Method, device and a computer program for manufacturing a pre-insulated skeleton framing segment
A method, a device and a computer program for manufacturing a pre-insulated skeleton framing segment for a building to be constructed, wherein an assembly with a hollow space is provided, to which a data carrier is fitted including data from which a quantity of raw materials required for forming a foam insulation layer of a thickness in the hollow space can be determined, which quantity is calculated, and which raw materials are inserted in the hollow space, and foam and harden there during a period.
1. A method of manufacturing a pre-insulated skeleton framing segment for buildings of various dimensions, wherein the method comprises the steps of:
receiving an assembly having a frame and at least one compartment with a hollow space fillable with a foam insulation layer;
associating at least one data carrier to the assembly;
reading data on the at least one data carrier;
determining the quantity of raw materials which are to be inserted in the at least one compartment for forming the foam insulation layer on the basis of the at least one data carrier;
wherein the data on the at least one data carrier comprises dimensions of the at least one compartment, and said determining the quantity of raw materials which are to be inserted comprises a step of calculating the quantity of the raw materials to be inserted from said dimensions; or
wherein the method comprises the step of calculating the quantity of the raw materials to be inserted from dimensions of the at least one compartment and including the quantity of raw materials which are to be inserted in the data on the at least one carrier.
2. The method according to claim 1 , further comprising the steps of:
determining a position of the at least one compartment and displacing a nozzle to the determined position;
inserting the determined quantity of raw materials in the at least one compartment for forming the foam insulation layer.
3. The method according to claim 2 , further comprising the step of allowing the foam insulation layer to foam and harden in the at least one compartment during a predetermined period.
4. The method according to claim 3 , further comprising the steps of:
providing the at least one data carrier containing data of the at least one compartment and fitting the at least one data carrier to the assembly, the data carrier including data indicating a quantity of raw materials required for forming the foam insulation layer in the at least one compartment.
5. The method according to claim 3 , wherein the assembly is a half-open assembly comprising a frame and a first flat panel secured thereto, and wherein the method further comprises the steps of:
positioning the assembly in a lying position before the determined quantity of the raw materials is inserted in the at least one compartment;
allowing the foam insulation layer to harden during the predetermined period after insertion of the raw materials.
6. The method according to claim 5 providing a second flat panel, and after expiration of the predetermined period, securing the second flat panel to the frame in such a manner that the frame is located between the first and second panel.
7. The method according to claim 1 , wherein the data carrier comprises an element selected from the following group: a label, a 1D barcode, a 2D barcode, a component with a magnetic memory, a component with an electronic memory, and an RF-ID chip.
8. The method according to claim 2 , wherein the position of the at least one compartment is determined on the basis of the data on the at least one data carrier and the displacement of the nozzle is performed automatically.
9. The method according to claim 1 , wherein the at least one compartment comprises a plurality of compartments and the at least one data carrier comprises a plurality of data carriers, each of the plurality of data carriers corresponding to one of the plurality of compartments, and wherein each of the plurality of data carriers are fitted in the vicinity of the corresponding one of the plurality of compartments such that the compartments are filled semi-automatically.
10. The method according to claim 6 , wherein the determined quantity of raw materials is such that the foam insulation layer projects at all points above an upright wall of the at least one compartment.
11. The method according to claim 10 , further comprising the step of:
after the expiration of the predetermined period and before securing the second flat panel, removing parts of the foam insulation layer projecting above the upright wall by cutting or sawing.
12. The method according to claim 1 , wherein data on the at least one data carrier comprise the dimensions of the at least one compartment, and the method further comprising the step of calculating the quantity of the raw materials to be inserted from said dimensions.
13. The method according to claim 1 , wherein at least one of the raw materials is liquid, and/or wherein the raw materials comprise a polyol and an isocyanate for forming polyurethane foam as the foam insulation layer, and/or wherein the raw materials comprise a fire-retardant component.
14. The method according to claim 1 , further comprising the step of installing electrical devices in the at least one compartment before insertion of the raw materials into the at least one compartment.