A kind of processor installing device that can two-wayly bleed
Technical field
The application relates to a kind of erection unit, is specially a kind of processor installing device that can two-wayly bleed.
Background technology
Large-scale electric equipment in the factory needs to be equipped with large-scale distribution box usually; Because large-scale industrial production needs a large amount of this distribution boxs, therefore, corresponding a large amount of distribution boxs are usually provided with between the distribution trolley of factory.Because the power consumption of industrial equipment and power are comparatively large, therefore, easily there is heat accumulation when long-time big current effect in the cable of powering to distribution box.Especially at the cable of the inner cabling of distribution box, because the heat dispersal situations of distribution box inside is not good, and the electric component of distribution box inside itself is also at distribute heat, and therefore, the superposition of these situations just exacerbates the accumulation of heat more.Huge potential safety hazard is caused between the distribution trolley of the heat accumulated for factory.Because distribution plant personnel is less, equipment is more, and long accumulation of heat easily causes cable sheath to soften, and increases the weight of degree of aging, and the contact object that easily ignites gradually when contacting other objects, causes fire.More existing cooling devices, normally install ventilating fan additional on distribution box, so that by heat away.But this device is that danger falls in the cooling that can not realize workshop entirety by heat dissipation in workshop condition; And in distribution box, usual electric component is intensive, and in the region of some heat accumulation, exhaust effect is often bad, therefore this device is also difficult to carry out specific aim cooling to concrete parts.And in prior art, also have the equipment specific concrete parts being installed additional to fan.But, be so only by around the heat dissipation of these concrete parts to miscellaneous part, and be unfavorable for overall cooling.And heat spreader structures more complicated of the prior art, operating reliability is not high, needs to expend extra electric power.
Summary of the invention
The invention provides a kind of processor installing device that can two-wayly bleed, it can carry out specific aim cooling for concrete processor parts, and the heat that can produce the electric component around it and itself carries out absorption discharge simultaneously, can play and both specific aim cooling be carried out to heating processor, the technique effect heat of heating processor periphery effectively can taken away again.
The solution of the present invention is: a kind of processor installing device that can two-wayly bleed, comprise holding module and installation module, described installation module comprises connector and installed part, described connector is used for installed part to be electrically connected with needing the parts of installation process device in control cubicle, it comprises connector external plug-in and connector internal plug, and described connector external plug-in is used for being electrically connected with the processor socket in control cubicle; Described installed part comprises installed part plug-in unit, cylindric fixed part, mount pad and cylindric support portion, described installed part plug-in unit is cylindrical, it can be fixed installed part, and can be electrically connected with described connector internal plug, described mount pad is used for installation process device, thus making processor realize being electrically connected with needing the parts of installation process device in control cubicle, described cylindric support portion is cylindrical, for being fixed by installed part.
Described holding module comprises main part and exhaust part, and described main part comprises upper semi-circle portion and lower half circle portion, and upper semi-circle portion and lower half circle portion fasten and form cylinder, and the interface in upper semi-circle portion and lower half circle portion is provided with sealing strip; Described cylindrical external peripheral surface is provided with columniform cooling fluid barrier layer, described cylindrical inside has the cavity for holding mount pad and processor, described columniform cooling fluid barrier layer is around described cavity, and be communicated with inlet in the right-hand member upper flow of described columniform cooling fluid barrier layer, left end lower flow is communicated with liquid outlet; Circular pore is also provided with at described columniform cooling fluid barrier layer, the inner circumferential side wall energy of described circular pore is enough to be completely cut off the bore seal of described circular pore and described cooling fluid barrier layer, thus described cavity can be communicated with the external environment condition of cavity by described circular pore.
Described circular pore lines up axial row along described cylindrical axial direction, circumferentially has multiple described axial row at described columniform cooling fluid barrier layer, and the described circular pore in adjacent described axial row staggers mutually; The aperture of the described circular pore in each described axial row increases gradually with the direction from two ends to centre, thus the aperture of the circular pore of mid portion in each axial row is maximum, and the aperture of the circular pore of two end portions is minimum; Cooling fluid can flow into described cooling fluid barrier layer by described inlet, and flows through the circumferential side wall of each circular pore, is flowed out by described liquid outlet.
Described upper semi-circle portion and lower half circle portion are all respectively arranged with carrying semicircular ring at its left end, after described upper semi-circle portion and lower half circle portion fasten formation cylinder, described carrying semicircular ring forms carrying annulus, and be positioned at the left end of described cavity, described carrying annulus, for carrying cylindric fixed part, is provided with O-Sealing Rings in the carrying annulus that described carrying semicircular ring is formed; The outer circumference surface of described carrying semicircular ring extends dividing plate by the radial direction that circumferential uniform intervals is arranged and is fixedly connected with lower half circle portion with described upper semi-circle portion respectively, and described radial direction extends between dividing plate and forms the dividing plate gas circuit with described cavity connects.
