A channel gate machine chassis

By using vertical and transverse components made of aluminum profiles and using a detachable connection method, the problem of difficult disassembly and assembled existing channel gate chassis is solved, convenient assembly and mass production are achieved, and transportation and maintenance costs are reduced.

CN113141737BActive Publication Date: 2025-06-24SHENZHEN TELEWAY INTELLIGENT FACILITY
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Patent Information

Application Number
CN202010064175.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-01-20
Publication Date
2025-06-24
Estimated Expiration
2040-01-20

AI Technical Summary

Technical Problem

The existing channel gate chassis is difficult to disassemble and assemble, and it is difficult to mass-produce through the mold opening process, resulting in inconvenience in transportation and difficulty in after-sales maintenance.

Method used

Vertical and transverse components made of aluminum profiles are connected through separate connection methods (such as threaded connections, clamping connections, etc.), and are mass-produced through the pull-aluminum mold process.

Benefits of technology

It realizes convenient assembly and disassembly of the passage gate chassis, reduces production costs, and simplifies the transportation and maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

An embodiment of the present invention provides a channel gate machine case, belonging to the technical field of barrier gates. It includes a vertical member and at least one horizontal member connected to the vertical member. The vertical member is made of aluminum profile, and the end of the horizontal member is detachably connected to the vertical member. Compared with the prior art where stainless steel and sheet metal are used to form the machine case through processes such as bending and welding, the present invention breaks through the inherent design concept of the existing gate machine case, adopts a new design concept for design, applies the aluminum drawing die processing technology to this field, and the vertical member and the horizontal member of the machine case are connected in a detachable connection manner, without the need for welding or bending processing, thus facilitating assembly and disassembly; mass production through the aluminum drawing die process is conducive to reducing production costs; it can be assembled on-site without the need to transport it to the installation site after assembly, thus facilitating transportation.
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Description

Technical Field

[0001] The present invention relates to the technical field of barrier gates for controlling access to security passages, and specifically refers to a gate machine chassis for a barrier gate. Background Art

[0002] Channel gate machines have currently been widely applied to various fields of pedestrian control. According to different control forms of the channel gate machines, they are mainly divided into: three-roller gates, wing gates, swing gates, and express gates. No matter which type of channel gate machine, it includes a chassis. The chassis generally includes a vertical member for support and a horizontal member connected to the vertical member. The vertical member is a common box-shaped member or a column. The chassis is mainly used for installing a movement, a main control circuit, infrared, lighting effects, and a glass partition. Currently, for the chassis design and manufacturing forms of all gate machines on the market, stainless steel and sheet metal are used as the main materials of the chassis, and then processes such as bending and welding are carried out to form a non-dismantlable and non-damaging box. Taking the express gate as an example, the entire chassis is composed of a horizontal member and a vertical member. Here, the horizontal member is the upper cross beam and the lower cross beam; the vertical member is the column, and the column is usually also called the foot cylinder. The gate machine chassis manufactured by this process is difficult to disassemble and assemble, and difficult to mass-produce through the process of opening molds. Because it is difficult to assemble on-site, the entire chassis needs to be transported, resulting in inconvenient transportation. Moreover, because the accessories cannot be replaced, after-sales maintenance is inconvenient. Summary of the Invention

[0003] In order to overcome the deficiencies of the prior art, the purpose of the present invention is to provide a channel gate machine chassis that is easy to assemble and disassemble.

[0004] To achieve the above purpose, the technical solution adopted by the present invention is: a channel gate machine chassis, including a vertical member, and at least one horizontal member connected to the vertical member. The vertical member is made of aluminum profile, and the end of the horizontal member is detachably connected to the vertical member;

[0005] A longitudinal installation groove for installing glass is provided inside the vertical member. The longitudinal installation groove is U-shaped. It also includes a pressing strip and a glass cushion block connected to the longitudinal installation groove. The glass cushion block is integrally formed by a cushion block transverse plate and a cushion block vertical plate. The cushion block transverse plate fits with the bottom surface of the longitudinal installation groove, and the inner surface of the cushion block vertical plate fits with one surface of the glass. On one outer wall of the cushion block vertical plate located outside the longitudinal installation groove, a pressing plate with a triangular cross-section is provided. The pressing plate fits with one plane of the longitudinal installation groove. The pressing strip is located between the other surface of the glass and the inner wall of the longitudinal installation groove. On the outer wall of the pressing strip, a pressing bar integrally formed with the pressing strip is provided. The pressing bar and the outer wall of the pressing strip form a turning portion, and the turning portion combines with the corner portions on both sides of the opening of the outer square section. The horizontal member and the vertical member are connected in a separable manner, that is, they are connected through a separable structure, such as threaded connection, clamping connection, and snap connection, etc. It can achieve the non-destructive disassembly of the two, so that the horizontal member and the vertical member are convenient for assembly and disassembly.

[0006] Preferably, taking the turnstile as an example, the horizontal member is a cross beam made of aluminum profile. There are two horizontal members, which are arranged up and down and parallel to each other. The vertical member is a column, also two.

[0007] Specifically, the end of the horizontal member and the vertical member are connected through a lapping structure, a butt joint structure, or an angle code transfer structure to achieve separable connection.

[0008] Specifically, the end of the upper horizontal member and the vertical member are fixedly connected through a lapping structure. The lapping structure includes a lapping piece. Two transverse inclined plates arranged along the length direction of the horizontal member, and transverse connection holes provided on each transverse inclined plate. Two longitudinal flat plates are arranged along the length direction of the vertical member, and longitudinal connection holes are provided on the inner side of each longitudinal flat plate. One end of the lapping piece is connected to one end of the horizontal member through a transverse screw, and the other end is connected to the connecting end of the vertical member through a longitudinal screw.

