Disclosure of Invention
In order to overcome the defects of the prior art, the invention provides the LED lamp strip and the manufacturing process thereof, and the LED lamp strip has the beneficial effect that the LED lamp strip can be cut off at will.
The utility model provides a LED lamp area, includes soft area, cuts off groove and LED lamp, and soft area is gone up from a left side to a plurality of LED lamps of right fixedly connected with, and fixedly connected with cuts off the groove between two adjacent LED lamps, cuts off groove fixed connection on soft area.
Further, LED lamp area still includes the inserted sheet, the inserted sheet that the upside fixedly connected with of LED lamp can be dismantled.
Further, LED lamp area still includes lens groove and solid fixed cylinder, the upside fixedly connected with solid fixed cylinder of LED lamp, the fixedly connected with lens groove on the solid fixed cylinder, and the inserted sheet is inserted in the lens inslot.
Furthermore, the inserting sheet is a convex lens.
Further, the insert is a concave lens.
Further, LED lamp area still includes the antiskid piece, and lens groove fixedly connected with antiskid piece, inserted sheet and antiskid piece contact.
Furthermore, the LED lamp strip further comprises an elastic band and protruding pieces, the protruding pieces are fixedly connected to the two sides of each cutting groove in the soft strip, and the elastic band is fixedly connected between the two corresponding protruding pieces.
Further, the LED lamp strip further comprises a metal wire, and the metal wire is fixedly connected to the lower side of the soft strip.
Further, LED lamp area still includes anodal post, negative pole post, first wire, second wire and resistance, the equal fixedly connected with anodal post of downside and the negative pole post of every LED lamp, and first wire links to each other with a plurality of negative pole posts, all is connected with resistance on a plurality of anodal posts, links to each other through the second wire between a plurality of resistances.
Further, a manufacturing process of the LED strip includes:
s1: bonding a plurality of LED lamps on the soft belt;
s2: pressing a cutting groove on the soft belt between two adjacent LED lamps;
s3: connecting a first lead to the plurality of negative posts;
s4: the plurality of positive posts are connected with resistors;
s5: the second conductor is connected to a plurality of resistors.
Detailed Description
Referring to fig. 1-2, there is shown an embodiment of cutting out LED strips with different lengths according to the requirement, wherein,
because the LED lamp strip comprises the soft strip 101, the cutting grooves 102 and the LED lamps 201, the LED lamps 201 are arranged on the soft strip 101 from left to right, the cutting grooves 102 are arranged between the two adjacent LED lamps 201, the cutting grooves 102 are arranged on the soft strip 101, the soft strip 101 can be cut through the cutting grooves 102, and the LED lamp strips with different lengths can be cut as required.
Referring to fig. 1, an embodiment of LED lamp 201 emitting light in different directions is shown, wherein,
because LED lamp area still includes inserted sheet 205, inserted sheet 205 detachably connects the upside at LED lamp 201, and then can change the direction of the light that LED lamp 201 sent through inserted sheet 205, realizes different luminous mode, makes LED lamp 201 send the light of equidirectional.
Referring to fig. 1-2, there is shown an embodiment for facilitating the removal of the insert 205 from the fixed cylinder 203, wherein,
because the LED lamp strip further comprises a lens groove 202 and a fixed cylinder 203, the fixed cylinder 203 is arranged on the upper side of the LED lamp 201, the lens groove 202 is arranged on the fixed cylinder 203, the inserting sheet 205 is detachably connected in the lens groove 202, the fixed cylinder 203 is used for connecting the inserting sheet 205, and the lens groove 202 on the fixed cylinder 203 is used for facilitating the detaching of the inserting sheet 205 from the fixed cylinder 203.
Referring to fig. 1, an embodiment of the LED lamp 201 for collecting and emitting light is shown, wherein,
since the insert sheet 205 is a convex lens, the convex lens has a light condensing effect, so that the light of the LED lamp 201 is condensed and emitted.
Referring to fig. 1, an embodiment of dispersing the light emission of an LED lamp 201 is shown, wherein,
since the insertion sheet 205 is a concave lens, the concave lens has the effect of dispersing light, so that the light of the LED lamp 201 is emitted dispersedly.