Described upper semi-circle portion and lower half circle portion are provided with first circular sprue and lower semi-circular sprue at its right-hand member respectively, and after described upper semi-circle portion and lower half circle portion fasten formation cylinder, with the sprue of blind round hole in the middle of first circular sprue described and lower semi-circular sprue fasten and are formed, described blind hole is for carrying cylindric support portion, and described sprue is closed away from cylindrical one end; The outer circumference surface of described semicircle sprue extends dividing plate by the radial direction that circumferential uniform intervals is arranged and is fixedly connected with lower half circle portion with described upper semi-circle portion respectively, and described radial direction extends between dividing plate and forms the dividing plate gas circuit with described cavity connects.
The quantity of described exhaust part is two, left and right is arranged on described cylindrical two ends respectively, each described exhaust portion is upper exhaust portion and lower pumping part, upper exhaust portion and lower pumping part fasten formation by securing member sealing and to bleed chamber, in the left end face being positioned at the upper exhaust portion of cylinder left end and be positioned at cylinder right-hand member upper exhaust portion its right end face on there is the first bleeding point respectively, in the left end face being positioned at the lower pumping part of cylinder left end and be positioned at cylinder right-hand member lower pumping part its right end face on there is the second bleeding point respectively, the axial direction of described first bleeding point and described second bleeding point is all parallel to cylindrical longitudinally, in each described exhaust part, the side of described main part is provided with circular connecting hole, described circular connecting hole is formed in the described cylinder position corresponding with the radial outside of described dividing plate gas circuit and described cylinder and is tightly connected, the left end middle part of described left side exhaust part is provided with the closed hole passed for described cylindric fixed part, the right-hand member middle part of described right side exhaust part is closed.
During work, processor is arranged on mount pad, mount pad and processor are contained in upper semi-circle portion and lower half circle portion and fasten in the cylindrical cavity formed, cylindric fixed part is carried in the carrying annulus in closed hole and left side by order from left to right successively, cylindric support portion is arranged in the blind hole on right side, installed part plug-in unit reaches outside closed hole, installed part is connected with connector with connector internal plug by installed part plug-in unit, connector external plug-in is electrically connected with the processor socket in control cubicle, described first bleeding point is connected with getter device with the second bleeding point, described inlet is communicated with the supply port of coolant supply apparatus, described liquid outlet is communicated with the recovery port of coolant supply apparatus, under the effect of described getter device, the gas of the external environment condition of described cavity can enter described cavity by described circular pore, and is siphoned away by getter device by described dividing plate gas circuit, thus plays the effect effectively taking away described processor ambient heat.
Accompanying drawing explanation
Fig. 1 is the schematic main pseudosection of the processor installing device that can two-wayly bleed of the present invention;
Fig. 2 is the schematic side elevation of the processor installing device that can two-wayly bleed of the present invention;
Fig. 3 is the schematic installation diagram of the processor installing device that can two-wayly bleed of the present invention;
Fig. 4 is the right view of left side of the present invention exhaust part;
Fig. 5 is the left view of left side of the present invention exhaust part;
Fig. 6 is the schematic diagram of connector of the present invention;
Fig. 7 is the schematic diagram of installed part of the present invention.
Embodiment
A kind of processor installing device that can two-wayly bleed, comprise holding module and installation module, described installation module comprises connector and installed part, described connector is used for installed part to be electrically connected with needing the parts of installation process device in control cubicle, it comprises connector external plug-in 25 and connector internal plug 24, and described connector external plug-in 25 is for being electrically connected with the processor socket in control cubicle; Described installed part comprises installed part plug-in unit 26, cylindric fixed part 23, mount pad 22 and cylindric support portion 21, described installed part plug-in unit 26 is cylindrical, it can be fixed installed part, and can be electrically connected with described connector internal plug 24, described mount pad 22 is for installation process device, thus making processor realize being electrically connected with needing the parts of installation process device in control cubicle, described cylindric support portion 21 is cylindrical, for being fixed by installed part.
Described holding module comprises main part and exhaust part 10, and described main part comprises upper semi-circle portion 1 and lower half circle portion 2, and upper semi-circle portion 1 and lower half circle portion 2 fasten and form cylinder, and the interface in upper semi-circle portion 1 and lower half circle portion 2 is provided with sealing strip; Described cylindrical external peripheral surface is provided with columniform cooling fluid barrier layer, described cylindrical inside has the cavity for holding mount pad 22 and processor, described columniform cooling fluid barrier layer is around described cavity, and be communicated with inlet 3 in the right-hand member upper flow of described columniform cooling fluid barrier layer, left end lower flow is communicated with liquid outlet 4; Circular pore 27 is also provided with at described columniform cooling fluid barrier layer, the inner circumferential side wall energy of described circular pore 27 is enough to be completely cut off described circular pore 27 with the bore seal of described cooling fluid barrier layer, thus described cavity can be communicated with the external environment condition of cavity by described circular pore 27.
