CN205592744U - Adjustable system that polishes of multi -angle of 3D scanner - Google Patents

Adjustable system that polishes of multi -angle of 3D scanner Download PDF

Info

Publication number
CN205592744U
CN205592744U CN201520894474.5U CN201520894474U CN205592744U CN 205592744 U CN205592744 U CN 205592744U CN 201520894474 U CN201520894474 U CN 201520894474U CN 205592744 U CN205592744 U CN 205592744U
Authority
CN
China
Prior art keywords
light source
direction light
case skeleton
single group
skeleton
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201520894474.5U
Other languages
Chinese (zh)
Inventor
吴谋贵
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xiamen Dongwen Network Technology Co.,Ltd.
Original Assignee
Xiamen Qishon Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Xiamen Qishon Technology Co Ltd filed Critical Xiamen Qishon Technology Co Ltd
Priority to CN201520894474.5U priority Critical patent/CN205592744U/en
Application granted granted Critical
Publication of CN205592744U publication Critical patent/CN205592744U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Finish Polishing, Edge Sharpening, And Grinding By Specific Grinding Devices (AREA)

Abstract

The utility model discloses an adjustable system that polishes of multi -angle of 3D scanner, it is including placing scanning face material push - pull drawer, operate the computer case skeleton and lower quick -witted case skeleton, it is equipped with bottom electroluminescent sheet light source on the scanning face material push - pull drawer to place, the case skeleton of operating the computer is the square configuration that four skeletons are constituteed with lower quick -witted case skeleton, the lower extreme of case skeleton of operating the computer is equipped with the parallelly connected radiation source down of four groups, the upper end of quick -witted case skeleton is equipped with the parallelly connected radiation source up of four groups down, it singly organizes the light source to be equipped with respectively in four directions of lower quick -witted case skeleton lower extreme, it maybe to divide: singly organize E direction light source, singly organize S direction light source, singly organize W direction light source, singly organize N direction light source. The beneficial effects of the utility model are that: be equipped with six group's LED light source and a set of bottom electroluminescent sheet light sources, make the exposure more accurate, applicable more a wide range of material scanning, six LED of group light sources have contained upper and lower direction to four directions in all directions are reached, the texture and the lighting effect of material can be truly displayed.

