upper saddle, can move with upper and lower slide; Hoistable platform is contained on the column, jacking gear is installed between hoistable platform and the column can be made platform do to move vertically along column; Ray emission device, detector are fixed on the hoistable platform, can move with hoistable platform.But integral installation of the present invention's implement device and transportation compared with prior art, have characteristics quick for installation, that adaptability is good, are used in the check occasion that needs often to change detection site especially.
Description
Technical field
The present invention relates to a kind of integral type ray detecting device of ray detection technical field, it is mainly used in forging, foundry goods, the detection of the miniature workpiece of stuff is arranged.
Background technology
Existing ray detecting apparatus, mainly by pick-up unit is decomposed into a plurality of unit and respectively packed and transported realize, after equipment transports the detection scene to, each unit is combined again and could use.Shown in the prior art among Fig. 7, the both sides that detector and radiogenic column 200 and 100 are installed in turntable lathe bed 300 independently of one another are housed respectively.This method exists equipment dismounting, set-up time long, has also increased the probability of device damage, can not satisfy the needs of frequent replacing detection occasion.
Summary of the invention
Therefore, the objective of the invention is to address the above problem, and a kind of monoblock type ray detection system that does not need at the scene equipment to be carried out complex installation debugging, check operation is provided.
According to an aspect of the present invention, provide a kind of integral type ray detecting device, this device comprises: lathe bed; Column, described column vertically are installed in an end of lathe bed; Hoistable platform, described hoistable platform can be installed on the column up or down, and wherein the ray emission device is installed in an end place of hoistable platform, and detector and ray emission device relatively are installed in the other end place of hoistable platform; Upper saddle and lower slider, upper saddle are slidably mounted on the lower slider and lower slider is slidably mounted on the lathe bed; Rotary table, described rotary table is installed on the upper saddle, and rotary table is used to place workpiece to be detected; A plurality of drive units are used for driving respectively hoistable platform, upper saddle and lower slider.
According to a further aspect in the invention, hoistable platform is preferably " C " type arm configuration.
In accordance with a further aspect of the present invention, drive unit comprises motor and speed reduction unit.
Preferably, lathe bed of the present invention is integral solder part or foundry goods.
Preferably, ray emission device of the present invention is an X-ray machine.
Monoblock type ray detection system according to the present invention has been realized simple transportation and on-the-spot the installation, can make things convenient for, accurately carry out ray detection.
Description of drawings
Figure 1A is the overall schematic according to the monoblock type pick-up unit of the embodiment of the invention;
Figure 1B is the vertical view according to the monoblock type pick-up unit of the embodiment of the invention;
Fig. 2 is the vertical view according to the monoblock type pick-up unit of the embodiment of the invention, has shown the structure of lathe bed in further detail;
Fig. 3 is the synoptic diagram that shows the concrete outcome of upper saddle 3 and lower slider 4;
Fig. 4 is the synoptic diagram that shows the structure between upper saddle 3 and the lower slider 4;
Fig. 5 is the synoptic diagram that shows the concrete structure of column 6;
Fig. 6 is the synoptic diagram that shows the concrete structure of hoistable platform 1; With
Fig. 7 is the synoptic diagram of the ray detecting apparatus of prior art.
Embodiment
Shown in Figure 1A and 1B were overall, integral type ray detecting device comprised according to an embodiment of the invention: the hoistable platform 1 that is " C " shape; Rotary table 2, detected workpiece is placed on the rotary table 2, thereby with rotary table 2 revolutions, mobile; Upper saddle 3 and lower slider 4, upper saddle 3 is installed on the lower slider 4, thereby can move horizontally along directions of rays, and lower slider 4 is installed on the lathe bed 5, thereby but the perpendicular ray direction move horizontally; Lathe bed 5; Column 6, its end that is fixed on lathe bed 5 by fixtures such as bolt, pins with 5 one-tenth of lathe beds " L " type layout, and hoistable platform 1 is installed on the column 6, can do to move vertically along column 6; With ray emission device 8 and detector 7, both are separately fixed on the two ends of " C " type hoistable platform, can move with hoistable platform 1.Should be noted in the discussion above that ray emission device of the present invention including but not limited to X-ray machine, also can comprise other ray emission device.
Next, describe the concrete structure of the lathe bed 5 of device in detail with reference to Fig. 2.Lathe bed 5 can be an integral solder part or a foundry goods, is supported on the ground by the parallels (not shown) that is adjusted at its bottom, and wherein parallels is used to regulate the installation accuracy of this integral type ray detecting device.One end of lathe bed 5 is the plane, and to be used for fixing column 6, the other end then is used to install lower slider 4.In its both sides line slideway 10 is installed above lathe bed 5 parts of installation lower slider 4, and ball-screw 12 is installed therebetween, the two ends of ball-screw 12 are fixed on the lathe bed 5 by bearing seat 11,14.Thereby motor 15, right angle speed reduction unit 16 are connected driving ball-screw 12 by ringfeder, and then lower slider 4 can be moved along the direction of ball-screw 12 with ball-screw 12 ends.In addition preferably, respectively there are two lifting eye (not shown)s the both sides of lathe bed 5, are used for this integral type ray detecting device of integral lifting, so that the transportation of this integral type ray detecting device and installation.