Described circular pore 27 lines up axial row along described cylindrical axial direction, circumferentially has multiple described axial row at described columniform cooling fluid barrier layer, and the described circular pore 27 in adjacent described axial row staggers mutually; The aperture of the described circular pore 27 in each described axial row increases gradually with the direction from two ends to centre, thus the aperture of the circular pore 27 of mid portion in each axial row is maximum, and the aperture of the circular pore 27 of two end portions is minimum; Cooling fluid can flow into described cooling fluid barrier layer by described inlet 3, and flows through the circumferential side wall of each circular pore 27, is flowed out by described liquid outlet 4.
Described upper semi-circle portion 1 and lower half circle portion 2 are all respectively arranged with carrying semicircular ring 5 at its left end, after described upper semi-circle portion 1 and lower half circle portion 2 fasten formation cylinder, described carrying semicircular ring 5 forms carrying annulus, and be positioned at the left end of described cavity, described carrying annulus, for carrying cylindric fixed part 23, is provided with O-Sealing Rings in the carrying annulus that described carrying semicircular ring 5 is formed; The outer circumference surface of described carrying semicircular ring 5 extends dividing plate 6 by the radial direction that circumferential uniform intervals is arranged and is fixedly connected with lower half circle portion 2 with described upper semi-circle portion 1 respectively, and described radial direction extends between dividing plate 6 and forms the dividing plate gas circuit 7 with described cavity connects.
Described upper semi-circle portion 1 and lower half circle portion 2 are provided with first circular sprue and lower semi-circular sprue at its right-hand member respectively, and after described upper semi-circle portion 1 and lower half circle portion 2 fasten formation cylinder, with the sprue of blind round hole in the middle of first circular sprue described and lower semi-circular sprue fasten and are formed, described blind hole is for carrying cylindric support portion 21, and described sprue is closed away from cylindrical one end; The outer circumference surface of described semicircle sprue extends dividing plate 6 by the radial direction that circumferential uniform intervals is arranged and is fixedly connected with lower half circle portion 2 with described upper semi-circle portion 1 respectively, and described radial direction extends between dividing plate 6 and forms the dividing plate gas circuit 7 with described cavity connects.
The quantity of described exhaust part 10 is two, left and right is arranged on described cylindrical two ends respectively, each described exhaust part 10 is divided into exhaust portion and lower pumping part, upper exhaust portion and lower pumping part are sealed by securing member 12 and fasten formation and to bleed chamber, in the left end face being positioned at the upper exhaust portion of cylinder left end and be positioned at cylinder right-hand member upper exhaust portion its right end face on there is the first bleeding point 11 respectively, in the left end face being positioned at the lower pumping part of cylinder left end and be positioned at cylinder right-hand member lower pumping part its right end face on there is the second bleeding point 13 respectively, described first bleeding point 11 is all parallel to cylindrical longitudinally with the axial direction of described second bleeding point 13, in each described exhaust part 10, the side of described main part is provided with circular connecting hole 92, described circular connecting hole 92 is formed in the described cylinder position corresponding with the radial outside of described dividing plate gas circuit 7 and described cylinder and is tightly connected, the left end middle part of described left side exhaust part is provided with the closed hole 91 passed for described cylindric fixed part 23, the right-hand member middle part of described right side exhaust part is closed.
During work, processor is arranged on mount pad 22, mount pad 22 and processor are contained in upper semi-circle portion 1 and lower half circle portion 2 and fasten in the cylindrical cavity formed, cylindric fixed part 23 is carried in the carrying annulus in closed hole 91 and left side by order from left to right successively, cylindric support portion 21 is arranged in the blind hole on right side, installed part plug-in unit 26 reaches outside closed hole 91, installed part is connected with connector with connector internal plug 24 by installed part plug-in unit 26, connector external plug-in 25 is electrically connected with the processor socket in control cubicle, described first bleeding point 11 is connected with getter device with the second bleeding point 13, described inlet 3 is communicated with the supply port of coolant supply apparatus, described liquid outlet 4 is communicated with the recovery port of coolant supply apparatus, under the effect of described getter device, the gas of the external environment condition of described cavity can enter described cavity by described circular pore 27, and siphoned away by getter device by described dividing plate gas circuit 7, thus play the effect effectively taking away described processor ambient heat.