Description

A kind of multi-angle adjustable polishing system of 3D scanner
Technical field
This utility model relates to a kind of polishing system, particularly to the multi-angle adjustable polishing system of a kind of 3D scanner, belongs to 3D technical field.
Background technology
In today of 3D virtual technology high speed development, the application of 3D virtual technology is the most extensive.But the extensive application of 3D virtual technology, it be unable to do without a large amount of 3D modeling, and in order to make model more life-like in 3D modeling, then need high-quality 3D Materials Library pinup picture.Texturing needed for current most of 3D modeling software need to comprise (diffuse-reflectance pinup picture Color, normal pinup picture Normals, Displacement Displacement, high light pinup picture Specular, transparency pinup picture Alpha).The manufacture method of current 3D texturing scans generally by flat bed scanner or digital camera or shooting obtains original image, then adjust color cutting image size by Photoshop and judge that adjustment makes seamless circulating and splices by artificial naked eyes, then generating 3D texturing by PaintShops such as Crazybump through complicated loaded down with trivial details process adjustment.nullThe texturing that this mode obtains,During due to the scanning of picture early stage or shooting,Light source is the picture obtained under one direction one-dimensional degree,And light-source brightness immobilizes,When scanning reflective bigger material (such as fluorescent material),Owing to reflective reason easily causes over-exposed,It is the high spectrum numerical value of reaction scanning material in addition with high light pinup picture,The high backscatter extinction logarithmic ratio recording material under single light source is not accurate enough,Also having transparency pinup picture is the transmittance coefficient that reaction is scanned material,Above-mentioned plain scan is in scanning plane polishing,Do not penetrate light so the light transmission of material can not be recorded,Although the corresponding pinup picture of generation can be simulated by above-mentioned software,But it is not actual response fabric characteristic originally,So the texturing made,Use texture and the effect of shadow that can not truly represent material,And need to expend substantial amounts of manual time's cost.
Utility model content
The technical problems to be solved in the utility model, it is to provide the multi-angle adjustable polishing system of a kind of 3D scanner, this device is provided with cold light film light source bottom about six groups and the light source in direction, all directions and a group, makes exposure more accurate, applicable further types of scanning of materials.
This utility model is realized by following proposal: the multi-angle adjustable polishing system of a kind of 3D scanner, it includes placing the scanning plug-type drawer of fabric, upper case skeleton and lower case skeleton, the described scanning plug-type drawer of fabric of placing is provided with bottom cold light film light source, described upper case skeleton and described lower case skeleton are the square structure of four skeleton compositions, the lower end of described upper case skeleton is provided with four groups of parallel connection radiation sources down, the upper end of described lower case skeleton is provided with four groups of parallel connection radiation sources upward, single group light source it is respectively equipped with on the four direction of described lower case skeleton lower end, respectively: single group E direction light source, single group S direction light source, single group W direction light source, single group N direction light source.
Described four groups of radiation sources down in parallel are evenly distributed on the lower end of four skeletons of described upper case skeleton.
Described four groups of radiation sources upward in parallel are evenly distributed on the upper end of four skeletons of described lower case skeleton.
Described single group E direction light source, described single group S direction light source, described single group W direction light source, described single group N direction light source are respectively distributed to the lower end of four skeletons of described lower case skeleton.
Described single group E direction light source, described single group S direction light source, described single group W direction light source, the light emission direction of described single group N direction light source are respectively facing all directions four direction.
Described single group E direction light source, described single group S direction light source, described single group W direction light source, described single group N direction light source are towards the center of described lower case skeleton.
The beneficial effects of the utility model are:
1, the multi-angle adjustable polishing system of a kind of 3D of this utility model scanner is provided with cold light film light source bottom six groups of LED light sources and a group, makes exposure more accurate, applicable further types of scanning of materials;
2, six groups of LED light sources of the multi-angle adjustable polishing system of a kind of 3D of this utility model scanner include four groups of parallel connection radiation sources down, four groups of parallel connection radiation sources upward, single group E direction light source, single group S direction light source, single group W direction light source, single group N direction light sources, contain above-below direction, and all directions four direction, can truly represent texture and the effect of shadow of material.
Accompanying drawing explanation
Fig. 1 is the structural representation of the multi-angle adjustable polishing system of this utility model a kind of 3D scanner.
Fig. 2 is the structural representation of 3D scanner.
In figure: 1 for placing the scanning plug-type drawer of fabric, 2 is upper case skeleton, 3 is lower case skeleton, 4 is bottom cold light film light source, and 5 is four groups of parallel connection radiation sources down, and 6 is four groups of parallel connection radiation sources upward, 7 is single group E direction light source, 8 is single group S direction light source, and 9 is single group W direction light source, and 10 is single group N direction light source.
Detailed description of the invention
Below in conjunction with Fig. 1-2, this utility model is further illustrated, but this utility model protection domain does not limit to described content.
A kind of multi-angle adjustable polishing system of 3D scanner, it includes placing the scanning plug-type drawer of fabric 1, upper case skeleton 2 and lower case skeleton 3, place the scanning plug-type drawer of fabric 1 and be provided with bottom cold light film light source 4, upper case skeleton 2 and lower case skeleton 3 are the square structure of four skeleton compositions, the lower end of upper case skeleton 2 is provided with four groups of parallel connection radiation source 5 down, the upper end of lower case skeleton 3 is provided with four groups of parallel connection radiation source 6 upward, single group light source it is respectively equipped with on the four direction of lower case skeleton 3 lower end, respectively: single group E direction light source 7, single group S direction light source 8, single group W direction light source 9, single group N direction light source 10.
Four groups of radiation sources 5 down in parallel are evenly distributed on the lower end of four skeletons of upper case skeleton 2, four groups of radiation sources 6 upward in parallel are evenly distributed on the upper end of four skeletons of lower case skeleton 3, single group E direction light source 7, single group S direction light source 8, single group W direction light source 9, single group N direction light source 10 is respectively distributed to the lower end of four skeletons of lower case skeleton 3, single group E direction light source 7, single group S direction light source 8, single group W direction light source 9, the light emission direction of single group N direction light source 10 is respectively facing all directions four direction, single group E direction light source 7, single group S direction light source 8, single group W direction light source 9, single group N direction light source 10 is towards the center of lower case skeleton 3.
The material that first will scan during scanning is put into the placement scanning plug-type drawer of fabric 1, the preview button of some PC end scanning imaging system, scanning imaging system transmitting control commands controls to open the power supply of four groups of light sources 5 down in parallel to 3D scanner master control borad, and setting program presets light value, then open camera and take pictures and the photo of acquisition is transferred back to PC end main frame by USB.When after user's spot scan key button, scanning imaging system is opened single group N direction light source 10, single group E direction light source 7, single group S direction light source 8, single group W direction light source 9, four groups of light sources 5, four groups down in parallel light source 6, LED lamplight of bottom cold light film light source 4 seven groups of different directions altogether upward in parallel the most successively automatically by 3D scanner master control borad and takes pictures successively, the picture of seven different directions polishings can be obtained altogether after completing, carry out subsequent treatment.
Although the technical solution of the utility model having been done the most detailed elaboration and having enumerated; it is to be understood that; to those skilled in the art; above-described embodiment is made amendment or uses the replacement scheme of equivalent; this is apparent to those skilled in the art; these modifications or improvements on the basis of without departing from this utility model spirit, belong to the scope that this utility model is claimed.

