CN212435257U - Protection architecture of super six types of net twines - Google Patents

Protection architecture of super six types of net twines Download PDF

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Publication number
CN212435257U
CN212435257U CN202021283769.6U CN202021283769U CN212435257U CN 212435257 U CN212435257 U CN 212435257U CN 202021283769 U CN202021283769 U CN 202021283769U CN 212435257 U CN212435257 U CN 212435257U
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casing
wall
slot
fixed mounting
screw rod
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CN202021283769.6U
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李万东
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Tianjin Haorui Photoelectric Technology Co ltd
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Tianjin Haorui Photoelectric Technology Co ltd
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Abstract

The utility model discloses a protection architecture of six types of net twines of surpassing belongs to net twine equipment field, including casing A, the inside fixed mounting in casing A left and right sides has slot A, casing B is installed to casing A downside, the inside fixed mounting in casing B left and right sides has slot B, slot A and the inside all cartridges of slot B have the screw rod, screw rod lower extreme outer wall rotates and has cup jointed the nut, the equal fixed mounting of casing A and casing B left and right sides outer wall has fixed plate A, the inside all fixed mounting of fixed plate A has the slide bar, the sliding sleeve has been cup jointed in the activity of slide bar outer wall, the fixed cover of slide bar outer wall in sliding sleeve has the spring. Through setting up rotating-structure, elastic expansion structure and embedded fixed knot structure, improved protection architecture's practicality.