[0009] Preferably, the lapping piece includes two parallel sector plates, and arc plates vertically connected to the two sector plates at both ends. On the inner surfaces of the two ends of each sector plate, a connecting transverse plate and a connecting vertical plate vertically connected to the sector plate are respectively provided. A connecting through hole is provided in each of the connecting transverse plate and the connecting vertical plate, and the connecting transverse plate and the connecting vertical plate are both fixedly connected to the arc plate.

[0010] The lapping piece is integrally formed. The inner end of the transverse screw passes through the connecting through hole in the connecting vertical plate and is fixedly connected to the transverse connection hole. The inner end of the longitudinal screw passes through the connecting through hole in the connecting transverse plate and is fixedly connected to the longitudinal connection hole.

[0011] The overlapping structure further includes an extension plate arranged at the end of the bottom plate of the transverse member, two longitudinal through holes arranged on the extension plate; two longitudinal connecting cylinders with square cross-sections arranged in the vertical member, and a longitudinal connecting hole is provided at one of the corners of the connecting cylinders; the extension plate is overlapped on the connecting surface of the vertical member, and the longitudinal connecting holes are respectively connected to the two longitudinal through holes.

[0012] Alternatively, the end of the upper transverse member is fixedly connected to the vertical member via an angle code transition structure; the angle code transition structure includes an angle code formed by vertically connecting a transverse arm and a longitudinal arm, a longitudinal groove provided in the inner surface of the vertical member, and a transverse groove provided in the lower surface of the transverse member, the transverse arm of the angle code is provided in the transverse groove and fixedly connected to the transverse member, and the longitudinal arm of the angle code is provided in the longitudinal groove and fixedly connected to the vertical member.

[0013] Alternatively, the end of the upper transverse member is fixedly connected to the vertical member via a docking structure; the docking structure includes at least one transverse connecting hole provided in the bottom plate of the transverse member, at least one first transverse through hole provided on the inner vertical plate of the vertical member and connected to the transverse connecting hole, and the transverse screw passes through the first transverse through hole and is fixedly connected to the transverse connecting hole.

[0014] The end of the upper transverse member is fixedly connected to the vertical member through a docking structure; here, the docking structure includes at least one transverse connection hole provided in the bottom plate of the transverse member; a fixing plate connected to the inner surface of the inner vertical plate of the vertical member, at least one transverse through hole corresponding to the transverse connection hole is provided on the fixing plate, and a square through hole is provided in the inner vertical plate, and the transverse screw passes through the transverse through hole and the square through hole and is fixedly connected to the transverse connection hole.

[0015] The fixing plate has an inclined surface at one end and two longitudinal V-shaped grooves on the outer surface of the fixing plate; there are three transverse connecting holes and three transverse through holes; the outer end openings of two transverse through holes are located on the inclined surface in the V-shaped groove, and the outer end opening of the other transverse through hole is located on the inclined surface at the end of the fixing plate.

[0016] In order to install the glass, a glass installation groove is provided in the transverse member along its length direction, the opening of the glass installation groove in the upper transverse member faces downward, while the opening of the glass installation groove in the lower transverse member faces upward.

[0017] The glass installation groove is composed of an outer square section, an inner square section and a trapezoidal section arranged between the outer square section and the inner square section. The shorter end of the trapezoidal section is connected to the inner square section.

[0018] A tension fastener is also provided in the glass installation groove. The tension fastener is provided with a U-shaped embedding groove along the length direction of the transverse member. On both inner walls of the embedding groove, there is a glass gasket respectively, and the distance between the glass gaskets is less than the thickness of the glass.

[0019] On the tension fastener, there are two integrally formed inclined plates with a triangular cross-section. The outer surface of the inclined plate is an inclined surface, and this inclined surface fits with the inclined surfaces of the two waists at the trapezoidal section; the tension fastener is made of aluminum profile.

[0020] At the outer square section of the glass installation groove, two pressing strips are further provided. The pressing strips are located on both sides of the glass. The pressing strips are integrally formed by an upper section outside the outer square section and a lower section inside the outer square section; on the outer wall of the pressing strip, there is a pressing bar integrally formed with the pressing strip. The pressing bar and the outer wall of the pressing strip form a turning part, and the turning part is combined with the corner parts on both sides of the opening of the outer square section. The pressing strip is made of plastic.

[0021] A first longitudinal perforation is provided in the bottom plate of the glass installation groove. After the longitudinal screw passes through the first longitudinal perforation, it is fixedly connected to the tension bottom plate of the tension fastener.

[0022] Or the glass is installed by the following structure. The transverse member is provided with a glass installation groove with a U-shaped cross-section, and further includes two fixing parts respectively arranged at both ends of the glass installation groove. The fixing parts are composed of two parallel clamping vertical plates. There is a gap for clamping the edge part of the glass between the two clamping vertical plates; on the inner surface of each clamping vertical plate, there is a convex surface, and the inner end surface of the convex surface is an inclined surface; a longitudinal threaded hole is provided in the glass installation groove. The end of the connecting screw passes through the gap between the two clamping vertical plates and is fixedly connected to the longitudinal threaded hole. The inclined surface on the screw head of the connecting screw fits with the inner end surface; on each of the two clamping vertical plates, there is a transverse threaded hole. The two transverse threaded holes are aligned, and the transverse connecting screw passes through the two transverse threaded holes to fix the two clamping vertical plates together. The transverse connecting screw is located outside the glass installation groove.

