CN218108266U - A oven for powder coating flow test - Google Patents
A oven for powder coating flow test Download PDFInfo
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- CN218108266U CN218108266U CN202222468254.9U CN202222468254U CN218108266U CN 218108266 U CN218108266 U CN 218108266U CN 202222468254 U CN202222468254 U CN 202222468254U CN 218108266 U CN218108266 U CN 218108266U
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- oven
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- bearing plate
- powder coating
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Abstract
The application relates to the field of powder coating detection equipment, in particular to an oven for a powder coating flow test; the device comprises a bearing plate for bearing a transparent plate, a support frame for supporting the bearing plate and a blocking assembly for reducing sudden temperature change in the oven; the supporting frame is arranged in the oven; the bearing plate can be arranged on the support frame in a sliding manner; the blocking assembly comprises a blocking plate; the blocking plate is arranged at an opening of the oven and is provided with an operation opening for workers to discharge and take materials from the bearing plate; set up the opening part at the oven through the baffler to set up the operation mouth on the baffler, on the one hand, be convenient for take to the sample on the loading board, on the other hand has reduced when opening the oven, and outside cold air enters into inside the oven, causes the emergence of the interior abrupt change of temperature phenomenon of oven, with this improvement to the detection effect of other detection samples.
Description
Technical Field
The application relates to the field of powder coating detection equipment, in particular to an oven for powder coating flow test.
Background
The powder coating flow test is one of the important links of the powder coating finished product inspection.
In the related technology, when the flow trace of the powder coating is detected, the powder coating to be detected is firstly placed on a transparent detection plate, then the transparent detection plate is placed on a bearing plate, the bearing plate is placed in an oven, the oven is started, the powder coating is heated by the oven, the bearing plate is taken out in the oven after being heated for a certain time, and the physical property of the powder coating is judged according to the flow trace of the powder coating on the transparent detection plate; in addition, when the powder flow trace is detected, in order to improve the detection efficiency, a plurality of powder coating samples are usually placed in one detection.
With respect to the above related art, there are the following drawbacks: after the flow trace of the powder coating is detected, when the oven door is opened to take out the bearing plate, the oven door is opened due to the detection of various powder coatings, so that the temperature in the oven suddenly changes, and the detection effect of other samples is influenced.
SUMMERY OF THE UTILITY MODEL
In order to reduce when taking out the sample, the great change of temperature in the oven improves the detection effect to other samples, this application provides an oven for powder coating flow test.
The application provides an oven for powder coating flow test adopts following technical scheme:
an oven for a powder coating flow mark test comprises a bearing plate for bearing a transparent plate, a support frame for supporting the bearing plate and a blocking assembly for reducing abrupt temperature change in the oven;
the support frame is arranged in the oven;
the bearing plate can be arranged on the support frame in a sliding manner;
the barrier assembly comprises a barrier plate;
the blocking plate is arranged at an opening of the oven and is provided with an operation opening for workers to discharge and take materials from the bearing plate.
By adopting the technical scheme, when the flow trace of the powder coating is detected, the powder coating is firstly dripped on the transparent plate, the transparent plate is placed on the bearing plate, the bearing plate is pushed to the inside of the oven, the oven door is closed, the oven is opened to heat the powder coating, after heating is finished, the oven door is opened, the bearing plate is pulled to the material taking port, the transparent plate is taken down, and the flow trace of the powder coating is detected by using a vernier caliper; set up the opening part at the oven through the baffler to set up the operation mouth on the baffler, on the one hand, be convenient for take to the sample on the loading board, on the other hand has reduced when opening the oven, and outside cold air enters into inside the oven, causes the emergence of the interior abrupt change of temperature phenomenon of oven, with this improvement to the detection effect of other detection samples.