Description

Protection architecture of super six types of net twines
Technical Field
The utility model relates to a net twine equipment technical field especially relates to a protection architecture of super six types of net twines.
Background
The super-six types of network cables are high-performance wiring systems developed by Belden IBDN and can still normally operate at the temperature of more than 40 ℃, high-performance wiring systems can still normally operate at the temperature of more than 40 ℃, IBDN 4800LX systems are formally introduced in 1999, the final index reaches 300MHz bandwidth, and the performance index of 20 ℃ specified by six types of standards can still be reached at the temperature of 50 ℃. In order to distinguish from a common six-type wiring system, the wiring with the bandwidth performance far exceeding six types is called as super six types, and the installation environment of the network cable has the influence of different factors, so that a protection structure is required to protect the network cable.
Patent CN201711217796.6 discloses a net twine protection shield, this protection architecture is although ordinary to the net twine, but as a very important ring in the network device, its security is worth considering, especially in places such as office, laboratory, need lay the net twine subaerial sometimes, often do not pay attention to being stepped on, cause the damage of net twine very easily, influence the use of network, through the device after the clamp, can realize the protection to the net twine, thereby avoid the net twine to be stepped on badly, the device simple structure simultaneously, therefore, the carrier wave prepaid electric energy meter is low in cost, and has good practicality.
The protection structure has the following defects: 1. above-mentioned protection architecture installs in the net twine outside, however the length of inserting the pole is the fixed length, thereby make the fixed distance of left and right sides board be fixed distance, the size of inserting the both sides arc wall of putting the net twine is fixed size, can only insert the net twine of putting a size, not convenient for not unidimensional net twine installation, and when the centre gripping net twine is fixed, the edge of arc wall is more crude, at the in-process of long-term use net twine, the net twine is crooked at arc wall edge, draw the net twine easily and drag and tear even, lead to the net twine to damage, protection architecture's practicality has been reduced. 2. Above-mentioned protection architecture is solid construction, and the net twine often can be placed on ground to protection architecture can be trampled when careless, and the extrusion that protection architecture received directly transmits for inside net twine with vibrations, makes the net twine receive the extrusion of the same dynamics fairly, causes the extrusion damage to the net twine, has reduced protection architecture's practicality.
SUMMERY OF THE UTILITY MODEL
The utility model provides a protection structure of super six kinds of net twines, aim at adopting embedded fixed knot to construct and rotating structure, when needing to carry out the centre gripping protection to the net twine, run through the one end of net twine from the semicircular clip groove between casing A and casing B from the front to the back, aim at logical groove B with the screw rod and insert in slot A and slot B downwards, make the screw rod run through slot A and slot B downwards, rotate the nut upwards at the screw rod outer wall that stretches out from slot B lower extreme, the screw rod outer wall is cut with the screw thread and is cut with the screw thread with the nut inner wall and cooperate, make the nut rotate the removal upwards at the screw rod outer wall, the nut moves upwards and extrudes casing A and casing B, make and hug closely between casing A and the casing B, thereby make the clip groove according to the size centre gripping net twine of net twine different size, in the in-process of using, the net twine is crooked at the clip groove, the soft material of clip groove does, on the contrary, the net wire tension buffering effect is achieved, and the practicability of the protection structure is improved.
Through elastic telescopic structure, when fixed back to the net twine centre gripping, protection architecture receives outside extrusion, at first receive the fixed plate B of downside about the extruded, fixed plate B receives all inwards to remove from top to bottom and drives even board at logical tank A internal migration, even board inwards removes and drives the sliding sleeve and remove to the inner, the sliding sleeve is at the inside extrusion spring that removes of slide bar outer wall, the spring receives extrusion shrink deformation, convert kinetic energy into elastic potential energy, release pressure buffering, thereby the pressure of sliding sleeve has been reduced, the pressure of even board has been cushioned, the pressure that fixed plate B received has just also been cushioned, casing A and casing B have been avoided directly receiving pressure, make inside net twine avoid pressure extrusion, protection architecture's practicality has been improved.
The utility model provides a specific technical scheme as follows:
the utility model provides a protection structure of super six kinds of net twines, which comprises a shell A, wherein a slot A is fixedly arranged inside the left side and the right side of the shell A, a shell B is arranged on the lower side of the shell A, a slot B is fixedly arranged inside the left side and the right side of the shell B, screw rods are respectively inserted into the slot A and the slot B, nuts are rotatably sleeved on the outer walls of the lower ends of the screw rods, a fixed plate A is fixedly arranged on the outer walls of the left side and the right side of the shell A and the shell B, slide rods are fixedly arranged inside the fixed plate A, slide sleeves are movably sleeved on the outer walls of the slide rods at the outer ends of the slide sleeves, a spring is fixedly sleeved on the outer walls of the slide rods at the inner ends of the slide sleeves, a through groove A is fixedly arranged on the outer walls of the outer ends of the fixed plate, and clamping grooves are fixedly arranged in the centers of the shell A and the shell B.