[0023] Preferably, the glass cushion block is made of plastic material.

[0024] In order to install the light effect component on the chassis, the upper transverse member is provided with a receiving part for installing the light effect component along its length direction. The receiving part is provided with a strip-shaped notch inside; the light effect component is composed of an LED light strip and a light guide strip; the LED light strip is attached to the inner bottom surface of the receiving part, and the light guide strip is embedded at the strip-shaped notch for the light of the LED light strip to emit.

[0025] Preferably, there is one accommodating part and one set of light effect components; a strip-shaped notch is provided in the outer bottom plate of the accommodating part; the LED light strip is attached to the inner bottom surface of the accommodating part, and the light guide strip is embedded at the strip-shaped notch for the light of the LED light strip to emit.

[0026] Alternatively, there are two accommodating parts and two sets of light effect components; one accommodating part is provided at each of the two side edges of the transverse member, a strip-shaped notch is provided at the corner of the outside of the accommodating part, the LED light strip is attached to the inner bottom surface of the accommodating part, and the light guide strip is embedded at the strip-shaped notch for the light of the LED light strip to emit.

[0027] In order to install the infrared device, a transverse groove along the length direction of the transverse member is provided in the front surface of the transverse member, and multiple sets of installation parts for installing the infrared device are provided at the opening of the transverse groove. The installation part is composed of two arc-shaped notches respectively provided at the edges of the two side plates at the opening of the transverse groove.

[0028] Advantageous technical effects: For different types of access control gates, the vertical member, which is a box-type component or a column for supporting and installing the movement and the main control circuit, is made of aluminum profiles. During production, different aluminum-drawing molds are designed according to the shape of the chassis, and batch production of the vertical member is achieved through the aluminum-drawing molds. At the same time, the transverse member and the vertical member are connected in a separable manner, that is, they are connected through a separable structure, such as threaded connection, snap connection, etc.; lossless disassembly of the two can be realized, so that the transverse member and the vertical member are convenient for assembly and disassembly. Compared with the prior art in which the chassis is formed by stainless steel and sheet metal through processes such as bending and welding, the present invention breaks through the inherent design concept of the existing access control gate chassis, adopts a new design concept for design, applies the aluminum-drawing mold processing technology to this field, and the vertical member and the transverse member of the chassis are connected in a separable connection manner, without welding or bending processing, thus being convenient for assembly and disassembly; batch production through the aluminum-drawing mold process is beneficial to reducing production costs; it can be assembled on-site without transporting to the installation site after assembly, so the transportation is convenient. Description of the Drawings

[0029] Figure 1 Schematic diagram of the access control gate according to the embodiment of the present invention;

[0030] Figure 2 Partial assembly drawing of the first embodiment of the present invention;

[0031] Figure 3 Partial exploded view of the first embodiment of the present invention;

[0032] Figure 4 Partial assembly drawing of the second embodiment of the present invention;

[0033] Figure 5Partial cross-sectional view of the second embodiment of the present invention;

[0034] Figure 6 Partial assembly view of the third embodiment of the present invention;

[0035] Figure 7 Partial exploded view of the third embodiment of the present invention;

[0036] Figure 8 Partial sectional view of the fourth embodiment of the present invention;

[0037] Figure 9 Partial three-dimensional sectional view of the fourth embodiment of the present invention;

[0038] Figure 10 Partial three-dimensional sectional view of the fifth embodiment of the present invention;

[0039] Figure 11 Partial sectional view of the sixth embodiment of the present invention;

[0040] Figure 12 First sectional view of the seventh embodiment of the present invention;

[0041] Figure 13 Second sectional view of the seventh embodiment of the present invention;

[0042] Figure 14 Schematic diagram of the installation of the infrared device of the present invention;

[0043] Figure 15 Exploded schematic diagram of the present invention for a three-roller gate;

[0044] Figure 16 Exploded schematic diagram of the present invention for a wing gate. Detailed implementation manners

[0045] In order to enable those skilled in the art to better understand the solution of the present invention, the present invention will be further described in detail below with reference to the drawings and embodiments.

[0046] As Figure 1 shown, taking the common express gate in a channel gate as an example for illustration, a channel gate machine case includes two vertical members 1, that is, two columns, and the columns are also called foot cylinders, and a horizontal member 2 connected to the vertical member 1. The vertical member 1 is made of aluminum profile, and the end of the horizontal member 2 is detachably connected to the vertical member 1; the horizontal member 2 is a cross beam, and it is also made of aluminum profile; the horizontal member, that is, the cross beam, is two, and the two cross beams are arranged up and down and are parallel to each other.

[0047] Two vertical columns and two cross beams form the main body of the quick-pass gate housing. A glass 3' is also fixedly installed between the cross beams. A main control circuit 10 is installed inside the vertical columns, and an infrared device 11 is fixedly installed on the front surface of the cross beams.

[0048] Except for the quick-pass gate, turnstiles such as wing gates and three-roller gates generally also have two vertical components, namely two vertical columns.

[0049] The separable connection refers to connection methods such as threaded connection, snap connection, and buckle connection that can be disassembled without damage and are convenient for assembly. In contrast, the prior art uses processes such as integral molding, welding, or riveting, which cannot be disassembled without damage and are difficult to assemble.