Claims (6)

  1. null1. the multi-angle of a 3D scanner adjustable polishing system,It is characterized in that: it includes placing the scanning plug-type drawer of fabric (1)、Upper case skeleton (2) and lower case skeleton (3),The described placement scanning plug-type drawer of fabric (1) is provided with bottom cold light film light source (4),Described upper case skeleton (2) and described lower case skeleton (3) are the square structure of four skeleton compositions,The lower end of described upper case skeleton (2) is provided with four groups of parallel connections radiation source down (5),The upper end of described lower case skeleton (3) is provided with four groups of parallel connections radiation source upward (6),Single group light source it is respectively equipped with on the four direction of described lower case skeleton (3) lower end,Respectively: single group E direction light source (7)、Single group S direction light source (8)、Single group W direction light source (9)、Single group N direction light source (10).
  2. The multi-angle adjustable polishing system of a kind of 3D scanner the most according to claim 1, it is characterised in that: described four groups of parallel connections radiation source down (5) are evenly distributed on the lower end of four skeletons of described upper case skeleton (2).
  3. The multi-angle adjustable polishing system of a kind of 3D scanner the most according to claim 1, it is characterised in that: described four groups of parallel connections radiation source upward (6) are evenly distributed on the upper end of four skeletons of described lower case skeleton (3).
  4. The multi-angle adjustable polishing system of a kind of 3D scanner the most according to claim 1, it is characterised in that: described list organizes E direction light source (7), described list group S direction light source (8), W direction light source (9) organized by described list, the lower end that N direction light source (10) is respectively distributed to four skeletons of described lower case skeleton (3) organized by described list.
  5. The multi-angle adjustable polishing system of a kind of 3D scanner the most according to claim 4, it is characterised in that: described single group E direction light source (7), described single group S direction light source (8), described single group W direction light source (9), the light emission direction of described single group N direction light source (10) are respectively facing all directions four direction.
  6. The multi-angle adjustable polishing system of a kind of 3D scanner the most according to claim 5, it is characterised in that: described list organizes E direction light source (7), described list group S direction light source (8), W direction light source (9) organized by described list, the center towards described lower case skeleton (3), N direction light source (10) organized by described list.
CN201520894474.5U 2015-11-11 2015-11-11 Adjustable system that polishes of multi -angle of 3D scanner Active CN205592744U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520894474.5U CN205592744U (en) 2015-11-11 2015-11-11 Adjustable system that polishes of multi -angle of 3D scanner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520894474.5U CN205592744U (en) 2015-11-11 2015-11-11 Adjustable system that polishes of multi -angle of 3D scanner

