CN210198321U - Size measuring device for vacuum coating - Google Patents
Size measuring device for vacuum coating Download PDFInfo
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- CN210198321U CN210198321U CN201921599584.3U CN201921599584U CN210198321U CN 210198321 U CN210198321 U CN 210198321U CN 201921599584 U CN201921599584 U CN 201921599584U CN 210198321 U CN210198321 U CN 210198321U
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- observation window
- measuring
- supporting mechanism
- slide rail
- measuring head
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Abstract
The utility model discloses a size measuring device for vacuum coating, which comprises an observation window and is characterized in that a measuring mechanism is arranged on the observation window, the measuring mechanism comprises a supporting mechanism crossing the observation window, two ends of the supporting mechanism are provided with mounting seats on the observation window, one end of the supporting mechanism is provided with a driving motor, a ruler is arranged between the supporting mechanism and the observation window, the supporting mechanism is also provided with a slide rail and a belt sleeved on the slide rail, the slide rail is provided with a measuring head in a sliding way, and the measuring head is provided with a laser head; still include the control box, the control box with the measuring head electricity is connected, the utility model aims to provide a size measurement device for vacuum coating, simple structure, it is practical convenient, the customer service relies on workman's experience and the problem of naked eye judgement size for a long time, and improves the accuracy of product.
Description
Technical Field
The utility model relates to a metallized film production application apparatus field especially relates to a size measurement device for vacuum coating.
Background
The size of the margin in the metallized film for the capacitor, the size of the thickened area and the offset of the thickened area all influence the performance loss value of the capacitor, equipment for producing the metallized film is a winding type high vacuum film coating machine, the metallized film is finished in a vacuum chamber of the film coating machine at the speed of 2-20 m/s, people cannot approach the metallized film to directly measure the metallized film by using tools, and only relevant sizes of the margin, the thickened area and the like of the metallized film can be judged by naked eyes according to the experience of people, so that the experience of staff is required to be very rich, but the accuracy of the size cannot be guaranteed, and a large amount of production waste and product quality problems are caused.
Therefore, a solution to the above problem is urgently needed.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a size measurement device for vacuum coating, simple structure, it is practical convenient, the customer service relies on workman's experience and the problem of naked eye judgement size for a long time, and improves the accuracy of product.
In order to achieve the above purpose, the technical scheme of the utility model has:
a size measuring device for vacuum coating comprises an observation window, wherein a measuring mechanism is arranged on the observation window, the measuring mechanism comprises a supporting mechanism crossing the observation window, mounting seats are arranged at two ends of the supporting mechanism on the observation window, a ruler is arranged between the supporting mechanism and the observation window, a sliding rail is further arranged on the supporting mechanism, a measuring head is slidably mounted on the sliding rail, and a laser head is arranged on the measuring head;
the measuring head is characterized by further comprising a control box, wherein the control box is used for controlling the measuring head.
The utility model relates to a size measuring device for vacuum coating, which comprises an observation window, wherein a measuring mechanism is arranged on the observation window, the measuring mechanism comprises a supporting mechanism which stretches across the observation window, mounting seats are arranged on the observation window at two ends of the supporting mechanism, a ruler is arranged between the supporting mechanism and the observation window, a slide rail is also arranged on the supporting mechanism, the measuring head is arranged on the sliding rail in a sliding way, the measuring head is provided with a laser head, the measuring head is used for translating along the sliding rail and measuring through the laser head, and the measuring head is matched with the ruler, thereby obtaining the moving distance of the measuring head, realizing accurate measurement, replacing manpower, improving the accuracy of products, the measuring head control device also comprises a control box, wherein the control box is used for controlling the measuring head, and the control box is used for controlling the measuring head, so that the manual work is replaced, and the application requirements are met.
Further, the measuring head includes sliding base, last micromatic setting and the regulating plate of being provided with of sliding base, micromatic setting includes fine setting nut and the lead screw that uses with the cooperation of fine setting nut, the lead screw runs through the regulating plate setting, the laser head sets up on the regulating plate.
Furthermore, one side of the sliding base, which is opposite to the fine adjustment nut, extends outwards to form a positioning plate, a through hole is formed in the positioning plate, and a locking nut is installed on the through hole.
Furthermore, a drag chain is further arranged on the measuring mechanism.
Drawings
FIG. 1 is a schematic view showing a structure of a dimension measuring apparatus for vacuum deposition;
fig. 2 is a schematic structural diagram of a point a in fig. 1.
Detailed Description
The size measuring device for vacuum coating of the present invention is described with reference to the accompanying drawings.
As shown in fig. 1 to 2, as a preferred embodiment of the present invention:
a size measuring device for vacuum coating comprises an observation window 1, wherein a measuring mechanism 2 is arranged on the observation window 1, the measuring mechanism 2 comprises a supporting mechanism 21 stretching across the observation window 1, two ends of the supporting mechanism 21 are provided with mounting seats 22 on the observation window 1, one end of the supporting mechanism is provided with a driving motor 23, a ruler 24 is arranged between the supporting mechanism 21 and the observation window 1, the supporting mechanism 21 is also provided with a slide rail 25 and a belt 26 sleeved on the slide rail 25, a measuring head 3 is slidably mounted on the slide rail 25, and a laser head 31 is arranged on the measuring head 3;
the device also comprises a control box 4, wherein the control box 4 is electrically connected with the measuring head 3.