[0050] Aluminum alloy material is used as the main material of the housing, and through the process of aluminum drawing die, the main frame of the housing is formed. In the die design of the aluminum drawing die, first, the shape of the product should be considered. According to the different product movement mechanisms and shapes, different die shapes can be designed. Then, in the design, the following aspects also need to be considered and designed: ① the separable connection method of the housing, as well as the installation and production methods of related important components, ② the fixing method of the glass, ③ the light effect, infrared implementation, and fixing method. The separable connection design method of the housing does not require welding and can flexibly adopt: ④ lapping, ⑤ angle code transfer, ⑥ butt joint, etc.

[0051] As Figures 2 - 3 As shown, this is the first embodiment of the present invention. In this embodiment, the horizontal member 2 located above, that is, both ends of the cross beam are fixedly connected to the two vertical members 1 through a lapping structure; the lapping structure includes a lapping part 3; two transverse inclined plates 201 arranged along the length direction of the horizontal member 2, and transverse connection holes 4 arranged on each transverse inclined plate; two longitudinal flat plates 101 are arranged along the length direction of the vertical member, and longitudinal connection holes 5 are arranged on the inner side of each longitudinal flat plate; one end of the lapping part 3 is connected to one end of the horizontal member through a transverse screw 6, and the other end is connected to the connection end of the vertical member through a longitudinal screw 7.

[0052] In this embodiment, the lapping part 3 includes two mutually parallel fan-shaped plates 301, an arc-shaped plate 302 vertically connected to both ends of the two fan-shaped plates respectively. On the inner surface of the two ends of each fan-shaped plate, there is respectively a connection transverse plate 303 and a connection vertical plate 304 vertically connected to the fan-shaped plate. Each of the connection transverse plate 303 and the connection vertical plate 304 is provided with a connection through hole 305, and the connection transverse plate 303 and the connection vertical plate 304 are both fixedly connected to the arc-shaped plate 302.

[0053] The lapping part is integrally formed; the inner end of the transverse screw 6 passes through the connection through hole 305 in the connection vertical plate and is fixedly connected to the transverse connection hole 4; the inner end of the longitudinal screw 7 passes through the connection through hole 305 in the connection transverse plate 303 and is fixedly connected to the longitudinal connection hole 5.

[0054] The overlapping structure further includes an extension plate 202 arranged at the bottom plate end of the horizontal member 2, two longitudinal through holes 202a arranged on the extension plate; two longitudinal connecting cylinders 102 with square cross-sections arranged in the vertical member 1, and a longitudinal connecting hole 5 is provided at one of the corners of the connecting cylinder 102; the extension plate 202 is overlapped on the connecting surface of the vertical member 1, and the longitudinal connecting holes 5 are respectively connected to the two longitudinal through holes 202a.

[0055] like Figures 4 - 5 As shown, it is a second embodiment of the present invention. In this embodiment, the horizontal member 2 located at the top, that is, the two ends of the beam are respectively fixedly connected with the two vertical members 1 through an angle code transition structure; the angle code transition structure includes an angle code 8 composed of a horizontal arm 801 and a longitudinal arm 802 vertically connected, a longitudinal groove 104 provided in the inner surface of the vertical member 1, and a transverse groove 203 provided in the lower surface of the horizontal member 2. The horizontal arm 801 of the angle code 8 is provided in the transverse groove 203 and is fixedly connected to the horizontal member 2, and the longitudinal arm 802 of the angle code is provided in the longitudinal groove 104 and is fixedly connected to the vertical member 1.

[0056] In this embodiment, during assembly, the horizontal member 2 and the vertical member 1 are first positioned properly, and then the angle bracket 8 is inserted into the longitudinal groove 104 and the transverse groove 203 respectively. After the angle bracket is aligned with the screw hole, the screw is tightened to complete the assembly of the chassis. The longitudinal groove 104 and the transverse groove 203 are used to install the angle bracket, so that multi-angle force support can be achieved, and the stability and strength of the chassis can be effectively guaranteed.

[0057] like Figures 6 - 7 The third embodiment of the present invention is shown in FIG. 2 . In this embodiment, the end of the upper transverse member 2 is fixedly connected to the vertical member 1 via a docking structure; the docking structure includes at least one transverse connecting hole 4 provided in the bottom plate of the transverse member, at least one first transverse through hole (not shown) provided on the inner vertical plate 1a of the vertical member 1 and connected to the transverse connecting hole 4, and a transverse screw 6 is fixedly connected to the transverse connecting hole 4 after passing through the first transverse through hole.

[0058] The end of the upper transverse member 2 is fixedly connected to the vertical member through a docking structure; the docking structure here is different from the aforementioned docking structure, that is, the docking structure includes at least one transverse connecting hole 4 provided in the bottom plate of the transverse member 2; a fixing plate 9 connected to the inner surface of the inner vertical plate of the vertical member, at least one transverse through hole 901 corresponding to the transverse connecting hole 4 is provided on the fixing plate, and a square through hole 1b is provided in the inner vertical plate 1a, and the transverse screw 6 is fixedly connected to the transverse connecting hole 4 after passing through the transverse through hole and the square through hole.

[0059] One end of the fixed plate 9 is provided with an inclined surface 902, and two longitudinal V-shaped grooves 903 are arranged inside the outer surface of the fixed plate; preferably, in order to make the connection more stable, both the transverse connection holes 4 and the transverse through holes 901 are three; the outer ends of two of the transverse through holes 901 are opened on the inclined surface inside the V-shaped groove, and the outer end of the other transverse through hole is opened on the inclined surface 902 at the end of the fixed plate.