Optionally, the size of the slot a and the slot B is identical to the size of the screw rod.
Optionally, the outer wall of the screw is cut with threads, and the inner wall of the nut is cut with threads meshed with the threads on the outer wall of the screw to form a rotating structure.
Optionally, the inner end side wall of the sliding sleeve is fixedly connected with one end of the spring, and the other end of the spring is fixedly connected with the inner end wall of the sliding rod to form an elastic telescopic structure.
Optionally, the clamping groove is made of soft rubber.
The utility model has the advantages as follows:
1. the embodiment of the utility model provides a protection architecture of super six kinds of net twines, through embedded fixed knot structure and rotating-structure, when needing to carry out the centre gripping protection to the net twine, run through the one end of net twine from the semi-circular clamping groove between casing A and casing B from the front to back, aim at logical groove B with the screw rod and insert downwards in slot A and slot B, make the screw rod run through slot A and slot B downwards, upward rotate the nut at the screw rod outer wall that stretches out from slot B lower extreme, the screw rod outer wall is cut with the screw thread and is cut with the screw thread with the nut inner wall and cooperate, make the nut rotate the removal in screw rod outer wall is upwards, the nut moves upwards and extrudes casing A and casing B, make and hug closely between casing A and the casing B, thereby make the clamping groove according to the mesh-size centre gripping different mesh sizes of mesh, in the in-process of using, the mesh is crooked at the clamping groove, the soft material of clamping groove does not have the, on the contrary, the net wire tension buffering effect is achieved, and the practicability of the protection structure is improved.
2. Through elastic telescopic structure, when fixed back to the net twine centre gripping, protection architecture receives outside extrusion, at first receive the fixed plate B of downside about the extruded, fixed plate B receives all inwards to remove from top to bottom and drives even board at logical tank A internal migration, even board inwards removes and drives the sliding sleeve and remove to the inner, the sliding sleeve is at the inside extrusion spring that removes of slide bar outer wall, the spring receives extrusion shrink deformation, convert kinetic energy into elastic potential energy, release pressure buffering, thereby the pressure of sliding sleeve has been reduced, the pressure of even board has been cushioned, the pressure that fixed plate B received has just also been cushioned, casing A and casing B have been avoided directly receiving pressure, make inside net twine avoid pressure extrusion, protection architecture's practicality has been improved.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings without creative efforts.
Fig. 1 is a schematic front sectional view of a protection structure of a super-six-type network cable according to an embodiment of the present invention;
fig. 2 is a schematic diagram of a partially enlarged structure a in fig. 1 of a protection structure of a super-six-type network cable according to an embodiment of the present invention.
In the figure: 1. a shell A; 2. a housing B; 3. a slot A; 4. a slot B; 5. a screw; 6. a nut; 7. fixing a plate A; 8. a slide bar; 9. a spring; 10. a sliding sleeve; 11. a through groove A; 12. connecting plates; 13. a fixing plate B; 14. a through groove B; 15. and (4) clamping the groove.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, the present invention will be described in further detail with reference to the accompanying drawings, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
The following will describe in detail a protection structure of a super-six type network cable according to an embodiment of the present invention with reference to fig. 1 to 2.
Referring to fig. 1 and 2, a protection structure for a super-six kinds of network cables provided by an embodiment of the present invention includes a housing a1, slots A3 fixedly installed inside the left and right sides of a housing a1, a housing B2 installed below the housing a1, slots B4 fixedly installed inside the left and right sides of a housing B2, screws 5 inserted inside the slots A3 and the slots B4, nuts 6 rotatably sleeved on the outer walls of the lower ends of the screws 5, fixing plates A7 fixedly installed on the left and right sides of the housing a1 and the housing B2, slide bars 8 fixedly installed inside the fixing plates A7, a sliding sleeve 10 movably sleeved on the outer wall of the slide bar 8, springs 9 fixedly connected to the outer walls of the fixing plates A7, through slots a11 fixedly installed on the outer ends of the side walls of the sliding sleeve 10, connecting plates 12 fixedly installed on the left and right sides of the sliding sleeve 10, fixing plates 12 fixedly installed through slots a11, fixing plates B13 fixedly installed inside the left and right ends of, the clamping groove 15 is fixedly arranged in the center of the shell A1 and the shell B2.
Referring to fig. 1, the size of slot A3 and slot B4 is identical to the size of screw rod 5, when the mesh wire needs to be clamped and protected, one end of the mesh wire penetrates from front to back through the semicircular clamping slot 15 between housing a1 and housing B2, screw rod 5 is aligned with through slot B14 and inserted into slot A3 and slot B4 downwards, screw rod 5 penetrates through slot A3 and slot B4 downwards, nut 6 is rotated upwards on the outer wall of screw rod 5 extending from the lower end of slot B4, the outer wall of screw rod 5 is threaded and matched with the inner wall of nut 6 by threads, nut 6 is rotated and moved upwards on the outer wall of screw rod 5, nut 6 is moved upwards to press housing a1 and housing B2, housing a1 and housing B2 are rotated, so that clamping slot 15 clamps mesh wires of different sizes according to the size of the mesh wire, and the mesh wire is bent at the clamping slot 15, and the soft material at the position of clamping slot 15 has no effect of bending the mesh wire, on the contrary, the net wire tension buffering effect is achieved, and the practicability of the protection structure is improved.