The utility model discloses a size measuring device for vacuum coating, including observation window 1, be provided with measuring mechanism 2 on observation window 1, measuring mechanism 2 includes the supporting mechanism 21 that spanes the observation window 1, supporting mechanism 21 both ends are provided with mount pad 22 on the observation window 1, and wherein one end installs driving motor, be provided with chi 24 between supporting mechanism 21 and observation window 1, still be provided with slide rail 25 and cup joint the belt 26 on slide rail 25 on the supporting mechanism 21, slidable mounting has measuring head 3 on slide rail 25, be provided with laser head 31 on measuring head 3, utilize measuring head 3 to translate along slide rail 25, and measure through laser head 31, cooperate with the use of chi 24 to obtain the displacement of measuring head 3, thereby realize the accurate measurement, replace the manual work, and improve the accuracy of product, still include control box 4 simultaneously, control box 4 with the measuring head 3 electricity is connected, utilizes control box 4 to control measuring head 3, replaces the manual work, satisfies the application needs.
Preferably, the ruler 24 is an electronic ruler 24, the laser head 31 is provided with a distance sensor matched with the laser head 31 for use, the distance sensor feeds back distance data moved by the laser head 31 to the control box 4, the control box 4 comprises a display device, and the data fed back by the distance sensor is displayed on the display device.
Further preferably, the support mechanism 21 is a support plate.
Measuring head 3 includes sliding base 32, utilizes sliding base 32 riveting to slide on slide rail 25, be provided with micromatic setting 33 and regulating plate 34 on the sliding base 32, micromatic setting 33 includes fine setting nut 331 and the lead screw 332 that uses with the cooperation of fine setting nut 331, lead screw 332 runs through regulating plate 34 and sets up, rotates lead screw 332 through adjusting fine setting nut 331 to make regulating plate 34 can remove along its extending direction, laser head 31 sets up on regulating plate 34, thereby realizes the position fine setting to laser head 31, for the measurement of adaptation different positions.
One side of the sliding base 32, which is opposite to the fine adjustment nut 331, extends outwards to form a positioning plate 321, a through hole 322 is formed in the positioning plate 321, a locking nut 323 is installed on the through hole 322, the locking nut 323 passes through the through hole 322 to abut against the supporting mechanism 21, and the measuring head 3 is locked by friction force between the locking nut 323 and the supporting mechanism 21, so that faults or device loss caused by accidental sliding when the measuring device is not in operation are avoided.
In order to facilitate the storage of the connection between the control box 4 and the measuring mechanism 2 and avoid the interference of the measured data, the measuring mechanism 2 is further provided with a drag chain 5, so that the application requirements are met.
Variations and modifications to the above-described embodiments may occur to those skilled in the art, in light of the above teachings and teachings. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and some modifications and changes to the present invention should fall within the protection scope of the claims of the present invention. Furthermore, although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.
Claims (4)
1. A size measuring device for vacuum coating comprises an observation window and is characterized in that a measuring mechanism is arranged on the observation window, the measuring mechanism comprises a supporting mechanism stretching across the observation window, two ends of the supporting mechanism are provided with mounting seats on the observation window, one end of the supporting mechanism is provided with a driving motor, a ruler is arranged between the supporting mechanism and the observation window, the supporting mechanism is also provided with a slide rail and a belt sleeved on the slide rail, the slide rail is provided with a measuring head in a sliding manner, and the measuring head is provided with a laser head;
the device also comprises a control box, wherein the control box is electrically connected with the measuring head.
2. The dimension measuring device according to claim 1, wherein the measuring head comprises a sliding base, a fine adjustment device and an adjusting plate are arranged on the sliding base, the fine adjustment device comprises a fine adjustment nut and a screw rod matched with the fine adjustment nut, the screw rod penetrates through the adjusting plate, and the laser head is arranged on the adjusting plate.
3. The dimension measuring device according to claim 2, wherein the sliding base extends outward relative to one side of the fine adjustment nut to form a positioning plate, the positioning plate is provided with a through hole, and the through hole is provided with a locking nut.
4. The dimensional measurement device according to claim 1, wherein a drag chain is further provided on the measurement mechanism.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921599584.3U CN210198321U (en) | 2019-09-25 | 2019-09-25 | Size measuring device for vacuum coating |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921599584.3U CN210198321U (en) | 2019-09-25 | 2019-09-25 | Size measuring device for vacuum coating |
Publications (1)
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CN210198321U true CN210198321U (en) | 2020-03-27 |
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CN201921599584.3U Active CN210198321U (en) | 2019-09-25 | 2019-09-25 | Size measuring device for vacuum coating |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112212790A (en) * | 2020-09-29 | 2021-01-12 | 黄献泛 | Use method of intelligent measuring device for cement concrete prefabricated part production |
-
2019
- 2019-09-25 CN CN201921599584.3U patent/CN210198321U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112212790A (en) * | 2020-09-29 | 2021-01-12 | 黄献泛 | Use method of intelligent measuring device for cement concrete prefabricated part production |
CN112212790B (en) * | 2020-09-29 | 2021-12-24 | 中咨数据有限公司 | Use method of intelligent measuring device for cement concrete prefabricated part production |
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