Optionally, the drying oven further comprises a sliding assembly for driving the bearing plate to move in the drying oven; the sliding component comprises a sliding guide rail and a sliding block;
the sliding guide rail is arranged on the support frame;
the sliding block is arranged on one side, close to the sliding guide rail, of the bearing plate, and the bearing plate is connected with the sliding guide rail in a sliding mode through the sliding block.
By adopting the technical scheme, the bearing plate is pulled to move, and the bearing plate drives the sliding block to move on the sliding guide rail, so that the purpose of moving the bearing plate is realized; through the sliding block on sliding guide rail motion for the loading board motion conveniently realizes arranging powder coating in the oven inside and with the purpose that powder coating got the material mouth from the oven and takes out.
Optionally, the sliding assembly further comprises a sliding wheel for facilitating the sliding of the sliding block on the sliding guide rail;
the sliding wheel is rotationally connected to the sliding block, and the sliding block is connected to the sliding guide rail through the sliding wheel in a sliding mode.
Through adopting above-mentioned technical scheme, the sliding block motion, the sliding block drives the movable pulley and moves on the guide rail that slides, and the movable pulley moves on the guide rail that slides, has made things convenient for the motion of loading board, helps improving powder coating's detection efficiency.
Optionally, the bearing plate includes a horizontal section and an inclined section;
the inclined section is connected with the horizontal section, and an included angle between the horizontal section and the inclined section is 48 degrees.
By adopting the technical scheme, one side of the transparent plate is lapped on the inclined section, and the other section of the transparent plate is lapped on the horizontal section; the included angle between the inclined section and the horizontal section is set to be 48 degrees, so that the national standard requirement is met, and the detection standard is standardized.
Optionally, the bearing plate further includes a first abutting block and a second abutting block;
the first abutting block is arranged on the inclined section along the length direction of the horizontal section;
the second abutting block is arranged on the inclined section along the length direction of the horizontal section, and the first abutting block and the second abutting block form a hot air groove for uniformly heating the transparent plate.
Through adopting above-mentioned technical scheme, one side overlap joint of transparent plate is on first supporting tight piece, and the overlap joint of the other side of transparent plate is on the second supports tight piece, and first supporting tight piece and second support and form the hot gas groove between the tight piece, and the even of steam passes through when making things convenient for the oven to heat for powder coating thermally equivalent on the transparent plate has improved the detection accuracy to powder coating.
Optionally, the bearing plate further comprises a lapping block for facilitating lapping of the transparent plates;
the lap joint block is arranged on the horizontal section, and lap joint steps for lap joint of one side of the transparent plate are formed between the lap joint block and the second abutting blocks.
Through adopting above-mentioned technical scheme, one side overlap joint of transparent plate is on first tight piece that supports, and the opposite side butt of transparent plate is on the overlap joint step, supports the overlap joint step that forms between the tight piece through overlap joint piece and second, is convenient for realize fixed to the transparent plate, reduces the in-process of oven heating, and the phenomenon that slides appears in the transparent plate leads to causing the influence to the testing effect.
Optionally, the positioning device further comprises a positioning assembly for positioning the bearing plate;
the positioning assembly comprises a positioning bolt for positioning the bearing plate at the outlet of the oven;
the sliding guide rail is provided with a positioning hole, the positioning bolt is arranged in the positioning hole along the vertical direction, and the positioning bolt can be tightly abutted to the horizontal section.
By adopting the technical scheme, the positioning bolt is arranged in the positioning hole, the bearing plate is pulled to move on the sliding guide rail, and when the horizontal section is in contact with the positioning bolt, the bearing plate is fixed at a designated position by the positioning bolt; the bearing plate is fixed at the designated position through the positioning bolt, and the transparent plate on the bearing plate is convenient for a worker to take and place.
Optionally, a moving handle for moving the bearing plate is further included;
the movable handle is arranged on one side, far away from the side connected with the inclined section, of the horizontal section.