Publications (1)

Publication Number Publication Date
CN205592744U true CN205592744U (en) 2016-09-21

Family

ID=56926675

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520894474.5U Active CN205592744U (en) 2015-11-11 2015-11-11 Adjustable system that polishes of multi -angle of 3D scanner

Country Status (1)

Country Link
CN (1) CN205592744U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107314750A (en) * 2017-08-12 2017-11-03 陈清朋 A kind of device for 3D printing automatically scanning

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107314750A (en) * 2017-08-12 2017-11-03 陈清朋 A kind of device for 3D printing automatically scanning

Similar Documents

Publication Publication Date Title
Froehlich et al. Creating cinematic wide gamut HDR-video for the evaluation of tone mapping operators and HDR-displays
CN1916968A (en) Setting up method for 3D virtual reality by using matrix to realize simulation of irradiation from ambient light
CN108765542A (en) Image rendering method, electronic equipment and computer readable storage medium
LU501944B1 (en) Method for Making Three-dimensional Reconstruction and PBR Maps Based on Close-range Photogrammetry
Parraga et al. Which tone-mapping operator is the best? A comparative study of perceptual quality
CN105262927A (en) FSM3D fabric high definition scanner and automatic control system thereof
Marziali et al. Photogrammetry and macro photography. The experience of the MUSINT II Project in the 3D digitizing process of small size archaeological artifacts
JP2016524363A (en) Hair consultation tool apparatus and method
US11022861B2 (en) Lighting assembly for producing realistic photo images
CN106373185A (en) Multi-perspective three-dimensional reconstruction method and device of removable historical relic
CN205592744U (en) Adjustable system that polishes of multi -angle of 3D scanner
KR102037520B1 (en) Hologram image recording system strengthening three-dimensional effect
Kuhlo Architectural rendering with 3ds max and V-ray: photorealistic visualization
CN113286065B (en) Stone slab image acquisition and processing device
JP2007219715A (en) Method and device for preparing reflectance property data of object
CN210327828U (en) Three-dimensional image acquisition system
CN205596187U (en) Automatic change 3D scanning control system
Zhou et al. Light field projection for lighting reproduction
US10564518B2 (en) Environmental lighting system and method
Yang A light field camera for image based rendering
Aure et al. Generating 3D Models of Paintings through the Combination of 2D, 3D and RTI Data
Matsuoka et al. Environment mapping for objects in the real world: a trial using ARToolKit
CN207399349U (en) Simulated underwater shoot on location system
Rand et al. The Portrait: understanding portrait photography
TW472215B (en) Image processing apparatus, recording medium, and program

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20191211

Address after: Room 303, No.10, heningli, Huli District, Xiamen City, Fujian Province

Patentee after: Ye Yangbo

Address before: 366300, Xiamen Software Park, Fujian, two, expecting channel 25, unit 205

Patentee before: XIAMEN QISHON TECHNOLOGY CO., LTD.

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20201221

Address after: Unit 311, 3 / F, rongxinsheng operation center, No.11 Nantou Road, Siming District, Xiamen City, Fujian Province

Patentee after: Xiamen Dongwen Network Technology Co.,Ltd.

Address before: Room 303, No. 10, heli District, Huli District, Xiamen City, Fujian Province

Patentee before: Ye Yangbo

TR01 Transfer of patent right