[0060] For the express gate, the lower horizontal member can be detachably connected to the vertical member through an angle code or a docking structure.

[0061] As Figures 8 - 9 shown, for the structural embodiment of installing the glass, in order to install the glass 3', a glass installation groove 12 along its length direction is arranged inside the horizontal member 2. The opening of the glass installation groove 12 in the upper horizontal member 2 faces downward, while the opening of the glass installation groove in the lower horizontal member faces upward.

[0062] The glass installation groove 12 is composed of an outer square section 1201, an inner square section 1202 and a trapezoidal section 1203 arranged between the two. The shorter end of the trapezoidal section 1203 is connected to the inner square section 1202.

[0063] A tension fastener 13 is further arranged inside the glass installation groove. A U-shaped inlay groove 1301 along the length direction of the horizontal member is arranged inside the tension fastener. One glass gasket 14 is arranged on each of the inner side walls of the inlay groove. The distance between the glass gaskets is greater than the thickness of the glass 3' so as to insert the edge of the glass between the glass gaskets 14.

[0064] Two triangular inclined plates 1302 integrally formed with the tension fastener 13 are arranged on the tension fastener 13. The outer surface of the inclined plate is an inclined surface, and this inclined surface fits with the two waist inclined surfaces at the trapezoidal section 1203; the tension fastener 13 is made of aluminum profile.

[0065] Two pressing strips 15 are further arranged at the outer square section 1201 of the glass installation groove 12. The pressing strips are located on both sides of the glass 3'. The pressing strip 15 is integrally formed by an upper section 1501 located outside the outer square section and a lower section 1502 located inside the outer square section; a pressure strip 1503 integrally formed with the pressing strip is arranged on the outer wall of the pressing strip. The pressure strip 1503 and the outer wall of the pressing strip form a turning part, and this turning part is combined with the corner parts 1201a on both sides of the opening of the outer square section. The pressing strip 15 is made of rubber.

[0066] A first longitudinal through hole 1204 is arranged inside the bottom plate of the glass installation groove. After passing through the first longitudinal through hole 1204, the longitudinal screw 7 is fixedly connected to the tensioning bottom plate 1303 of the tension fastener 13.

[0067] During assembly, the glass gasket 14 is first attached with double-sided tape and then pasted on both sides of the inner wall of the U-shaped embedding groove 1301 of the pull fastener 13, thus preventing direct contact between the glass 3' and the pull fastener 13 made of aluminum profile, and playing a role in shock absorption and buffering. The designed gap between the two glass gaskets 14 after pasting is just slightly larger than the thickness of the glass 3', facilitating the insertion of the glass 3' later. Then, the assembly of the pull fastener 13 with the glass gasket 14 pasted is aligned and placed into the glass installation groove 12 at the position of the first longitudinal through hole 1204. Next, the longitudinal screw 7 is screwed on but not tightened first. Then, the glass 3' is inserted into the gap between the two glass gaskets 14. Then, while tightening the longitudinal screw 7, the pull fastener 13 moves downward, and the U-shaped embedding groove 1301 in the pull fastener 13 drives the glass gasket 14 to squeeze inward, thereby clamping the glass 3'. Finally, the pressing strip 15 formed by extrusion molding is snapped into the two side gaps between the glass 3' and the inner wall of the glass installation groove 12, playing a role in decoration and secondary pressing.

[0068] As Figure 10 shown, the following structure is adopted in this embodiment to install the glass 3'. The transverse member is provided with a glass installation groove 12' with a U-shaped cross-section. It also includes two fixing members 16 respectively arranged at both ends of the glass installation groove 12'. The fixing member is composed of two parallel clamping vertical plates 1601, and there is a gap for clamping the edge part of the glass 3' between the two clamping vertical plates; a convex surface 1601a is provided on the inner surface of each clamping vertical plate 1601, and the inner end surface of the convex surface is an inclined surface; a longitudinal threaded hole 17 is provided in the glass installation groove 12'. The end of the connecting screw 18 passes through the gap between the two clamping vertical plates 1601 and is fixedly connected to the longitudinal threaded hole 17. The inclined surface on the screw head of the connecting screw 18 fits with the inner end surface; a transverse threaded hole (not shown) is provided on each of the two clamping vertical plates 1601. The two transverse threaded holes are aligned, and the transverse connecting screw 19 passes through the two transverse threaded holes to fix the two clamping vertical plates 1601 together, thereby clamping the edge of the glass 3' between the two clamping vertical plates; the transverse connecting screw 19 is located outside the glass installation groove 12'.

[0069] As Figure 11As shown in the figure, in this embodiment, glass 3' is installed on the vertical member 1, that is, the column. A longitudinal installation groove 20 for installing the glass 3' is provided inside the vertical member 1. The longitudinal installation groove is U-shaped. It further includes a pressing strip 15 and a glass cushion block 21 connected to the longitudinal installation groove. The glass cushion block is integrally formed by a cushion block cross plate 2101 and a cushion block vertical plate 2102. The cushion block cross plate is attached to the bottom surface of the longitudinal installation groove 20, and the inner surface of the cushion block vertical plate is attached to one surface of the glass 3'. On the outer wall of the cushion block vertical plate 2102 on one side outside the longitudinal installation groove, there is a pressing plate 2102a with a triangular cross-section, and the pressing plate is attached to the plane on one side of the longitudinal installation groove 20. The pressing strip 15 is located between the other surface of the glass 3' and the inner wall of the longitudinal installation groove 20. On the outer wall of the pressing strip 15, there is a pressing strip 1503 integrally formed with the pressing strip. The pressing strip and the outer wall of the pressing strip form a turning portion, and the turning portion is attached to the corner on the other side of the longitudinal installation groove 20.