Describe the concrete structure of upper saddle 3 and lower slider 4 in detail hereinafter with reference to Fig. 3 and 4.Four slide blocks 27 of lower slider 4 below it are contained on the guide rail 10 of lathe bed 5, and lower slider 4 below be useful on the support 28 that is connected with ball-screw 12 nuts of lathe bed 5; Both sides on lower slider 4 be equipped with line slideway 10 ', middle ball-screw 12 ' an end by bearing seat 14 ' be fixed on the lower slider 4, motor 15 ', right angle speed reduction unit 16 ' be connected with this leading screw 12 ' end by ringfeder.Two side rails 10 of upper saddle 3 by four slide blocks below it are installed are contained in lower slider 4 ' on, and upper saddle 3 below be useful on the support that is connected with the leading screw 12 ' nut of lower slider 4, rotary table is fixed on above the upper saddle with briquetting.
Next the concrete structure of column 6 is described with reference to Fig. 5.Column 6 can be integral solder part or foundry goods, is fixed on the end that is the plane of lathe bed 5 with bolt, pin.Column 6 is equipped with line slideway 21 on the both sides in the face of the front of lathe bed 5 main bodys, the two ends that are positioned at the ball-screw 20 of column 6 centres are fixed on the column 6 by bearing seat 19,22, motor and right angle speed reduction unit assembly 17 are fixed on column 6 tops, be connected with the upper end of leading screw 20 with driving leading screw 20 by ringfeder 18, thereby hoistable platform 1 is vertically moved.
As shown in Figure 6, hoistable platform 1 is " C " type arm configuration, and the slide block 23 by the back side is installed on the line slideway of column 6, and the support 31 in the middle of the hoistable platform 1 is used for being connected with the feed screw nut of column 6; One side of hoistable platform 1 is installed ray emission device 8, and ray emission device 8 front ends are equipped with horizontal tungsten collimator 29, and ray emission device 8 total lengths are surrounded by plumbous cover 30 protection, the position of ray emission device 8 can along about, the left and right directions adjustment; The opposite side of hoistable platform 1 is equipped with horizontal tungsten collimator 24, vertical tungsten collimator 25 and detector 7 and leads 26.
Although described the present invention with reference to the specific embodiment of selecting for the purpose of illustration, be apparent that for those of ordinary skills, under the situation that does not deviate from key concept of the present invention and scope, can make various modifications to the present invention.
Claims (5)
1. an integral type ray detecting device is characterized in that, described device comprises:
Lathe bed;
Column, described column vertically are installed in an end of lathe bed;
Hoistable platform, described hoistable platform can be installed on the column up or down, and wherein the ray emission device is installed in an end place of hoistable platform, and detector and ray emission device relatively are installed in the other end place of hoistable platform;
Upper saddle and lower slider, upper saddle are slidably mounted on the lower slider and lower slider is slidably mounted on the lathe bed;
Rotary table, described rotary table is installed on the upper saddle, and rotary table is used to place workpiece to be detected;
A plurality of drive units are used for driving respectively hoistable platform, upper saddle and lower slider.
2. integral type ray detecting device according to claim 1 is characterized in that, described hoistable platform is " C " type arm configuration.
3. integral type ray detecting device according to claim 1 is characterized in that described drive unit comprises motor and speed reduction unit.
4. integral type ray detecting device according to claim 1 is characterized in that, lathe bed is integral solder part or foundry goods.
5. integral type ray detecting device according to claim 1 is characterized in that, the ray emission device is an X-ray machine.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNA2008101144245A CN101598680A (en) | 2008-06-06 | 2008-06-06 | Integral type ray detecting device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CNA2008101144245A CN101598680A (en) | 2008-06-06 | 2008-06-06 | Integral type ray detecting device |
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CN101598680A true CN101598680A (en) | 2009-12-09 |
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CNA2008101144245A Pending CN101598680A (en) | 2008-06-06 | 2008-06-06 | Integral type ray detecting device |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106053278A (en) * | 2016-07-05 | 2016-10-26 | 昆明理工大学 | Micro-nano cutting test device |
CN112304979A (en) * | 2020-09-25 | 2021-02-02 | 中国辐射防护研究院 | Beta, X, gamma protective material test platform |
-
2008
- 2008-06-06 CN CNA2008101144245A patent/CN101598680A/en active Pending
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106053278A (en) * | 2016-07-05 | 2016-10-26 | 昆明理工大学 | Micro-nano cutting test device |
CN112304979A (en) * | 2020-09-25 | 2021-02-02 | 中国辐射防护研究院 | Beta, X, gamma protective material test platform |
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Application publication date: 20091209 |