Referring to fig. 1, an embodiment is shown in which the insert 205 is not easily slid off the fixed cylinder 203, wherein,
because the LED light strip further comprises the anti-slip sheet 204, the anti-slip sheet 204 is disposed at the lens groove 202, and the insertion sheet 205 contacts with the anti-slip sheet 204, so as to increase friction between the insertion sheet 205 and the fixed cylinder 203, so that the insertion sheet 205 is not easy to slip off the fixed cylinder 203.
Referring to fig. 1, an embodiment is shown for facilitating the placement of LED strips in areas of relatively complex shape, wherein,
because the LED light strip further comprises an elastic band 103 and a protruding piece 104, the protruding pieces 104 are arranged on two sides of each cutting groove 102, and the elastic band 103 is arranged between the two protruding pieces 104, after the soft band 101 is cut off from the cutting groove 102, the cut soft band 101 can be connected in an elastic and soft manner in a manner that the elastic band 103 is connected with the two protruding pieces 104, and further, the soft band 101 can be bent only relative to a common LED light strip.
Referring to fig. 2, there is shown an embodiment for easily fixing the flexible band 101 in a certain fixed curved shape, in which,
because LED lamp area still includes wire 105, wire 105 is located the downside of soft area 101, and wire 105 has the effect that the shape can be fixed after bending, and then makes soft area 101 can follow the fixed crooked shape of fixing of the shape after bending of wire 105 more easily with soft area 101 fixed at certain fixed crooked shape.
Referring to fig. 2, there is shown an embodiment in which a plurality of LED lamps 201 can be lighted when the soft belt 101 is cut from the cutting groove 102 of the soft belt 101, wherein,
the LED lamp strip further comprises a positive pole 206, a negative pole 207, a first lead 208, a second lead 209 and resistors 210, wherein the positive pole 206 and the negative pole 207 are equivalent to two electrodes of the LED lamp 201, the positive pole 206 and the negative pole 207 are arranged on the lower side of the LED lamp 201, the first lead 208 is connected with the negative poles 207, the resistors 210 are connected onto the positive poles 206, and the resistors 210 are connected through the second lead 209. Further, the plurality of LED lamps 201 are connected in parallel by the first lead 208 and the second lead 209, and when the flexible tape 101 is cut from the cutting groove 102 of the flexible tape 101, the first lead 208 and the second lead 209 are also cut therefrom, and at this time, the ends of the first lead 208 and the second lead 209 are connected to the positive and negative electrodes of the motor, respectively, so that the plurality of LED lamps 201 can still be lighted.
The manufacturing process of the LED lamp strip comprises the following steps:
s1: bonding a plurality of LED lamps 201 on the soft belt 101;
s2: a cutting groove 102 is pressed on the soft belt 101 between two adjacent LED lamps 201;
s3: connecting a first lead 208 to a plurality of negative posts 207;
s4: a resistor 210 is connected to each of the plurality of positive posts 206;
s5: the second conductive line 209 is connected to a plurality of resistors 210.
The LED lamp strip further comprises a wiring lead 301, a connecting seat 302, a screw 303 and a lantern ring 304, wherein the two ends of the lead 301 are respectively provided with the connecting seat 302 and the lantern ring 304, the connecting seat 302 is connected with the screw 303 through threads, the connecting seat 302 can be inserted into the end portion of the first lead 208 or the second lead 209, and the connecting seat 302 is fixed through the screw 303.
Referring to fig. 1 and 3, an embodiment for facilitating connection of power to a plurality of LED lamps 201 is shown, wherein,
the wiring lead 301 can be connected to the first lead 208 or the second lead 209 through the connecting seat 302 thereon, so as to lead the first lead 208 or the second lead 209 into the position of the battery, and then the lantern ring 304 is conveniently connected to the positive pole and the negative pole of the battery through conductive screws, so as to conveniently connect a power supply to the plurality of LED lamps 201.