[0070] The glass cushion block 21 is a plastic part formed by extrusion molding and is designed into a specific shape and cross-section according to the structural requirements. During assembly, first place the glass cushion block 21 into the longitudinal installation groove 20, then place the glass 3' into the gap between the glass cushion block 21 and the longitudinal installation groove 20, and finally snap the pressing strip 15 formed by extrusion molding into the gap between the glass 3' and the longitudinal installation groove 20 to play a role in decoration and pressing.

[0071] As Figures 12 - 13 shown in the figure, in order to install the lighting effect component 22 on the chassis, a receiving portion 23 for installing the lighting effect component along its length direction is provided inside the upper horizontal member 2. A strip-shaped notch (not shown) is provided inside the receiving portion; the lighting effect component 22 is composed of an LED light strip 2201 and a light guide strip 2202; the LED light strip 2201 is attached to the inner bottom surface of the receiving portion 23, and the light guide strip 2202 is embedded at the strip-shaped notch for the light of the LED light strip to emit.

[0072] Specifically, as Figure 12 shown in the figure, there is one receiving portion 23 and one group of lighting effect components 22; a strip-shaped notch is provided inside the outer bottom plate of the receiving portion 23; the LED light strip 2201 is attached to the inner bottom surface of the receiving portion 23, and the light guide strip is embedded at the strip-shaped notch for the light of the LED light strip to emit.

[0073] Or, as Figure 13 shown in the figure, there are two receiving portions 23 and two groups of lighting effect components 22; one receiving portion 23 is provided at each of the two side edges of the horizontal member 2. A strip-shaped notch is provided at the corner outside the receiving portion 23. The LED light strip 2201 is attached to the inner bottom surface of the receiving portion 23, and the light guide strip 2202 is embedded at the strip-shaped notch for the light of the LED light strip to emit.

[0074] As shown Figure 14 In order to install the infrared device 11, a transverse groove 24 extending along the length direction of the transverse member is provided in the front surface of the transverse member 2. At the opening of the transverse groove, a plurality of mounting portions for installing the infrared device are provided. The mounting portion 25 is composed of two arc-shaped notches respectively provided at the edges of the two side plates at the opening of the transverse groove.

[0075] In the above embodiments, the structure of the turnstile chassis is described in detail by taking the express gate as an example. This does not mean that the present invention is only applicable to the manufacture of the express gate chassis. The present invention is also applicable to the chassis of other channel turnstiles, such as the three-roller gate, the wing gate, and the swing gate chassis.

[0076] For the wing gate and the three-roller gate, only one transverse member is included, that is, only the upper cross beam.

[0077] As shown Figure 15 In the present invention, when applied to the wing gate, the transverse member 2', that is, the upper cross beam, is formed by a pull aluminum mold. According to the product use and appearance, the cross section of the upper cross beam can be designed into different shapes. Considering its installation and fixing methods, when designing the profile cross section, several through holes with a certain aperture size are reserved on the concave and convex branches of the profile cross section, and threaded holes 26 are made by tapping later. The vertical member 1', that is, the column, is also formed by a pull aluminum mold. According to the product use and appearance, the cross section of the column can be designed into different shapes, and several installation holes 27 with a certain aperture size are processed by machining later. During assembly, after aligning the threaded holes 26 of the upper cross beam with the installation holes 27 of the column, the upper cross beam and the column are fixedly connected by inner hexagon screws. The number of the threaded holes 26 and the installation holes 27 can be appropriately increased or decreased according to different structural strength requirements. The transverse member located below, that is, the lower cross beam, is formed by sheet metal processing, and installation hole positions 28 are reserved. The fixing method is the same as that for fixing the upper cross beam, and it is fixed on the column by inner hexagon screws. After the side sealing plates 29 are formed by sheet metal processing, they are fixed on both sides of the chassis. Finally, a card reading window is installed at the upper end of the column to complete the production and manufacture of the profile wing gate.

[0078] As shown Figure 16As shown in the figure, the present invention is applied to a three-roller gate. The upper crossbeam is formed by a drawing aluminum die. According to the product use and appearance, the cross-section of the upper crossbeam can be designed into different shapes. Considering its installation and fixing method, when designing the profile cross-section, several through holes with a certain aperture size are reserved on the concave and convex branches of the profile cross-section, and then threaded holes 26 are formed by tapping later. The column is also formed by a drawing aluminum die. According to the product use and appearance, the cross-section of the column can be designed into different shapes, and several mounting holes 27 with a certain aperture size are processed by machining later. During assembly, after aligning the threaded holes 26 of the upper crossbeam with the mounting holes 27 of the column, the upper crossbeam and the column are fixedly connected by an internal hexagonal screw 28'. The number of threaded holes and mounting holes can be appropriately increased or decreased according to different structural strength requirements. Finally, a card reading window 30 is installed at the upper end of the vertical member 1' to form the production and manufacturing of the profile three-roller gate; a card reading window 30 is also buckled at the upper end of the vertical member 1'.