Referring to fig. 1, the outer wall of the screw rod 5 is cut with threads, the inner wall of the nut 6 is cut with threads engaged with the threads of the outer wall of the screw rod 5 to form a rotating structure, when the mesh wire needs to be clamped and protected, one end of the mesh wire penetrates through the semicircular clamping groove 15 between the shell A1 and the shell B2 from front to back, the screw rod 5 is aligned with the through groove B14 and inserted downwards into the slot A3 and the slot B4, the screw rod 5 penetrates through the slot A3 and the slot B4 downwards, the nut 6 rotates upwards on the outer wall of the screw rod 5 extending out of the lower end of the slot B4, the outer wall of the screw rod 5 is cut with threads matched with the threads cut on the inner wall of the nut 6, the nut 6 rotates upwards on the outer wall of the screw rod 5, the nut 6 moves upwards to press the shell A1 and the shell B2 upwards, the shell A1 and the shell B2 are tightly attached, so that the clamping groove 15 clamps mesh wires with different sizes, the net twine receives the bending at pressing from both sides groove 15, and the soft material that presss from both sides groove 15 does not have the effect of dragging to net twine bending part, has the tensile effect of net twine buffering on the contrary, has improved protection architecture's practicality.
Referring to fig. 1 and 2, the inner end side wall of the sliding sleeve 10 is fixedly connected with one end of the spring 9, the other end of the spring 9 is fixedly connected to the inner end wall of the sliding rod 8 to form an elastic telescopic structure, after the mesh wire is clamped and fixed, the protection structure is extruded from the outside, when the protection structure is extruded first, the upper and lower fixing plates B13 and the fixing plate B13 are extruded from the top and the bottom and both move inwards to drive the connecting plate 12 to move inwards in the through groove a11, the connecting plate 12 moves inwards to drive the sliding sleeve 10 to move inwards, the sliding sleeve 10 moves inwards to extrude the spring 9 on the outer wall of the sliding rod 8, the spring 9 is extruded and contracted to deform, the kinetic energy is converted into elastic potential energy, the pressure is buffered and released, thereby reducing the pressure of the sliding sleeve 10, buffering the pressure of the connecting plate 12, namely buffering the pressure on the fixing plate B13, preventing the casing a1 and the casing B2 from, the practicality of protection architecture has been improved.
Referring to fig. 1, the clamping groove 15 is made of soft rubber, when the mesh wire needs to be clamped and protected, one end of the mesh wire penetrates through the semicircular clamping groove 15 between the shell a1 and the shell B2 from front to back, the screw 5 is aligned with the through groove B14 and is inserted into the slot A3 and the slot B4 downwards, the screw 5 penetrates through the slot A3 and the slot B4 downwards, the nut 6 is upwards rotated on the outer wall of the screw 5 extending from the lower end of the slot B4, the outer wall of the screw 5 is cut with threads to be matched with the threads cut on the inner wall of the nut 6, the nut 6 is upwards rotated and moved on the outer wall of the screw 5, the nut 6 is upwards moved to press the shell a1 and the shell B2 to enable the shell a1 and the shell B2 to be tightly attached, so that the clamping groove 15 clamps mesh wires with different sizes according to the sizes of the mesh wires, and during use, the mesh wire is bent at the clamping groove 15, and the soft material has no pulling effect on the bent part of, on the contrary, the net wire tension buffering effect is achieved, and the practicability of the protection structure is improved.
The embodiment of the utility model provides a protection architecture of super six types of net twines, when needing to carry out the centre gripping protection to the net twine, run through the semicircular clip groove 15 between casing A1 and casing B2 from the front to back with the one end of net twine, aim at screw rod 5 and lead to groove B14 and insert downwards in slot A3 and slot B4, make screw rod 5 run through slot A3 and slot B4 downwards, upwards rotate nut 6 at the screw rod 5 outer wall that stretches out from slot B4 lower extreme, screw rod 5 outer wall is cut with the screw thread and is cut with the screw thread cooperation with nut 6 inner wall, make nut 6 upwards rotate the removal at screw rod 5 outer wall, nut 6 moves upwards and extrudes casing A1 and casing B2, make casing A1 and casing B2 between hug closely, thereby make the size centre gripping of net twine 15 according to the net twine centre gripping net twine of different sizes, in the in-process of use, the net twine receives the bending at clip groove 15, the soft material that presss from the net twine bending position does not have the pulling, when the net wires are clamped and fixed, the protection structure is extruded from the outside, the upper and lower fixing plates B13 are extruded at first, the fixing plate B13 is extruded to move up and down to drive the connecting plate 12 to move inwards in the through groove A11, the connecting plate 12 moves inwards to drive the sliding sleeve 10 to move inwards, the sliding sleeve 10 moves inwards to extrude the spring 9 on the outer wall of the sliding rod 8, the spring 9 is extruded to contract and deform, kinetic energy is converted into elastic potential energy, pressure buffering and releasing are performed, pressure of the sliding sleeve 10 is reduced, pressure of the connecting plate 12 is buffered, pressure of the fixing plate B13 is buffered, direct pressure on the shell A1 and the shell B2 is avoided, and the net wires in the shell are prevented from being extruded by pressure.
It is apparent that those skilled in the art can make various changes and modifications to the embodiments of the present invention without departing from the spirit and scope of the embodiments of the present invention. Thus, if such modifications and variations of the embodiments of the present invention fall within the scope of the claims and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (5)