Through adopting above-mentioned technical scheme, the staff pulling removes the handle, removes the handle and drives the loading board motion, removes the setting of handle, is convenient for realize the pulling of loading board, and the setting that removes the handle simultaneously can direct and the contact of loading board of staff's the reducible staff that sets up, has reduced the emergence of being scalded the phenomenon when the staff takes the sample simultaneously.
In summary, the present application includes at least one of the following beneficial technical effects:
1. according to the detection device, the first blocking plate and the second blocking plate are arranged at the material taking opening of the oven, so that the phenomenon that when the oven is opened, outside cold air enters the oven to cause sudden temperature change in the oven is reduced, and the detection effect on other detection samples is improved;
2. according to the application, the sliding block moves on the sliding guide rail, so that the bearing plate moves, and the purposes of placing the powder coating in the oven and taking the powder coating out of the oven material taking port are conveniently achieved;
3. this application supports through first tight piece and the second and forms the hot gas groove between the tight piece, and the even of steam passes through when making things convenient for the oven heating for powder coating thermally equivalent on the transparent plate has improved the detection accuracy to powder coating.
Drawings
FIG. 1 is a schematic representation of the use of an oven for powder coating flow testing of the present application;
FIG. 2 is a schematic diagram of a portion of an oven for powder coating flow testing according to the present application;
FIG. 3 is a schematic structural view of the carrier plate.
Reference numerals: 1. a carrier plate; 11. a horizontal segment; 12. an inclined section; 13. a first abutting block; 14. a second abutting block; 15. a hot gas tank; 16. a lapping block; 2. a support frame; 3. a blocking component; 31. a barrier plate; 311. an operation port; 4. a slipping component; 41. a sliding guide rail; 411. positioning holes; 42. a sliding block; 43. a sliding wheel; 5. a positioning assembly; 51. positioning the bolt; 6. moving the handle; 7. and (5) baking.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses an oven for a powder coating flow test.
Referring to fig. 1 and 2, an oven for a powder coating flow trace test comprises a bearing plate 1 for bearing a transparent plate, a support frame 2 for supporting the bearing plate 1, a moving handle 6 for conveniently operating the bearing plate 1, a blocking assembly 3 for reducing temperature shock in an oven 7, a sliding assembly 4 for conveniently moving the bearing plate 1, and a positioning assembly 5 for positioning the bearing plate 1; the support frame 2 is arranged in the oven 7 through a self-tapping screw, and the support frame 2 is used for supporting the bearing plate 1; the bearing plate 1 is connected to the support frame 2 in a sliding manner through a sliding component 4, and the sliding component 4 is used for driving the bearing plate 1 to slide on the support frame 2; the blocking component 3 is arranged at an opening of the oven 7, and the blocking component 3 is used for reducing sudden change of temperature in the oven 7 caused by external air entering when the oven 7 is opened; the movable handle 6 is fixed on the bearing plate 1 through a self-tapping screw, and the movable handle 6 is convenient for a worker to move and operate the bearing plate 1.
Referring to fig. 1, 2, the barrier assembly 3 includes a barrier plate 31; the blocking plate 31 is fixed at the opening of the oven 7 through the self-tapping screw, in order to reduce the phenomenon that the blocking plate 31 interferes with the oven 7 door when the oven 7 door is closed, a groove is formed in the oven door frame of the oven 7, and the blocking plate 31 is installed in the groove, so that the closing of the oven 7 door is not influenced; meanwhile, in order to facilitate the sample taking of the worker, the blocking plate 31 is provided with an operation hole 311 for the worker to discharge and take materials from the bearing plate 1, the size of the operation hole 311 is matched with that of the bearing plate 1, so that the entrance of outside cold air when the door of the box is opened is reduced, and the detection accuracy of other samples is improved.