Manufacturing LED lamp area still uses a LED lamp area manufacturing installation, including end strip 401, slide rail 402, support 403, portal 405, wire guide 407, angle bar 408 and flexible post II411, be provided with slide rail 402 on the end strip 401, two supports 403 sliding connection are both ends around slide rail 402 respectively, the middle part of end strip 401 is provided with two flexible post II411, two flexible post II 411's outer end fixed connection respectively is at the tip of two supports 403, the upper portion of two supports 403 all is provided with angle bar 408, the middle part of every support 403 all is provided with portal 405, the both ends of portal 405 all are provided with wire guide 407.
Referring to fig. 4-10, an embodiment of completing the electrical connection of the first and second wires 208 and 209 to the plurality of LED lamps 201 is shown, wherein,
when the telescopic column II411 is telescopic, the support 403 can be driven to slide back and forth on the sliding rail 402, so that the distance between the two supports 403 is adjusted, the distance between the two angle irons 408 is adjusted, after the distance between the two angle irons 408 is adjusted, the front edge and the rear edge of the soft belt 101 are respectively placed on the two angle irons 408, so that the LED lamp 201 can be conveniently installed on the soft belt 101, the two lead grooves 407 on the front side of the portal frame 405 are used for placing the second lead 209, and at the moment, the second lead 209 is in contact with the negative columns 207 on the LED lamps 201, so that the plurality of negative columns 207 can be conveniently welded on the second lead 209 through electric soldering irons; the two wire slots 407 on the rear door frame 405 are used for placing the first wires 208, so that the first wires 208 and the plurality of resistors 210 are conveniently welded together by electric soldering iron, and the first wires 208 and the second wires 209 are electrically connected with the plurality of LED lamps 201.
The LED lamp strip manufacturing device further comprises a resistor supporting strip 501, convex ribs 502, an arc-shaped edge 503 and a connecting piece 504, the connecting piece 504 is fixedly connected to the support 403 located on the front side, the resistor supporting strip 501 is fixedly connected to the connecting piece 504, the arc-shaped edge 503 is arranged in the middle of the upper side of the resistor supporting strip 501, the convex ribs 502 are arranged on the front edge and the rear edge of the arc-shaped edge 503, and the resistor supporting strip 501 is located below the two angle irons 408.
Referring to fig. 4-10, there is shown an embodiment for facilitating connection of both ends of a resistor 210 to a positive post 206 and a second wire 209, respectively, via an electric soldering iron, wherein,
be used for placing resistance 210 on the resistance holds in the palm strip 501, both sides contact with two fins 502 respectively around resistance 210, the thin both ends in middle part of resistance 210 are thick, and then place on the cambered surface arris 503 on resistance holds in the palm strip 501 through the thinner part in middle part with resistance 210, prevent that resistance 210 from removing at will for resistance 210 is firm to be placed on resistance holds in the palm strip 501, and then is convenient for connect positive post 206 and second wire 209 respectively with resistance 210's both ends through the electric iron.
The LED lamp strip manufacturing device further comprises a telescopic column I404, a motor 406, a motor frame 409 and friction wheels 410, wherein the motor frame 409 is connected to each support 403 in a vertical sliding mode, the telescopic column I404 is arranged on each support 403, the movable ends of the two telescopic columns I404 are fixedly connected to the lower portions of the two motor frames 409 respectively, the motor 406 is arranged on the upper portion of each motor frame 409, the friction wheels 410 are fixedly connected to the output shaft of each motor 406, and each friction wheel 410 is located above each angle iron 408 respectively.
Referring to fig. 4-10, there is shown an embodiment in which a motor 406 rotates a friction wheel 410 to drive a soft belt 101 to slide between two angle irons 408, wherein,
when the telescopic column I404 is telescopic, the electric motor frame 409 is driven to slide up and down, the motor 406 and the friction wheel 410 are driven to move up and down, the height of the friction wheel 410 is convenient to adjust, when the friction wheel 410 is in contact with the soft belt 101 at the angle iron 408, the motor 406 drives the friction wheel 410 to rotate, the soft belt 101 can be driven to slide between the two angle irons 408 in the left-right direction, the new continuous soft belt 101 can slide between the two angle irons 408 after the LED lamps 201 are installed on one part of the soft belt 101, the LED lamps are convenient to install on the new soft belt 101, and the assembly line operation is realized.