1. The utility model provides a protection architecture of super six kinds of net twines, a serial communication port, protection architecture includes casing A (1), the inside fixed mounting in casing A (1) left and right sides has slot A (3), casing B (2) is installed to casing A (1) downside, the inside fixed mounting in casing B (2) left and right sides has slot B (4), inside all cartridge of slot A (3) and slot B (4) has screw rod (5), screw rod (5) lower extreme outer wall rotates and has cup jointed nut (6), the outside wall of casing A (1) and casing B (2) left and right sides all fixed mounting has fixed plate A (7), inside all fixed mounting of fixed plate A (7) has slide bar (8), slide bar (8) outer wall activity has cup jointed sliding sleeve (10), sliding sleeve (10) inner slide bar (8) outer wall has cup jointed spring (9), fixed plate A (7) outer end lateral wall fixed mounting has logical groove A (11), sliding sleeve (10) left and right sides fixed mounting has even board (12), even board (12) outer end runs through logical groove A (11) all fixed mounting have fixed plate B (13), fixed plate B (13) upside left and right sides both ends inside fixed mounting has logical groove B (14), inside all fixed mounting in casing A (1) and casing B (2) center has double-layered groove (15).
2. The protection structure of super six kinds of net twines according to claim 1, characterized in that, the size of slot A (3) and slot B (4) is identical with the size of screw (5).
3. The protection structure of the super six types of net twines according to claim 1, characterized in that, the screw rod (5) outer wall is cut with screw thread, and the nut (6) inner wall is cut with the screw thread that intermeshes with screw rod (5) outer wall screw thread, constitutes the rotating structure.
4. The protection structure of the ultra-six types of net cables as claimed in claim 1, wherein the inner end side wall of the sliding sleeve (10) is fixedly connected with one end of the spring (9), and the other end of the spring (9) is fixedly connected with the inner end wall of the sliding rod (8) to form an elastic telescopic structure.
5. A protection structure of super category six network cables according to claim 1, characterized in that, said clip groove (15) is made of soft rubber.
CN202021283769.6U 2020-07-03 2020-07-03 Protection architecture of super six types of net twines Active CN212435257U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021283769.6U CN212435257U (en) 2020-07-03 2020-07-03 Protection architecture of super six types of net twines

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021283769.6U CN212435257U (en) 2020-07-03 2020-07-03 Protection architecture of super six types of net twines

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CN212435257U true CN212435257U (en) 2021-01-29

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CN (1) CN212435257U (en)

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