[0079] For different types of access control gates, the vertical member 1 is a box-type component or column used to support and install the movement and main control circuit. It is made of aluminum profiles. During production, different drawing aluminum dies are designed according to the shape of the chassis, and mass production of the vertical member 1 is realized through the drawing aluminum die. At the same time, the horizontal member 2 and the vertical member 1 are connected in a separable manner, that is, they are connected through a separable structure, such as threaded connection, snap connection, etc.; the non-destructive disassembly of the two can be realized, so that the horizontal member 2 and the vertical member 1 are convenient for assembly and disassembly. Compared with the prior art in which stainless steel and sheet metal are used to form the chassis through processes such as bending and welding, the present invention breaks through the inherent design concept of the existing access control gate chassis, adopts a new design concept for design, applies the drawing aluminum die processing technology to this field, and the vertical member and the horizontal member of the chassis are connected in a separable connection manner, without welding or bending processing, so it is convenient for assembly and disassembly; mass production through the drawing aluminum die process is beneficial to reducing production costs; it can be assembled on site without transporting it to the installation site after assembly, so the transportation is convenient.

[0080] In the above description, it should be noted that the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection, or an indirect connection through an intermediate medium, and it can be the communication inside two components.

[0081] Although the present invention is depicted through embodiments, those of ordinary skill in the art know that the present invention has many variations and changes without departing from the spirit of the present invention. It is hoped that the appended claims will cover these variations and changes without departing from the spirit of the present invention.

Claims

1. A channel turnstile housing, comprising a vertical member and at least one horizontal member connected to the vertical member, characterized in that, The vertical member is made of aluminum profile, and the end of the horizontal member is detachably connected to the vertical member. A longitudinal installation groove for installing glass is provided in the vertical member. The longitudinal installation groove is U-shaped. It also includes a pressing strip and a glass cushion block connected to the longitudinal installation groove. The glass cushion block is integrally formed by a cushion block horizontal plate and a cushion block vertical plate. The cushion block horizontal plate is in contact with the bottom surface of the longitudinal installation groove, and the inner surface of the cushion block vertical plate is in contact with one surface of the glass. On the outer wall of the cushion block vertical plate on the side outside the longitudinal installation groove, there is a pressing plate with a triangular cross-section, and the pressing plate is in contact with one plane of the longitudinal installation groove. The pressing strip is located between the other surface of the glass and the inner wall of the longitudinal installation groove. On the outer wall of the pressing strip, there is a pressing strip integrally formed with the pressing strip. The pressing strip and the outer wall of the pressing strip form a turning part, and the turning part is combined with the corner parts on both sides of the opening of the outer square section. The horizontal member is a cross beam and is made of aluminum profile.

2. The channel gate machine case according to claim 1, wherein, The two ends of the horizontal member and the vertical member are connected through a lapping structure or a butt joint structure or a corner code transfer structure.

3. The channel gate machine case according to claim 2, characterized in that, There are two horizontal members, which are arranged up and down and parallel to each other; the vertical members are columns and there are also two of them.

4. The channel gate machine chassis according to claim 3, characterized in that, The end of the upper horizontal member and the vertical member are fixedly connected through a lapping structure. The lapping structure includes a lapping part. Two transverse inclined plates arranged along the length direction of the horizontal member, and transverse connection holes arranged on each transverse inclined plate; two longitudinal flat plates are arranged along the length direction of the vertical member, and longitudinal connection holes are arranged on the inner side of each longitudinal flat plate. One end of the lapping part is connected to one end of the horizontal member through a transverse screw, and the other end is connected to the connection end of the vertical member through a longitudinal screw.

5. The channel gate machine case according to claim 4, characterized in that, The lapping part includes two parallel sector plates, and arc plates vertically connected to the two ends respectively. On the inner surface of the two ends of each sector plate, there is a connection horizontal plate and a connection vertical plate vertically connected to the sector plate respectively. A connection through hole is arranged in each of the connection horizontal plate and the connection vertical plate, and the connection horizontal plate and the connection vertical plate are both fixedly connected to the arc plate.

6. The channel gate machine case according to claim 5, characterized in that, The lapping part is integrally formed. The inner end of the transverse screw passes through the connection through hole in the connection vertical plate and is fixedly connected to the transverse connection hole; the inner end of the longitudinal screw passes through the connection through hole in the connection horizontal plate and is fixedly connected to the longitudinal connection hole.

7. The channel gate machine case according to claim 4, characterized in that, The lapping structure also includes an extension plate arranged at the end of the bottom plate of the horizontal member, and two longitudinal through holes arranged on the extension plate; two longitudinally connected cylinders with a square cross-section arranged in the vertical member, and a longitudinal connection hole is arranged at one of the corners of the connection cylinder. The extension plate is lapped on the connection surface of the vertical member, and the longitudinal connection holes are respectively communicated with the two longitudinal through holes.

8. The channel gate machine case according to claim 3, characterized in that, The end of the upper horizontal member and the vertical member are fixedly connected through a corner code transfer structure. The corner code transfer structure includes a corner code composed of a transverse arm and a longitudinal arm vertically connected, a longitudinal groove arranged in the inner surface of the vertical member, and a transverse groove arranged in the lower surface of the horizontal member. The transverse arm of the corner code is arranged in the transverse groove and is fixedly connected to the horizontal member, and the longitudinal arm of the corner code is arranged in the longitudinal groove and is fixedly connected to the vertical member.

9. The channel gate machine case according to claim 3, characterized in that, The end of the upper horizontal member is fixedly connected to the vertical member through a butt joint structure; the butt joint structure includes at least one horizontal connection hole provided in the bottom plate of the horizontal member, at least one first horizontal through hole provided on the inner vertical plate of the vertical member and communicating with the horizontal connection hole, and a horizontal screw passes through the first horizontal through hole and is fixedly connected to the horizontal connection hole.