Referring to fig. 2 and 3, the sliding assembly 4 includes a sliding guide rail 41, a sliding block 42, and a sliding wheel 43; the bottom of the sliding guide rail 41 is welded on the support frame 2, and in order to improve the sliding effect on the bearing plate 1, the number of the sliding guide rails 41 is set to be two sections; the sliding block 42 is welded on one side of the bearing plate 1 close to the sliding guide rail 41, and the bearing plate 1 is connected with the sliding guide rail 41 in a sliding manner through the sliding block 42; meanwhile, in order to improve the sliding effect of the bearing plate 1, a sliding wheel 43 is installed on the bottom wall of the sliding block 42, the sliding wheel 43 is rotatably connected to the sliding block 42, and the sliding block 42 is slidably connected to the sliding guide rail 41 through the sliding wheel 43.
Referring to fig. 2, the bearing plate 1 includes a horizontal section 11, an inclined section 12, a first abutting block 13, a second abutting block 14, and a lapping block 16; one side of the inclined section 12 is fixedly connected with one side of the horizontal section 11, and an included angle between the horizontal section 11 and the inclined section 12 is 48 degrees according to the requirement of a detection standard; scald when reducing the staff and take the sample to and be convenient for to the removal of loading board 1, will remove handle 6 and keep away from the one side of being connected with slope section 12 at horizontal segment 11 through the bolt fastening.
Referring to fig. 2, in order to uniformly heat the powder coating on the transparent plate, a first abutting block 13 is fixed on the inclined section 12 along the length direction of the horizontal section 11; second support tight piece 14 is fixed on slope section 12 along the length direction of horizontal segment 11, and first support tight piece 13 and second support tight piece 14 form the hot gas groove 15 that is used for the transparent plate even heating, and transparent plate one side overlap joint is at first support tight piece 13, and the overlap joint of the other side is on second support tight piece 14.
Referring to fig. 2, for improving the fixed effect of transparent plate on loading board 1, be provided with overlap joint piece 16 on loading board 1, overlap joint piece 16 is fixed on horizontal segment 11, overlap joint piece 16 and second support fixed connection between tight piece 14, overlap joint piece 16 and second support and form between tight piece 14 and be used for the lapped overlap joint step in transparent plate one side, the overlap joint of transparent plate one side is at first support tight piece 13, the opposite side of transparent plate is placed at the overlap joint step to this improvement is fixed to the transparent plate.
Referring to fig. 2, the positioning assemblies 5 may be a set or two sets, but only when the abutting action on the horizontal section 11 is achieved, the positioning assemblies 5 in this application are two sets, the two sets of positioning assemblies 5 are respectively installed on the sliding guide rail 41, the positioning bolt 51 in this application is used, but not limited thereto, a limiting assembly such as a fixing pin or a fixing rod may also be used, and the positioning bolt 51 is preferred; the sliding guide rail 41 is provided with a positioning hole 411, a positioning bolt 51 is installed in the positioning hole 411 along the vertical direction, and the positioning bolt 51 can be tightly abutted to the horizontal section 11.
The implementation principle of the oven for the powder coating flow test in the embodiment of the application is as follows: when detecting the flow trace of powder coating, firstly, the powder coating is dripped on the transparent plate, one side of the transparent plate is lapped on the first abutting block 13, the other side of the transparent plate is lapped on the lapping block 16, the movable handle 6 is pushed, the bearing plate 1 moves, the sliding wheel 43 moves on the sliding guide rail 41, the bearing plate 1 extends into the oven 7, the oven 7 door is closed, the oven 7 is started, the oven 7 is heated, after the heating is completed, the oven 7 door is opened, a worker extends into the operation opening 311 with heat-insulating gloves, the movable handle 6 is pulled, the movable handle 6 drives the bearing plate 1 to move, when the bearing plate 1 moves to the operation opening 311, under the action of the positioning bolt 51, the bearing plate 1 is limited, the transparent plate is taken down, the flow trace of the powder coating on the transparent plate is detected, and data is obtained.
The above are preferred embodiments of the present application, and the scope of protection of the present application is not limited thereto, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. An oven for powder coating material flow test is characterized in that: the device comprises a bearing plate (1) for bearing a transparent plate, a support frame (2) for supporting the bearing plate (1) and a blocking assembly (3) for reducing temperature shock in an oven (7);
the support frame (2) is arranged in the oven (7);
the bearing plate (1) is slidably arranged on the support frame (2);
the blocking assembly (3) comprises a blocking plate (31);
the blocking plate (31) is arranged at an opening of the oven (7), and an operation opening (311) for workers to discharge and take materials from the bearing plate (1) is formed in the blocking plate (31).
2. An oven for powder coating flow tests according to claim 1, characterized in that: the device also comprises a sliding assembly (4) for driving the bearing plate (1) to move in the oven (7); the sliding assembly (4) comprises a sliding guide rail (41) and a sliding block (42);
the sliding guide rail (41) is arranged on the support frame (2);
the sliding block (42) is arranged on one side, close to the sliding guide rail (41), of the bearing plate (1), and the bearing plate (1) is connected with the sliding guide rail (41) in a sliding mode through the sliding block (42).
3. An oven for powder coating flow tests according to claim 2, characterized in that: the sliding assembly (4) further comprises a sliding wheel (43) facilitating the sliding of the sliding block (42) on the sliding guide rail (41);
the sliding wheel (43) is rotationally connected to the sliding block (42), and the sliding block (42) is connected to the sliding guide rail (41) in a sliding mode through the sliding wheel (43).
4. An oven for powder coating flow tests according to claim 3, characterized in that: the bearing plate (1) comprises a horizontal section (11) and an inclined section (12);
the inclined section (12) is connected with the horizontal section (11), and an included angle between the horizontal section (11) and the inclined section (12) is 48 degrees.
5. An oven for powder coating flow tests according to claim 4, characterized in that: the bearing plate (1) further comprises a first abutting block (13) and a second abutting block (14);
the first abutting block (13) is arranged on the inclined section (12) along the length direction of the horizontal section (11);
the second abutting block (14) is arranged on the inclined section (12) along the length direction of the horizontal section (11), and the first abutting block (13) and the second abutting block (14) form a hot air groove (15) for uniformly heating the transparent plate.
6. An oven for powder coating flow tests according to claim 5, characterized in that: the bearing plate (1) further comprises an overlapping block (16) convenient for overlapping of the transparent plates;
the lap joint block (16) is arranged on the horizontal section (11), and a lap joint step for lap joint of one side of the transparent plate is formed between the lap joint block (16) and the second abutting block (14).
7. An oven for powder coating flow tests according to claim 4, characterized in that: the device also comprises a positioning component (5) for positioning the bearing plate (1);
the positioning assembly (5) comprises a positioning bolt (51) for positioning the bearing plate (1) at an outlet of the oven (7);
the sliding guide rail (41) is provided with a positioning hole (411), the positioning bolt (51) is arranged in the positioning hole (411) along the vertical direction, and the positioning bolt (51) can be tightly abutted to the horizontal section (11).
8. An oven for powder coating flow tests according to claim 4, characterized in that: the carrying plate (1) is convenient to move and comprises a moving handle (6);
the movable handle (6) is arranged on one side, far away from the side connected with the inclined section (12), of the horizontal section (11).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202222468254.9U CN218108266U (en) | 2022-09-16 | 2022-09-16 | A oven for powder coating flow test |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222468254.9U CN218108266U (en) | 2022-09-16 | 2022-09-16 | A oven for powder coating flow test |
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Publication Number | Publication Date |
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CN218108266U true CN218108266U (en) | 2022-12-23 |
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CN202222468254.9U Active CN218108266U (en) | 2022-09-16 | 2022-09-16 | A oven for powder coating flow test |
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CN (1) | CN218108266U (en) |
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2022
- 2022-09-16 CN CN202222468254.9U patent/CN218108266U/en active Active
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