10. A channel gate machine case as described in claim 3, characterized in that, The end of the upper horizontal member is fixedly connected to the vertical member through a butt joint structure; the butt joint structure includes at least one horizontal connection hole provided in the bottom plate of the horizontal member; a fixing plate connected to the inner surface of the inner vertical plate of the vertical member, at least one horizontal through hole corresponding to the horizontal connection hole is provided on the fixing plate, a square through hole is provided in the inner vertical plate, and a horizontal screw passes through the horizontal through hole and the square through hole and is fixedly connected to the horizontal connection hole.

11. A channel gate machine case according to claim 10, characterized in that, One end of the fixing plate is provided with an inclined surface, and two longitudinal V-shaped grooves are provided on the outer surface of the fixing plate; both the horizontal connection hole and the horizontal through hole are three; the outer ends of two of the horizontal through holes are opened on the inclined surface in the V-shaped groove, and the outer end of the other horizontal through hole is opened on the inclined surface at the end of the fixing plate.

12. The channel gate machine case according to claim 3, characterized in that, A glass installation groove is provided in the horizontal member along its length direction. The opening of the glass installation groove in the upper horizontal member faces downward, while the opening of the glass installation groove in the lower horizontal member faces upward.

13. A channel gate machine case according to claim 12, characterized in that, The glass installation groove is composed of an outer square section, an inner square section, and a trapezoidal section provided between the two. The shorter end of the trapezoidal section is connected to the inner square section.

14. A channel gate machine case according to claim 13, characterized in that, A tension fastener is further provided in the glass installation groove. A U-shaped inlay groove is provided in the tension fastener along the length direction of the horizontal member. A glass gasket is provided on each of the two inner walls of the inlay groove. The distance between the glass gaskets is greater than the thickness of the glass.

15. A channel gate machine case according to claim 14, characterized in that, Two inclined plates with a triangular cross-section integrally formed with the tension fastener are provided on the tension fastener. The outer surface of the inclined plate is an inclined surface, and this inclined surface fits with the inclined surfaces of the two waists at the trapezoidal section; the tension fastener is made of aluminum profile.

16. A channel gate machine case according to claim 13, characterized in that, Two pressing strips are further provided at the outer square section of the glass installation groove. The pressing strips are located on both sides of the glass. The pressing strips are integrally formed by an upper section outside the outer square section and a lower section inside the outer square section; a pressing bar integrally formed with the pressing strip is provided on the outer wall of the pressing strip. The pressing bar and the outer wall of the pressing strip form a turning portion, and the turning portion is combined with the corner portions on both sides of the opening of the outer square section.

17. A channel gate machine case according to claim 14, characterized in that, A first longitudinal through hole is provided in the bottom plate of the glass installation groove. A longitudinal screw passes through the first longitudinal through hole and is fixedly connected to the tensioning bottom plate of the tension fastener.

18. A channel gate machine case according to claim 12, characterized in that, The transverse member is provided with a glass installation groove having a U-shaped cross section, and further includes two fixing members respectively provided at two end portions of the glass installation groove. The fixing member is composed of two parallel clamping vertical plates, and there is a gap for clamping the edge portion of the glass between the two clamping vertical plates; convex surfaces are provided on the inner surfaces of each clamping vertical plate, and the inner end surface of the convex surface is an inclined surface; longitudinal threaded holes are provided in the glass installation groove, and the end portion of the connecting screw passes through the gap between the two clamping vertical plates and is fixedly connected to the longitudinal threaded hole. The inclined surface on the screw head of the connecting screw fits with the inner end surface; a transverse threaded hole is provided on each of the two clamping vertical plates, the two transverse threaded holes are aligned, and a transverse connecting screw passes through the two transverse threaded holes to fix the two clamping vertical plates together. The transverse connecting screw is located outside the glass installation groove.

19. The channel gate machine case according to claim 1, characterized in that, The glass spacer is made of plastic material.

20. The channel gate machine case according to claim 3, characterized in that, The upper transverse member is provided with a receiving portion for installing a lighting effect component along its length direction. A strip-shaped notch is provided in the receiving portion; the lighting effect component is composed of an LED light strip and a light guide strip; the LED light strip is attached to the inner bottom surface of the receiving portion, and the light guide strip is embedded at the strip-shaped notch for the light of the LED light strip to emit.

21. The channel gate machine case according to claim 20, wherein, There is one receiving portion and one group of lighting effect components; a strip-shaped notch is provided in the outer bottom plate of the receiving portion; the LED light strip is attached to the inner bottom surface of the receiving portion, and the light guide strip is embedded at the strip-shaped notch for the light of the LED light strip to emit.

22. A channel gate machine case as described in claim 20, characterized in that, There are two receiving portions and two groups of lighting effect components; a receiving portion is provided at each of the two side edges of the transverse member. A strip-shaped notch is provided at the corner of the outside of the receiving portion. The LED light strip is attached to the inner bottom surface of the receiving portion, and the light guide strip is embedded at the strip-shaped notch for the light of the LED light strip to emit.

23. The channel gate machine case according to claim 3, characterized in that, A transverse groove is provided in the front surface of the transverse member along the length direction of the transverse member. Multiple groups of mounting portions for installing infrared devices are provided at the opening of the transverse groove. The mounting portion is composed of two arc-shaped notches respectively provided at the edges of the two side plates at the opening of the transverse groove.

Citation Information

Patent Citations

  • Combined channel gate

    CN202689916U

  • Channel gate case

    CN211959719U